dc.contributor.advisor | Romero Sánchez, María Consuelo | |
dc.contributor.advisor | Chila Moreno, Leidy Lorena | |
dc.contributor.advisor | Muñoz Henao, Julián Esteban | |
dc.contributor.author | Ramos Casallas, Manuel Alejandro | |
dc.date.accessioned | 2022-03-09T16:33:00Z | |
dc.date.available | 2022-03-09T16:33:00Z | |
dc.date.issued | 2018-05 | |
dc.identifier.uri | https://repositorio.universidadmayor.edu.co/handle/unicolmayor/4792 | |
dc.description.abstract | La Artritis Reumatoide (AR) es una enfermedad autoinmune sistémica
caracterizada por un estado de inflamación crónica y deterioro progresivo de las
articulaciones. Su diagnóstico se basa en una serie de criterios clínicos y pruebas
de laboratorio. Este último ítem abarca la detección del Factor Reumatoide (FR)
y/o los autoanticuerpos anti-proteínas citrulinadas (anti-CCP), asociados a la
actividad de la enfermedad y al pronóstico de la misma.
Sin embargo, existen grupos de pacientes con elevado daño articular y niveles
indetectables de FR y/o autoautoanticuerpos anti-CCP, dificultando el diagnóstico
y las opciones terapéuticas. De forma reciente se descubrieron los
autoanticuerpos anti-proteínas carbamiladas (anti-CarP) asociados a esta
enfermedad, los cuales permitirían tipificar la AR en estos grupos de pacientes e
individuos con condiciones de riesgo, además de poder predecir el desenlace
articular. De esta manera se facilitaría el diagnóstico, así como en el tratamiento y
el pronóstico.
En este estudio se midieron los niveles de autoautoanticuerpos anti-CCP. Así
mismo, se midieron los niveles de autoanticuerpos frente al péptido carbamilado
de fibrinógeno (empleando el péptido nativo como control), en pacientes con
artritis reumatoide temprana y familiares en primer grado de consanguinidad, para
establecer su asociación frente al daño reumatológico y periodontal. Los
resultados resaltan la asociación entre el número de articulaciones dolorosas e
inflamadas y el daño periodontal con la presencia de los anticuerpos anti-péptido
de fibrinógeno carbamilado en el grupo de familiares en primer grado de
consanguinidad. No hubo asociación entre estos autoanticuerpos y los
autoautoanticuerpos anti-CCP en los pacientes con artritis reumatoide temprana.
Como hallazgo adicional, se observó que los dos grupos de estudio presentan
autoanticuerpos contra el péptido nativo de fibrinógeno.
En conclusión, la presencia de autoanticuerpos contra péptidos/proteínas
carbamiladas están presentes en la población colombiana con artritis reumatoide
temprana y familiares en primer grado de consanguinidad; asociados a
manifestaciones de daño articular y periodontal. Además, la presencia de
autoanticuerpos frente al péptido de fibrinógeno nativo puede ser un indicio de
desarrollo de la enfermedad. | spa |
dc.description.tableofcontents | TABLA DE CONTENIDO
RESUMEN EJECUTIVO 11
INTRODUCCIÓN 13
1. OBJETIVOS 15
1.1. OBJETIVO PRINCIPAL (GENERAL )15
1.2. OBJETIVOS SECUNDARIOS (ESPECÍFICOS)15
2. ANTECEDENTES 17
3. MARCO TEÓRICO 24
3.1. DEFINICIÓN DE ARTRITIS REUMATOIDE 24
3.2. MANIFESTACIONES CLÍNICAS 27
3.3. FACTORES DE RIESGO 28
3.4. EPIDEMIOLOGÍA DE LA ENFERMEDAD EN COLOMBIA. 34
3.5. DIAGNÓSTICO 35
4. METODOLOGÍA 44
4.1. TIPO DE INVESTIGACIÓN 44
4.2. POBLACIÓN 44
4.3. MUESTRA 44
4.4. SELECCIÓN DE LA MUESTRA 44
4.5. CRITERIOS DE INCLUSIÓN 45
4.6. CRITERIOS DE EXCLUSIÓN 45
4.7. HIPÓTESIS 47
4.8. TÉCNICAS Y PROCEDIMIENTOS 48
4.9. ANÁLISIS ESTADÍSTICO 51
5. RESULTADOS 52
6. DISCUSIÓN 86
7. CONCLUSIONES 91
8. REFERENCIAS 92
9. ANEXOS 116
9.1. FORMATO DE CRITERIOS DE EXCLUSION 116
9.2. FORMATO DE RECOLECCION DE DATOS PACIENTES CON AR Y
FAMILIARES: 117 | spa |
dc.format.extent | 117p. | spa |
dc.format.mimetype | application/pdf | spa |
dc.language.iso | spa | spa |
dc.publisher | Universidad Colegio Mayor de Cundinamarca | spa |
dc.rights | Derechos Reservados - Universidad Colegio Mayor de Cundinamarca, 2018 | spa |
dc.rights.uri | https://creativecommons.org/licenses/by-nc-sa/4.0/ | spa |
dc.title | Niveles de autoanticuerpos anti-peptidos carbamilados y citrulinados y su relación con índices de actividad clínica reumática en pacientes con artritis reumatoide temprana y familiares en primer grado de consanguinidad de pacientes con artritis reumatoide, oriundos de Colombia | spa |
dc.type | Trabajo de grado - Pregrado | spa |
dc.description.degreelevel | Pregrado | spa |
dc.description.degreename | Bacteriólogo(a) y Laboratorista Clínico | spa |
dc.identifier.barcode | 58418 | |
dc.publisher.faculty | Facultad de Ciencias de la Salud | spa |
dc.publisher.place | Bogotá D.C | spa |
dc.publisher.program | Bacteriología y Laboratorio Clínico | spa |
dc.relation.references | Firestein GS. Evolving concepts of rheumatoid arthritis. Nature [Internet].
2003 May 15;423(6937):356–61. Available from:
http://www.nature.com/doifinder/10.1038/nature01661 | spa |
dc.relation.references | Klareskog L, Rönnelid J, Lundberg K, Padyukov L, Alfredsson L. Immunity to
citrullinated proteins in rheumatoid arthritis. Annu Rev Immunol [Internet].
2008;26:651–75. Available from:
http://www.ncbi.nlm.nih.gov/pubmed/18173373 | spa |
dc.relation.references | Wegner N, Lundberg K, Kinloch A, Fisher B, Malmström V, Feldmann M, et
al. Autoimmunity to specific citrullinated proteins gives the first clues to the
etiology of rheumatoid arthritis. Immunol Rev. 2010;233(1):34–54. | spa |
dc.relation.references | Rosales-borjas DM, Arévalo MA, Ortiz-ortiz L. Artritis reumatoide:
importancia de los antigenos citrulinados en el diagnostico del padecimiento.
Rev Médica la Extensión Port. 2009;4(3):125–30. | spa |
dc.relation.references | Nishimura K, Sugiyama D, Kogata Y, Tsuji G, Nakazawa T, Kawano S, et al.
Meta-analysis: diagnostic accuracy of anti-cyclic citrullinated peptide
antibody and rheumatoid factor for rheumatoid arthritis. Ann Intern Med
[Internet]. 2007 Jun 5;146(11):797–808. Available from:
http://www.ncbi.nlm.nih.gov/pubmed/17548411 | spa |
dc.relation.references | van Venrooij WJ, Hazes JM, Visser H. Anticitrullinated protein/peptide
antibody and its role in the diagnosis and prognosis of early rheumatoid
arthritis. Neth J Med. 2002;60(10):383–8. | spa |
dc.relation.references | Rantapää-Dahlqvist S, de Jong BAW, Berglin E, Hallmans G, Wadell G,
Stenlund H, et al. Antibodies against cyclic citrullinated peptide and IgA
rheumatoid factor predict the development of rheumatoid arthritis. Arthritis
Rheum [Internet]. 2003 Oct;48(10):2741–9. Available from:
http://www.ncbi.nlm.nih.gov/pubmed/14558078 | spa |
dc.relation.references | van der Helm-van Mil AHM, Verpoort KN, Breedveld FC, Toes REM,
Huizinga TWJ. Antibodies to citrullinated proteins and differences in clinical
progression of rheumatoid arthritis. Arthritis Res Ther [Internet].
2005;7(5):R949-58. Available from:
http://www.pubmedcentral.nih.gov/articlerender.fcgi?artid=1257421&tool=pm
centrez&rendertype=abstract | spa |
dc.relation.references | Van Der Woude D, Young A, Jayakumar K, Mertens BJ, Toes REM, Van Der
Heijde D, et al. Prevalence of and predictive factors for sustained diseasemodifying antirheumatic drug-free remission in rheumatoid arthritis: Results
from two large early arthritis cohorts. Arthritis Rheum [Internet]. 2009
Aug;60(8):2262–71. Available from: http://doi.wiley.com/10.1002/art.24661 | spa |
dc.relation.references | Van Der Woude D, Young A, Jayakumar K, Mertens BJ, Toes REM, Van Der
Heijde D, et al. Prevalence of and predictive factors for sustained diseasemodifying antirheumatic drug-free remission in rheumatoid arthritis: Results
from two large early arthritis cohorts. Arthritis Rheum [Internet]. 2009
Aug;60(8):2262–71. Available from: http://doi.wiley.com/10.1002/art.24661 | spa |
dc.relation.references | Nielen MMJ, van Schaardenburg D, Reesink HW, van de Stadt RJ, van der
Horst-Bruinsma IE, de Koning MHMT, et al. Specific autoantibodies precede
the symptoms of rheumatoid arthritis: a study of serial measurements in
blood donors. Arthritis Rheum [Internet]. 2004 Feb;50(2):380–6. Available
from: http://www.ncbi.nlm.nih.gov/pubmed/14872479 | spa |
dc.relation.references | Willemze A, Trouw L a, Toes REM, Huizinga TWJ. The influence of ACPA
status and characteristics on the course of RA. Nat Rev Rheumatol
[Internet]. 2012;8(3):144–52. Available from:
http://www.ncbi.nlm.nih.gov/pubmed/22293763 | spa |
dc.relation.references | Berglin E, Johansson T, Sundin U, Jidell E, Wadell G, Hallmans G, et al.
Radiological outcome in rheumatoid arthritis is predicted by presence of
antibodies against cyclic citrullinated peptide before and at disease onset,
and by IgA-RF at disease onset. Ann Rheum Dis [Internet]. 2006
Apr;65(4):453–8. Available from:
http://www.ncbi.nlm.nih.gov/pubmed/16176994 | spa |
dc.relation.references | Shi J, Knevel R, Suwannalai P, van der Linden MP, Janssen GMC, van
Veelen P a., et al. Autoantibodies recognizing carbamylated proteins are
present in sera of patients with rheumatoid arthritis and predict joint damage.
Proc Natl Acad Sci. 2011;108(42):17372–7. | spa |
dc.relation.references | Steinbrecher UP, Fisher M, Witztum JL, Curtiss LK. Immunogenicity of
homologous low density lipoprotein after methylation, ethylation, acetylation,
or carbamylation: generation of antibodies specific for derivatized lysine. J
Lipid Res [Internet]. 1984 Oct;25(10):1109–16. Available from:
http://www.ncbi.nlm.nih.gov/pubmed/6439810 | spa |
dc.relation.references | Mydel P, Wang Z, Brisslert M, Hellvard A, Dahlberg LE, Hazen SL, et al.
Carbamylation-dependent activation of T cells: a novel mechanism in the
pathogenesis of autoimmune arthritis. J Immunol [Internet]. 2010 Jun
15;184(12):6882–90. Available from:
http://www.ncbi.nlm.nih.gov/pubmed/20488785 | spa |
dc.relation.references | Shi J, Van De Stadt LA, Levarht EWN, Huizinga TWJ, Toes REM, Trouw LA,
et al. Anti-carbamylated protein antibodies are present in arthralgia patients
and predict the development of rheumatoid arthritis. Arthritis Rheum.
2013;65(4):911–5. | spa |
dc.relation.references | Yee A, Webb T, Seaman A, Infantino M, Meacci F, Manfredi M, et al. AntiCarP antibodies as promising marker to measure joint damage and disease
activity in patients with rheumatoid arthritis. Immunol Res. 2014;61(1–2):24–
30. | spa |
dc.relation.references | Shi J, van de Stadt L a, Levarht EWN, Huizinga TWJ, Hamann D, van
Schaardenburg D, et al. Anti-carbamylated protein (anti-CarP) antibodies
precede the onset of rheumatoid arthritis. Ann Rheum Dis [Internet].
2014;73(4):780–3. Available from:
http://www.ncbi.nlm.nih.gov/pubmed/24336334 | spa |
dc.relation.references | Brink M, Verheul MK, Rönnelid J, Berglin E, Holmdahl R, Toes REM, et al.
Anti-carbamylated protein antibodies in the pre-symptomatic phase of
rheumatoid arthritis, their relationship with multiple anti-citrulline peptide
antibodies and association with radiological damage. Arthritis Res Ther
[Internet]. 2015;17:25. Available from:
http://www.pubmedcentral.nih.gov/articlerender.fcgi?artid=4350267&tool=pm
centrez&rendertype=abstract | spa |
dc.relation.references | Jiang X, Trouw L a, van Wesemael TJ, Shi J, Bengtsson C, Källberg H, et al.
Anti-CarP antibodies in two large cohorts of patients with rheumatoid arthritis
and their relationship to genetic risk factors, cigarette smoking and other
autoantibodies. Ann Rheum Dis [Internet]. 2014;1761–8. Available from:
http://www.ncbi.nlm.nih.gov/pubmed/24812286 | spa |
dc.relation.references | Gan RW, Trouw LA, Shi J, Toes REM, Huizinga TWJ, Demoruelle MK, et al.
Anti-carbamylated Protein Antibodies Are Present Prior to Rheumatoid
Arthritis and Are Associated with Its Future Diagnosis. J Rheumatol
[Internet]. 2015 Apr 1;42(4):572–9. Available from:
http://www.jrheum.org/cgi/doi/10.3899/jrheum.140767 | spa |
dc.relation.references | Shi J, van Steenbergen HW, van Nies JAB, Levarht EWN, Huizinga TWJ,
van der Helm-van Mil AHM, et al. The specificity of anti-carbamylated protein
antibodies for rheumatoid arthritis in a setting of early arthritis. Arthritis Res
Ther [Internet]. 2015;17(1):339. Available from: http://arthritisresearch.com/content/17/1/339 | spa |
dc.relation.references | Alessandri C, Bartosiewicz I, Pendolino M, Mancini R, Colasanti T, Pecani A,
et al. Anti-carbamylated protein antibodies in unaffected first-degree relatives
of rheumatoid arthritis patients: Lack of correlation with anti-cyclic
citrullinated protein antibodies and rheumatoid factor. Clin Exp Rheumatol.
2015;33(6):824–30. | spa |
dc.relation.references | Koppejan H, Trouw LA, Sokolove J, Lahey LJ, Huizinga TJW, Smolik IA, et
al. Role of Anti-Carbamylated Protein Antibodies Compared to Anti-
Citrullinated Protein Antibodies in Indigenous North Americans With
Rheumatoid Arthritis, Their First-Degree Relatives, and Healthy Controls.
Arthritis Rheumatol [Internet]. 2016 Sep;68(9):2090–8. Available from:
http://doi.wiley.com/10.1002/art.39664 | spa |
dc.relation.references | Reed E, Jiang X, Kharlamova N, Ytterberg AJ, Catrina AI, Israelsson L, et al.
Antibodies to carbamylated α -enolase epitopes in rheumatoid arthritis also
bind citrullinated epitopes and are largely indistinct from anti-citrullinated
protein antibodies. Arthritis Res Ther [Internet]. 2016;1–9. Available from:
http://dx.doi.org/10.1186/s13075-016-1001-6 | spa |
dc.relation.references | Montes A, Regueiro C, Perez-Pampin E, Boveda MD, Gomez-Reino JJ,
Gonzalez A. Anti-Carbamylated Protein Antibodies as a Reproducible
Independent Type of Rheumatoid Arthritis Autoantibodies. Kuwana M, editor.
PLoS One [Internet]. 2016 Aug 18;11(8):e0161141. Available from:
http://dx.plos.org/10.1371/journal.pone.0161141 | spa |
dc.relation.references | Gibofsky A. Overview of epidemiology, pathophysiology, and diagnosis of
rheumatoid arthritis. Am J Manag Care [Internet]. 2012 Dec;18(13
Suppl):S295-302. Available from:
http://www.ncbi.nlm.nih.gov/pubmed/23327517 | spa |
dc.relation.references | McInnes IB, Schett G. The Pathogenesis of Rheumatoid Arthritis. N Engl J
Med [Internet]. 2011 Dec 8;365(23):2205–19. Available from:
http://rcnpublishing.com/doi/abs/10.7748/phc2011.11.21.9.29.c8797 | spa |
dc.relation.references | Burska AN, Hunt L, Boissinot M, Strollo R, Ryan BJ, Vital E, et al.
Autoantibodies to Posttranslational Modifications in Rheumatoid Arthritis.
Mediators Inflamm [Internet]. 2014;2014:1–19. Available from:
http://www.hindawi.com/journals/mi/2014/492873/ | spa |
dc.relation.references | Nissim A, Winyard PG, Corrigall V, Fatah R, Perrett D, Panayi G, et al.
Generation of neoantigenic epitopes after posttranslational modification of
type II collagen by factors present within the inflamed joint. Arthritis Rheum
[Internet]. 2005 Dec;52(12):3829–38. Available from:
http://doi.wiley.com/10.1002/art.21479 | spa |
dc.relation.references | Marcinkiewicz J, Biedroń R, Maresz K, Kwaśny-Krochin B, Bobek M, Kontny
E, et al. Oxidative modification of type II collagen differentially affects its
arthritogenic and tolerogenic capacity in experimental arthritis. Arch Immunol
Ther Exp (Warsz) [Internet]. 52(4):284–91. Available from:
http://www.ncbi.nlm.nih.gov/pubmed/15467493 | spa |
dc.relation.references | Anderton SM. Post-translational modifications of self antigens: implications
for autoimmunity. Curr Opin Immunol [Internet]. 2004 Dec;16(6):753–8.
Available from:
http://linkinghub.elsevier.com/retrieve/pii/S0952791504001451 | spa |
dc.relation.references | Eggleton P, Nissim A, Ryan BJ, Whiteman M, Winyard PG. Detection and
isolation of human serum autoantibodies that recognize oxidatively modified
autoantigens. Free Radic Biol Med [Internet]. 2013 Apr;57:79–91. Available
from: http://linkinghub.elsevier.com/retrieve/pii/S0891584912018060 | spa |
dc.relation.references | Valesini G, Gerardi MC, Iannuccelli C, Pacucci VA, Pendolino M, Shoenfeld
Y. Citrullination and autoimmunity. Autoimmun Rev [Internet]. 2015
Jun;14(6):490–7. Available from:
http://linkinghub.elsevier.com/retrieve/pii/S1568997215000282 | spa |
dc.relation.references | Baka Z, György B, Géher P, Buzás EI, Falus A, Nagy G. Citrullination under
physiological and pathological conditions. Jt Bone Spine [Internet]. 2012
Oct;79(5):431–6. Available from:
http://linkinghub.elsevier.com/retrieve/pii/S1297319X12000127 | spa |
dc.relation.references | Cantagrel A, Degboé Y. New autoantibodies associated with rheumatoid
arthritis recognize posttranslationally modified self-proteins. Joint Bone Spine
[Internet]. 2015;83(1):11–7. Available from:
http://www.ncbi.nlm.nih.gov/pubmed/26639222 | spa |
dc.relation.references | Gerlag DM, Raza K, van Baarsen LGM, Brouwer E, Buckley CD, Burmester
GR, et al. EULAR recommendations for terminology and research in
individuals at risk of rheumatoid arthritis: report from the Study Group for
Risk Factors for Rheumatoid Arthritis. Ann Rheum Dis. 2012;71(5):638–41. | spa |
dc.relation.references | Aletaha D, Neogi T, Silman AJ, Funovits J, Felson DT, Bingham CO, et al.
2010 Rheumatoid arthritis classification criteria: An American College of
Rheumatology/European League Against Rheumatism collaborative
initiative. Arthritis Rheum. 2010;62(9):2569–81. | spa |
dc.relation.references | O’Dell J. Rheumatoid arthritis. In: Goldman L, Schafer AI E, editor.
Goldman’s Cecil Medicine. 25th ed. Philadelphia: Elsevier Saunders; 2016. | spa |
dc.relation.references | Gregersen PK, Silver J, Winchester RJ. The shared epitope hypothesis. An
approach to understanding the molecular genetics of susceptibility to
rheumatoid arthritis. Arthritis Rheum [Internet]. 1987 Nov;30(11):1205–13.
Available from: http://www.ncbi.nlm.nih.gov/pubmed/2446635 | spa |
dc.relation.references | Bax M, van Heemst J, Huizinga TWJ, Toes REM. Genetics of rheumatoid
arthritis: what have we learned? Immunogenetics [Internet]. 2011 Aug
10;63(8):459–66. Available from: http://link.springer.com/10.1007/s00251-
011-0528-6 | spa |
dc.relation.references | Hutchinson D, Shepstone L, Moots R, Lear JT, Lynch MP. Heavy cigarette
smoking is strongly associated with rheumatoid arthritis (RA), particularly in
patients without a family history of RA. Ann Rheum Dis [Internet]. 2001
Mar;60(3):223–7. Available from:
http://www.ncbi.nlm.nih.gov/pubmed/11171682 | spa |
dc.relation.references | Källberg H, Ding B, Padyukov L, Bengtsson C, Rönnelid J, Klareskog L, et al.
Smoking is a major preventable risk factor for rheumatoid arthritis:
estimations of risks after various exposures to cigarette smoke. Ann Rheum
Dis [Internet]. 2011 Mar;70(3):508–11. Available from:
http://www.ncbi.nlm.nih.gov/pubmed/21149499 | spa |
dc.relation.references | Karlson EW, Lee IM, Cook NR, Manson JE, Buring JE, Hennekens CH. A
retrospective cohort study of cigarette smoking and risk of rheumatoid
arthritis in female health professionals. Arthritis Rheum [Internet]. 1999
May;42(5):910–7. Available from:
http://www.ncbi.nlm.nih.gov/pubmed/10323446 | spa |
dc.relation.references | Kochi Y, Suzuki A, Yamamoto K. Genetic basis of rheumatoid arthritis: A
current review. Biochem Biophys Res Commun [Internet]. 2014;452(2):254–
62. Available from: http://dx.doi.org/10.1016/j.bbrc.2014.07.085 | spa |
dc.relation.references | Suzuki A, Yamada R, Chang X, Tokuhiro S, Sawada T, Suzuki M, et al.
Functional haplotypes of PADI4, encoding citrullinating enzyme
peptidylarginine deiminase 4, are associated with rheumatoid arthritis. Nat
Genet [Internet]. 2003 Aug 29;34(4):395–402. Available from:
http://www.nature.com/doifinder/10.1038/ng1206 | spa |
dc.relation.references | Kochi Y, Suzuki A, Yamada R, Yamamoto K. Ethnogenetic heterogeneity of
rheumatoid arthritis—implications for pathogenesis. Nat Rev Rheumatol
[Internet]. 2010 May 16;6(5):290–5. Available from:
http://www.nature.com/doifinder/10.1038/nrrheum.2010.23 | spa |
dc.relation.references | Nakashima K, Hagiwara T, Ishigami A, Nagata S, Asaga H, Kuramoto M, et
al. Molecular characterization of peptidylarginine deiminase in HL-60 cells
induced by retinoic acid and 1alpha,25-dihydroxyvitamin D(3). J Biol Chem
[Internet]. 1999 Sep 24;274(39):27786–92. Available from:
http://www.ncbi.nlm.nih.gov/pubmed/10488123 | spa |
dc.relation.references | Irigoyen P, Lee AT, Wener MH, Li W, Kern M, Batliwalla F, et al. Regulation
of anti-cyclic citrullinated peptide antibodies in rheumatoid arthritis:
Contrasting effects of HLA-DR3 and the shared epitope alleles. Arthritis
Rheum [Internet]. 2005 Dec;52(12):3813–8. Available from:
http://doi.wiley.com/10.1002/art.21419 | spa |
dc.relation.references | Cha S, Choi C-B, Han T-U, Kang CP, Kang C, Bae S-C. Association of Anti–
Cyclic citrullinated peptide antibody levels with PADI4 haplotypes in early
rheumatoid arthritis and with shared epitope alleles in very late rheumatoid
arthritis. Arthritis Rheum [Internet]. 2007 May;56(5):1454–63. Available from:
http://doi.wiley.com/10.1002/art.22570 | spa |
dc.relation.references | Gregersen PK, Lee H-S, Batliwalla F, Begovich AB. PTPN22: Setting
thresholds for autoimmunity. Semin Immunol [Internet]. 2006 Aug;18(4):214–
23. Available from:
http://linkinghub.elsevier.com/retrieve/pii/S1044532306000467 | spa |
dc.relation.references | Cohen S, Dadi H, Shaoul E, Sharfe N, Roifman CM. Cloning and
characterization of a lymphoid-specific, inducible human protein tyrosine
phosphatase, Lyp. Blood [Internet]. 1999 Mar 15;93(6):2013–24. Available
from: http://www.ncbi.nlm.nih.gov/pubmed/10068674 | spa |
dc.relation.references | Vang T, Miletic A V, Arimura Y, Tautz L, Rickert RC, Mustelin T. Protein
tyrosine phosphatases in autoimmunity. Annu Rev Immunol [Internet].
2008;26:29–55. Available from:
http://www.ncbi.nlm.nih.gov/pubmed/18303998 | spa |
dc.relation.references | Thomson W, Barton A, Ke X, Eyre S, Hinks A, Bowes J, et al. Rheumatoid
arthritis association at 6q23. Nat Genet [Internet]. 2007 Dec 4;39(12):1431–
3. Available from: http://www.nature.com/doifinder/10.1038/ng.2007.32 | spa |
dc.relation.references | Thomson W, Barton A, Ke X, Eyre S, Hinks A, Bowes J, et al. Rheumatoid
arthritis association at 6q23. Nat Genet [Internet]. 2007 Dec 4;39(12):1431–
3. Available from: http://www.nature.com/doifinder/10.1038/ng.2007.32 | spa |
dc.relation.references | Musone SL, Taylor KE, Lu TT, Nititham J, Ferreira RC, Ortmann W, et al.
Multiple polymorphisms in the TNFAIP3 region are independently associated
with systemic lupus erythematosus. Nat Genet [Internet]. 2008 Sep
1;40(9):1062–4. Available from:
http://www.nature.com/doifinder/10.1038/ng.202 | spa |
dc.relation.references | Matmati M, Jacques P, Maelfait J, Verheugen E, Kool M, Sze M, et al. A20
(TNFAIP3) deficiency in myeloid cells triggers erosive polyarthritis
resembling rheumatoid arthritis. Nat Genet [Internet]. 2011 Aug
14;43(9):908–12. Available from:
http://www.nature.com/doifinder/10.1038/ng.874 | spa |
dc.relation.references | Adrianto I, Wen F, Templeton A, Wiley G, King JB, Lessard CJ, et al.
Association of a functional variant downstream of TNFAIP3 with systemic
lupus erythematosus. Nat Genet [Internet]. 2011 Mar 20;43(3):253–8.
Available from: http://www.nature.com/doifinder/10.1038/ng.766 | spa |
dc.relation.references | Zheng J, Yin J, Huang R, Petersen F, Yu X. Meta-analysis reveals an
association of STAT4 polymorphisms with systemic autoimmune disorders
and anti-dsDNA antibody. Hum Immunol [Internet]. 2013 Aug;74(8):986–92.
Available from:
http://linkinghub.elsevier.com/retrieve/pii/S0198885913001201 | spa |
dc.relation.references | Kariuki SN, Kirou KA, MacDermott EJ, Barillas-Arias L, Crow MK, Niewold
TB. Cutting Edge: Autoimmune Disease Risk Variant of STAT4 Confers
Increased Sensitivity to IFN- in Lupus Patients In Vivo. J Immunol [Internet].
2009 Jan 1;182(1):34–8. Available from:
http://www.jimmunol.org/cgi/doi/10.4049/jimmunol.182.1.34 | spa |
dc.relation.references | Hirota K, Yoshitomi H, Hashimoto M, Maeda S, Teradaira S, Sugimoto N, et
al. Preferential recruitment of CCR6-expressing Th17 cells to inflamed joints
via CCL20 in rheumatoid arthritis and its animal model. J Exp Med [Internet].
2007 Nov 26;204(12):2803–12. Available from:
http://www.jem.org/lookup/doi/10.1084/jem.20071397 | spa |
dc.relation.references | Nagpal R, Yamashiro Y, Izumi Y. The Two-Way Association of Periodontal
Infection with Systemic Disorders: An Overview. Mediators Inflamm
[Internet]. 2015;2015:1–9. Available from:
http://www.hindawi.com/journals/mi/2015/793898/ | spa |
dc.relation.references | Liubomorova I. State of periodontium in patients affected with rheumatism.
Stomatologiia (Mosk). 1964;33 – 37. | spa |
dc.relation.references | Mikuls TR, Payne JB, Yu F, Thiele GM, Reynolds RJ, Cannon GW, et al.
Periodontitis and Porphyromonas gingivalis in Patients With Rheumatoid
Arthritis. Arthritis Rheumatol [Internet]. 2014 May;66(5):1090–100. Available
from: http://doi.wiley.com/10.1002/art.38348 | spa |
dc.relation.references | Mercado F, Marshall RI, Klestov AC, Bartold PM. Is there a relationship
between rheumatoid arthritis and periodontal disease? J Clin Periodontol
[Internet]. 2000 Apr;27(4):267–72. Available from:
http://www.ncbi.nlm.nih.gov/pubmed/10783841 | spa |
dc.relation.references | Mercado F, Marshall RI, Klestov AC, Bartold PM. Is there a relationship
between rheumatoid arthritis and periodontal disease? J Clin Periodontol
[Internet]. 2000 Apr;27(4):267–72. Available from:
http://www.ncbi.nlm.nih.gov/pubmed/10783841 | spa |
dc.relation.references | Arkema E V., Karlson EW, Costenbader KH. A Prospective Study of
Periodontal Disease and Risk of Rheumatoid Arthritis. J Rheumatol
[Internet]. 2010 Sep 1;37(9):1800–4. Available from:
http://www.jrheum.org/cgi/doi/10.3899/jrheum.091398 | spa |
dc.relation.references | Abdelsalam SK, Hashim NT, Elsalamabi EM, Gismalla BG. Periodontal
status of rheumatoid arthritis patients in khartoum state. BMC Res Notes
[Internet]. 2011;4(1):460. Available from:
http://bmcresnotes.biomedcentral.com/articles/10.1186/1756-0500-4-460 | spa |
dc.relation.references | Gleissner C, Willershausen B, Kaesser U, Bolten WW. The role of risk
factors for periodontal disease in patients with rheumatoid arthritis. Eur J
Med Res [Internet]. 1998 Aug 18;3(8):387–92. Available from:
http://www.ncbi.nlm.nih.gov/pubmed/9707521 | spa |
dc.relation.references | Kässer UR, Gleissner C, Dehne F, Michel A, Willershausen-Zönnchen B,
Bolten WW. Risk for periodontal disease in patients with longstanding
rheumatoid arthritis. Arthritis Rheum [Internet]. 1997 Dec;40(12):2248–51.
Available from: http://www.ncbi.nlm.nih.gov/pubmed/9416864 | spa |
dc.relation.references | Cooles FAH, Isaacs JD. Pathophysiology of rheumatoid arthritis. Curr Opin
Rheumatol [Internet]. 2011 May;23(3):233–40. Available from:
http://www.ncbi.nlm.nih.gov/pubmed/21427580 | spa |
dc.relation.references | Socransky SS, Haffajee AD. Effect of Therapy on Periodontal Infections. J
Periodontol [Internet]. 1993 Aug;64(8s):754–9. Available from:
http://www.joponline.org/doi/10.1902/jop.1993.64.8s.754 | spa |
dc.relation.references | Holt SC, Kesavalu L, Walker S, Genco CA. Virulence factors of
Porphyromonas gingivalis. Periodontol 2000 [Internet]. 1999 Jun;20:168–
238. Available from: http://www.ncbi.nlm.nih.gov/pubmed/10522227 | spa |
dc.relation.references | Kesavalu L, Holt SC, Ebersole JL. Trypsin-like protease activity of
Porphyromonas gingivalis as a potential virulence factor in a murine lesion
model. Microb Pathog [Internet]. 1996 Jan;20(1):1–10. Available from:
http://www.ncbi.nlm.nih.gov/pubmed/8692006 | spa |
dc.relation.references | Birkedal-Hansen H, Taylor RE, Zambon JJ, Barwa PK, Neiders ME.
Characterization of collagenolytic activity from strains of Bacteroides
gingivalis. J Periodontal Res [Internet]. 1988 Jul;23(4):258–64. Available
from: http://www.ncbi.nlm.nih.gov/pubmed/2846816 | spa |
dc.relation.references | Lamont RJ, Jenkinson HF. Life below the gum line: pathogenic mechanisms
of Porphyromonas gingivalis. Microbiol Mol Biol Rev [Internet]. 1998
Dec;62(4):1244–63. Available from:
http://www.ncbi.nlm.nih.gov/pubmed/9841671 | spa |
dc.relation.references | McGraw WT, Potempa J, Farley D, Travis J. Purification, characterization,
and sequence analysis of a potential virulence factor from Porphyromonas
gingivalis, peptidylarginine deiminase. Infect Immun [Internet]. 1999
Jul;67(7):3248–56. Available from:
http://www.ncbi.nlm.nih.gov/pubmed/10377098 | spa |
dc.relation.references | Wegner N, Wait R, Sroka A, Eick S, Nguyen K-A, Lundberg K, et al.
Peptidylarginine deiminase from Porphyromonas gingivalis citrullinates
human fibrinogen and α-enolase: implications for autoimmunity in rheumatoid
arthritis. Arthritis Rheum [Internet]. 2010 Sep;62(9):2662–72. Available from:
http://www.ncbi.nlm.nih.gov/pubmed/20506214 | spa |
dc.relation.references | Batool H, Afzal N, Shahzad F, Kashif M. Relationship between rheumatoid
arthritis and chronic periodontitis. J Med Radiol Pathol Surg [Internet].
2016;2(6):11–4. Available from:
http://www.joponline.org/doi/abs/10.1902/jop.2001.72.6.779%5Cnhttp://www.
ncbi.nlm.nih.gov/pubmed/11453241 | spa |
dc.relation.references | Koziel J, Mydel P, Potempa J. The link between periodontal disease and
rheumatoid arthritis: an updated review. Curr Rheumatol Rep [Internet]. 2014
Mar;16(3):408. Available from:
http://www.ncbi.nlm.nih.gov/pubmed/24458478 | spa |
dc.relation.references | Mangat P, Wegner N, Venables PJ, Potempa J. Bacterial and human
peptidylarginine deiminases: targets for inhibiting the autoimmune response
in rheumatoid arthritis? Arthritis Res Ther [Internet]. 2010;12(3):209.
Available from: http://arthritisresearch.biomedcentral.com/articles/10.1186/ar3000 | spa |
dc.relation.references | Rodríguez SB, Stitt BL, Ash DE. Cysteine 351 is an essential nucleophile in
catalysis by Porphyromonas gingivalis peptidylarginine deiminase. Arch
Biochem Biophys [Internet]. 2010 Dec;504(2):190–6. Available from:
http://linkinghub.elsevier.com/retrieve/pii/S0003986110003838 | spa |
dc.relation.references | Farquharson D, Butcher JP, Culshaw S. Periodontitis, Porphyromonas, and
the pathogenesis of rheumatoid arthritis. Mucosal Immunol [Internet].
2012;5(2):112–20. Available from:
http://www.ncbi.nlm.nih.gov/pubmed/22274780 | spa |
dc.relation.references | Brinkmann V. Neutrophil Extracellular Traps Kill Bacteria. Science (80- )
[Internet]. 2004 Mar 5;303(5663):1532–5. Available from:
http://www.sciencemag.org/cgi/doi/10.1126/science.1092385 | spa |
dc.relation.references | Brinkmann V, Zychlinsky A. Beneficial suicide: why neutrophils die to make
NETs. Nat Rev Microbiol [Internet]. 2007 Aug;5(8):577–82. Available from:
http://www.nature.com/doifinder/10.1038/nrmicro1710 | spa |
dc.relation.references | Neeli I, Khan SN, Radic M. Histone deimination as a response to
inflammatory stimuli in neutrophils. J Immunol [Internet]. 2008 Feb
1;180(3):1895–902. Available from:
http://www.ncbi.nlm.nih.gov/pubmed/18209087 | spa |
dc.relation.references | Klareskog L, Malmström V, Lundberg K, Padyukov L, Alfredsson L. Smoking,
citrullination and genetic variability in the immunopathogenesis of rheumatoid
arthritis. Semin Immunol [Internet]. 2011 Apr;23(2):92–8. Available from:
http://linkinghub.elsevier.com/retrieve/pii/S1044532311000157 | spa |
dc.relation.references | Klareskog L, Stolt P, Lundberg K, Källberg H, Bengtsson C, Grunewald J, et
al. A new model for an etiology of rheumatoid arthritis: Smoking may trigger
HLA–DR (shared epitope)–restricted immune reactions to autoantigens
modified by citrullination. Arthritis Rheum [Internet]. 2006 Jan;54(1):38–46.
Available from: http://doi.wiley.com/10.1002/art.21575 | spa |
dc.relation.references | Makrygiannakis D, Hermansson M, Ulfgren A-K, Nicholas AP, Zendman
AJW, Eklund A, et al. Smoking increases peptidylarginine deiminase 2
enzyme expression in human lungs and increases citrullination in BAL cells.
Ann Rheum Dis [Internet]. 2008 Oct 1;67(10):1488–92. Available from:
http://ard.bmj.com/cgi/doi/10.1136/ard.2007.075192 | spa |
dc.relation.references | Padyukov L, Silva C, Stolt P, Alfredsson L, Klareskog L. A gene-environment
interaction between smoking and shared epitope genes in HLA-DR provides
a high risk of seropositive rheumatoid arthritis. Arthritis Rheum [Internet].
2004 Oct;50(10):3085–92. Available from:
http://doi.wiley.com/10.1002/art.20553 | spa |
dc.relation.references | Linn-Rasker SP. Smoking is a risk factor for anti-CCP antibodies only in
rheumatoid arthritis patients who carry HLA-DRB1 shared epitope alleles.
Ann Rheum Dis [Internet]. 2006 Mar 1;65(3):366–71. Available from:
http://ard.bmj.com/cgi/doi/10.1136/ard.2005.041079 | spa |
dc.relation.references | Pedersen M, Jacobsen S, Garred P, Madsen HO, Klarlund M, Svejgaard A,
et al. Strong combined gene–environment effects in anti–cyclic citrullinated
peptide–positive rheumatoid arthritis: A nationwide case–control study in
Denmark. Arthritis Rheum [Internet]. 2007 May;56(5):1446–53. Available
from: http://doi.wiley.com/10.1002/art.22597 | spa |
dc.relation.references | Lundström E, Källberg H, Alfredsson L, Klareskog L, Padyukov L. Geneenvironment interaction between the DRB1 shared epitope and smoking in
the risk of anti-citrullinated protein antibody-positive rheumatoid arthritis: All
alleles are important. Arthritis Rheum [Internet]. 2009 Jun;60(6):1597–603.
Available from: http://doi.wiley.com/10.1002/art.24572 | spa |
dc.relation.references | Anaya JM, Correa PA, Mantilla R, Jiménez F, Kuffner T MJ. Rheumatoid
arthritis in African Colombians from Quibdó. Semin Arthritis Rheum [Internet].
2001;31:191–8. Available from:
http://www.semarthritisrheumatism.com/article/S0049-0172(01)33477-
7/abstract | spa |
dc.relation.references | Diaz JA, Dávila-Ramírez FA, Quintana-López G, Aristizábal-Gutiérrez F,
Brown P. Prevalencia de artritis reumatoide en Colombia: Una aproximación
basada en la carga de la enfermedad año 2005. Rheumatoid Arthritis
prevalence in Colombia: An approach based on burden of disease study
2005. 2015;3(1):11–6. | spa |
dc.relation.references | Machado-Alba JE, Ruiz AF, Medina Morales DA. The epidemiology of
rheumatoid arthritis in a cohort of Colombian patients. Rev Colomb Reumatol
[Internet]. 2015;22(3):148–52. Available from:
http://www.sciencedirect.com/science/article/pii/S012181231500047X | spa |
dc.relation.references | Muñetón, G. A.; Quintana G. La epidemiología de la artritis reumatoide. Rev
Colomb Reumatol [Internet]. 2016;2(3):145–7. Available from:
http://www.scielo.org.co/pdf/rcre/v22n3/v22n3a01.pdf | spa |
dc.relation.references | Bright R, Proudman SM, Rosenstein ED, Bartold PM. Is there a link between
carbamylation and citrullination in periodontal disease and rheumatoid
arthritis? Med Hypotheses [Internet]. 2015 Jun;84(6):570–6. Available from:
http://linkinghub.elsevier.com/retrieve/pii/S0306987715001115 | spa |
dc.relation.references | Kroot EJ, de Jong BA, van Leeuwen MA, Swinkels H, van den Hoogen FH,
van’t Hof M, et al. The prognostic value of anti-cyclic citrullinated peptide
antibody in patients with recent-onset rheumatoid arthritis. Arthritis Rheum
[Internet]. 2000 Aug;43(8):1831–5. Available from:
http://www.ncbi.nlm.nih.gov/pubmed/10943873 | spa |
dc.relation.references | Kroot EJ, de Jong BA, van Leeuwen MA, Swinkels H, van den Hoogen FH,
van’t Hof M, et al. The prognostic value of anti-cyclic citrullinated peptide
antibody in patients with recent-onset rheumatoid arthritis. Arthritis Rheum
[Internet]. 2000 Aug;43(8):1831–5. Available from:
http://www.ncbi.nlm.nih.gov/pubmed/10943873 | spa |
dc.relation.references | Aggarwal R, Liao K, Nair R, Ringold S, Costenbander KH. Anti-citrullinated
peptide antibody assays and their role in the diagnosis of rheumatoid
arthritis. Arthritis Care Res (Hoboken) [Internet]. 2009 Nov 15;61(11):1472–
83. Available from: http://doi.wiley.com/10.1002/art.24827 | spa |
dc.relation.references | Liao F, Li Z, Wang Y, Shi B, Gong Z, Cheng X. Porphyromonas gingivalis
may play an important role in the pathogenesis of periodontitis-associated
rheumatoid arthritis. Med Hypotheses [Internet]. 2009 Jun;72(6):732–5.
Available from:
http://linkinghub.elsevier.com/retrieve/pii/S0306987709000504 | spa |
dc.relation.references | Orgován G, Noszál B. The complete microspeciation of arginine and
citrulline. J Pharm Biomed Anal [Internet]. 2011 Apr;54(5):965–71. Available
from: http://linkinghub.elsevier.com/retrieve/pii/S0731708510006667 | spa |
dc.relation.references | Carrasco-Marín E, Paz-Miguel JE, López-Mato P, Alvarez-Domínguez C,
Leyva-Cobián F. Oxidation of defined antigens allows protein unfolding and
increases both proteolytic processing and exposes peptide epitopes which
are recognized by specific T cells. Immunology [Internet]. 1998
Nov;95(3):314–21. Available from:
http://www.ncbi.nlm.nih.gov/pubmed/9824492 | spa |
dc.relation.references | Szodoray P, Szabó Z, Kapitány A, Gyetvai Á, Lakos G, Szántó S, et al. Anticitrullinated protein/peptide autoantibodies in association with genetic and
environmental factors as indicators of disease outcome in rheumatoid
arthritis. Autoimmun Rev [Internet]. 2010 Jan;9(3):140–3. Available from:
http://linkinghub.elsevier.com/retrieve/pii/S1568997209001116 | spa |
dc.relation.references | Nagata S, Yamagiwa M, Inoue K, Senshu T. Estrogen regulates
peptidylarginine deiminase levels in a rat pituitary cell line in culture. J Cell
Physiol [Internet]. 1990 Nov;145(2):333–9. Available from:
http://doi.wiley.com/10.1002/jcp.1041450219 | spa |
dc.relation.references | Sebbag M, Chapuy-Regaud S, Auger I, Petit-Texeira E, Clavel C, Nogueira
L, et al. Clinical and pathophysiological significance of the autoimmune
response to citrullinated proteins in rheumatoid arthritis. Jt Bone Spine
[Internet]. 2004 Nov;71(6):493–502. Available from:
http://linkinghub.elsevier.com/retrieve/pii/S1297319X04001460 | spa |
dc.relation.references | Masson-Bessiere C, Sebbag M, Girbal-Neuhauser E, Nogueira L, Vincent C,
Senshu T, et al. The Major Synovial Targets of the Rheumatoid ArthritisSpecific Antifilaggrin Autoantibodies Are Deiminated Forms of the - and -
Chains of Fibrin. J Immunol [Internet]. 2001 Mar 15;166(6):4177–84.
Available from:
http://www.jimmunol.org/cgi/doi/10.4049/jimmunol.166.6.4177 | spa |
dc.relation.references | Sebbag M, Moinard N, Auger I, Clavel C, Arnaud J, Nogueira L, et al.
Epitopes of human fibrin recognized by the rheumatoid arthritis-specific
autoantibodies to citrullinated proteins. Eur J Immunol [Internet]. 2006
Aug;36(8):2250–63. Available from:
http://doi.wiley.com/10.1002/eji.200535790 | spa |
dc.relation.references | Bang H, Egerer K, Gauliard A, Lüthke K, Rudolph PE, Fredenhagen G, et al.
Mutation and citrullination modifies vimentin to a novel autoantigen for
rheumatoid arthritis. Arthritis Rheum [Internet]. 2007 Aug;56(8):2503–11.
Available from: http://doi.wiley.com/10.1002/art.22817 | spa |
dc.relation.references | Kinloch A, Tatzer V, Wait R, Peston D, Lundberg K, Donatien P, et al.
Identification of citrullinated alpha-enolase as a candidate autoantigen in
rheumatoid arthritis. Arthritis Res Ther [Internet]. 2005;7(6):R1421-9.
Available from: http://arthritisresearch.biomedcentral.com/articles/10.1186/ar1845 | spa |
dc.relation.references | Foulquier C, Sebbag M, Clavel C, Chapuy-Regaud S, Al Badine R, Méchin
M-C, et al. Peptidyl arginine deiminase type 2 (PAD-2) and PAD-4 but not
PAD-1, PAD-3, and PAD-6 are expressed in rheumatoid arthritis synovium in
close association with tissue inflammation. Arthritis Rheum [Internet]. 2007
Nov;56(11):3541–53. Available from: http://doi.wiley.com/10.1002/art.22983 | spa |
dc.relation.references | Quirke A-M, Fisher BAC, Kinloch AJ, Venables PJ. Citrullination of
autoantigens: Upstream of TNFα in the pathogenesis of rheumatoid arthritis.
FEBS Lett [Internet]. 2011 Dec 1;585(23):3681–8. Available from:
http://doi.wiley.com/10.1016/j.febslet.2011.06.006 | spa |
dc.relation.references | Vander Cruyssen B, Cantaert T, Nogueira L, Clavel C, De Rycke L,
Dendoven A, et al. Diagnostic value of anti-human citrullinated fibrinogen
ELISA and comparison with four other anti-citrullinated protein assays.
Arthritis Res Ther [Internet]. 2006;8(4):R122. Available from:
http://www.ncbi.nlm.nih.gov/pubmed/16859515 | spa |
dc.relation.references | Chapuy-Regaud S, Nogueira L, Clavel C, Sebbag M, Vincent C, Serre G.
IgG subclass distribution of the rheumatoid arthritis-specific autoantibodies to
citrullinated fibrin. Clin Exp Immunol [Internet]. 2005 Mar;139(3):542–50.
Available from: http://www.ncbi.nlm.nih.gov/pubmed/15730401 | spa |
dc.relation.references | Berlyne GM. Carbamylated proteins and peptides in health and in uremia.
Nephron [Internet]. 1998;79(2):125–30. Available from:
http://www.ncbi.nlm.nih.gov/pubmed/9647489 | spa |
dc.relation.references | Nolte W. Microbiología Odontológica. México: Editorial Interamericana; 1985. | spa |
dc.relation.references | Shi J, van Veelen PA, Mahler M, Janssen GMC, Drijfhout JW, Huizinga TWJ,
et al. Carbamylation and antibodies against carbamylated proteins in
autoimmunity and other pathologies. Autoimmun Rev [Internet].
2014;13(3):225–30. Available from:
http://dx.doi.org/10.1016/j.autrev.2013.10.008 | spa |
dc.relation.references | Trepanier DJ, Thibert RJ. Carbamylation of erythrocyte membrane
aminophospholipids: an in vitro and in vivo study. Clin Biochem [Internet].
1996 Aug;29(4):333–45. Available from:
http://linkinghub.elsevier.com/retrieve/pii/0009912096000185 | spa |
dc.relation.references | Lapko VN, Smith DL, Smith JB. Methylation and carbamylation of human γcrystallins. Protein Sci [Internet]. 2003 Aug;12(8):1762–74. Available from:
http://doi.wiley.com/10.1110/ps.0305403 | spa |
dc.relation.references | Wang Z, Nicholls SJ, Rodriguez ER, Kummu O, Hörkkö S, Barnard J, et al.
Protein carbamylation links inflammation, smoking, uremia and
atherogenesis. Nat Med [Internet]. 2007;13(10):1176–84. Available from:
http://www.ncbi.nlm.nih.gov/pubmed/17828273 | spa |
dc.relation.references | Holzer M, Zangger K, El-Gamal D, Binder V, Curcic S, Konya V, et al.
Myeloperoxidase-Derived Chlorinating Species Induce Protein
Carbamylation Through Decomposition of Thiocyanate and Urea: Novel
Pathways Generating Dysfunctional High-Density Lipoprotein. Antioxid
Redox Signal [Internet]. 2012 Oct 15;17(8):1043–52. Available from:
http://online.liebertpub.com/doi/abs/10.1089/ars.2011.4403 | spa |
dc.relation.references | Kalmár J, Woldegiorgis KL, Biri B, Ashby MT. Mechanism of Decomposition
of the Human Defense Factor Hypothiocyanite Near Physiological pH. J Am
Chem Soc [Internet]. 2011 Dec 14;133(49):19911–21. Available from:
http://pubs.acs.org/doi/abs/10.1021/ja2083152 | spa |
dc.relation.references | Klebanoff SJ. Myeloperoxidase: friend and foe. J Leukoc Biol [Internet]. 2005
Jan 26;77(5):598–625. Available from:
http://www.jleukbio.org/cgi/doi/10.1189/jlb.1204697 | spa |
dc.relation.references | Jaisson S, Pietrement C, Gillery P. Carbamylation-Derived Products:
Bioactive Compounds and Potential Biomarkers in Chronic Renal Failure and
Atherosclerosis. Clin Chem [Internet]. 2011 Nov 1;57(11):1499–505.
Available from:
http://www.clinchem.org/cgi/doi/10.1373/clinchem.2011.163188 | spa |
dc.relation.references | Jaisson S, Gillery P. Evaluation of Nonenzymatic Posttranslational
Modification-Derived Products as Biomarkers of Molecular Aging of Proteins.
Clin Chem [Internet]. 2010 Sep 1;56(9):1401–12. Available from:
http://www.clinchem.org/cgi/doi/10.1373/clinchem.2010.145201 | spa |
dc.relation.references | Song YW, Kang EH. Autoantibodies in rheumatoid arthritis: rheumatoid
factors and anticitrullinated protein antibodies. QJM [Internet]. 2010 Mar
1;103(3):139–46. Available from: https://academic.oup.com/qjmed/articlelookup/doi/10.1093/qjmed/hcp165 | spa |
dc.relation.references | Wernick RM, Lipsky PE, Marban-Arcos E, Maliakkal JJ, Edelbaum D, Ziff M.
IgG and IgM rheumatoid factor synthesis in rheumatoid synovial membrane
cell cultures. Arthritis Rheum [Internet]. 1985 Jul;28(7):742–52. Available
from: http://www.ncbi.nlm.nih.gov/pubmed/4015721 | spa |
dc.relation.references | Jones V, Taylor PC, Jacoby RK, Wallington TB. Synovial synthesis of
rheumatoid factors and immune complex constituents in early arthritis. Ann
Rheum Dis [Internet]. 1984 Apr;43(2):235–9. Available from:
http://www.ncbi.nlm.nih.gov/pubmed/6712294 | spa |
dc.relation.references | Nell VPK. Autoantibody profiling as early diagnostic and prognostic tool for
rheumatoid arthritis. Ann Rheum Dis [Internet]. 2005 Dec 1;64(12):1731–6.
Available from: http://ard.bmj.com/cgi/doi/10.1136/ard.2005.035691 | spa |
dc.relation.references | Arnett FC, Edworthy SM, Bloch DA, McShane DJ, Fries JF, Cooper NS, et
al. The American Rheumatism Association 1987 revised criteria for the
classification of rheumatoid arthritis. Arthritis Rheum [Internet]. 1988
Mar;31(3):315–24. Available from:
http://www.ncbi.nlm.nih.gov/pubmed/3358796 | spa |
dc.relation.references | Arend WP, Firestein GS. Pre-rheumatoid arthritis: predisposition and
transition to clinical synovitis. Nat Rev Rheumatol [Internet]. 2012;8(10):573–
86. Available from: http://dx.doi.org/10.1038/nrrheum.2012.134 | spa |
dc.relation.references | Otterness IG. The value of C-reactive protein measurement in rheumatoid
arthritis. Semin Arthritis Rheum [Internet]. 1994 Oct;24(2):91–104. Available
from: http://www.ncbi.nlm.nih.gov/pubmed/7839158 | spa |
dc.relation.references | Brigden M. The erythrocyte sedimentation rate. Postgrad Med [Internet].
1998 May 30;103(5):257–74. Available from:
http://www.sciencedirect.com/science/article/pii/S0736467997001972%5Cnh
ttp://www.ncbi.nlm.nih.gov/pubmed/9404806 | spa |
dc.relation.references | Kushner I. C-reactive protein in rheumatology. Arthritis Rheum [Internet].
1991 Aug;34(8):1065–8. Available from:
http://doi.wiley.com/10.1002/art.1780340819 | spa |
dc.relation.references | Bedell SE, Bush BT. Erythrocyte sedimentation rate. From folklore to facts.
Am J Med [Internet]. 1985 Jun;78(6 Pt 1):1001–9. Available from:
http://www.ncbi.nlm.nih.gov/pubmed/4014259 | spa |
dc.relation.references | Shearn MA, Kang IY. Effect of age and sex on the erythrocyte sedimentation
rate. J Rheumatol [Internet]. 1986 Apr;13(2):297–8. Available from:
http://www.ncbi.nlm.nih.gov/pubmed/3723495 | spa |
dc.relation.references | Fabry TL. Mechanism of erythrocyte aggregation and sedimentation. Blood
[Internet]. 1987 Nov;70(5):1572–6. Available from:
http://www.ncbi.nlm.nih.gov/pubmed/3663946 | spa |
dc.relation.references | Fabry TL. Mechanism of erythrocyte aggregation and sedimentation. Blood
[Internet]. 1987 Nov;70(5):1572–6. Available from:
http://www.ncbi.nlm.nih.gov/pubmed/3663946 | spa |
dc.relation.references | Pepys MB. C-reactive protein fifty years on. Lancet (London, England)
[Internet]. 1981 Mar 21;1(8221):653–7. Available from:
http://www.ncbi.nlm.nih.gov/pubmed/6110874 | spa |
dc.relation.references | Gewurz H, Mold C, Siegel J, Fiedel B. C-reactive protein and the acute
phase response. Adv Intern Med [Internet]. 1982;27:345–72. Available from:
http://www.ncbi.nlm.nih.gov/pubmed/7041546 | spa |
dc.relation.references | Tishler M, Caspi D, Yaron M. C-reactive protein levels in patients with
rheumatoid arthritis: the impact of therapy. Clin Rheumatol [Internet]. 1985
Sep;4(3):321–4. Available from:
http://link.springer.com/10.1007/BF02031616 | spa |
dc.relation.references | Larsen A. The relation of radiographic changes to serum acute-phase
proteins and rheumatoid factor in 200 patients with rheumatoid arthritis.
Scand J Rheumatol [Internet]. 1988;17(2):123–9. Available from:
http://www.ncbi.nlm.nih.gov/pubmed/3387929 | spa |
dc.relation.references | Im CH, Kang EH, Ryu HJ, Lee JH, Lee EY, Lee YJ, et al. Anti-cyclic
citrullinated peptide antibody is associated with radiographic erosion in
rheumatoid arthritis independently of shared epitope status. Rheumatol Int
[Internet]. 2009 Jan;29(3):251–6. Available from:
http://www.ncbi.nlm.nih.gov/pubmed/18751982 | spa |
dc.relation.references | Wilder RL, Sternberg EM. Neuroendocrine hormonal factors in rheumatoid
arthritis and related conditions. Curr Opin Rheumatol [Internet]. 1990
Jun;2(3):436–40. Available from:
http://www.ncbi.nlm.nih.gov/pubmed/2203424 | spa |
dc.relation.references | Ahmed SA, Hissong BD, Verthelyi D, Donner K, Becker K, Karpuzoglu-Sahin
E. Gender and risk of autoimmune diseases: Possible role of estrogenic
compounds. Environ Health Perspect. 1999;107(SUPPL. 5):681–6. | spa |
dc.relation.references | Feng J, Chen Q, Yu F, Wang Z, Chen S, Jin Z, et al. Body Mass Index and
Risk of Rheumatoid Arthritis: A Meta-Analysis of Observational Studies.
Medicine (Baltimore) [Internet]. 2016;95(8):e2859. Available from:
http://www.ncbi.nlm.nih.gov/pubmed/26937917 | spa |
dc.relation.references | Unriza-Puin S, Bautista-Molano W, Lafaurie GI, Valle-O??ate R, Chalem P,
Chila-Moreno L, et al. Are obesity, ACPAs and periodontitis conditions that
influence the risk of developing rheumatoid arthritis in first-degree relatives?
Clin Rheumatol [Internet]. 2017;36(4):799–806. Available from:
http://dx.doi.org/10.1007/s10067-016-3519-z | spa |
dc.relation.references | Gremese E, Tolusso B, Gigante MR, Ferraccioli G. Obesity as a Risk and
Severity Factor in Rheumatic Diseases (Autoimmune Chronic Inflammatory
Diseases). Front Immunol [Internet]. 2014 Nov 11;5. Available from:
http://journal.frontiersin.org/article/10.3389/fimmu.2014.00576/abstract | spa |
dc.relation.references | Bello-Gualtero JM, Lafaurie GI, Hoyos LX, Castillo DM, De-Avila J, Munevar
JC, et al. Periodontal Disease in Individuals With a Genetic Risk of
Developing Arthritis and Early Rheumatoid Arthritis: A Cross-Sectional
Study. J Periodontol [Internet]. 2016 Apr;87(4):346–56. Available from:
http://doi.wiley.com/10.1902/jop.2015.150455 | spa |
dc.relation.references | Auger I, Sebbag M, Vincent C, Balandraud N, Guis S, Nogueira L, et al.
Influence of HLA-DR genes on the production of rheumatoid arthritis-specific
autoantibodies to citrullinated fibrinogen. Arthritis Rheum [Internet]. 2005
Nov;52(11):3424–32. Available from: http://doi.wiley.com/10.1002/art.21391 | spa |
dc.relation.references | Bright R, Thiele GM, Manavis J, Mikuls TR, Payne JB, Bartold PM. Gingival
tissue, an extrasynovial source of malondialdehyde-acetaldehyde adducts,
citrullinated and carbamylated proteins. J Periodontal Res [Internet]. 2017
Oct 17; Available from: http://doi.wiley.com/10.1111/jre.12486 | spa |
dc.relation.references | Freire MO, Van Dyke TE. Natural resolution of inflammation. Periodontol
2000 [Internet]. 2013 Oct;63(1):149–64. Available from:
http://doi.wiley.com/10.1111/prd.12034 | spa |
dc.rights.accessrights | info:eu-repo/semantics/closedAccess | spa |
dc.rights.creativecommons | Atribución-NoComercial-CompartirIgual 4.0 Internacional (CC BY-NC-SA 4.0) | spa |
dc.subject.lemb | Enfermedad Autoinmune | |
dc.subject.lemb | Autoautoanticuerpos | |
dc.subject.proposal | Anticuerpos | spa |
dc.subject.proposal | Artritis | spa |
dc.subject.proposal | Autoinmunidad | spa |
dc.subject.proposal | Carbamilación | spa |
dc.subject.proposal | Diagnostico | spa |
dc.type.coar | http://purl.org/coar/resource_type/c_7a1f | spa |
dc.type.coarversion | http://purl.org/coar/version/c_970fb48d4fbd8a85 | spa |
dc.type.content | Text | spa |
dc.type.driver | info:eu-repo/semantics/bachelorThesis | spa |
dc.type.redcol | https://purl.org/redcol/resource_type/TP | spa |
dc.type.version | info:eu-repo/semantics/publishedVersion | spa |
dc.rights.coar | http://purl.org/coar/access_right/c_14cb | spa |