AUTOANTIBODIES AGAINST ENDOTHELIAL ANTIGENS IN PREECLAMPSIA


Citar

Texto integral

Acesso aberto Acesso aberto
Acesso é fechado Acesso está concedido
Acesso é fechado Acesso é pago ou somente para assinantes

Resumo

Objective. To determine the spectrum of serum autoantibodies against endothelial cells and components of the glycocalyx in patients with preeclampsia and to investigate their relationship. Subjects and methods. A prospective case-control study was conducted. The activity of antibody binding to endothelial EA.hy926 cells and the level of peripheral blood anti-hyaluronic acid antibodies were determined in 28patients with preeclampsia and 30 apparently healthy pregnant women in the third trimester. Results. In preeclampsia, there was an enhanced binding of immunoglobulin G antibodies to endothelial cell antigens, as well as an increased level of immunoglobulin G antibodies against hyaluronic acid [-4GlcA[31- 3 GlcNA eft!- In and its repeating disaccharide unit GlcA/31-3GlcNA eft. A negative correlation was found between the binding of anti-endothelial cell antibodies and anti-hyaluronic antibodies. Conclusion. The findings may expand knowledge of the pathogenesis of preeclampsia and its practical realization into the diagnosis and prognosis of the disease.

Texto integral

Acesso é fechado

Sobre autores

Marina Ziganshina

Research Center of Obstetrics, Gynecology, and Perinatology, Ministry of Health of Russia

Email: mmz@mail.ru
research fellow of the Laboratory of clinical immunology Moscow 117997, Ac. Oparina str. 4

Nadegda Shilova

Russia Academicians M.M. Shemyakin and Yu.A. Ovchinnikov Institute of Bioorganic Chemistry, Russian Academy of Sciences

Email: pumatnv@gmail.com
candidate of chemical sciences, leading research fellow of the Laboratory of Carbohydrate Chemistry Moscow 117437, Miklukho-Maklaya str. 16/10, Russia

Nailia Khasbiullina

Russia Academicians M.M. Shemyakin and Yu.A. Ovchinnikov Institute of Bioorganic Chemistry, Russian Academy of Sciences

Email: crosbreed@list.ru
junior research fellow of the Laboratory of Carbohydrate Chemistry Moscow 117437, Miklukho-Maklaya str. 16/10, Russia

Maxim Novakouski

Russia Academicians M.M. Shemyakin and Yu.A. Ovchinnikov Institute of Bioorganic Chemistry, Russian Academy of Sciences

Email: maxushob@gmail.com
candidate of chemical sciences, research fellow of the Laboratory of Carbohydrate Chemistry Moscow 117437, Miklukho-Maklaya str. 16/10, Russia

Marina Nikolaeva

Research Center of Obstetrics, Gynecology, and Perinatology, Ministry of Health of Russia

Email: MNikolaeva@oparina4.ru
M.D., leading research fellow of the Laboratory of clinical immunology Moscow 117997, Ac. Oparina str. 4

Natalia Kan

Research Center of Obstetrics, Gynecology, and Perinatology, Ministry of Health of Russia

Email: kan-med@mail.ru
MD, PhD, the Head of the Obstetrical Observational Department Moscow 117997, Ac. Oparina str. 4

Olga Vavina

Research Center of Obstetrics, Gynecology, and Perinatology, Ministry of Health of Russia

Email: o_vavina@oparina4.ru
fellow Moscow 117997, Ac. Oparina str. 4

Anastasia Nikolaeva

City Clinical Hospital Sixty-Four, Moscow Healthcare Department

Email: irgly@rambler.ru
MD, the Head of the branch of City Clinical Hospital Sixty-Four Moscow 117292, Vavilova str. 61, Russia

Nataliya Tyutyunnik

Research Center of Obstetrics, Gynecology, and Perinatology, Ministry of Health of Russia

Email: n_tyutyunnik@oparina4.ru
the resident Moscow 117997, Ac. Oparina str. 4

Olga Sergunina

Research Center of Obstetrics, Gynecology, and Perinatology, Ministry of Health of Russia

Email: o_sergunina@oparina4.ru
the doctor of the Obstetrical Observational Department Moscow 117997, Ac. Oparina str. 4

Llze Bot

Leiden University

Email: i.bot@lacdr.leidenuniv.nl
PhD, MD, senior scientist, Leiden Academic Center for Drug Research 2333 CC , Lieden, Einsteinweg 55, the Netherlands

Victor Tyutyunnik

Research Center of Obstetrics, Gynecology, and Perinatology, Ministry of Health of Russia

Email: tioutiounnik@mail.ru
PhD, MD, the Head of the obstetric physiological department Moscow 117997, Ac. Oparina str. 4

Nikolai Bovin

Russia Academicians M.M. Shemyakin and Yu.A. Ovchinnikov Institute of Bioorganic Chemistry, Russian Academy of Sciences

Email: bovin@carb.ibch.ru
PhD, MD, professor, the Head of the Laboratory of Carbohydrate Chemistry Moscow 117437, Miklukho-Maklaya str. 16/10, Russia

Gennady Sukhikh

Research Center of Obstetrics, Gynecology, and Perinatology, Ministry of Health of Russia

Email: g_sukhikh@oparina4.ru
PhD, MD, professor, academician of RAS, Director Moscow 117997, Ac. Oparina str. 4

Bibliografia

  1. Laresgoiti-Servitje Е. A leading role for the immune system in the pathophysiology of preeclampsia. J. Leukoc. Biol. 2013; 94(2): 247-57.
  2. Harrison D.G., Guzfk T.J., Lob H.E., Madhur M.S., Marvar P.J., Thabet S.R. et al. Inflammation, immunity, and hypertension. Hypertension. 2011; 57(2): 132-40.
  3. Стародубцева Н.Л., Бугрова A.E., Кононихин А.С., Вавина О.В., Широкова В.А., Наумов В.А., Гаранина И.А., Лагутин В.В., Попов И.А., Логинова Н.С., Ходжаева З.С., Франкевич В.Е., Николаев Е.Н., Сухих Г.Т Возможность прогнозирования и ранней диагностики преэюіам- псии по пептидному профилю мочи. Акушерство и гинекология. 2015; 6: 46-52.
  4. Aird W.C. Spatial and temporal dynamics of the endothelium. J. Thromb. Haemost. 2005; 3(7): 1392-406.
  5. Zhang J., DeFelice A., Hanig J.P., Colatsky T Biomarkers of endothelial cell activation serve as potential surrogate markers for drug-induced vascular injury. Toxicol. Pathol. 2010; 38(6): 856-71.
  6. Woywodt A., Bahmann F.H., De Groot K., Haller H., Haubitz M. Circulating endothelial cells: life, death, detachment and repair of the endothelial cell layer. Nephrol. Dial. Transplant. 2002; 17(10): 1728-30.
  7. Scott D. W, Chen J., Chacko B.K., Traylor J.G. Jr., Orr A.W., Patel R.P. Role of endothelial N-glycan mannose remains in monocyte recruitment during ath- erogenesis. Arterioscler. Thromb. Vase. Biol. 2012; 32(8): e51-9.
  8. НейM., Land W.G. Danger signals - damaged-selfrecognition across the tree of life. Front. Plant. Sci. 2014; 5: 578.
  9. Бовин H.B. Естественные антитела к гликанам. Биохимия. 2013; 78(7): 1008-22
  10. ServettazA., Guilpain P., Tamas N., Kaveri S. V, Camoin L., Mouthon L. Natural anti-endothelial cell antibodies. Autoimmun. Rev. 2008; 7(6): 426-30.
  11. Harper L., Savage C.O. Anti-heparin antibodies: part of the repertoire of anti- endothelial cell antibodies (AECA). Lupus. 1998; 7(2): 68-72.
  12. Blixt 0., Head S., Mondala T., Scanlan C., Huflejt M.E., Alvarez R. et al. Printed covalent glycan array for ligand profiling of diverse glycan binding proteins. Proc. Natl. Acad. Sci. USA. 2004; 101(49): 17033-8.
  13. Huflejt M.E., Vuskovic M., Vasiliu D., Xu H., Obukhova P., Shilova N. et al. Anti-carbohydrate antibodies of normal sera: findings, surprises and challenges. Mol. Immunol. 2009; 46(15): 3037-49.
  14. Edgell C.J., McDonald C.C., Graham J.B. Permanent cell line expressing human factor ѴШ-related antigen established by hybridization. Proc. Natl. Acad. Sci. USA. 1983; 80(12): 3734-7.
  15. Зиганшина M.M., Николаева M.A., Степанова E.O., Кречетова Л.В., Кан Н.Е., Соколов Д.И., Сельков С.А., Сухих Г.Т. Выявление антител, связывающихся с эндотелиальными клетками in vitro, в крови женщин с физиологической беременностью и преэклампсией. Бюллетень экспериментальной биологии и медицины. 2015; 159(4):467-71.
  16. Kimura A., Yoshikura N., Koumura A., Hayashi Y., Kobayashi Y., Kobayashi I. et al. Identification of target antigens of naturally occurring autoantibodies in cerebrospinal fluid. J. Proteomics. 2015; 128: 450-7.
  17. Bordron A., Rdvelen R., D’Arbonneau F., Dueymes M., Renaudineau Y, Jamin C., Youinou P. Functional heterogeneity of anti-endothelial antibodies. Clin. Exp. Immunol. 2001; 124(3): 492-501.
  18. ServettazA., Guilpain P., Camoin L., Mayeux P., Broussard C., Tamby M.C. et al. Identification of target antigens of anti-endothelial cell antibodies in healthy individuals: A proteomic approach. Proteomics. 2008; 8(5): 1000-8.
  19. Varki A., Cummings R.D., Esko J.D., Freeze H., Stanley P, Bertozzi C. et al., eds. Essentials of glycobiology. 2nd ed. New York: Cold Spring Harbor Laboratory Press; 2009: Ch. 15.
  20. Engstrom-Laurent A. Changes in hyaluronan concentration in tissues and body fluids in disease states. Ciba Found. Symp. 1989; 143: 233-40; discussion 240-7, 281-5.
  21. Padberg P.S., Wiesinger A., di Marco G.S., Reuter S., GrabnerA., Kentrup D. et al. Damage of the endothelial glycocalyx in chronic kidney disease. Atherosclerosis. 2014; 234(2): 335-43.
  22. Aytekin M., Comhair S.A., de la Motte C., Bandyopadhyay S.K., Farver C.F., Hascall V.C. et al. High levels of hyaluronan in idiopathic pulmonary arterial hypertension. Am. J. Physiol. Lung Cell. Mol. Physiol. 2008; 295(5): 789-99.
  23. Berg S., Engman A., Holmgren S., Lundahl T., Laurent T.C. Increased plasma hyaluronan in severe pre-eclampsia and eclampsia. Scand. J. Clin. Lab. Invest. 2001; 61(2): 131-7.
  24. Hofmann-Kiefer K.F, Knabl J., Martinoff N., Schiessl B., Conzen P. Rehm M. et al. Increased serum concentrations of circulating glycocalyx components in HELLP syndrome compared to healthy pregnancy: an observational study. Reprod. Sci. 2013; 20(3): 318-25.
  25. Jackson D.G. Immunological functions of hyaluronan and its receptors in the lymphatics. Immunol. Rev. 2009; 230(1): 216-31.
  26. Alphonsus C.S., Rodseth R.N. The endothelial glycocalyx: a review ofthe vascular barrier. Anaesthesia. 2014; 69(7): 777-84.
  27. Kolarova H., Ambrdzpva B., Svihalkova Sindlerova L., Klinke A., Kubala L. Modulation of endothelial glycocalyx structure under inflammatory conditions. Mediators Inflamm. 2014; 2014: 694312.
  28. Warda M. Zhang F., Radwan M., Zhang Z., Kim N. Kim Y.N. et al. Is human placenta proteoglycan remodeling involved in pre-eclampsia? Glycoconj. J. 2008; 25(5): 441-50.
  29. Karbownik M.S., Nowak J. Z. Hyaluronan: towards novel anti-cancer therapeutics. Pharmacol. Rep. 2013; 65(5): 1056-74.
  30. Hommelgaard A.M., Lerdrup M., van Deurs B. Association with membrane protrusions makes ErbB2 an internalization-resistant receptor. Mol. Biol. Cell. 2004; 15(4): 1557-67.

Arquivos suplementares

Arquivos suplementares
Ação
1. JATS XML

Declaração de direitos autorais © Bionika Media, 2016

Este site utiliza cookies

Ao continuar usando nosso site, você concorda com o procedimento de cookies que mantêm o site funcionando normalmente.

Informação sobre cookies