EFFECT OF HUMAN HERPES VIRUS REACTIVATION ON SYSTEMIC CYTOKINE PRODUCTION IN PATIENTS WITH BEHCET’S DISEASE AND UVEITIS
https://doi.org/10.15789/1563-0625-EOH-2286
Abstract
Behcet’s disease (BD) is a systemic autoinflammatory-autoimmune disease (chronic systemic vasculitis) of unknown etiology, almost 70% of patients develop uveitis. BD pathogenesis is complex, human herpesviruses (HHV) play an important role among infectious trigger factors. Ability of herpesviruses to modulate cytokine production and evade host’s immune response is known.
Aim of the study was to assess the effect of Herpes simplex virus type 1, Herpes simplex virus type 2, Cytomegalovirus, Epstein-Barr virus on systemic levels of chemokines, pro- and anti-inflammatory cytokines in BD with and without uveitis. Serum samples were collected from 116 BD patients chronically infected with HHV and examined in ELISA-test for markers of HHV reactivation (IgG-antibodies to immediate early HSV antigens 1, 2 and CMV, early EBV antigen). Concentration of IL-1β, IFNγ, MCP-1, IL-2, IL-4, IL-5, IL-6, IL-8, IL-12p70, IL-13, IL-18, TNFα, GMCSF, Eotaxin, GRO-α, IP-10, MIP-1α, MIP-1β, SDF-1α, RANTES detected in multiplex analysis. TGF-β1, TGF-β2 were measured in ELISA-test. Depending on presence and activity of uveitis 3 groups of patients with BD were identified: group 1 – active uveitis, group 2 – remission of uveitis, group 3 – BD without ocular manifestations. After serological study 2 subgroups were highlighted in each group: a) patients with antibody markers of reactivation of at least one HHV, b) patients chronically infected with HHV, without serological signs of reactivation. Mean level and detection rate of cytokines and chemokines in patients with active uveitis (1a, 1b) and in remission (2a, 2b) were compared with patients without eye damage (3a, 3b). Chronic HHV infection (subgroup “b”) was compared with reactivation (subgroup “a”). A significant increase of MCP-1/ CCL2, MIP-1α/CCL3, MIP-1β/CCL4, RANTES/CCL5, IP-10, SDF-1α chemokines in serum, as well as IFNγ, TGF-β1, and TGF-β2 was observed in patients with uveitis (regardless of their activity) and HHV reactivation compared to patients without uveitis. Our data indicate that systemic production of cytokines and chemokines in BD patients and uveitis could be affected by the activity of chronic herpesvirus infections, and the greatest changes are related to chemokines.
About the Authors
G. I. KrichevskayaRussian Federation
PhD (Medicine), Leading Research Associate, Department of Immunology and Virology,
105062, Moscow, Sadovaya-Chernogryazskaya str., 14/19
E. S. Sorozhkina
Russian Federation
Research Associate,
105062, Moscow, Sadovaya-Chernogryazskaya str., 14/19
N. V. Balatskaya
Russian Federation
PhD (Biology), Head, Department of Immunology and Virology,
105062, Moscow, Sadovaya-Chernogryazskaya str., 14/19
I. G. Kulikova
Russian Federation
Senior Research Associate, Department of Immunology and Virology,
105062, Moscow, Sadovaya-Chernogryazskaya str., 14/19
A. E. Andryushin
Russian Federation
Research Associate, Department of Immunology and Virology,
105062, Moscow, Sadovaya-Chernogryazskaya str., 14/19
G. A. Davidova
Russian Federation
PhD (Medicine), Ophthalmologist, Research Associate, Department of Retina and Optic Nerve Pathology,
105062, Moscow, Sadovaya-Chernogryazskaya str., 14/19
T. A. Lisitsyna
Russian Federation
PhD, MD (Medicine), Leading Research Associate,
Moscow
References
1. Abu El-Asrar A.M., Berghmans N., Al-Obeidan S.A., Gikandi P.W., Opdenakker G., van Damme J., Struyf S. The CC chemokines CCL8, CCL13 and CCL20 are local inflammatory biomarkers of HLA-B27-associated uveitis. Acta Ophthalmol., 2019, Vol. 97, no. 1, pp. e122-e128.
2. Belguendous H.,Messaoudene D., Lahmar-Belguendouz K., Djeraba Z., Otmani F., Terahi M., Tiar M., Hartani D., Lahlou-Boukoffa O.S., Touil-Boukoffa C. In vivo and in vitro IL-18 production during uveitis associated with Behçet disease: effect of glucocorticoid therapy. J. Fr. Ophtalmol., 2015, Vol. 38, no. 3, pp. 206-212.
3. Ksiaa I., Abroug N., Kechida M., Zina S., Jelliti B., Khochtali S., Attia S., Khairallah M. Eye and Behçet’s disease. J. Fr. Ophtalmol., 2019, Vol. 42, no. 4, pp. e133-e146.
4. Leccese P., Alpsoy E. Behçet’s disease: an overview of etiopathogenesis. Front. Immunol., 2019, Vol. 10, 1067. doi: 10.3389/fimmu.2019.01067.
5. Lisitsyna T.A., Alekberova Z.S., Goloeva R.G., Davydova G.A. Behcet’s disease: clinical manifestations, current principles of diagnosis and therapy. Rheumatology Science and Practice, 2019, Vol. 57, no. 5, pp. 553-563. (In Russ.)
6. Mesquida M., Molins B., Llorenç V., Sainz de la Maza M., Hernandez M.V., Espinosa G., Adán A. Proinflammatory cytokines and C-reactive protein in uveitis associated with Behçet’s disease. Mediators Inflamm., 2014, Vol. 2014, 396204. doi: 10.1155/2014/396204.
7. Moskalev A.V., Rudoy A.S., Apchel A.V., Zueva V.O., Kazimova O.E. Features of biology of transforming growth factor β and immunopathology. Bulletin of Russian Military Medical Academy, 2016, Vol. 2, no. 54, pp. 206-216. (In Russ.)
8. Petrovskaya M.S., Krichevskaya G.I., Denisova E.V., Katargina L.A., Kulikova I.G. Importance of Epstein– Barr virus infection in pathogenesis of proliferative complications in children with endogenous uveitis. Russian Journal of Infection and Immunity, 2019, Vol. 9, no. 5-6, pp. 800-804. (In Russ.) doi: 10.15789/2220-7619-2019-5-6- 800-804.
9. Prokhorova O.V., Olina A.A., Tolibova G.Kh., Tral’ T.G. Stromal cell-derived factor: pathological and clinical potentialities. Russian Journal of Woman and Child Health, 2020, Vol. 3, no. 3, pp. 198-204. (In Russ.)
10. Sayeed H.M., Lee E.S., Byun H.O., Sohn S. The role of CCR1 and therapeutic effects of anti-CCL3 antibody in herpes simplex virus-induced Behçet’s disease mouse model. Immunology, 2019, Vol. 158, no. 3, pp. 206-218.
11. Sorozhkina E.S., Balatskaya N.V., Davidova G.I., Lisitsyna T.A. Cytokine screen in serum of BD patients with eye lesions. Medical Immunology (Russia), 2017, Vol. 19, Special edition, p. 225. (In Russ.)
12. Tong B., Liu X., Xiao J., Su G. Immunopathogenesis of Behcet’s Disease. Front. Immunol., 2019, Vol. 10, 665. doi: 10.3389/fimmu.2019.00665.
13. Zhou Z.Y., Chen S.L., Shen N., Lu Y. Cytokines and Behcet’s disease. Autoimmun. Rev., 2012 ,Vol. 11, no. 10, pp. 699-704.
14. Zhu Y., Qiu, Y., Yu H., Yi S., Su W., Kijlstra A., Yang P. Aberrant DNA methylation of GATA binding protein 3 (GATA3), interleukin-4 (IL-4), and transforming growth factor-β (TGF-β) promoters in Behcet’s disease. Oncotarget, 2017, Vol. 8, no. 38, pp. 64263-64272.
Supplementary files
Review
For citations:
Krichevskaya G.I., Sorozhkina E.S., Balatskaya N.V., Kulikova I.G., Andryushin A.E., Davidova G.A., Lisitsyna T.A. EFFECT OF HUMAN HERPES VIRUS REACTIVATION ON SYSTEMIC CYTOKINE PRODUCTION IN PATIENTS WITH BEHCET’S DISEASE AND UVEITIS. Medical Immunology (Russia). 2021;23(4):767-774. https://doi.org/10.15789/1563-0625-EOH-2286