Morphological and immunohistochemical changes in lymph nodes in COVID-19: features of BCL-6 and CD138 expression

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Abstract

Lymph node involvement in COVID-19 is accompanied by significant morphofunctional changes affecting both the structure and cellular composition of organs.

Objective: To conduct a comprehensive morphological and immunohistochemical study using BCL-6 and CD138 markers on lymph nodes of patients who died from laboratory-confirmed COVID-19.

Materials and methods: Autopsy specimens from 30 patients who died from laboratory-confirmed severe COVID-19 were analyzed. Autopsy specimens from the bronchopulmonary lymph nodes of patients whose death was not associated with SARS-CoV-2 infection served as a comparison group. Pathological examination was performed using standard hematoxylin and eosin staining, and monoclonal antibodies to BCL-6 and CD138 were used for immunohistochemistry. Statistical analysis of the data was performed using descriptive and analytical statistics methods with Prism 10.4.1 software (GraphPrad Software Inc., USA).

Results: Under the conditions of the COVID-19 viral infection, an increase in lymph nodes is observed macro- and microscopically, histologically, depletion of lymphoid tissue, loss or hypoplasia of germinal centers (≈90 %), sinus histiocytosis, and microthrombosis are noted. According to the results of immunohistochemical analysis, statistically significant differences were revealed in tissue samples, indicating a decrease in the proportion of large BCL-6+ zones and an increase in small BCL-6+ structures (p = 0.008) in the lymph nodes of patients with COVID-19 compared to the control group. An increase in the total area of large CD138+ clusters and the proportion of small CD138+ structures (p = 0.004) were also recorded.

Conclusion: Viral infection causes severe lymph node damage, characterized by destruction of follicular architecture and disruption of immune cell interactions. Lymph nodes in COVID-19 demonstrate a disruption of the germinal response (↓BCL-6) and pronounced plasma cell infiltration (↑CD138), indicating a shift toward an extrafollicular humoral response. These data are important for understanding the mechanisms of immune dysfunction in COVID-19 and may serve as a morphological basis for the development of new immunomodulatory treatment strategies.

About the authors

Svetlana A. Kalashnikova

Volgograd State Medical University

Author for correspondence.
Email: kalashnikova-sa@yandex.ru
ORCID iD: 0000-0002-0255-7801

MD, Professor, Head of the Department of Anatomy

Russian Federation, Volgograd

Olga V. Suchilina

Volgograd Regional Clinical Oncology Center No. 1

Email: desireo@mail.ru
ORCID iD: 0009-0006-0016-9174

Head of the Pathology Department

Russian Federation, Volgograd

Diana V. Natalchenko

Volgograd State Medical University

Email: natalchenko.d@mail.ru
ORCID iD: 0009-0008-8283-5293

Assistant Professor of the Department of Anatomy

Russian Federation, Volgograd

References

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  2. Chowdhury M.A., Hossain N., Kashem M.A., Shahid M.A., Alam A. Immune response in COVID-19: A review. J Infect Public Health. 2020;13(11):1619–1629. doi: 10.1016/j.jiph.2020.07.001.
  3. Dorward D.A., Russel C.D., Um I.H., Elshani М., Armstrong S.D., Millare Т. еt al. Tissue-specific immunopathology in fatal COVID-19. Am J Respir Crit Care Med. 2021;203(2):192–201. doi: 10.1164/rccm. 202008-3265OC.
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Copyright (c) 2025 Kalashnikova S.A., Suchilina O.V., Natalchenko D.V.

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