[An electron microscopic study of neocortex of Syrian hamsters (Mesocricetus auratus) infected with SARS-CoV-2 (Coronaviridae: Coronavirinae: Betacoronavirus: Sarbecovirus)].

Q3 Medicine Voprosy virusologii Pub Date : 2022-11-19 DOI:10.36233/0507-4088-130
N M Paramonova, S V Chepur, M О Pervak, V A Myasnikov, M A Tyunin, N S Ilinskiy, B A Kanevskij, A V Smirnova
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Abstract

Introduction: Convalescent COVID-19 patients have various signs of central nervous system damage, including those directly associated with SARS-CoV-2. Hence, studies of SARS-COV-2 related morphological changes in neocortex are particularly relevant for understanding the mechanisms of their formation and development of approaches to preclinical evaluation of the effectiveness of antiviral drugs. The purpose of the research is a longitudinal study of the ultrastructural alterations in Syrian hamsters neocortex after experimental SARS-CoV-2 infection.

Materials and methods: Male Syrian hamsters weighing 80100 g, aged 4 to 6 weeks, were infected with 26 l SARS-CoV-2 intranasally with 4104 TCD50/ml of viral particles. The animals were euthanized on days 3, 7 or 28 post-infection, the brain was extracted with the cortex excision. The material analysis was performed using transmission electron microscopy.

Results and discussion: On day 3 post-infection, the number of moderately hyperchromic neurons in neocortex increased, while by the day 7 the number of apoptotic cells significantly increased. Simultaneously, an increased signs of neuronophagy and representation of atypical glia were observed. Increased number of altered oligodendrocytes was observed on day 28 post-infection. Viral invasion was accompanied by changes in neocortical cells since day 3 post-infection, such as transformation of their nucleus, the rough endoplasmic reticulum and the Golgi vesicles as well as microvascular spasm with perivascular edema.

Conclusion: As a result of electron microscopic study, the ultrastructural alterations in neocortex were described in an experimental model of SARS-CoV-2 infection. The findings can be used to identify the mechanisms of infection pathogenesis and to search for the new directions in development of medicines.

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[感染SARS-CoV-2(冠状病毒科:冠状病毒科:β -冠状病毒:sarbecvirus)的叙利亚仓鼠(Mesocricetus auratus)新皮层的电镜研究]。
COVID-19恢复期患者有各种中枢神经系统损伤迹象,包括与SARS-CoV-2直接相关的中枢神经系统损伤迹象。因此,研究新皮层中与SARS-COV-2相关的形态学变化,对于了解其形成机制和开发抗病毒药物有效性的临床前评估方法尤为重要。本研究旨在对实验性SARS-CoV-2感染后叙利亚仓鼠新皮层超微结构变化进行纵向研究。材料与方法:4 ~ 6周龄,体重80100g的雄性叙利亚地鼠,以4104 TCD50/ml的病毒颗粒经鼻感染26 l SARS-CoV-2。分别于感染后第3天、第7天、第28天实施安乐死,切除脑皮层。材料分析采用透射电镜进行。结果与讨论:感染后第3天,大鼠新皮质中度深染神经元数量增加,第7天凋亡细胞数量明显增加。同时,观察到神经元吞噬和非典型胶质细胞的表现增加的迹象。感染后第28天,观察到少突胶质细胞改变数量增加。病毒侵袭后第3天,新皮质细胞出现细胞核、粗内质网和高尔基囊的改变,微血管痉挛伴血管周围水肿。结论:在SARS-CoV-2感染实验模型中,电镜观察可以描述新皮层超微结构的改变。研究结果可用于确定感染的发病机制和寻找药物开发的新方向。
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来源期刊
Voprosy virusologii
Voprosy virusologii Medicine-Infectious Diseases
CiteScore
2.00
自引率
0.00%
发文量
48
期刊介绍: The journal deals with advances in virology in Russia and abroad. It publishes papers dealing with investigations of viral diseases of man, animals and plants, the results of experimental research on different problems of general and special virology. The journal publishes materials are which promote introduction into practice of the achievements of the virological science in the eradication and incidence reduction of infectious diseases, as well as their diagnosis, treatment and prevention. The reader will find a description of new methods of investigation, new apparatus and devices.
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