Author:
Wang Tiecheng,Miao Faming,Lv Shengnan,Li Liang,Wei Feng,Hou Lihua,Sun Renren,Li Wei,Zhang Jian,Zhang Cheng,Yang Guang,Xiang Haiyang,Meng Keyin,Wan Zhonghai,Wang Busen,Feng Guodong,Zhao Zhongpeng,Luo Deyan,Li Nan,Tu Changchun,Wang Hui,Xue Xiaochang,Liu Yan,Gao Yuwei
Abstract
Although tremendous effort has been exerted to elucidate the pathogenesis of severe COVID-19 cases, the detailed mechanism of moderate cases, which accounts for 90% of all patients, remains unclear yet, partly limited by lacking the biopsy tissues. Here, we established the COVID-19 infection model in cynomolgus macaques (CMs), monitored the clinical and pathological features, and analyzed underlying pathogenic mechanisms at early infection stage by performing proteomic and metabolomic profiling of lung tissues and sera samples from COVID-19 CMs models. Our data demonstrated that innate immune response, neutrophile and platelet activation were mainly dysregulated in COVID-19 CMs. The symptom of neutrophilia, lymphopenia and massive “cytokines storm”, main features of severe COVID-19 patients, were greatly weakened in most of the challenged CMs, which are more semblable as moderate patients. Thus, COVID-19 model in CMs is rational to understand the pathogenesis of moderate COVID-19 and may be a candidate model to assess the safety and efficacy of therapeutics and vaccines against SARS-CoV-2 infection.
Funder
Ministry of Science and Technology of the People's Republic of China
National Natural Science Foundation of China
Subject
Immunology,Immunology and Allergy
Cited by
6 articles.
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