Renal histopathological analysis of 26 postmortem findings of patients with COVID-19 in China

Гистопатологический анализ почек при 26 посмертных исследованиях больных с COVID-19 в Китае
Fan Yi, Chun Zhang, Hua Su, Agnes B. Fogo, Fang Tang, Ming Yang, Cheng Wan, Li-Xia Yi, Hong-Yan Zhu, Hai-Chun Yang, Xiu Nie
2020-04-09

ACE2 upregulationCOVID-19 autopsy kidneysSARS-CoV-2 renal invasionacute kidney injuryproximal tubule injury
Although the respiratory and immune systems are the major targets of Coronavirus Disease 2019 (COVID-19), acute kidney injury and proteinuria have also been observed. Currently, detailed pathologic examination of kidney damage in critically ill patients with COVID-19 has been lacking. To help define this we analyzed kidney abnormalities in 26 autopsies of patients with COVID-19 by light microscopy, ultrastructural observation and immunostaining. Patients were on average 69 years (19 male and 7 female) with respiratory failure associated with multiple organ dysfunction syndrome as the cause of death. Nine of the 26 showed clinical signs of kidney injury that included increased serum creatinine and/or new-onset proteinuria. By light microscopy, diffuse proximal tubule injury with the loss of brush border, non-isometric vacuolar degeneration, and even frank necrosis was observed. Occasional hemosiderin granules and pigmented casts were identified. There were prominent erythrocyte aggregates obstructing the lumen of capillaries without platelet or fibrinoid material. Evidence of vasculitis, interstitial inflammation or hemorrhage was absent. Electron microscopic examination showed clusters of coronavirus-like particles with distinctive spikes in the tubular epithelium and podocytes. Furthermore, the receptor of SARS-CoV-2, ACE2 was found to be upregulated in patients with COVID-19, and immunostaining with SARS-CoV nucleoprotein antibody was positive in tubules. In addition to the direct virulence of SARS-CoV-2, factors contributing to acute kidney injury included systemic hypoxia, abnormal coagulation, and possible drug or hyperventilation-relevant rhabdomyolysis. Thus, our studies provide direct evidence of the invasion of SARSCoV-2 into kidney tissue. These findings will greatly add to the current understanding of SARS-CoV-2 infection.
1
ACE2 receptor expression was upregulated in kidneys of COVID-19 patients and SARS‑CoV nucleoprotein immunostaining was positive in tubular epithelium.
2
Autopsy of 26 COVID-19 patients showed prominent diffuse proximal tubular injury (loss of brush border, vacuolar degeneration, necrosis).
3
Contributing factors to acute kidney injury included direct viral invasion, systemic hypoxia, abnormal coagulation, and possible drug- or hyperventilation-related rhabdomyolysis.
4
Electron microscopy detected clusters of coronavirus-like particles with distinctive spikes in proximal tubular epithelium and podocytes.
5
Peritubular and glomerular capillaries contained erythrocyte aggregates obstructing lumens without platelet or fibrin thrombi, suggesting abnormal coagulation-related changes.

Kidney tissue from 26 deceased patients with COVID-19 (autopsy renal specimens, including proximal tubular epithelium and glomeruli)

Histopathological, ultrastructural and immunostaining features of renal injury (proximal tubular injury, presence of coronavirus-like particles in tubular epithelium and podocytes, ACE2 expression, erythrocyte aggregation, casts, and glomerular changes) associated with SARS-CoV-2 infection

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2020-04-09
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Fan Yi
Chun Zhang
Hua Su
Agnes B. Fogo
Fang Tang
Ming Yang
Cheng Wan
Li-Xia Yi
Hong-Yan Zhu
Hai-Chun Yang
Xiu Nie
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