Brainstem neuropathology in two cases of COVID-19: SARS-CoV-2 trafficking between brain and lung
Нейропатология ствола мозга в двух случаях COVID-19: транспорт SARS-CoV-2 между головным мозгом и легким
2021-05-18
SCID: 54.1/4npc47t6
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SARS-CoV-2 neuropathologybrainstem damagemedulla oblongataneurogenic respiratory failurevagus nerve
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Abstract (AI)
INTRODUCTION: SARS-CoV-2 might spread through the nervous system, reaching respiratory centers in the brainstem. Because we recently reported neurophysiological brainstem reflex abnormalities in COVID-19 patients, we here neuropathologically assessed structural brainstem damage in two COVID-19 patients. MATERIALS AND METHODS: were histopathologically assessed. Other features studied were the immunohistochemical expression of the SARS-CoV-2 nucleoprotein (NP) and the Iba-1 antigen for glial activation. RESULTS: Autopsies showed normal gross brainstem anatomy. Histopathological examination demonstrated increased neuronal and CA damage in Covid-19 patients' medulla oblongata. Immunohistochemistry disclosed SARS-CoV-2 NP in brainstem neurons and glial cells, and in cranial nerves. Glial elements also exhibited a widespread increase in Iba-1 expression. Sars-Co-V2 was immunohistochemically detected in the vagus nerve fibers. DISCUSSION: Neuropathologic evidence showing SARS-CoV-2 in the brainstem and medullary damage in the area of respiratory centers strongly suggests that the pathophysiology of COVID-19-related respiratory failure includes a neurogenic component. Sars-Co-V2 detection in the vagus nerve, argues for viral trafficking between brainstem and lung.
Key Findings
1
Autopsies of two COVID-19 patients showed normal gross brainstem anatomy but increased neuronal and cellular damage in the medulla oblongata.
2
Brainstem tissue exhibited widespread increased Iba-1 expression, indicating substantial glial activation.
3
Detection of SARS-CoV-2 in vagus nerve fibers supports viral trafficking between the brainstem and lung.
4
SARS-CoV-2 nucleoprotein was detected in brainstem neurons, glial cells, cranial nerves, and vagus nerve fibers.
5
SARS-CoV-2 presence and medullary damage near respiratory centers support a neurogenic component in COVID-19-related respiratory failure.
Research Object
Brainstem and associated cranial/vagus nerve tissues in two COVID-19 autopsy cases
Research Subject
SARS-CoV-2 presence and trafficking between the lung and brainstem, and associated medullary neuronal damage and glial activation
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2021-05-18
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