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Sturdevant, D. E.

Publications and source records attributed to Sturdevant, D. E..

2 recordsLinked to original sources

Imbalanced immune response and dysregulation of neural functions underline fatal opportunistic encephalitis caused by astrovirus

The incidence of infections of the central nervous system (CNS) in humans is increasing due to emergence and reemergence of pathogens and an increase in the number of immunocompromised patients. Many viruses are opportunists and can invade the CNS if the immune response of the host is impaired. Here we investigate neuropathogenesis of a rare CNS infection in immunocompromised patients caused by astrovirus and show that it shares many features with another opportunistic infection of the CNS caused by human immunodeficiency virus. We show that astrovirus infects CNS neurons with a major impact on the brainstem. In the setting of impaired peripheral adaptive immunity, host responses in the astrovirus infected brain are skewed to the innate immune response with exuberant activation of microglia and macrophages. Astrovirus infection of neurons and responses by phagocytic cells lead to disrupted synaptic integrity, loss of afferent innervation related to infected neurons, and global impairment of both excitatory and inhibitory neurotransmission. The response employed in the CNS against opportunistic viruses, such as astrovirus and HIV, may be a common compensatory defense mechanism which inadvertently leads to loss of neural functions due to the hosts exuberant innate immune response to pathogens when adaptive immunity is impaired.

microbiology↗

Western diet increases COVID-19 disease severity in the Syrian hamster

Pre-existing comorbidities such as obesity or metabolic diseases can adversely affect the clinical outcome of COVID-19. Chronic metabolic disorders are globally on the rise and often a consequence of an unhealthy diet, referred to as a Western Diet. For the first time in the Syrian hamster model, we demonstrate the detrimental impact of a continuous high-fat high-sugar diet on COVID-19 outcome. We observed increased weight loss and lung pathology, such as exudate, vasculitis, hemorrhage, fibrin, and edema, delayed viral clearance and functional lung recovery, and prolonged viral shedding. This was accompanied by an increased trend of systemic IL-10 and IL-6, as well as a dysregulated serum lipid response dominated by polyunsaturated fatty acid-containing phosphatidylethanolamine, recapitulating cytokine and lipid responses associated with severe human COVID-19. Our data support the hamster model for testing restrictive or targeted diets and immunomodulatory therapies to mediate the adverse effects of metabolic disease on COVID-19.

microbiology↗