Cell Reports · 2021 · 131 citations · 29 references
Elderly PatientsT-regulatory CellImmunologyImmunologic MechanismT CellsImmune SystemImmunotherapyT Cell ApoptosisImmune DysregulationCovid-19InflammationMetabolic SyndromeMetabolic ProgramsImmune MediatorImmune SurveillanceT Cell ImmunityImmunologic DiseaseChronic Viral InfectionCell BiologyMedicineViral Immunity
It is unclear why some SARS-CoV-2 patients readily resolve infection while others develop severe disease. By interrogating metabolic programs of immune cells in severe and recovered coronavirus disease 2019 (COVID-19) patients compared with other viral infections, we identify a unique population of T cells. These T cells express increased Voltage-Dependent Anion Channel 1 (VDAC1), accompanied by gene programs and functional characteristics linked to mitochondrial dysfunction and apoptosis. The percentage of these cells increases in elderly patients and correlates with lymphopenia. Importantly, T cell apoptosis is inhibited in vitro by targeting the oligomerization of VDAC1 or blocking caspase activity. We also observe an expansion of myeloid-derived suppressor cells with unique metabolic phenotypes specific to COVID-19, and their presence distinguishes severe from mild disease. Overall, the identification of these metabolic phenotypes provides insight into the dysfunctional immune response in acutely ill COVID-19 patients and provides a means to predict and track disease severity and/or design metabolic therapeutic regimens.
29
Clinical features of patients infected with 2019 novel coronavirus in Wuhan, China
Chaolin Huang, Yeming Wang, Xingwang Li et al. · The Lancet · 2020 · 51.3K citations · Full text
Clinical and immunological features of severe and moderate coronavirus disease 2019
Guang Chen, Di Wu, Wei Guo et al. · Journal of Clinical Investigation · 2020 · 5K citations · Full text
Longitudinal analyses reveal immunological misfiring in severe COVID-19
Carolina Lucas, Patrick Wong, Jon Klein et al. · Nature · 2020 · 2.2K citations · Full text