A time-resolved proteomic and diagnostic map characterizes COVID-19 disease progression and predicts outcome

Por um escritor misterioso
Last updated 07 julho 2024
A time-resolved proteomic and diagnostic map characterizes COVID-19 disease  progression and predicts outcome
medRxiv - The Preprint Server for Health Sciences
A time-resolved proteomic and diagnostic map characterizes COVID-19 disease  progression and predicts outcome
A time-resolved proteomic and prognostic map of COVID-19 - ScienceDirect
A time-resolved proteomic and diagnostic map characterizes COVID-19 disease  progression and predicts outcome
A time-resolved proteomic and diagnostic map characterizes COVID-19 disease progression and predicts outcome
A time-resolved proteomic and diagnostic map characterizes COVID-19 disease  progression and predicts outcome
Mathematics, Free Full-Text
A time-resolved proteomic and diagnostic map characterizes COVID-19 disease  progression and predicts outcome
Proteomics of extracellular vesicles in plasma reveals the characteristics and residual traces of COVID-19 patients without underlying diseases after 3 months of recovery
A time-resolved proteomic and diagnostic map characterizes COVID-19 disease  progression and predicts outcome
PDF) A time-resolved proteomic and prognostic map of COVID-19
A time-resolved proteomic and diagnostic map characterizes COVID-19 disease  progression and predicts outcome
Mass Spectrometry Techniques in Emerging Pathogens Studies: COVID-19 Perspectives
A time-resolved proteomic and diagnostic map characterizes COVID-19 disease  progression and predicts outcome
A time-resolved proteomic and diagnostic map characterizes COVID-19 disease progression and predicts outcome
A time-resolved proteomic and diagnostic map characterizes COVID-19 disease  progression and predicts outcome
Proteomic and phosphoproteomic characteristics of the cortex, hippocampus, thalamus, lung, and kidney in COVID-19-infected female K18-hACE2 mice - eBioMedicine
A time-resolved proteomic and diagnostic map characterizes COVID-19 disease  progression and predicts outcome
Plasma proteome of Long-COVID patients indicates HIF-mediated vasculo-proliferative disease with impact on brain and heart function, Journal of Translational Medicine
A time-resolved proteomic and diagnostic map characterizes COVID-19 disease  progression and predicts outcome
Utility of Proteomics in Emerging and Re-Emerging Infectious Diseases Caused by RNA Viruses
A time-resolved proteomic and diagnostic map characterizes COVID-19 disease  progression and predicts outcome
Plasma proteome of Long-COVID patients indicates HIF-mediated vasculo-proliferative disease with impact on brain and heart function, Journal of Translational Medicine

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