Multimodal single-cell omics analysis identifies epithelium–immune cell interactions and immune vulnerability associated with sex differences in COVID-19
다중 모드 단일 세포 omics 분석은 COVID-19의 성별 차이와 관련된 상피-면역 세포 상호 작용 및 면역 취약성을 식별합니다.
Clinical Trial
Published on
Journal: Signal Transduction and Targeted Therapy [Category] Fulltext, SARS, 바이오마커, 유전자 메커니즘, 임상, 진단,
Journal: Signal Transduction and Targeted Therapy [Category] Fulltext, SARS, 바이오마커, 유전자 메커니즘, 임상, 진단,
[키워드] 95% CI
95% confidence interval
ACE2
Admission
Analysis
BALF
Bronchoalveolar lavage fluid
BTK
C-reactive protein
Cell
cell interaction
COVID-19
COVID-19 patient
COVID-19 patients
disease severities
disease severity
elevated
expression
furin
hazard ratio
Hospital admission
Hospitalization
ICU
identify
immune
immune response
immune responses
individual
Infectious diseases
Inflammatory biomarker
Inflammatory marker
inflammatory markers
intensive care
intensive care unit
Interaction
likelihood
Macrophage
macrophages
male
mechanism
moderate
Molecular medicine
monocyte
mononuclear cell
mononuclear cells
Mortality
nasal
network analysis
neutrophil–lymphocyte ratio
NRP1
observation
offer
outcome
Patient
Patient care
PBMCs
Peripheral blood
Peripheral blood mononuclear cells
potential molecular
procalcitonin
profile
reveal
SARS-CoV-2 entry factors
SARS-COV-2 infection
SARS-CoV-2 positivity
scRNA-seq
Sequencing
sera
severe COVID-19
severity
Sex difference
single-cell
Single-cell RNA-sequencing
sputum samples
squamous cells
susceptibility
Systems biology
targeted intervention
TLR7
TMPRSS2
Toll-like receptor
toll-like receptor 7
transcriptional activation
tyrosine
Viral
viral infection
with COVID-19
[DOI] 10.1038/s41392-021-00709-x PMC 바로가기 [Article Type] Clinical Trial
[DOI] 10.1038/s41392-021-00709-x PMC 바로가기 [Article Type] Clinical Trial