Cell-specific image-guided transcriptomics identifies complex injuries caused by ischemic acute kidney injury in mice

Von einem Mystery-Man-Autor
Last updated 08 Juli 2024
Cell-specific image-guided transcriptomics identifies complex injuries  caused by ischemic acute kidney injury in mice
Cell-specific image-guided transcriptomics identifies complex injuries  caused by ischemic acute kidney injury in mice
Frontiers Identification of hub genes associated with acute kidney injury induced by renal ischemia–reperfusion injury in mice
Cell-specific image-guided transcriptomics identifies complex injuries  caused by ischemic acute kidney injury in mice
Cytoplasmic HMGB1 induces renal tubular ferroptosis after ischemia/reperfusion - ScienceDirect
Cell-specific image-guided transcriptomics identifies complex injuries  caused by ischemic acute kidney injury in mice
Single-cell sequencing dissects the transcriptional identity of activated fibroblasts and identifies novel persistent distal tubular injury patterns in kidney fibrosis
Cell-specific image-guided transcriptomics identifies complex injuries  caused by ischemic acute kidney injury in mice
Cell-specific image-guided transcriptomics identifies complex injuries caused by ischemic acute kidney injury in mice
Cell-specific image-guided transcriptomics identifies complex injuries  caused by ischemic acute kidney injury in mice
Frontiers Identification of hub genes associated with acute kidney injury induced by renal ischemia–reperfusion injury in mice
Cell-specific image-guided transcriptomics identifies complex injuries  caused by ischemic acute kidney injury in mice
Single-cell transcriptomics reveals common epithelial response patterns in human acute kidney injury, Genome Medicine
Cell-specific image-guided transcriptomics identifies complex injuries  caused by ischemic acute kidney injury in mice
Spatial transcriptomics defines injury-specific microenvironments in the adult mouse kidney and novel cellular interactions in regeneration and disease
Cell-specific image-guided transcriptomics identifies complex injuries  caused by ischemic acute kidney injury in mice
Spatial transcriptomics defines injury-specific microenvironments in the adult mouse kidney and novel cellular interactions in regeneration and disease
Cell-specific image-guided transcriptomics identifies complex injuries  caused by ischemic acute kidney injury in mice
Cell profiling of mouse acute kidney injury reveals conserved cellular responses to injury
Cell-specific image-guided transcriptomics identifies complex injuries  caused by ischemic acute kidney injury in mice
Spatial transcriptomics defines injury-specific microenvironments in the adult mouse kidney and novel cellular interactions in regeneration and disease
Cell-specific image-guided transcriptomics identifies complex injuries  caused by ischemic acute kidney injury in mice
Single-cell transcriptomics reveals common epithelial response patterns in human acute kidney injury, Genome Medicine
Cell-specific image-guided transcriptomics identifies complex injuries  caused by ischemic acute kidney injury in mice
IJMS, Free Full-Text
Cell-specific image-guided transcriptomics identifies complex injuries  caused by ischemic acute kidney injury in mice
Mouse Models of Acute Kidney Injury

© 2014-2024 fenasera.org.br. Inc. or its affiliates.