Single-cell multi-omic and spatial profiling of human kidneys implicates the fibrotic microenvironment in kidney disease progression
University of Pennsylvania · Charité - Universitätsmedizin Berlin · +5 more institutions
Indexed incrossrefpubmed
Abstract
No abstract available for this paper.
Citation impact
134
total citations
- FWCI
- 28.07
- Percentile
- 100%
- References
- 69
Citations per year
Authors
30Topics & keywords
Topics
Keywords
- Biology
- Profiling (computer programming)
- Kidney disease
- Disease
- Computational biology
- Cell
- Kidney
- Human disease
UN Sustainable Development Goals
- Good health and well-being
No related works found for this paper.
Funding
- UOUniversity of PennsylvaniaAward: P30-DK19525
- RPRegeneron Pharmaceuticals
- DFDeutsche ForschungsgemeinschaftAward: BA 6205/2-1
- NNNovo Nordisk
- KGKarl-Franzens-Universität Graz
- MUMedizinische Universität Graz
- BIBerlin Institute of Health
- NINational Institutes of HealthAwards: DK132630, P50DK114786, DK105821, DK087635, DK19525, P30-DK19525, DK050306, DK076077, P30-DK050306