Specific in situ inflammatory states associate with progression to renal failure in lupus nephritis is a research paper published in Journal of Clinical Investigation (2022). On theSindex it has a DataRank of 0. It has been cited 71 times.
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NIH Autoimmunity Centers of Excellence
Grant: AI082724
Department of Defense
Grant: LRI180083
Alliance for Lupus Research
Grant: none
NIH
Grant: S10-OD025081,S10-RR021039,P30-CA14599
NCI NIH HHS
Grant: P30 CA014599
NIH HHS
Grant: S10 OD025081
NIAID NIH HHS
Grant: U19 AI082724
NCRR NIH HHS
Grant: S10 RR021039
National Institutes of Health
Grant: 1S10RR021039-01A2
High-Performance Computer Cluster for Image Analysis
National Institutes of Health
Grant: 3P30CA014599-36S1
Cancer Center Support Grant
National Institutes of Health
Grant: 1S10OD025081-01
Protected Radiomics Analysis Commons for Deep Learning in Biomedical Discovery
FWCI
10.59
Citation Percentile
1.0%
Citation Trend
Fields of Study
MeSH Terms
Keywords
Sustainable Development Goals
Additional file 1 of Anthocyanin improves kidney function in diabetic kidney disease by regulating amino acid metabolism
Additional file 1 of Anthocyanin improves kidney function in diabetic kidney disease by regulating amino acid metabolism
Additional file 1 of DNA methylation and whole-genome transcription analysis in CD4+ T cells from systemic lupus erythematosus patients with or without renal damage
Additional file 1 of DNA methylation and whole-genome transcription analysis in CD4+ T cells from systemic lupus erythematosus patients with or without renal damage
Additional file 4 of DNA methylation and whole-genome transcription analysis in CD4+ T cells from systemic lupus erythematosus patients with or without renal damage
Additional file 3 of DNA methylation and whole-genome transcription analysis in CD4+ T cells from systemic lupus erythematosus patients with or without renal damage
Additional file 3 of DNA methylation and whole-genome transcription analysis in CD4+ T cells from systemic lupus erythematosus patients with or without renal damage
Additional file 4 of DNA methylation and whole-genome transcription analysis in CD4+ T cells from systemic lupus erythematosus patients with or without renal damage
Additional file 5 of DNA methylation and whole-genome transcription analysis in CD4+ T cells from systemic lupus erythematosus patients with or without renal damage
Additional file 2 of DNA methylation and whole-genome transcription analysis in CD4+ T cells from systemic lupus erythematosus patients with or without renal damage
Additional file 2 of DNA methylation and whole-genome transcription analysis in CD4+ T cells from systemic lupus erythematosus patients with or without renal damage
Additional file 5 of DNA methylation and whole-genome transcription analysis in CD4+ T cells from systemic lupus erythematosus patients with or without renal damage
Additional file 2 of Anthocyanin improves kidney function in diabetic kidney disease by regulating amino acid metabolism
Additional file 3 of Anthocyanin improves kidney function in diabetic kidney disease by regulating amino acid metabolism
Additional file 2 of Anthocyanin improves kidney function in diabetic kidney disease by regulating amino acid metabolism
Additional file 4 of Anthocyanin improves kidney function in diabetic kidney disease by regulating amino acid metabolism
Additional file 3 of Anthocyanin improves kidney function in diabetic kidney disease by regulating amino acid metabolism
Additional file 4 of Anthocyanin improves kidney function in diabetic kidney disease by regulating amino acid metabolism
Additional file 5 of Anthocyanin improves kidney function in diabetic kidney disease by regulating amino acid metabolism
Additional file 5 of Anthocyanin improves kidney function in diabetic kidney disease by regulating amino acid metabolism