Promotion of cholangiocarcinoma growth by diverse cancer-associated fibroblast subpopulations is a research paper published in Cancer Cell (2021). On theSindex it has a DataRank of 0.903. It has been cited 410 times.
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Base Score Contribution
0.903
From this paper's citation signal
Citation Network Contribution
0
Citation network not refreshed for this result
This paper's DataRank is currently driven only by its base citation score. Citation network data was not refreshed for this result.
Learn more about DataRank methodology →Fondation pour la Recherche Medicale
Grant: SPE20170336778
NIH
Grant: R35CA209896
NIH
Grant: R03DK101863
NIH
Grant: 5U54CA193417
NIH
Grant: S10 OD021764
NIH
Grant: S10 OD012351
NIH
Grant: R61NS109407
NIH
Grant: R35CA197745
NIH
Grant: P01CA87497
NIH
Grant: R01CA190606
NIH
Grant: P30CA013696
NIH
Grant: R01CA190844
NIH
Grant: P30DK026743
NIH
Grant: R01CA228483
NIH
Grant: P01CA233452
NIH
Grant: R01DK085252
University of California, San Francisco
Grant: P01CA117969
University of California, San Francisco
Grant: U01CA217858
DFG
Grant: FOR2314
DFG
Grant: SFB-TR209
US Department of Defense
Grant: CA150272P3
NCI NIH HHS
Grant: U54 CA193417
NIEHS NIH HHS
Grant: P30 ES013508
NCI NIH HHS
Grant: P01 CA087497
FWCI
57.74
Citation Percentile
1.0%
Citation Trend
Fields of Study
MeSH Terms
Keywords
Sustainable Development Goals
Additional file 1 of Single-cell transcriptomic analysis reveals a novel cell state and switching genes during hepatic stellate cell activation in vitro
Additional file 1 of Single-cell transcriptomic analysis reveals a novel cell state and switching genes during hepatic stellate cell activation in vitro
Additional file 2 of Single-cell transcriptomic analysis reveals a novel cell state and switching genes during hepatic stellate cell activation in vitro
Additional file 2 of Single-cell transcriptomic analysis reveals a novel cell state and switching genes during hepatic stellate cell activation in vitro
Additional file 3 of Single-cell transcriptomic analysis reveals a novel cell state and switching genes during hepatic stellate cell activation in vitro
Additional file 3 of Single-cell transcriptomic analysis reveals a novel cell state and switching genes during hepatic stellate cell activation in vitro
Additional file 4 of Knockout of secretin ameliorates biliary and liver phenotypes during alcohol-induced hepatotoxicity
Additional file 5 of Knockout of secretin ameliorates biliary and liver phenotypes during alcohol-induced hepatotoxicity
Additional file 5 of Knockout of secretin ameliorates biliary and liver phenotypes during alcohol-induced hepatotoxicity
Additional file 6 of Knockout of secretin ameliorates biliary and liver phenotypes during alcohol-induced hepatotoxicity
Additional file 6 of Knockout of secretin ameliorates biliary and liver phenotypes during alcohol-induced hepatotoxicity
Additional file 1 of Revealing the crosstalk between LOX+ fibroblast and M2 macrophage in gastric cancer by single-cell sequencing
Additional file 1 of Revealing the crosstalk between LOX+ fibroblast and M2 macrophage in gastric cancer by single-cell sequencing
Additional file 1 of Knockout of secretin ameliorates biliary and liver phenotypes during alcohol-induced hepatotoxicity
Additional file 3 of Knockout of secretin ameliorates biliary and liver phenotypes during alcohol-induced hepatotoxicity
Additional file 1 of Knockout of secretin ameliorates biliary and liver phenotypes during alcohol-induced hepatotoxicity
Additional file 4 of Knockout of secretin ameliorates biliary and liver phenotypes during alcohol-induced hepatotoxicity
Additional file 3 of Knockout of secretin ameliorates biliary and liver phenotypes during alcohol-induced hepatotoxicity
Additional file 2 of Knockout of secretin ameliorates biliary and liver phenotypes during alcohol-induced hepatotoxicity
Additional file 2 of Knockout of secretin ameliorates biliary and liver phenotypes during alcohol-induced hepatotoxicity