Spatial Dissection of Invasive Front from Tumor Mass Enables Discovery of Novel microRNA Drivers of Glioblastoma Invasion is a research paper published in Advanced Science (2021). On theSindex it has a DataRank of 0. It has been cited 33 times.
Scored on demand from live citation data
Linked data & code
DataRank reads this dataset's downstream impact straight off the citation graph — no black box, no proprietary weighting. How is this computed?
FAIR checklist signals are shown for context only and do not affect DataRank scoring.
We only score data papers we can read in full — never from an abstract alone.
National Natural Science Foundation of China
Grant: 8217112078
St. Baldrick's Foundation
Grant: 2532341503
Cancer Prevention and Research Institute of Texas
Grant: RP150032
National Institutes of Health
Grant: CA185402
National Science and Technology Resource Sharing Service Platform
Grant: YCAYPT[2020]06-1
Department of Defense (DoD)
Grant: W81XWH-20-1-0870
NCI NIH HHS
Grant: R01 CA185402
National Institutes of Health
Grant: 1R01CA185402-01
(PQD-5) Patient derived orthotopic xenograft models for drug response prediction
Innovation & Pilot (RIP) Funding Awards from Cincinnati Children's Research Foundation
The CancerFree KIDS Foundation Fund and Research
The CancerFree KIDS Foundation Fund and Research
Innovation & Pilot (RIP) Funding Awards from Cincinnati Children's Research Foundation
FWCI
2.44
Citation Percentile
0.9%
Influential Citations
1
Citation Trend
Fields of Study
MeSH Terms
Keywords
Sustainable Development Goals
Additional file 1 of A diagnostic circulating miRNA signature as orchestrator of cell invasion via TKS4/TKS5/EFHD2 modulation in human gliomas
Additional file 1 of A diagnostic circulating miRNA signature as orchestrator of cell invasion via TKS4/TKS5/EFHD2 modulation in human gliomas
Additional file 1 of Targeting GBM with an Oncolytic Picornavirus SVV-001 alone and in combination with fractionated Radiation in a Novel Panel of Orthotopic PDX models
Additional file 1 of Targeting GBM with an Oncolytic Picornavirus SVV-001 alone and in combination with fractionated Radiation in a Novel Panel of Orthotopic PDX models
Additional file 1 of KCNA1 promotes the growth and invasion of glioblastoma cells through ferroptosis inhibition via upregulating SLC7A11
Additional file 1 of KCNA1 promotes the growth and invasion of glioblastoma cells through ferroptosis inhibition via upregulating SLC7A11
Additional file 2 of KCNA1 promotes the growth and invasion of glioblastoma cells through ferroptosis inhibition via upregulating SLC7A11
Additional file 2 of KCNA1 promotes the growth and invasion of glioblastoma cells through ferroptosis inhibition via upregulating SLC7A11
Additional file 3 of KCNA1 promotes the growth and invasion of glioblastoma cells through ferroptosis inhibition via upregulating SLC7A11
Additional file 3 of KCNA1 promotes the growth and invasion of glioblastoma cells through ferroptosis inhibition via upregulating SLC7A11
Additional file 4 of KCNA1 promotes the growth and invasion of glioblastoma cells through ferroptosis inhibition via upregulating SLC7A11
Additional file 4 of KCNA1 promotes the growth and invasion of glioblastoma cells through ferroptosis inhibition via upregulating SLC7A11
Additional file 6 of KCNA1 promotes the growth and invasion of glioblastoma cells through ferroptosis inhibition via upregulating SLC7A11
Additional file 5 of KCNA1 promotes the growth and invasion of glioblastoma cells through ferroptosis inhibition via upregulating SLC7A11
Additional file 5 of KCNA1 promotes the growth and invasion of glioblastoma cells through ferroptosis inhibition via upregulating SLC7A11
Additional file 6 of KCNA1 promotes the growth and invasion of glioblastoma cells through ferroptosis inhibition via upregulating SLC7A11