Loading...
Keywords
Last Name
Institution

Search Results (28)

Click the Why column to see why an item matched the search.

MatchTypeWhy
Gene Knockdown TechniquesConcept Why?
Park, TaejuPerson Why?
CXCR4 increases in-vivo glioma perivascular invasion, and reduces radiation induced apoptosis: A genetic knockdown study.Academic Article Why?
Knockdown of ERp57 increases BiP/GRP78 induction and protects against hyperoxia and tunicamycin-induced apoptosis.Academic Article Why?
Yadav, VivekanandPerson Why?
"Requirement of CT10 regulator of kinase (Crk) and Crk-like (CrkL) in glioblastoma growth"Grant Why?
Iwakuma, TomooPerson Why?
Mesenchyme Homeobox 2 Enhances Migration of Endothelial Colony Forming Cells Exposed to Intrauterine Diabetes Mellitus.Academic Article Why?
Quantitative assessment of glioblastoma phenotypes in?vitro establishes cell migration as a robust readout of Crk and CrkL activity.Academic Article Why?
16p11.2 transcription factor MAZ is a dosage-sensitive regulator of genitourinary development.Academic Article Why?
DNAJA1 promotes cancer metastasis through interaction with mutant p53.Academic Article Why?
Fibroblast Growth Requires CT10 Regulator of Kinase (Crk) and Crk-like (CrkL).Academic Article Why?
Neural crest migration is driven by a few trailblazer cells with a unique molecular signature narrowly confined to the invasive front.Academic Article Why?
Radiation pharmacogenomics: a genome-wide association approach to identify radiation response biomarkers using human lymphoblastoid cell lines.Academic Article Why?
Suppression of pancreatic cancer growth and metastasis by HMP19 identified through genome-wide shRNA screen.Academic Article Why?
Per Page    Page  of 2last Nextnext
Prev
Search Criteria
  • Gene Knockdown
Filter by Type