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EGFRvIII vs. Control - xenograft glioblastomas
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创建时间:
2013-07-01
相关数据集
A novel neural stem cell-derived immunocompetent mouse model of glioblastoma for preclinical studies (WES)
Glioblastomas are the most lethal tumors affecting the central nervous system in adults. Simple and inexpensive syngeneic in vivo models that closely mirror human glioblastoma, including interactions
NIAID Data Ecosystem70
EGFRvIII vs. Control - xenograft glioblastomas
Glioblastoma cell lines were xenografted onto mice and resulting tumors were profiled by microarray. Xenograft recipient mice were NOD/SCID/gamma (NSG) male mice 3 months old. In this set, 6 total sam
NIAID Data Ecosystem40
Glioblastoma and Cerebral Organoids: Development and Analysis of in vitro Model for Glioblastoma Migration. Glioblastoma and Cerebral Organoids: Development and Analysis of in vitro Model for Glioblastoma Migration
It is currently challenging to adequately model the growth and migration of glioblastoma using 2D in vitro culture systems as they quickly lose the original, patient-specific identity and heterogeneit
NIAID Data Ecosystem30
Core pathway mutations induce de-differentiation of murine astrocytes into glioblastoma stem cells that are sensitive to radiation, but resistant to temozolomide (FAIRE-seq). Mus musculus
Introduction: Glioma stem cells isolated from human glioblastomas are resistant to radiation and cytotoxic chemotherapy and may drive tumor recurrence. Treatment efficacy may depend on the presence of
NIAID Data Ecosystem50
Establishment and Characterization of a Tumor Stem Cell-Based Glioblastoma Invasion Model
Aims Glioblastoma is the most frequent and malignant brain tumor. Recurrence is inevitable and most likely connected to tumor invasion and presence of therapy resistant stem-like tumor cells. The aim
NIAID Data Ecosystem30



