Cancer Biology seminars
March 2023
Aging promotes reactivation from metastatic melanoma dormancy
Mitchell Fane· Fox Chase Cancer Center
Thu, Mar 30 · 05:30 UTC
How does the primary tumor imprint a dormancy signature in disseminated tumor cells?
Lucia Borriello· Lewis Katz School of Medicine and Fox Chase Cancer Center
Thu, Mar 30 · 05:00 UTC
CD8+ T cell activation in cancer comprises an initial activation phase in lymph nodes followed by effector differentiation within the tumor
Nataliya Prokhnevska· MSKCC
Thu, Mar 23 · 07:00 UTC
February 2023
Effect of the intratumoral microbiota on spatial and cellular heterogeneity in cancer
Jorge L. Galeano Niño· Fred Hutchinson Cancer Research Center
Thu, Feb 16 · 06:00 UTC
Metastatic recurrence in colorectal cancer arises from residual EMP1+ cells
Adrià Cañellas-Socias· BIST
Thu, Feb 9 · 06:00 UTC
PHGDH heterogeneity potentiates cancer cell dissemination and metastasis
Patricia Altea Manzano· VIB-KU Leuven Center for Cancer Biology
Thu, Feb 9 · 06:00 UTC
November 2021
Retinoblastoma: Canadian global leadership
Brenda Gallie· Hospital for Sick Children, Alberta Children’s Hospital, Techna Institute and Krembil Research Institute, University Health Network, Departments Ophthalmology, Medical Biophysics, Molecular Genetics, University of Toronto.
Tue, Nov 16 · 05:00 UTC
January 2021
Brain cancer and the single-cell architecture of human brain development
Sten Linnarsson· Karolinska Institutet
Thu, Jan 28 · 17:00 UTC
October 2020
From axon navigation to neuroblastoma disease : the two faces of axon guidance genes
Valérie Castellani· University of Lyon
Thu, Oct 8 · 17:00 UTC
Sparks, flames, and inferno: epileptogenesis in the glioblastoma microenvironment
Jeff Noebels· Baylor College of Medicine
Wed, Oct 7 · 16:00 UTC
Glioblastoma cells trigger pharmacoresistant seizures that may promote tumor growth and diminish the quality of remaining life. To define the relationship between growth of glial tumors and their neuronal microenvironment, and to identify genomic biomarkers and mechanisms that may point to better prognosis and treatment of drug resistant epilepsy in brain cancer, we are analyzing a new generation of genetically defined CRISPR/in utero electroporation inborn glioblastoma (GBM) tumor models engineered in mice. The molecular pathophysiology of glioblastoma cells and surrounding neurons and untransformed astrocytes are compared at serial stages of tumor development. Initial studies reveal that epileptiform EEG spiking is a very early and reliable preclinical signature of GBM expansion in these mice, followed by rapidly progressive seizures and death within weeks. FACS-sorted transcriptomic analysis of cortical astrocytes reveals the expansion of a subgroup enriched in pro-synaptogenic genes that may drive hyperexcitability, a novel mechanism of epileptogenesis. Using a prototypical GBM IUE model, we systematically define and correlate the earliest appearance of cortical hyperexcitability with progressive cortical tumor cell invasion, including spontaneous episodes of spreading cortical depolarization, innate inflammation, and xCT upregulation in the peritumoral microenvironment. Blocking this glutamate exporter reduces seizure load. We show that the host genome contributes to seizure risk by generating tumors in a monogenic deletion strain (MapT/tau -/-) that raises cortical seizure threshold. We also show that the tumor variant profile determines epilepsy risk. Our genetic dissection approach sets the stage to broadly explore the developmental biology of personalized tumor/host interactions in mice engineered with novel human tumor mutations in specified glial cell lineages.
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