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Data from Survival and Proliferation of Neural Progenitor–Derived Glioblastomas Under Hypoxic Stress is Controlled by a CXCL12/CXCR4 Autocrine-Positive Feedback Mechanism

作者:Anda‐Alexandra Calinescu, Viveka Nand Yadav, Erica Carballo, Padma Kadiyala, Dustin Tran, Daniel B. Zamler, Robert Doherty, Maithreyi Srikanth, Pedro R. Löwenstein, María G. Castro · 年份:2023 · DOI:10.1158/1078-0432.c.6526232.v1 · 研究领域:Glioma Diagnosis and Treatment、interferon and immune responses、Cancer, Hypoxia, and Metabolism

<div>Abstract<p><b>Purpose:</b> One likely cause of treatment failure in glioblastoma is the persistence of glioma stem-like cells (GSLCs) which are highly resistant to therapies currently employed. We found that CXCL12 has highest expression in glioma cells derived from neural progenitor cells (NPC). The development and molecular signature of NPC-derived glioblastomas were analyzed and the therapeutic effect of blocking CXCL12 was tested.</p><p><b>Experimental Design:</b> Tumors were induced by injecting DNA into the lateral ventricle of neonatal mice, using the Sleeping Beauty transposase method. Histology and expression of GSLC markers were analyzed during disease progression. Survival upon treatment with pharmacologic (plerixafor) or genetic inhibition of CXCR4 was analyzed. Primary neurospheres were generated and analyzed for proliferation, apoptosis, and expression of proteins regulating survival and cell-cycle progression.</p><p><b>Results:</b> Tumors induced from NPCs display histologic features of human glioblastoma and express markers of GSLC. <i>In vivo</i>, inhibiting the CXCL12/CXCR4 signaling axis results in increased survival of tumor-bearing animals. <i>In vitro</i>, CXCR4 blockade induces apoptosis and inhibits cell-cycle progression, downregulates molecules regulating survival and proliferation, and also blocks the hypoxic induction of HIF-1α and CXCL12. Exogenous...