溶瘤病毒
溶瘤腺病毒
胶质瘤
间充质干细胞
癌症研究
血管生成
全身给药
腺病毒科
遗传增强
内皮抑素
溶癌病毒
医学
体内
生物
免疫学
病理
生物技术
基因
肿瘤细胞
生物化学
作者
Junhe Zhang,Hao Chen,Chen Chen,Haimeng Liu,Yurou He,Junli Zhao,Peiyan Yang,Qinwen Mao,Haibin Xia
标识
DOI:10.1016/j.canlet.2021.03.027
摘要
Oncolytic adenovirus-mediated gene therapy shows promise for cancer treatment; however, the systemic delivery of oncolytic adenovirus to tumors remains challenging. Recently, mesenchymal stem cells (MSCs) have emerged as potential vehicles for improving delivery. Yet, because the oncolytic adenovirus replicates in MSCs, balancing MSC viability with viral load is key to achieving optimal therapeutic effect. We thus developed an all-in-one Tet-on system that can regulate replication of oncolytic adenovirus. Then, we loaded the novel oncolytic adenovirus carrying interleukin (IL)-24 and/or Endostatin in human umbilical cord blood-mesenchymal stem cells (hUCB-MSCs) for glioma therapy. In vitro assays demonstrated that this novel oncolytic adenovirus could efficiently replicate and kill glioma cells while sparing normal cells. Moreover, doxycycline effectively regulated oncolytic adenovirus replication in the hUCB-MSCs. The doxycycline induction group with dual expression of IL-24 and Endostatin exhibited significantly greater antitumor effects than other groups in a xenograft model of glioma. Thus, this strategy for systemic delivery of oncolytic adenovirus with its oncolytic activity controlled by a Tet-on system is a promising method for achieving antitumor efficacy in glioma, especially for metastatic tumors.
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