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Systemic Delivery of Fusogenic Membrane Glycoprotein-expressing Neural Stem Cells to Selectively Kill Tumor Cells

机译:表达融合膜糖蛋白的神经干细胞的系统传递以选择性杀死肿瘤细胞。

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摘要

Intravenously injected neural stem cells (NSCs) can infiltrate both primary and metastatic tumor sites; thus, they are attractive tumor-targeting vehicles for delivering anticancer agents. However, because the systemic distribution of the injected NSCs involves normal organs and might induce off-target actions leading to unintended side effects, clinical applications of this approach is impeded. Given that the vesicular stomatitis virus glycoprotein (VSV-G) can promote the formation of multinucleated syncytia to kill cells in a pH-dependent manner, we engineered a pH sensor of VSV-G and generated a novel VSV-G mutant that efficiently promotes syncytium formation at the tumor extracellular pH (pHe) but not at pH 7.4. Using transduced NSCs derived from induced pluripotent stem cells (iPSCs), the VSV-G mutant was delivered into mice with metastatic breast cancers in the lung through tail vein injection. Compared with the conventional stem cell-based gene therapy that uses the herpes simplex virus thymidine kinase (HSVtk) suicide gene, this treatment did not display toxicity to normal non-targeted organs while retaining therapeutic effects in tumor-bearing organs. Our findings demonstrate the effectiveness of a new approach for achieving tumor-selective killing effects following systemic stem cell administration. Its potential in stem cell-based gene therapy for metastatic cancer is worthy of further exploration.
机译:静脉注射的神经干细胞(NSC)可以浸润原发性和转移性肿瘤部位。因此,它们是用于递送抗癌剂的有吸引力的靶向肿瘤的载体。但是,由于注射的NSC的全身分布涉及正常器官,并且可能诱发脱靶作用,从而导致意外的副作用,因此该方法的临床应用受到了阻碍。鉴于水泡性口炎病毒糖蛋白(VSV-G)可以促进多核合胞体的形成,从而以pH依赖性方式杀死细胞,我们设计了VSV-G的pH传感器,并产生了可有效促进合胞体的新型VSV-G突变体在肿瘤细胞外pH(pHe)下形成,但在pH 7.4下不形成。使用衍生自诱导性多能干细胞(iPSC)的转导NSC,通过尾静脉注射将VSV-G突变体转移到肺部转移性乳腺癌小鼠中。与使用单纯疱疹病毒胸苷激酶(HSVtk)自杀基因的传统基于干细胞的基因疗法相比,该疗法对正常的非靶向器官没有毒性,同时还能保持荷瘤器官的治疗效果。我们的发现证明了在全身性干细胞给药后实现肿瘤选择性杀伤作用的新方法的有效性。其在基于干细胞的基因治疗转移性癌症中的潜力值得进一步探索。

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