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Therapeutically engineered induced neural stem cells are tumour-homing and inhibit progression of glioblastoma

机译:经过治疗工程改造的诱导神经干细胞具有肿瘤归巢性并抑制胶质母细胞瘤的进展

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摘要

Transdifferentiation (TD) is a recent advancement in somatic cell reprogramming. The direct conversion of TD eliminates the pluripotent intermediate state to create cells that are ideal for personalized cell therapy. Here we provide evidence that TD-derived induced neural stem cells (iNSCs) are an efficacious therapeutic strategy for brain cancer. We find that iNSCs genetically engineered with optical reporters and tumouricidal gene products retain the capacity to differentiate and induced apoptosis in co-cultured human glioblastoma cells. Time-lapse imaging shows that iNSCs are tumouritropic, homing rapidly to co-cultured glioblastoma cells and migrating extensively to distant tumour foci in the murine brain. Multimodality imaging reveals that iNSC delivery of the anticancer molecule TRAIL decreases the growth of established solid and diffuse patient-derived orthotopic glioblastoma xenografts 230- and 20-fold, respectively, while significantly prolonging the median mouse survival. These findings establish a strategy for creating autologous cell-based therapies to treat patients with aggressive forms of brain cancer.
机译:转分化(TD)是体细胞重编程的最新进展。 TD的直接转化消除了多能中间状态,从而创建了理想的个性化细胞疗法细胞。在这里,我们提供的证据表明,TD诱导的神经干细胞(iNSCs)是脑癌的有效治疗策略。我们发现,用光学报道基因和杀肿瘤基因产品进行基因工程改造的iNSCs保留了在共培养的人胶质母细胞瘤细胞中分化和诱导凋亡的能力。延时成像显示,iNSCs具有趋尿性,迅速归巢于共培养的胶质母细胞瘤细胞,并广泛迁移至鼠脑中的远处肿瘤灶。多模态成像显示,iNSC递送抗癌分子TRAIL分别降低了已建立的固体和弥漫性患者源性原位胶质母细胞瘤异种移植物的生长230倍和20倍,同时显着延长了中位小鼠的存活率。这些发现为建立基于自体细胞的疗法来治疗患有侵略性脑癌的患者提供了一种策略。

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