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A novel and generalizable organotypic slice platform to evaluate stem cell potential for targeting pediatric brain tumors

机译:一种新颖且可推广的器官切片平台用于评估干细胞靶向小儿脑肿瘤的潜力

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摘要

Brain tumors are now the leading cause of cancer-related deaths in children under age 15. Malignant gliomas are, for all practical purposes, incurable and new therapeutic approaches are desperately needed. One emerging strategy is to use the tumor tracking capacity inherent in many stem cell populations to deliver therapeutic agents to the brain cancer cells. Current limitations of the stem cell therapy strategy include that stem cells are treated as a single entity and lack of uniform technology is adopted for selection of clinically relevant sub-populations of stem cells. Specifically, therapeutic success relies on the selection of a clinically competent stem cell population based on their capacity of targeting brain tumors. A novel and generalizable organotypic slice platform to evaluate stem cell potential for targeting pediatric brain tumors is proposed to fill the gap in the current work flow of stem cell-based therapy. The organotypic slice platform has advantages of being mimic in vivo model, easier to manipulate to optimize parameters than in vivo models such as rodents and primates. This model serves as a framework to address the discrepancy between anticipated in vivo results and actual in vivo results, a critical barrier to timely progress in the field of the use of stem cells for the treatment of neurological disorders.
机译:现在,脑肿瘤是15岁以下儿童与癌症有关的死亡的主要原因,从所有实际目的出发,恶性神经胶质瘤是无法治愈的,迫切需要新的治疗方法。一种新兴的策略是利用许多干细胞群体固有的肿瘤追踪能力将治疗剂递送至脑癌细胞。干细胞治疗策略的当前局限性包括将干细胞视为一个整体,缺乏统一的技术来选择临床相关的干细胞亚群。具体而言,治疗成功取决于根据其靶向脑肿瘤的能力选择具有临床能力的干细胞群体。提出了一种新颖且可推广的器官切片平台来评估针对小儿脑肿瘤的干细胞潜能,以填补当前基于干细胞疗法的工作流程中的空白。有机型切片平台具有模仿体内模型的优势,比诸如啮齿动物和灵长类动物等体内模型更易于操纵以优化参数。该模型用作解决预期的体内结果与实际体内结果之间差异的框架,这是在使用干细胞治疗神经系统疾病领域及时进展的关键障碍。

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