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首页> 外文期刊>Future oncology >Future of convection-enhanced delivery in the treatment of brain tumors.
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Future of convection-enhanced delivery in the treatment of brain tumors.

机译:对流增强治疗脑肿瘤的未来。

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摘要

Gliomas are one of the most lethal forms of cancer. The poor prognosis associated with these malignant primary brain tumors treated with surgery, radiotherapy and chemotherapy has led researchers to develop new strategies for cure. Interstitial drug delivery has been the most appealing method for the treatment of primary brain tumors because it provides the most direct method of overcoming the barriers to tumor drug delivery. By administering therapeutic agents directly to the brain interstitium and, more specifically, to tumor-infiltrated parenchyma, one can overcome the elevated interstitial pressure produced by brain tumors. Convection-enhanced delivery (CED) has emerged as a leading investigational delivery technique for the treatment of brain tumors. Clinical trials utilizing these methods have been completed, with mixed results, and several more are being initiated. However, the potential efficacy of these drugs may be limited by ineffective tissue distribution. The development of computer models/algorithms to predict drug distribution, new catheter designs, and utilization of tracer models and nanocarriers have all laid the groundwork for the advancement of CED. In this review, we summarize the recent past of the clinical trials utilizing CED and discuss emerging technologies that will shape future CED trials.
机译:神经胶质瘤是最致命的癌症形式之一。与这些通过手术,放疗和化学疗法治疗的恶性原发性脑瘤相关的不良预后已导致研究人员开发出新的治疗策略。间质药物递送一直是治疗原发性脑肿瘤的最有吸引力的方法,因为它提供了克服肿瘤药物递送障碍的最直接方法。通过将治疗剂直接施用于脑间质,更具体地说,施用于肿瘤浸润的实质,可以克服由脑肿瘤产生的升高的组织压力。对流增强递送(CED)已成为治疗脑肿瘤的领先研究性递送技术。使用这些方法的临床试验已经完成,结果不一,并且正在启动更多试验。但是,这些药物的潜在疗效可能受到无效的组织分布的限制。预测药物分布的计算机模型/算法,新导管设计以及示踪剂模型和纳米载体的利用都为CED的发展奠定了基础。在这篇综述中,我们总结了利用CED进行临床试验的最新进展,并讨论了将影响未来CED试验的新兴技术。

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