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Convection-enhanced Delivery of Therapeutics for Malignant Gliomas

机译:对流增强恶性胶质瘤的治疗方法

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Convection-enhanced delivery (CED) circumvents the blood–brain barrier by delivering agents directly into the tumor and surrounding parenchyma. CED can achieve large volumes of distribution by continuous positive-pressure infusion. Although promising as an effective drug delivery method in concept, the administration of therapeutic agents via CED is not without challenges. Limitations of distribution remain a problem in large brains, such as those of humans. Accurate and consistent delivery of an agent is another challenge associated with CED. Similar to the difficulties caused by immunosuppressive environments associated with gliomas, there are several mechanisms that make effective local drug distribution difficult in malignant gliomas. In this review, methods for local drug application targeting gliomas are discussed with special emphasis on CED. Although early clinical trials have failed to demonstrate the efficacy of CED against gliomas, CED potentially can be a platform for translating the molecular understanding of glioblastomas achieved in the laboratory into effective clinical treatments. Several clinical studies using CED of chemotherapeutic agents are ongoing. Successful delivery of effective agents should prove the efficacy of CED in the near future.
机译:对流增强输送(CED)通过将药物直接输送到肿瘤和周围的薄壁组织中来绕开血脑屏障。 CED可通过连续正压输注获得大量分配。尽管在概念上有望作为一种有效的药物递送方法,但通过CED进行治疗剂的给药并非没有挑战。分布的局限性在诸如人的大脑中仍然是一个问题。准确,一致地输送药剂是与CED相关的另一个挑战。与与神经胶质瘤相关的免疫抑制环境所造成的困难类似,有多种机制使恶性神经胶质瘤中难以有效地进行局部药物分配。在这篇综述中,讨论了针对神经胶质瘤的局部药物应用方法,其中特别强调了CED。尽管早期的临床试验未能证明CED对神经胶质瘤的疗效,但CED可能会成为将实验室对胶质母细胞瘤的分子理解转化为有效临床治疗的平台。正在进行使用CED的化学治疗剂的一些临床研究。成功交付有效药物应在不久的将来证明CED的功效。

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