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Hydrogel-Based Drug Delivery Nanosystems for the Treatment of Brain Tumors

机译:基于水凝胶的药物输送纳米系统治疗脑肿瘤

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摘要

Chemotherapy is commonly associated with limited effectiveness and unwanted side effects in normal cells and tissues, due to the lack of specificity of therapeutic agents to cancer cells when systemically administered. In brain tumors, the existence of both physiological barriers that protect tumor cells and complex resistance mechanisms to anticancer drugs are additional obstacles that hamper a successful course of chemotherapy, thus resulting in high treatment failure rates. Several potential surrogate therapies have been developed so far. In this context, hydrogel-based systems incorporating nanostructured drug delivery systems (DDS) and hydrogel nanoparticles, also denoted nanogels, have arisen as a more effective and safer strategy than conventional chemotherapeutic regimens. The former, as a local delivery approach, have the ability to confine the release of anticancer drugs near tumor cells over a long period of time, without compromising healthy cells and tissues. Yet, the latter may be systemically administered and provide both loading and targeting properties in their own framework, thus identifying and efficiently killing tumor cells. Overall, this review focuses on the application of hydrogel matrices containing nanostructured DDS and hydrogel nanoparticles as potential and promising strategies for the treatment and diagnosis of glioblastoma and other types of brain cancer. Some aspects pertaining to computational studies are finally addressed.
机译:由于全身给药时治疗剂对癌细胞的特异性不足,化学疗法通常与正常细胞和组织中有限的功效和不良副作用有关。在脑肿瘤中,保护肿瘤细胞的生理屏障和对抗癌药物的复杂耐药机制均是阻碍化学疗法成功进行的其他障碍,从而导致治疗失败率较高。迄今为止,已经开发了几种潜在的替代疗法。在这种情况下,基于水凝胶的系统结合了纳米结构的药物递送系统(DDS)和水凝胶纳米颗粒(也称为纳米凝胶)已经成为一种比常规化疗方案更有效,更安全的策略。前者作为一种局部递送方法,具有将抗癌药长时间限制在肿瘤细胞附近释放的能力,而不会损害健康的细胞和组织。然而,后者可以被系统地施用,并在其自身的框架中提供负载和靶向特性,从而鉴定并有效杀死肿瘤细胞。总体而言,本文的重点是将含有纳米结构DDS和水凝胶纳米颗粒的水凝胶基质作为胶质母细胞瘤和其他类型脑癌的治疗和诊断的潜在和有希望的策略。最后涉及与计算研究有关的一些方面。

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