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载药纳米系统在多形性胶质母细胞瘤治疗中的应用:最新进展。

Drug Delivery Nanosystems in Glioblastoma Multiforme Treatment: Current State of the Art.

机构信息

School of Pharmaceutical Sciences, Sao Paulo State University (UNESP), Brazil.

School of Pharmaceutical Sciences of Ribeirao Preto, University of Sao Paulo (USP), Brazil.

出版信息

Curr Neuropharmacol. 2021;19(6):787-812. doi: 10.2174/1570159X18666200831160627.

Abstract

Glioblastoma multiforme (GBM) is the most common primary malignant Central Nervous System cancer, responsible for about 4% of all deaths associated with neoplasia, characterized as one of the fatal human cancers. Tumor resection does not possess curative character, thereby radio and/or chemotherapy are often necessary for the treatment of GBM. However, drugs used in GBM chemotherapy present some limitations, such as side effects associated with non-specific drug biodistribution as well as limited bioavailability, which limits their clinical use. To attenuate the systemic toxicity and overcome the poor bioavailability, a very attractive approach is drug encapsulation in drug delivery nanosystems. The main focus of this review is to explore the actual cancer global problem, enunciate barriers to overcome in the pharmacological treatment of GBM, as well as the most updated drug delivery nanosystems for GBM treatment and how they influence biopharmaceutical properties of anti-GBM drugs. The discussion will approach lipid-based and polymeric nanosystems, as well as inorganic nanoparticles, regarding their technical aspects as well as biological effects in GBM treatment. Furthermore, the current state of the art, challenges to overcome and future perspectives in GBM treatment will be discussed.

摘要

多形性胶质母细胞瘤(GBM)是最常见的原发性恶性中枢神经系统癌症,约占所有与肿瘤相关死亡的 4%,是人类致命癌症之一。肿瘤切除术不具有治愈特征,因此放射和/或化学疗法通常是 GBM 治疗的必要手段。然而,GBM 化疗中使用的药物存在一些局限性,例如与非特异性药物生物分布相关的副作用以及有限的生物利用度,这限制了它们的临床应用。为了减轻全身毒性并克服生物利用度低的问题,将药物封装在药物递送纳米系统中是一种非常有吸引力的方法。本综述的主要重点是探讨癌症这一全球性实际问题,阐明克服 GBM 药物治疗中障碍的方法,以及用于 GBM 治疗的最新药物递送纳米系统,以及它们如何影响抗 GBM 药物的生物制药特性。将讨论脂质和聚合物纳米系统以及无机纳米颗粒,涉及它们在 GBM 治疗中的技术方面和生物学效应。此外,还将讨论 GBM 治疗的现状、需要克服的挑战和未来展望。

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