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基于聚合物的纳米药物治疗脑癌的疗效

Efficacy of Polymer-Based Nanomedicine for the Treatment of Brain Cancer.

作者信息

Naki Tobeka, Aderibigbe Blessing A

机构信息

Department of Chemistry, University of Fort Hare, Alice Campus, Eastern Cape 5700, South Africa.

出版信息

Pharmaceutics. 2022 May 13;14(5):1048. doi: 10.3390/pharmaceutics14051048.

Abstract

Malignant brain tumor is a life-threatening disease with a low survival rate. The therapies available for the treatment of brain tumor is limited by poor uptake via the blood-brain barrier. The challenges with the chemotherapeutics used for the treatment of brain tumors are poor distribution, drug toxicity, and their inability to pass via the blood-brain barrier, etc. Several researchers have investigated the potential of nanomedicines for the treatment of brain cancer. Nanomedicines are designed with nanosize particle sizes with a large surface area and are loaded with bioactive agents via encapsulation, immersion, conjugation, etc. Some nanomedicines have been approved for clinical use. The most crucial part of nanomedicine is that they promote drug delivery across the blood-brain barrier, display excellent specificity, reduce drug toxicity, enhance drug bioavailability, and promote targeted drug release mechanisms. The aforementioned features make them promising therapeutics for brain targeting. This review reports the in vitro and in vivo results of nanomedicines designed for the treatment of brain cancers.

摘要

恶性脑肿瘤是一种威胁生命的疾病,生存率较低。用于治疗脑肿瘤的现有疗法受到血脑屏障摄取不良的限制。用于治疗脑肿瘤的化疗药物面临的挑战包括分布不佳、药物毒性以及无法通过血脑屏障等。几位研究人员已经研究了纳米药物治疗脑癌的潜力。纳米药物设计为具有大表面积的纳米尺寸颗粒,并通过包封、浸渍、缀合等方式负载生物活性剂。一些纳米药物已被批准用于临床。纳米药物最关键的部分在于它们促进药物穿过血脑屏障,具有出色的特异性,降低药物毒性,提高药物生物利用度,并促进靶向药物释放机制。上述特性使其成为有前景的脑靶向治疗药物。本综述报告了用于治疗脑癌的纳米药物的体外和体内研究结果。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f510/9145018/574a5f38632c/pharmaceutics-14-01048-g001.jpg

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