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用于治疗脑部疾病的多功能纳米医学策略。

Multifunctional nanomedicine strategies to manage brain diseases.

作者信息

Faria Paulo, Pacheco Catarina, Moura Rui Pedro, Sarmento Bruno, Martins Cláudia

机构信息

I3S-Instituto de Investigação e Inovação em Saúde, Universidade Do Porto, Rua Alfredo Allen 208, 4200-135, Porto, Portugal.

INEB-Instituto de Engenharia Biomédica, Universidade Do Porto, Rua Alfredo Allen 208, 4200-135, Porto, Portugal.

出版信息

Drug Deliv Transl Res. 2023 May;13(5):1322-1342. doi: 10.1007/s13346-022-01256-w. Epub 2022 Nov 7.

Abstract

Brain diseases represent a substantial social and economic burden, currently affecting one in six individuals worldwide. Brain research has been focus of great attention in order to unravel the pathogenesis and complexity of brain diseases at the cellular, molecular, and microenvironmental levels. Due to the intrinsic nature of the brain, the presence of the highly restrictive blood-brain barrier (BBB), and the pathophysiology of most diseases, therapies can hardly be considered successful purely by the administration of one drug to a patient. Apart from improving pharmacokinetic parameters, tailoring biodistribution, and reducing the number of side effects, nanomedicines are able to actively co-target the therapeutics to the brain parenchyma and brain lesions, as well as to achieve the delivery of multiple cargos with therapeutic, diagnostic, and theranostic properties. Among other multivalent effects that can be personalized according to the disease needs, this represents a promising class of novel nanosystems, termed multifunctional nanomedicines. Herein, we review the principal mechanisms of therapeutic resistance of the most prevalent brain diseases, how to overcome this therapeutic resistance through the use of multifunctional nanomedicines that tackle multiple fronts of the disease microenvironment, and the promising therapeutic responses achieved by some of the most cutting-edge multifunctional nanomedicines reported in literature.

摘要

脑部疾病构成了巨大的社会和经济负担,目前全球每六个人中就有一人受其影响。为了在细胞、分子和微环境层面阐明脑部疾病的发病机制和复杂性,脑研究一直是备受关注的焦点。由于大脑的内在特性、高度限制性血脑屏障(BBB)的存在以及大多数疾病的病理生理学,仅通过给患者施用一种药物很难认为治疗是成功的。除了改善药代动力学参数、调整生物分布和减少副作用外,纳米药物还能够将治疗剂主动共同靶向脑实质和脑损伤部位,以及实现具有治疗、诊断和治疗诊断特性的多种药物的递送。在可以根据疾病需求进行个性化的其他多价效应中,这代表了一类有前途的新型纳米系统,称为多功能纳米药物。在此,我们综述了最常见脑部疾病的主要治疗耐药机制,如何通过使用应对疾病微环境多个方面的多功能纳米药物来克服这种治疗耐药性,以及文献中报道的一些最前沿的多功能纳米药物所取得的有前景的治疗反应。

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