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药物纳米晶体:从治疗应用到诊断应用,聚焦脑递送

Drug Nanocrystals: Focus on Brain Delivery from Therapeutic to Diagnostic Applications.

作者信息

Zingale Elide, Bonaccorso Angela, Carbone Claudia, Musumeci Teresa, Pignatello Rosario

机构信息

Laboratory of Drug Delivery Technology, Department of Drug and Health Sciences, University of Catania, Viale A. Doria 6, 95125 Catania, Italy.

NANO-i-Research Centre on Ocular Nanotechnology, University of Catania, 95125 Catania, Italy.

出版信息

Pharmaceutics. 2022 Mar 23;14(4):691. doi: 10.3390/pharmaceutics14040691.

Abstract

The development of new drugs is often hindered by low solubility in water, a problem common to nearly 90% of natural and/or synthetic molecules in the discovery pipeline. Nanocrystalline drug technology involves the reduction in the bulk particle size down to the nanosize range, thus modifying its physico-chemical properties with beneficial effects on drug bioavailability. Nanocrystals (NCs) are carrier-free drug particles surrounded by a stabilizer and suspended in an aqueous medium. Due to high drug loading, NCs maintain a potent therapeutic concentration to produce desirable pharmacological action, particularly useful in the treatment of central nervous system (CNS) diseases. In addition to the therapeutic purpose, NC technology can be applied for diagnostic scope. This review aims to provide an overview of NC application by different administration routes, especially focusing on brain targeting, and with a particular attention to therapeutic and diagnostic fields. NC therapeutic applications are analyzed for the most common CNS pathologies (i.e., Parkinson's disease, psychosis, Alzheimer's disease, etc.). Recently, a growing interest has emerged from the use of colloidal fluorescent NCs for brain diagnostics. Therefore, the use of NCs in the imaging of brain vessels and tumor cells is also discussed. Finally, the clinical effectiveness of NCs is leading to an increasing number of FDA-approved products, among which the NCs approved for neurological disorders have increased.

摘要

新药的研发常常受到水溶性低的阻碍,这是处于研发阶段的近90%的天然和/或合成分子所共有的问题。纳米晶药物技术涉及将颗粒尺寸减小至纳米范围,从而改变其物理化学性质,对药物生物利用度产生有益影响。纳米晶体(NCs)是无载体的药物颗粒,被稳定剂包围并悬浮在水性介质中。由于药物载量高,NCs能维持有效的治疗浓度以产生理想的药理作用,在治疗中枢神经系统(CNS)疾病方面特别有用。除了治疗目的,NC技术还可应用于诊断领域。本综述旨在概述NCs通过不同给药途径的应用,尤其侧重于脑靶向,并特别关注治疗和诊断领域。分析了NCs在最常见的CNS疾病(即帕金森病、精神病、阿尔茨海默病等)中的治疗应用。最近,人们对使用胶体荧光NCs进行脑诊断的兴趣日益浓厚。因此,还讨论了NCs在脑血管和肿瘤细胞成像中的应用。最后,NCs的临床有效性导致FDA批准的产品数量不断增加,其中批准用于神经系统疾病的NCs有所增加。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/76af/9024479/42dcef6ed9f5/pharmaceutics-14-00691-g001.jpg

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