Nanotechnology Based Delivery Systems of Drugs Currently Used to Treat Alzheimer’s Disease

Q3 Engineering
Niloufar Choubdar and Sara Avizheh
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引用次数: 4

Abstract

Alzheimer’s Disease (AD) is one of the most common forms of dementia affecting over 46 million people, according to AD International. Over the past few decades, there has been considerable interest in developing nanomedicines. Using nanocarriers, the therapeutic compound could be delivered to the site of action where it gets accumulated. This accumulation, therefore, reduces the required doses for therapy. Alternatively, using nanocarriers decreases the side effects. Nanotechnology has had a great contribution in developing Drug Delivery Systems (DDS). These DDS could function as reservoirs for sustained drug release or control the pharmacokinetics and biodistribution of the drugs. In the current review, we have collected 38 original research articles using nanotechnology as DDS for the clinically used cholinesterase inhibitor drugs donepezil (DPZ), Rivastigmine (Riv), and galantamine (Gal) used for AD treatment from 2002 to 2017 from Scopus and PubMed databases. Regarding DDS used for DPZ, most of the research in recent years dealt with polymeric nanoparticles (NPs) including Poly-D, L-Lactide-Co-Glycolide (PLGA), and chitosans (CHs), then Liposomes (LPs), nanogels, and natural products, respectively. In terms of Riv most of the research performed was focused on polymeric NPs including PLGA, polylactic acid (PLA), Poly-Ε-Caprolactone (PCL), poly-alkyl-cyanoacrylates, CH, gelatin and then LPs. The highest application of NPs in regard to Gal was related to modified LPs and polymeric NPs. Polymeric NPs demonstrate safety, higher stability in biological fluids and against enzymatic metabolism, biocompatibility, bioavailability, and improved encapsulation efficacy. LPs, another major delivery system used, demonstrate biocompatibility, ease of surface modification, and amphiphilic nature.
目前用于治疗阿尔茨海默病的基于纳米技术的药物递送系统
根据AD国际的数据,阿尔茨海默病是影响4600多万人的最常见的痴呆症之一。在过去的几十年里,人们对开发纳米药物感到兴趣。使用纳米载体,治疗化合物可以被输送到其积聚的作用部位。因此,这种积累减少了治疗所需的剂量。或者,使用纳米载体可以减少副作用。纳米技术对药物递送系统(DDS)的发展做出了巨大贡献。eDDS可以作为药物持续释放的储库或控制药物的药代动力学和生物分布。在目前的综述中,我们从Scopus和PubMed数据库中收集了38篇使用纳米技术作为DDS的原始研究文章,用于2002年至2017年用于AD治疗的临床使用的胆碱酯酶抑制剂药物多奈哌齐(DPZ)、利瓦斯的明(Riv)和加兰他敏(Gal)。关于用于DPZ的DDS,近年来的大多数研究都涉及聚合物纳米颗粒(NP),包括聚-D、L-内酰胺-邻糖苷(PLGA)和壳聚糖(CH),然后分别是脂质体(LP)、纳米凝胶和天然产物。在RIV方面,大多数研究都集中在聚合物NPs上,包括PLGA、聚乳酸(PLA)、聚己内酯(PCL)、氰基丙烯酸聚烷基酯、CH、明胶,然后是LPs。NP在Gal方面的高度应用与改性的LP和聚合物NP有关。聚合物NP表现出安全性、在生物流体中更高的稳定性以及抗酶代谢、生物相容性、生物利用度和改进的包封功效。LPs是另一种主要的递送系统,具有生物相容性、易于表面修饰和两亲性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Nanoscience and Nanotechnology - Asia
Nanoscience and Nanotechnology - Asia Engineering-Engineering (all)
CiteScore
1.90
自引率
0.00%
发文量
35
期刊介绍: Nanoscience & Nanotechnology-Asia publishes expert reviews, original research articles, letters and guest edited issues on all the most recent advances in nanoscience and nanotechnology with an emphasis on research in Asia and Japan. All aspects of the field are represented including chemistry, physics, materials science, biology and engineering mainly covering the following; synthesis, characterization, assembly, theory, and simulation of nanostructures (nanomaterials and assemblies, nanodevices, nano-bubbles, nano-droplets, nanofluidics, and self-assembled structures), nanofabrication, nanobiotechnology, nanomedicine and methods and tools for nanoscience and nanotechnology.
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