抗肥胖药物递送系统:最新进展与挑战

Anti-Obesity Drug Delivery Systems: Recent Progress and Challenges.

作者信息

Ashour Mohamed M, Mabrouk Mostafa, Aboelnasr Mohamed A, Beherei Hanan H, Tohamy Khairy M, Das Diganta B

机构信息

School of Biotechnology, Badr University in Cairo, Badr City, Cairo 11829, Egypt.

Refractories, Ceramics and Building Materials Department, National Research Centre, 33 El Bohouth St., Dokki, Giza 12622, Egypt.

出版信息

Pharmaceutics. 2023 Nov 16;15(11):2635. doi: 10.3390/pharmaceutics15112635.

Abstract

Obesity has reached an epidemic proportion in the last thirty years, and it is recognized as a major health issue in modern society now with the possibility of serious social and economic consequences. By the year 2030, nearly 60% of the global population may be obese or overweight, which emphasizes a need for novel obesity treatments. Various traditional approaches, such as pharmacotherapy and bariatric surgery, have been utilized in clinical settings to treat obesity. However, these methods frequently show the possibility of side effects while remaining ineffective. There is, therefore, an urgent need for alternative obesity treatments with improved efficacy and specificity. Polymeric materials and chemical strategies are employed in emerging drug delivery systems (DDSs) to enhance therapy effectiveness and specificity by stabilizing and controlling the release of active molecules such as natural ingredients. Designing DDSs is currently a top priority research objective with an eye towards creating obesity treatment approaches. In reality, the most recent trends in the literature demonstrate that there are not enough in-depth reviews that emphasize the current knowledge based on the creation and design of DDSs for obesity treatment. It is also observed in the existing literature that a complex interplay of different physical and chemical parameters must be considered carefully to determine the effectiveness of the DDSs, including microneedles, for obesity treatment. Additionally, it is observed that these properties depend on how the DDS is synthesized. Although many studies are at the animal-study stage, the use of more advanced DDS techniques would significantly enhance the development of safe and efficient treatment approaches for obese people in the future. Considering these, this review provides an overview of the current anti-obesity treatment approaches as well as the conventional anti-obesity therapeutics. The article aims to conduct an in-depth discussion on the current trends in obesity treatment approaches. Filling in this knowledge gap will lead to a greater understanding of the safest ways to manage obesity.

摘要

在过去三十年中,肥胖已达到流行程度,如今它被公认为现代社会中的一个主要健康问题,可能会带来严重的社会和经济后果。到2030年,全球近60%的人口可能会肥胖或超重,这凸显了对新型肥胖治疗方法的需求。各种传统方法,如药物治疗和减肥手术,已在临床环境中用于治疗肥胖。然而,这些方法常常显示出副作用的可能性,同时效果不佳。因此,迫切需要具有更高疗效和特异性的替代肥胖治疗方法。新兴的药物递送系统(DDS)采用聚合物材料和化学策略,通过稳定和控制天然成分等活性分子的释放来提高治疗效果和特异性。设计DDS目前是一项首要研究目标,旨在创造肥胖治疗方法。实际上,文献中的最新趋势表明,没有足够深入的综述来强调基于用于肥胖治疗的DDS的创建和设计的现有知识。在现有文献中还观察到,必须仔细考虑不同物理和化学参数的复杂相互作用,以确定包括微针在内的DDS对肥胖治疗的有效性。此外,观察到这些特性取决于DDS的合成方式。尽管许多研究处于动物研究阶段,但使用更先进的DDS技术将显著促进未来针对肥胖人群的安全有效治疗方法的开发。考虑到这些,本综述概述了当前的抗肥胖治疗方法以及传统的抗肥胖疗法。本文旨在对肥胖治疗方法的当前趋势进行深入讨论。填补这一知识空白将有助于更深入地理解管理肥胖的最安全方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cf2d/10674714/d5860d46fe98/pharmaceutics-15-02635-g001.jpg

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