纳米技术:结核病治疗的重点

Nitish Kumar, Peeyush Kumar, P. Kumar, Mithilesh Kumar, Rajeev Kumar
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引用次数: 10

摘要

尽管我们生活在一个先进技术和创新的时代,但结核病等传染病仍然是全世界最大的健康挑战之一。传统结核病治疗的主要缺点是产生多重耐药性,导致高剂量需求和随后难以忍受的毒性。因此,需要一种新的系统,其目的是尽量减少药物治疗的副作用,如生物利用度差和药物的选择性。基于纳米颗粒的给药系统在治疗结核病方面具有相当大的潜力。纳米颗粒作为药物载体的重要技术优势是高稳定性、高载药量、可掺入亲疏水物质以及可采用多种给药途径(包括口服和吸入)。纳米颗粒也可以被设计成允许从基质中控制(持续)药物释放。纳米颗粒的这些特性能够改善药物的生物利用度和减少给药频率,并可能解决不遵守处方治疗的问题,这是控制结核病流行的主要障碍之一。在这篇综述中,我们讨论了当前结核病治疗所面临的挑战,并揭示了纳米技术在提供更有效的结核病治疗和预防方面的巨大潜力。关键词:结核病;纳米技术;脂质体;聚合物纳米粒子;non-polymeric纳米颗粒。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Nanotechnology: A focus on Treatment of Tuberculosis
Despite the fact that we live in an era of advanced technology and innovation, infectious diseases, like Tuberculosis (TB), continue to be one of the greatest health challenges worldwide. The main drawbacks of conventional TB treatment are the development of multiple drug resistance, resulting in high dose requirements and subsequent intolerable toxicity. Therefore there is a need of a new system have been receiving special attention with the aim of minimizing the side effects of drug therapy, such as poor bioavailability and the selectivity of drugs. Nanoparticle-based drug delivery systems have considerable potential for treatment of TB. The important technological advantages of nanoparticles used as drug carriers are high stability, high carrier capacity, feasibility of incorporation of both hydrophilic and hydrophobic substances, and feasibility of variable routes of administration, including oral application and inhalation. Nanoparticles can also be designed to allow controlled (sustained) drug release from the matrix. These properties of nanoparticles enable improvement of drug bioavailability and reduction of the dosing frequency, and may resolve the problem of nonadherence to prescribed therapy, which is one of the major obstacles in the control of TB epidemics. In this review, we discuss the challenges with the current treatment of the disease and shed light on the remarkable potential of nanotechnology to provide more effective treatment and prevention for TB. Keywords: Tuberculosis; Nanotechnology; liposome; Polymeric nanoparticle; non-polymeric nanoparticle.
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