纳米药物递送载体(纳米载体):在结核病和疼痛治疗中有前景的靶向策略。

Q2 Pharmacology, Toxicology and Pharmaceutics
Rahul Pal, Prachi Pandey, Himmat Singh Chawra, Zuber Khan
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引用次数: 0

摘要

背景:结核病和慢性疼痛是影响数百万人的全球健康问题,往往需要长期有效的治疗策略。用于治疗这些疾病的传统疗法有很大的局限性。在结核病方面,治疗时间长、依从性差、耐药性和一线药物的毒性是主要挑战。同样,疼痛管理也面临着一些问题,如靶向性不足、全身副作用和对镇痛药的耐受性,限制了传统疗法的疗效。目的:本综述的目的是探索纳米载体作为一种靶向药物递送策略的潜力,以改善结核病和疼痛管理的治疗结果。它旨在探索这些先进的系统如何提高药物生物利用度(BA),控制释放,减少副作用,并提高治疗效果。方法:本系统综述使用PubMed、Elsevier、Scopus、谷歌Scholar、谷歌Patents、ResearchGate等数据库,收集近15年来(2007年9月1日至2024年9月1日)的原创综述文章。结果:综述还显示,这些先进的系统为克服常规治疗的局限性提供了有希望的解决方案,例如患者依从性差和药物毒性。纳米载体代表了结核病和疼痛管理的一种变革性方法,具有彻底改变治疗范例和改善患者预后的潜力。结论:总之,纳米载体代表了一种非常有前途的方法来推进结核病和疼痛管理的治疗策略。该综述强调,纳米载体系统,如纳米乳、纳米悬浮液、纳米晶体、脂质体、乳质体、树状大分子和聚合物纳米颗粒,通过增强BA、确保靶向释放和减少全身副作用,在药物传递方面提供了实质性的改进。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Nano Drug Delivery Carriers (Nanocarriers): A Promising Targeted Strategy in Tuberculosis and Pain Treatment.

Background: Tuberculosis (TB) and chronic pain are global health concerns that affect millions of people, often requiring long-term, effective treatment strategies. The conventional therapies used to manage these conditions come with significant limitations. In TB, long treatment durations, poor compliance, drug resistance, and toxicity of first-line drugs are key challenges. Similarly, pain management faces issues, such as inadequate targeting, systemic side effects, and tolerance to analgesics, limiting traditional therapy efficacy.

Objective: The objective of this review is to explore the potential of nanocarriers as a targeted drug delivery strategy for improving treatment outcomes in TB and pain management. It aims to explore how these advanced systems improve drug bioavailability (BA), control release, reduce side effects, and enhance therapeutic outcomes.

Methods: This systematic review used databases like PubMed, Elsevier, Scopus, Google Scholar, Google Patents, and ResearchGate, etc., to collect original review articles from the past 15 years (September 1, 2007 to September 1, 2024).

Results: The review also revealed that these advanced systems offer promising solutions for overcoming the limitations of conventional therapies, such as poor patient compliance and drug toxicity. Nanocarriers represent a transformative approach in both TB and pain management, with the potential to revolutionize treatment paradigms and improve patient outcomes.

Conclusion: In conclusion, nanocarriers represent a highly promising approach for advancing treatment strategies in both TB and pain management. The review underscores that nanocarrier systems, such as nanoemulsion, nanosuspension, nanocrystal, liposomes, niosomes, dendrimer, and polymeric nanoparticles, offer substantial improvements in drug delivery by enhancing BA, ensuring targeted release, and reducing systemic side effects.

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来源期刊
Pharmaceutical nanotechnology
Pharmaceutical nanotechnology Pharmacology, Toxicology and Pharmaceutics-Pharmaceutical Science
CiteScore
4.20
自引率
0.00%
发文量
46
期刊介绍: Pharmaceutical Nanotechnology publishes original manuscripts, full-length/mini reviews, thematic issues, rapid technical notes and commentaries that provide insights into the synthesis, characterisation and pharmaceutical (or diagnostic) application of materials at the nanoscale. The nanoscale is defined as a size range of below 1 µm. Scientific findings related to micro and macro systems with functionality residing within features defined at the nanoscale are also within the scope of the journal. Manuscripts detailing the synthesis, exhaustive characterisation, biological evaluation, clinical testing and/ or toxicological assessment of nanomaterials are of particular interest to the journal’s readership. Articles should be self contained, centred around a well founded hypothesis and should aim to showcase the pharmaceutical/ diagnostic implications of the nanotechnology approach. Manuscripts should aim, wherever possible, to demonstrate the in vivo impact of any nanotechnological intervention. As reducing a material to the nanoscale is capable of fundamentally altering the material’s properties, the journal’s readership is particularly interested in new characterisation techniques and the advanced properties that originate from this size reduction. Both bottom up and top down approaches to the realisation of nanomaterials lie within the scope of the journal.
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