Multifaceted applications of micro/nanorobots in pharmaceutical drug delivery systems: a comprehensive review

IF 3.4 Q2 PHARMACOLOGY & PHARMACY
Tanisha Das, Shirin Sultana
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引用次数: 0

Abstract

Background

Drug delivery systems (DDSs) encompass a wide range of methods, including oral, injectable, and topical routes of administration, all tailored to meet specific patient needs. Micro and nanorobots, equipped with pioneering propulsion mechanisms that convert external energy sources into precise movements, have revolutionized drug delivery. This cutting-edge technology ensures highly efficient drug delivery, particularly when targeting specific targets within intricate physiological environments. In contrast to traditional drug delivery approaches that rely on bloodstream circulation, engineered micro/nanorobots have autonomous mobility, enabling drug delivery to previously unreachable areas.

Main body of the abstract

Integrating micro/nanorobots into drug delivery raises vital safety and biocompatibility issues. These encompass material selection, degradation in-vivo, overcoming biological barriers, controlled movement, external interference, immune response, chemical reactions, systemic effects, long-term impact, and real-time monitoring. While micro/nanorobots hold immense transformative potential, they confront significant hurdles in their journey toward practical applications. Chief among these challenges are concerns regarding biocompatibility, ensuring that these tiny devices do not trigger adverse reactions. Long-term safety remains a critical issue, as understanding the effects of prolonged exposure and potential accumulations within the body and navigating complex biological environments with precision is another obstacle.

Short conclusion

The paper summarizes how to explore the various ways in which micro/nanorobots can be employed to enhance drug delivery, including their precision, targeting capabilities, and adaptability to different physiological conditions. Additionally, the review seeks to highlight the transformative potential of these technologies and their impact on the pharmaceutical industry.

微型/纳米机器人在药物输送系统中的多方面应用:综述
给药系统(DDS)包含多种给药方法,包括口服、注射和局部给药途径,所有这些方法都是为满足患者的特定需求而量身定制的。微型和纳米机器人配备了开创性的推进机制,可将外部能源转化为精确的运动,为给药带来了革命性的变化。这种尖端技术可确保高效给药,尤其是在错综复杂的生理环境中针对特定靶点给药时。与依赖血液循环的传统给药方法相比,工程微型/纳米机器人具有自主移动性,能够将药物输送到以前无法到达的区域。将微型/纳米机器人整合到给药过程中,会产生至关重要的安全性和生物兼容性问题。这些问题包括材料选择、体内降解、克服生物屏障、可控移动、外部干扰、免疫反应、化学反应、系统效应、长期影响和实时监控。虽然微型/纳米机器人具有巨大的变革潜力,但它们在走向实际应用的过程中也面临着巨大的障碍。其中最主要的挑战是生物兼容性问题,即确保这些微型设备不会引发不良反应。长期安全性仍然是一个关键问题,因为了解长期暴露的影响和体内潜在的积累,以及精确驾驭复杂的生物环境是另一个障碍。本文总结了如何探索利用微型/纳米机器人加强药物输送的各种方法,包括其精确性、靶向能力和对不同生理条件的适应性。此外,该综述还试图强调这些技术的变革潜力及其对制药业的影响。
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
自引率
0.00%
发文量
44
审稿时长
23 weeks
期刊介绍: Future Journal of Pharmaceutical Sciences (FJPS) is the official journal of the Future University in Egypt. It is a peer-reviewed, open access journal which publishes original research articles, review articles and case studies on all aspects of pharmaceutical sciences and technologies, pharmacy practice and related clinical aspects, and pharmacy education. The journal publishes articles covering developments in drug absorption and metabolism, pharmacokinetics and dynamics, drug delivery systems, drug targeting and nano-technology. It also covers development of new systems, methods and techniques in pharmacy education and practice. The scope of the journal also extends to cover advancements in toxicology, cell and molecular biology, biomedical research, clinical and pharmaceutical microbiology, pharmaceutical biotechnology, medicinal chemistry, phytochemistry and nutraceuticals.
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