Chemical and Polymer Engineering, Tripura University, Suryamaninagar, Tripura 799022, India.
Chemical and Polymer Engineering, Tripura University, Suryamaninagar, Tripura 799022, India.
Int J Biol Macromol. 2023 Jan 31;226:535-553. doi: 10.1016/j.ijbiomac.2022.12.076. Epub 2022 Dec 12.
The development of nanotechnology has influenced the advancements in biomedical and pharmaceutical fields. The design and formulation of stimuli-responsive nano-drug delivery systems, also called smart drug delivery systems, have attracted significant research worldwide and have been seen as a breakthrough in nanomedicines. The ability of these nanocarriers to respond to external and internal stimuli, such as pH, temperature, redox, electric and magnetic fields, enzymes, etc., has allowed them to deliver the cargo at targeted sites in a controlled fashion. The targeted drug delivery systems limit the harmful side effects on healthy tissue by toxic drugs and furnish spatial and temporal control drug delivery, improved patient compliance, and treatment efficiency. The polymeric nanogels (hydrogel nanoparticles) with stimuli-responsive characteristics have shown great potential in various biomedical, tissue engineering, and pharmaceutical fields. It is primarily because of their small size, biocompatibility, biodegradability, stimuli-triggered drug deliverability, high payload capacity, and tailored functionality. This comprehensive review deals distinctively with polymeric nanogels, their chemical, physical, and biological stimuli, the concepts of nanogels response to different stimuli, and recent advancements. This document will further improve the current understanding of stimuli-responsive materials and drug delivery systems and assist in exploring advanced potential applications of these intelligent materials.
纳米技术的发展影响了生物医学和制药领域的进步。设计和配方的刺激响应纳米药物传递系统,也称为智能药物传递系统,已经吸引了全世界的大量研究,并被视为纳米医学的突破。这些纳米载体能够对外界和内部刺激(如 pH 值、温度、氧化还原、电场和磁场、酶等)做出响应,从而以可控的方式将货物递送到靶向部位。靶向药物传递系统通过毒性药物限制对健康组织的有害副作用,并提供空间和时间控制药物传递、提高患者依从性和治疗效率。具有刺激响应特性的聚合物纳米凝胶(水凝胶纳米颗粒)在各种生物医学、组织工程和制药领域显示出巨大的潜力。这主要是因为它们的体积小、生物相容性、可生物降解性、刺激触发的药物传递能力、高载药能力和定制功能。这篇全面的综述专门介绍了聚合物纳米凝胶、它们的化学、物理和生物刺激、纳米凝胶对不同刺激的响应概念,以及最近的进展。本文将进一步提高对刺激响应材料和药物传递系统的现有理解,并有助于探索这些智能材料的先进潜在应用。