Ansari Mohammad Javed, Rajendran Rahul R, Mohanto Sourav, Agarwal Unnati, Panda Kingshuk, Dhotre Kishore, Manne Ravi, Deepak A, Zafar Ameeduzzafar, Yasir Mohd, Pramanik Sheersha
Department of Pharmaceutics, College of Pharmacy, Prince Sattam Bin Abdulaziz University, Al-Kharj 11942, Saudi Arabia.
Department of Mechanical Engineering and Mechanics, Lehigh University, 19 Memorial Drive West, Bethlehem, PA 18015, USA.
Gels. 2022 Jul 20;8(7):454. doi: 10.3390/gels8070454.
A prominent research topic in contemporary advanced functional materials science is the production of smart materials based on polymers that may independently adjust their physical and/or chemical characteristics when subjected to external stimuli. Smart hydrogels based on poly(-isopropylacrylamide) (PNIPAM) demonstrate distinct thermoresponsive features close to a lower critical solution temperature (LCST) that enhance their capability in various biomedical applications such as drug delivery, tissue engineering, and wound dressings. Nevertheless, they have intrinsic shortcomings such as poor mechanical properties, limited loading capacity of actives, and poor biodegradability. Formulation of PNIPAM with diverse functional constituents to develop hydrogel composites is an efficient scheme to overcome these defects, which can significantly help for practicable application. This review reports on the latest developments in functional PNIPAM-based smart hydrogels for various biomedical applications. The first section describes the properties of PNIPAM-based hydrogels, followed by potential applications in diverse fields. Ultimately, this review summarizes the challenges and opportunities in this emerging area of research and development concerning this fascinating polymer-based system deep-rooted in chemistry and material science.
当代先进功能材料科学中的一个突出研究课题是生产基于聚合物的智能材料,这种材料在受到外部刺激时可以独立调节其物理和/或化学特性。基于聚(N-异丙基丙烯酰胺)(PNIPAM)的智能水凝胶在接近较低临界溶液温度(LCST)时表现出独特的热响应特性,这增强了它们在药物递送、组织工程和伤口敷料等各种生物医学应用中的能力。然而,它们具有固有缺点,如机械性能差、活性成分负载能力有限和生物降解性差。将PNIPAM与各种功能成分混合以开发水凝胶复合材料是克服这些缺陷的有效方案,这对实际应用有很大帮助。这篇综述报道了基于功能性PNIPAM的智能水凝胶在各种生物医学应用中的最新进展。第一部分描述了基于PNIPAM的水凝胶的特性,接着介绍了其在不同领域的潜在应用。最后,本综述总结了这一新兴研发领域中有关这个深深植根于化学和材料科学的迷人聚合物基体系的挑战和机遇。