Hiba Ibrahim Huzyan, Koh Jin Kwei, Lai Chin Wei, Mousavi Seyyed Mojtaba, Badruddin Irfan Anjum, Hussien Mohamed, Wong Jest Phia
Nanotechnology and Catalysis Research Centre (NANOCAT), Institute for Advanced Studies (IAS), University of Malaya (UM), 50603, Kuala Lumpur, Malaysia.
Department of Chemical Engineering, National Taiwan University of Science and Technology, Taiwan.
Heliyon. 2024 Apr 8;10(7):e28902. doi: 10.1016/j.heliyon.2024.e28902. eCollection 2024 Apr 15.
Rhodanine is a heterocyclic organic compound that has been investigated for its potential biomedical applications, particularly in drug discovery. Rhodanine derivatives have been examined as the medication options for numerous illnesses, including cancer, inflammation, and infectious diseases. Some rhodanine derivatives have also shown promising activity against drug-resistant strains of bacteria and viruses. One of these derivatives is polyrhodanine (PR), a conducting polymer that has gained attention for its biomedical properties. This review article summarises the latest advancements in creating biomaterials based on PR for biosensing, antimicrobial treatments, and anticancer therapies. The distinctive characteristics of PR, such as biocompatibility, biodegradability, and good conductivity, render it an attractive candidate for these applications. The article also explores obstacles and potential future paths for advancing biomaterials made with PR, including synthesis modifications, characterisation techniques, and in vivo evaluation of biocompatibility and efficacy. Overall, as an emerging research topic, this review emphasises the potential of PR as a promising biomaterial for various biomedical applications and provides insights into the contemporary state of research and prospective directions for investigation.
若丹宁是一种杂环有机化合物,人们对其潜在的生物医学应用,尤其是在药物发现方面进行了研究。若丹宁衍生物已被视作多种疾病的治疗选择,包括癌症、炎症和传染病。一些若丹宁衍生物还对耐药细菌和病毒菌株表现出了有前景的活性。其中一种衍生物是聚若丹宁(PR),一种因其生物医学特性而受到关注的导电聚合物。这篇综述文章总结了基于PR制备用于生物传感、抗菌治疗和抗癌治疗的生物材料的最新进展。PR的独特特性,如生物相容性、生物可降解性和良好的导电性,使其成为这些应用的有吸引力的候选材料。文章还探讨了推进由PR制成的生物材料所面临的障碍和潜在的未来路径,包括合成修饰、表征技术以及生物相容性和功效的体内评估。总体而言,作为一个新兴的研究课题,这篇综述强调了PR作为一种有前景的生物材料在各种生物医学应用中的潜力,并提供了对当前研究状况和未来研究方向的见解。