Pek Yin Michelle Yew, Qianyu Lin, Cally Owh, Pei Lin Chee, Xian Jun Loh
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引用次数: 0
摘要
导语:药物给药在医疗保健领域无处不在,优化给药方法以提高药物疗效、降低全身毒性和增强患者依从性至关重要,热凝胶由于其可注射性、生物相容性和提供局部和持续药物释放的能力,在给药方面显示出巨大的潜力。涵盖领域:本文讨论了热凝胶在药物动力学方面的独特性能及其作为载体的适用性。强调了热凝胶给药系统(DDS)的不同考虑和应用,并讨论了其进入市场的挑战。利用PubMed、Scopus和Web of Science等主要数据库进行了全面的文献检索。搜索采用相关关键词对热凝胶DDS的研究进行识别。此外,还利用Clinicaltrials.gov来确定临床研究的现状。专家意见:尽管如此,随着研究在复杂性和临床追求方面达到更高的高度,热凝胶在DDS领域的未来前景广阔。它们在制造和模块化方面的灵活性使其成为一种适合不同药物输送应用和集成到各种生物医学学科的伟大材料。
Current research and future potential of thermogels for sustained drug delivery.
Introduction: Drug administration is ubiquitous in the healthcare field, and it is crucial to optimize drug delivery methods to improve drug efficacy, reduce systemic toxicity, and enhance patient compliance Thermogels have shown immense potential in drug delivery due to their injectability, biocompatibility, and ability to provide localized and sustained drug release.
Area covered: This paper discusses the unique properties of thermogel in relation to drug kinetics and their suitability as a carrier. Different considerations and applications of thermogel drug delivery systems (DDS) were highlighted and their challenges to enter the market discussed. A comprehensive literature search was conducted using major databases such as PubMed, Scopus, and Web of Science. The search employed relevant keywords to identify studies on thermogel DDS. Clinicaltrials.gov was also utilized to determine the current state of clinical studies.
Expert opinion: Nonetheless, thermogel holds great promise for the future in DDS with research achieving greater heights in terms of complexity and clinical pursuits. Their flexibility in fabrication and modularity manner makes it a great material to tailor to different drug delivery applications and to be integrated into various biomedical disciplinaries.