Collagen-based micro/nanogel delivery systems: Manufacturing, release mechanisms, and biomedical applications.

IF 7.5 3区 医学 Q1 MEDICINE, GENERAL & INTERNAL
Chinese Medical Journal Pub Date : 2025-05-20 Epub Date: 2025-04-22 DOI:10.1097/CM9.0000000000003611
Bowei Du, Shuhan Feng, Jiajun Wang, Keyi Cao, Zhiheng Shi, Cuicui Men, Tengfei Yu, Shiqi Wang, Yaqin Huang
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引用次数: 0

Abstract

Abstract: Collagen-based materials, renowned for their biocompatibility and minimal immunogenicity, serve as exemplary substrates in a myriad of biomedical applications. Collagen-based micro/nanogels, in particular, are valued for their increased surface area, tunable degradation rates, and ability to facilitate targeted drug delivery, making them instrumental in advanced therapeutics and tissue engineering endeavors. Although extensive reviews on micro/nanogels exist, they tend to cover a wide range of biomaterials and lack a specific focus on collagen-based materials. The current review offers an in-depth look into the manufacturing technologies, drug release mechanisms, and biomedical applications of collagen-based micro/nanogels to address this gap. First, we provide an overview of the synthetic strategies that allow the precise control of the size, shape, and mechanical strength of these collagen-based micro/nanogels by controlling the degree of cross-linking of the materials. These properties are crucial for their performance in biomedical applications. We then highlight the environmental responsiveness of these collagen-based micro/nanogels, particularly their sensitivity to enzymes and pH, which enables controlled drug release under various pathological conditions. The discussion then expands to include their applications in cancer therapy, antimicrobial treatments, bone tissue repair, and imaging diagnosis, emphasizing their versatility and potential in these critical areas. The challenges and future perspectives of collagen-based micro/nanogels in the field are discussed at the end of the review, with an emphasis on the translation to clinical practice. This comprehensive review serves as a valuable resource for researchers, clinicians, and scientists alike, providing insights into the current state and future directions of collagen-based micro/nanogel research and development.

基于胶原蛋白的微/纳米凝胶输送系统:制造、释放机制和生物医学应用。
摘要:胶原蛋白基材料以其生物相容性和最小的免疫原性而闻名,在无数的生物医学应用中作为示范底物。基于胶原蛋白的微/纳米凝胶尤其因其增加的表面积、可调的降解率和促进靶向药物递送的能力而受到重视,这使它们在高级治疗和组织工程方面发挥了重要作用。尽管存在大量关于微/纳米凝胶的综述,但它们往往涵盖了广泛的生物材料,而缺乏对胶原蛋白基材料的特别关注。本文将深入研究胶原蛋白微/纳米凝胶的制造技术、药物释放机制和生物医学应用,以解决这一问题。首先,我们概述了通过控制材料的交联程度来精确控制这些基于胶原蛋白的微/纳米凝胶的大小、形状和机械强度的合成策略。这些特性对其在生物医学应用中的性能至关重要。然后,我们强调了这些基于胶原蛋白的微/纳米凝胶的环境响应性,特别是它们对酶和pH的敏感性,这使得在各种病理条件下可以控制药物释放。然后讨论扩展到包括它们在癌症治疗、抗菌治疗、骨组织修复和成像诊断中的应用,强调它们在这些关键领域的多功能性和潜力。本文最后讨论了基于胶原蛋白的微/纳米凝胶在该领域的挑战和未来前景,并重点讨论了其在临床实践中的应用。这篇全面的综述为研究人员、临床医生和科学家提供了宝贵的资源,为基于胶原蛋白的微/纳米凝胶研究和开发的现状和未来方向提供了见解。
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
Chinese Medical Journal
Chinese Medical Journal 医学-医学:内科
CiteScore
9.80
自引率
4.90%
发文量
19245
审稿时长
6 months
期刊介绍: The Chinese Medical Journal (CMJ) is published semimonthly in English by the Chinese Medical Association, and is a peer reviewed general medical journal for all doctors, researchers, and health workers regardless of their medical specialty or type of employment. Established in 1887, it is the oldest medical periodical in China and is distributed worldwide. The journal functions as a window into China’s medical sciences and reflects the advances and progress in China’s medical sciences and technology. It serves the objective of international academic exchange. The journal includes Original Articles, Editorial, Review Articles, Medical Progress, Brief Reports, Case Reports, Viewpoint, Clinical Exchange, Letter,and News,etc. CMJ is abstracted or indexed in many databases including Biological Abstracts, Chemical Abstracts, Index Medicus/Medline, Science Citation Index (SCI), Current Contents, Cancerlit, Health Plan & Administration, Embase, Social Scisearch, Aidsline, Toxline, Biocommercial Abstracts, Arts and Humanities Search, Nuclear Science Abstracts, Water Resources Abstracts, Cab Abstracts, Occupation Safety & Health, etc. In 2007, the impact factor of the journal by SCI is 0.636, and the total citation is 2315.
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