可降解脂肪族聚酯生物材料设计的分子和宏观考虑。

IF 5.5 2区 化学 Q1 BIOCHEMISTRY & MOLECULAR BIOLOGY
Brenden P Wheeler, Kyle Medd, Kaitlyn E Woodworth, Locke Davenport Huyer
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引用次数: 0

摘要

可降解脂肪族聚酯(DAPs)是设计可吸收医疗器械的整体材料,包括可吸收缝合线、药物输送库和临时组织生长支撑。DAPs的临床应用是由于它们在治疗窗口内的吸收能力。对再吸收率的控制是由材料的特性决定的,它可以为特定应用选择配方。本文综述了生物医学应用中DAPs的合成和降解行为。我们专注于共聚物DAPs,它提供了有希望的机会,通过战略性地结合不同的α,ω-二羧酸和α,ω-二醇单体来定制吸收。我们分析了影响水解降解的分子和宏观因素,并将这些因素与共聚物的组成联系起来。我们强调了通过有效的技术和实时监测能力来评估退化行为的新方法。材料属性为DAP创新提供了一种针对特定生物医学应用改进可吸收设备性能的策略。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Molecular and Macroscopic Considerations for Degradable Aliphatic Polyester Biomaterial Design.

Degradable aliphatic polyesters (DAPs) are integral materials for the design of resorbable medical devices including resorbable sutures, drug delivery depots, and temporary tissue growth supports. The clinical application of DAPs is due to their ability to resorb over a therapeutic window. Control over resorption rates is defined by material properties, which inform the selection of a formulation for specific applications. This review examines the synthesis and degradation behavior of DAPs for biomedical applications. We focus on copolymer DAPs, which offer promising opportunities to tailor resorption by strategically incorporating diverse α,ω-dicarboxylic acid and α,ω-diol monomers. We analyze the molecular and macroscopic factors influencing hydrolytic degradation, correlating these to the copolymer composition. We highlight emerging approaches for assessing degradation behavior through efficient techniques and real-time monitoring capabilities. Material property-informed DAP innovation offers a strategy for improved resorbable device performance tailored for specific biomedical applications.

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来源期刊
Biomacromolecules
Biomacromolecules 化学-高分子科学
CiteScore
10.60
自引率
4.80%
发文量
417
审稿时长
1.6 months
期刊介绍: Biomacromolecules is a leading forum for the dissemination of cutting-edge research at the interface of polymer science and biology. Submissions to Biomacromolecules should contain strong elements of innovation in terms of macromolecular design, synthesis and characterization, or in the application of polymer materials to biology and medicine. Topics covered by Biomacromolecules include, but are not exclusively limited to: sustainable polymers, polymers based on natural and renewable resources, degradable polymers, polymer conjugates, polymeric drugs, polymers in biocatalysis, biomacromolecular assembly, biomimetic polymers, polymer-biomineral hybrids, biomimetic-polymer processing, polymer recycling, bioactive polymer surfaces, original polymer design for biomedical applications such as immunotherapy, drug delivery, gene delivery, antimicrobial applications, diagnostic imaging and biosensing, polymers in tissue engineering and regenerative medicine, polymeric scaffolds and hydrogels for cell culture and delivery.
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