[聚l -乳酸膜预防肌腱粘连的进展与挑战]。

Q3 Medicine
Jiayu Zhang, Xiaobei Hu, Jiayan Shen, Yuanji Huang, Shen Liu
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引用次数: 0

摘要

目的:综述聚l -乳酸(PLLA)膜预防肌腱粘连的研究进展及面临的挑战。方法:广泛检索近年来国内外相关文献,涵盖肌腱粘连形成机制、PLLA的适应挑战与平衡策略、PLLA抗粘连膜的理化改性及其在肌腱抗粘连中的应用。本文从组织适应、机械适应和降解适应三个方面系统综述了聚乳酸膜的研究进展和改性策略。结果:结合材料(如羟基磷灰石、聚己内酯)、结构设计(多层/梯度膜)、载药(抗炎药)等因素,优化了PLLA膜的三维自适应。达到了抗粘连和促愈合的平衡,机械适应性显著提高,实现了降解(降解周期目标为2-4周,覆盖肌腱修复期)。结论:未来需要通过理化修饰与载药系统的协同设计,确定三维适应度的最佳平衡点,统一评价标准,解决降解副作用,突破临床转译的瓶颈。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
[Progress and challenges of poly (L-lactic acid) membrane in preventing tendon adhesion].

Objective: To review the research progress and challenges of poly (L-lactic acid) (PLLA) membrane in preventing tendon adhesion.

Methods: The relevant literature at home and abroad in recent years was extensively searched, covering the mechanism of tendon adhesion formation, the adaptation challenge and balancing strategy of PLLA, the physicochemical modification of PLLA anti-adhesion membrane and its application in tendon anti-adhesion. In this paper, the research progress and modification strategies of PLLA membranes were systematically reviewed from the three dimensions of tissue adaptation, mechanical adaptation, and degradation adaptation.

Results: The three-dimensional adaptation of PLLA membrane is optimized by combining materials (such as hydroxyapatite, polycaprolactone), structural design (multilayer/gradient membrane), and drug loading (anti-inflammatory drug). The balance between anti-adhesion and pro-healing is achieved, the mechanical adaptation significantly improve, and degradation is achieved (targeting the degradation cycle to 2-4 weeks to cover the tendon repair period).

Conclusion: In the future, it is necessary to identify the optimal balance point of three-dimensional fitness, unify the evaluation criteria and solve the degradation side effects through the co-design of physicochemical modification and drug loading system to break through the bottleneck of clinical translation.

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来源期刊
中国修复重建外科杂志
中国修复重建外科杂志 Medicine-Medicine (all)
CiteScore
0.80
自引率
0.00%
发文量
11334
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