Suppr超能文献

用于声带再生的基于透明质酸的微凝胶和微凝胶网络。

Hyaluronic acid-based microgels and microgel networks for vocal fold regeneration.

作者信息

Jia Xinqiao, Yeo Yoon, Clifton Rodney J, Jiao Tong, Kohane Daniel S, Kobler James B, Zeitels Steven M, Langer Robert

机构信息

Department of Materials Science and Engineering, 201 DuPont Hall, University of Delaware, Newark, Delaware 19716, USA.

出版信息

Biomacromolecules. 2006 Dec;7(12):3336-44. doi: 10.1021/bm0604956.

Abstract

Vocal fold scarring disrupts the viscoelastic properties of the lamina propria that are critical for normal phonation. There is a clinical need for the development of advanced biomaterials that approximate the mechanical properties of the lamina propria for in vivo vocal fold regeneration. We have developed hyaluronic acid (HA)-based microgels and cross-linked microgel networks with tunable degradation and mechanical properties. HA microgels were prepared by cross-linking HA derivatives carrying hydrazide (HAADH) and aldehyde (HAALD) functionalities within the inverse emulsion droplets. Alternatively, poly(ethylene glycol) dialdehyde (PEGDiALD) was employed in place of HAALD. Microgels based on HAADH/HAALD are more resistant to enzymatic degradation than those generated from HAADH/PEGDiALD. In vitro cytotoxicity studies using vocal fold fibroblasts indicate that microgels synthesized from HAADH/HAALD are essentially nontoxic, whereas microgels derived from HAADH/PEGDiALD exhibit certain adverse effects on the cultured cells at high concentration (> or =2 mg/mL). These microgels exhibit residual functional groups that can be used as reactive handles for covalent conjugation of therapeutic molecules. The presence of residual functional groups also allows for subsequent cross-linking of the microgels with other reactive polymers, giving rise to doubly cross-linked networks (DXNs) with tunable viscoelasticity. Mechanical measurements using a torsional wave apparatus indicate that HA-based DXNs exhibit elastic moduli that are similar to those of vocal fold lamina propria at frequencies close to the range of human phonation. These HA-based microgel systems are promising candidates for the treatment of vocal fold scarring, not just as biocompatible filler materials, but as smart entities that can repair focal defects, smooth the vocal fold margin, and potentially soften and dissolve scar tissue.

摘要

声带瘢痕会破坏固有层的粘弹性特性,而这种特性对正常发声至关重要。临床上需要开发先进的生物材料,使其在体内声带再生时能模拟固有层的力学性能。我们已开发出基于透明质酸(HA)的微凝胶以及具有可调降解和力学性能的交联微凝胶网络。HA微凝胶是通过在反相乳液液滴内交联带有酰肼(HAADH)和醛(HAALD)官能团的HA衍生物制备而成。另外,用聚乙二醇二醛(PEGDiALD)替代HAALD。基于HAADH/HAALD的微凝胶比由HAADH/PEGDiALD生成的微凝胶更耐酶解。使用声带成纤维细胞进行的体外细胞毒性研究表明,由HAADH/HAALD合成的微凝胶基本无毒,而由HAADH/PEGDiALD衍生的微凝胶在高浓度(≥2mg/mL)时对培养细胞表现出一定的不良影响。这些微凝胶具有可作为治疗分子共价偶联反应性手柄的残留官能团。残留官能团的存在还允许微凝胶随后与其他反应性聚合物交联,形成具有可调粘弹性的双交联网络(DXN)。使用扭转波装置进行的力学测量表明,基于HA的DXN在接近人类发声频率范围内的弹性模量与声带固有层的弹性模量相似。这些基于HA的微凝胶系统有望用于治疗声带瘢痕,不仅可作为生物相容性填充材料,还可作为能够修复局灶性缺陷、使声带边缘光滑并可能软化和溶解瘢痕组织的智能实体。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验