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支链与线性葡甘露聚糖支架之间的异物反应差异

Differential Foreign Body Reactions between Branched and Linear Glucomannan Scaffolds.

作者信息

Li Yuwei, Liu Yu, Campos de Souza Senio, Chao Tzuwei, Dong Lei, Sun Guoxing, Wang Chunming, Niu Yiming

机构信息

State Key Laboratory of Quality Research in Chinese Medicine, Institute of Chinese Medical Sciences, Department of Pharmaceutical Sciences, Faculty of Health Science, University of Macau, Taipa, Macau SAR 999078, China.

Faculty of Health Sciences, University of Macau, Macau SAR 999078, China.

出版信息

J Funct Biomater. 2022 Dec 11;13(4):293. doi: 10.3390/jfb13040293.

Abstract

The extent and patterns of foreign body reaction (FBR) influence the function and feasibility of biomaterials. Polysaccharides, as an important biomaterial category, have received increasing attention in diverse biomaterials design and biomedical applications due to their excellent polymeric and biocompatible characteristics. Their biological effects are usually associated with their monosaccharide composition or functional groups, yet the contribution of their glycan structure is still unknown. Herein, two glucomannans, similar in composition and molecular weight with differences in glycan structure, linear-chain (Konjac glucomannan, KGM), and branched-chain ( polysaccharide, BSP), were adopted to explore the host-biomaterials interaction. After acetyl modification, these polysaccharides were fabricated into electrospun scaffolds to reduce the impacts derived from the physical properties and surface morphology. According to a systematic study of their biological effects on immune cells and host response in a subcutaneous implantation model in vivo, it was revealed that acetyl KGM (acKGM) scaffolds caused a stronger FBR than acetyl BSP materials. Additionally, acKGM could stimulate macrophages to release pro-inflammatory cytokines, suggesting the influence of sugar chain arrangement on FBR and providing clues for the fine regulation of immune response and novel biomaterials design.

摘要

异物反应(FBR)的程度和模式会影响生物材料的功能和可行性。多糖作为一类重要的生物材料,因其优异的聚合特性和生物相容性,在各种生物材料设计和生物医学应用中受到越来越多的关注。它们的生物学效应通常与其单糖组成或官能团有关,但其聚糖结构的作用仍不清楚。在此,采用两种组成和分子量相似但聚糖结构不同的葡甘露聚糖,即直链(魔芋葡甘露聚糖,KGM)和支链(多糖,BSP),来探究宿主与生物材料的相互作用。乙酰化修饰后,将这些多糖制成电纺支架,以减少物理性质和表面形态产生的影响。通过在体内皮下植入模型中对其免疫细胞和宿主反应的生物学效应进行系统研究,发现乙酰化KGM(acKGM)支架比乙酰化BSP材料引起更强的FBR。此外,acKGM可刺激巨噬细胞释放促炎细胞因子,提示糖链排列对FBR的影响,为免疫反应的精细调节和新型生物材料设计提供线索。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a901/9781890/ce6ca8f9a542/jfb-13-00293-g001.jpg

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