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京尼平赋予壳聚糖用于人类干细胞组织再生的物理性质:综述。

Physical properties imparted by genipin to chitosan for tissue regeneration with human stem cells: A review.

作者信息

Muzzarelli Riccardo A A, El Mehtedi Mohamad, Bottegoni Carlo, Gigante Antonio

机构信息

Faculty of Medicine, Professor Emeritus of Enzymology, Polytechnic University of Marche, Via Tronto 10-A, IT-60100 Ancona, Italy.

Faculty of Engineering, Department of Industrial Engineering & Mathematical Sciences, Polytechnic University of Marche, IT-60100 Ancona, Italy.

出版信息

Int J Biol Macromol. 2016 Dec;93(Pt B):1366-1381. doi: 10.1016/j.ijbiomac.2016.03.075. Epub 2016 Apr 19.

Abstract

Genipin is a fully assessed non-cytotoxic crosslinking compound. The chitosan|genipin physical properties such as morphology, roughness, porosity, hydrophilicity, ζ-potential, surface area and surface energy exert control over cell adhesion, migration, phenotype maintenance and intracellular signaling in vitro, and cell recruitment at the tissue-scaffold interface in vivo. For example a therapy using fucose|chitosan|genipin nanoparticles encapsulating amoxicillin, based on the recognition of fucose by H. pylori, leads to sharply improved clinical results. A bioactive scaffold sensitive to environmental stimuli provides an alternative approach for inducing adipose stem cell chondrogenesis: the expression of specific genes, the accumulation of cartilage-related macromolecules and the mechanical properties are comparable to the original cartilage-derived matrix (CDM), thus making the CDM|genipin a contraction-free biomaterial suitable for cartilage tissue engineering. For the regeneration of the cartilage, chitosan|genipin permits to modulate matrix synthesis and proliferation of chondrocytes by dynamic compression; chondrocytes cultured on the composite substrate produce much more collagen-II and sulfated GAG. The main advantages gained in the bone regeneration area with chitosan|genipin are: acceleration of mineral deposition; enhancement of adhesion, proliferation and differentiation of osteoblasts; promotion of the expression of osteogenic differentiation markers; greatly improved viability of human adipose stem cells.

摘要

京尼平是一种经过全面评估的无细胞毒性交联化合物。壳聚糖|京尼平的物理性质,如形态、粗糙度、孔隙率、亲水性、ζ电位、表面积和表面能,在体外对细胞黏附、迁移、表型维持和细胞内信号传导,以及在体内对组织-支架界面处的细胞募集具有控制作用。例如,基于幽门螺杆菌对岩藻糖的识别,使用包裹阿莫西林的岩藻糖|壳聚糖|京尼平纳米颗粒的疗法可显著改善临床效果。一种对环境刺激敏感的生物活性支架为诱导脂肪干细胞软骨生成提供了一种替代方法:特定基因的表达、软骨相关大分子的积累以及力学性能与原始软骨衍生基质(CDM)相当,因此使CDM|京尼平成为一种适用于软骨组织工程的无收缩生物材料。对于软骨再生,壳聚糖|京尼平可通过动态压缩调节软骨细胞的基质合成和增殖;在复合基质上培养的软骨细胞产生更多的胶原蛋白-II和硫酸化糖胺聚糖。壳聚糖|京尼平在骨再生领域的主要优势包括:加速矿物质沉积;增强成骨细胞的黏附、增殖和分化;促进成骨分化标志物的表达;显著提高人脂肪干细胞的活力。

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