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果胶水凝胶的力学性能、结构、生物黏附性和生物相容性。

Mechanical properties, structure, bioadhesion, and biocompatibility of pectin hydrogels.

机构信息

Institute of Physiology, Komi Science Centre, The Urals Branch of the Russian Academy of Sciences, Syktyvkar, Russia.

Department of Biotechnology, Vyatka State University, Kirov, Russia.

出版信息

J Biomed Mater Res A. 2017 Sep;105(9):2572-2581. doi: 10.1002/jbm.a.36116. Epub 2017 Jun 15.

Abstract

The surface structure, biocompatibility, textural, and adhesive properties of calcium hydrogels derived from 1, 2, and 4% solutions of apple pectin were examined in this study. An increase in the pectin concentration in hydrogels was shown to improve their stability toward elastic and plastic deformation. The elasticity of pectin hydrogels, measured as Young's modulus, ranged from 6 to 100 kPa. The mechanical properties of the pectin hydrogels were shown to correspond to those of soft tissues. The characterization of surface roughness in terms of the roughness profile (Ra) and the root-mean-square deviation of the roughness profile (Rq) indicated an increased roughness profile for hydrogels depending on their pectin concentration. The adhesion of AU2% and AU4% hydrogels to the serosa abdominal wall, liver, and colon was higher than that of the AU1% hydrogel. The adhesion of macrophages and the non-specific adsorption of blood plasma proteins were found to increase as the pectin concentration in the hydrogels increased. The rate of degradation of all hydrogels was higher in phosphate buffered saline (PBS) than that in DMEM and a fibroblast cell monolayer. The pectin hydrogel was also found to have a low cytotoxicity. © 2017 Wiley Periodicals, Inc. J Biomed Mater Res Part A: 105A: 2572-2581, 2017.

摘要

本研究考察了由 1%、2%和 4%苹果果胶溶液制备的钙水凝胶的表面结构、生物相容性、质地和黏附特性。水凝胶中果胶浓度的增加被证明可以提高其对弹性和塑性变形的稳定性。果胶水凝胶的弹性(以杨氏模量衡量)范围为 6-100kPa。果胶水凝胶的机械性能与软组织的机械性能相匹配。根据粗糙度轮廓(Ra)和粗糙度轮廓均方根偏差(Rq)对表面粗糙度进行了表征,结果表明,水凝胶的粗糙度轮廓随其果胶浓度的增加而增加。AU2%和 AU4%水凝胶对腹腔壁浆膜、肝脏和结肠的黏附性高于 AU1%水凝胶。发现随着水凝胶中果胶浓度的增加,巨噬细胞黏附和血浆蛋白的非特异性吸附增加。所有水凝胶在磷酸盐缓冲盐水(PBS)中的降解速度均高于 DMEM 和成纤维细胞单层。还发现果胶水凝胶的细胞毒性较低。2017 年 Wiley 期刊公司。J 生物医学材料研究 A 部分:105A:2572-2581。

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