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首页> 外文期刊>Journal of the mechanical behavior of biomedical materials >The mechanics of hyaluronic acid/adipic acid dihydrazide hydrogel: Towards developing a vessel for delivery of preadipocytes to native tissues
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The mechanics of hyaluronic acid/adipic acid dihydrazide hydrogel: Towards developing a vessel for delivery of preadipocytes to native tissues

机译:透明质酸/己二酸二酰肼水凝胶的机理:致力于开发一种将前脂肪细胞递送至天然组织的容器

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摘要

Promising treatment approaches in repairing tissue defects include implementation of regenerative medicine strategies, particularly delivery of preadipocytes to sites where adipose tissue damage needs to be repaired or where fat needs to be generated. In this study, we suggest that the injectable hyaluronic acid/adipic acid dihydrazide (HA/ADH) hydrogel may be an adipose-tissue-like material in terms of biological compatibility as well as mechanical behavior. First, we show that the hydrogel enables and supports growth, proliferation and differentiation of 3T3-L1 preadipocytes. Second, given that adipose tissue is a weight-bearing biological structure, we investigate the large deformation mechanical behavior of the hydrogel with and without embedded preadipocytes, by performing confined and unconfined compression tests and then calibrating a strain energy density (SED) function to the results. Four test groups were examined: (1) Hydrogel specimens right after the preparation without cells, (2) and (3) 3-days-cultured hydrogel specimens with and without cells, respectively, and (4) 6-days-cultured hydrogel specimens with cells. A one-term Ogden SED was found to adequately describe the hyperelastic behavior of the hydrogel specimens in all experimental groups. Importantly, we found that the mechanical properties of the hydrogel, when subjected to compression, are in good agreement with those of native adipose tissue, with the better fit occurring 3-6 days after preparation of the hydrogel. Third, computational finite element studies of the mechanical (stress-strain) behavior of the HA/ADH hydrogel when containing mature adipocytes indicated that the stiffnesses of the constructs were mildly affected by the presence of the adipocytes. Hence, we conclude that injectable HA/ADH hydrogel may serve as a vessel for protecting preadipocytes during, and at a short-term after delivery to native tissues, e.g. in research towards regenerative medicine in tissue reconstructions.
机译:修复组织缺陷的有望的治疗方法包括实施再生医学策略,尤其是将前脂肪细胞递送至需要修复脂肪组织损伤或需要产生脂肪的部位。在这项研究中,我们建议注射性透明质酸/己二酸二酰肼(HA / ADH)水凝胶在生物学相容性和机械性能方面可能是类似于脂肪组织的材料。首先,我们证明水凝胶能够并支持3T3-L1前脂肪细胞的生长,增殖和分化。其次,鉴于脂肪组织是一种负重的生物结构,我们通过进行受限和无约束的压缩测试,然后对应变能密度(SED)函数进行校准,研究有无嵌入前脂肪细胞的水凝胶的大变形力学行为。结果。检查了四个测试组:(1)制备后无细胞的水凝胶标本,(2)和(3)分别培养有和没有细胞的3天培养的水凝胶标本,以及(4)培养了6天的水凝胶标本与细胞。发现一个单项Ogden SED可以充分描述所有实验组中水凝胶样品的超弹性行为。重要的是,我们发现水凝胶的机械性能经过压缩后,与天然脂肪组织的机械性能非常吻合,更好的适应性发生在水凝胶制备后的3-6天。第三,当包含成熟脂肪细胞时,HA / ADH水凝胶的机械(应力-应变)行为的计算有限元研究表明,脂肪细胞的存在对构建物的刚度有轻微的影响。因此,我们得出结论,可注射的HA / ADH水凝胶可以充当在递送至天然组织(例如肝组织)期间和之后的短期中保护前脂肪细胞的容器。组织重建中的再生医学研究。

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