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Collagen-hyaluronic acid scaffolds for adipose tissue engineering.

机译:胶原蛋白透明质酸支架,用于脂肪组织工程。

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Three-dimensional (3-D) in vitro models of the mammary gland require a scaffold matrix that supports the development of adipose stroma within a robust freely permeable matrix. 3-D porous collagen-hyaluronic acid (HA: 7.5% and 15%) scaffolds were produced by controlled freeze-drying technique and crosslinking with 1-ethyl-3-(3-dimethylaminopropyl)-carbodiimide hydrochloride. All scaffolds displayed uniform, interconnected pore structure (total porosity approximately 85%). Physical and chemical analysis showed no signs of collagen denaturation during the formation process. The values of thermal characteristics indicated that crosslinking occurred and that its efficiency was enhanced by the presence of HA. Although the crosslinking reduced the swelling of the strut material in water, the collagen-HA matrix as a whole tended to swell more and show higher dissolution resistance than pure collagen samples. The compressive modulus and elastic collapse stress were higher for collagen-HA composites. All the scaffolds were shown to support the proliferation and differentiation 3T3-L1 preadipocytes while collagen-HA samples maintained a significantly increased proportion of cycling cells (Ki-67+). Furthermore, collagen-HA composites displayed significantly raised Adipsin gene expression with adipogenic culture supplementation for 8 days vs. control conditions. These results indicate that collagen-HA scaffolds may offer robust, freely permeable 3-D matrices that enhance mammary stromal tissue development in vitro.
机译:乳腺的三维(3-D)体外模型需要一种支架基质,以支持稳固的自由渗透基质中脂肪基质的形成。通过控制冷冻干燥技术并与1-乙基-3-(3-二甲基氨基丙基)-碳二亚胺盐酸盐交联来制备3-D多孔胶原-透明质酸(HA:7.5%和15%)支架。所有支架均显示出均匀,相互连接的孔结构(总孔隙率约为85%)。物理和化学分析表明在形成过程中没有胶原变性的迹象。热特性的值表明发生交联,并且HA的存在提高了交联效率。尽管交联减少了撑杆材料在水中的溶胀,但是与纯胶原蛋白样品相比,胶原蛋白-HA基质总体上倾向于溶胀更多,并且显示出更高的溶解性。胶原-HA复合材料的压缩模量和弹性塌陷应力较高。已显示所有支架均支持3T3-L1前脂肪细胞的增殖和分化,而胶原蛋白HA样品保持着循环细胞(Ki-67 +)的比例显着增加。此外,与对照条件相比,在连续8天的脂肪培养培养物中,胶原蛋白HA复合材料显示出显着提高的脂肪蛋白基因表达。这些结果表明,胶原蛋白-HA支架可以提供强大的,可自由渗透的3-D基质,从而增强体外乳腺基质组织的发育。

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