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利用成纤维细胞对电纺聚己内酯-胶原蛋白纳米纤维的表面生物相容性进行表征。

Characterization of the surface biocompatibility of the electrospun PCL-collagen nanofibers using fibroblasts.

作者信息

Zhang Y Z, Venugopal J, Huang Z-M, Lim C T, Ramakrishna S

机构信息

Division of Bioengineering, National University of Singapore, Singapore 117576.

出版信息

Biomacromolecules. 2005 Sep-Oct;6(5):2583-9. doi: 10.1021/bm050314k.

Abstract

The effect of nanofiber surface coatings on the cell's proliferation behavior was studied. Individually collagen-coated poly(epsilon-caprolactone) (PCL) nanofibers (i.e., Collagen-r-PCL in the form of a core-shell structure) were prepared by a coaxial electrospinning technique. A roughly collagen-coated PCL nanofibrous matrix was also prepared by soaking the PCL matrix in a 10 mg/mL collagen solution overnight. These two types of coated nanofibers were then used to investigate differences in biological responses in terms of proliferation and cell morphology of human dermal fibroblasts (HDF). It was found that coatings of collagen on PCL nanofibrous matrix definitely favored cells proliferation, and the efficiency is coating means dependent. As compared to PCL, the HDF density on the Collagen-r-PCL nanofiber membrane almost increased linearly by 19.5% (2 days), 22.9% (4 days), and 31.8% (6 days). In contrast, the roughly collagen-coated PCL increased only by 5.5% (2 days), 11.0% (4 days), and 21.0% (6 days). SEM observation indicated that the Collagen-r-PCL nanofibers encouraged cell migration inside the scaffolds. These findings suggest that the Collagen-r-PCL nanofibers can be used as novel functional biomimetic nanofibers toward achieving excellent integration between cells and scaffolds for tissue engineering applications.

摘要

研究了纳米纤维表面涂层对细胞增殖行为的影响。通过同轴静电纺丝技术制备了单独的胶原包覆聚(ε-己内酯)(PCL)纳米纤维(即核壳结构形式的胶原-r-PCL)。还通过将PCL基质在10mg/mL胶原溶液中浸泡过夜制备了大致胶原包覆的PCL纳米纤维基质。然后使用这两种类型的包覆纳米纤维来研究人皮肤成纤维细胞(HDF)在增殖和细胞形态方面的生物学反应差异。发现PCL纳米纤维基质上的胶原涂层肯定有利于细胞增殖,并且效率取决于涂层方式。与PCL相比,胶原-r-PCL纳米纤维膜上的HDF密度在2天内几乎线性增加了19.5%,4天内增加了22.9%,6天内增加了31.8%。相比之下,大致胶原包覆的PCL仅在2天内增加了5.5%,4天内增加了11.0%,6天内增加了21.0%。扫描电子显微镜观察表明,胶原-r-PCL纳米纤维促进了支架内的细胞迁移。这些发现表明,胶原-r-PCL纳米纤维可作为新型功能性仿生纳米纤维,用于在组织工程应用中实现细胞与支架之间的优异整合。

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