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Electrospun Zein/Gelatin Scaffold-Enhanced Cell Attachment and Growth of Human Periodontal Ligament Stem Cells

机译:静电纺丝玉米蛋白/明胶支架增强的细胞附着和人类牙周膜干细胞的生长。

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摘要

Periodontitis is a widespread dental disease affecting 10 to 15% of worldwide adult population, yet the current treatments are far from satisfactory. The human periodontal ligament stem cell is a promising potential seed cell population type in cell-based therapy and tissue regeneration, which require appropriate scaffold to provide a mimic extracellular matrix. Zein, a native protein derived from corn, has an excellent biodegradability, and therefore becomes a hotspot on research and application in the field of biomaterials. However, the high hydrophobicity of zein is unfavorable for cell adhesion and thus greatly limits its use. In this study, we fabricate co-electrospun zein/gelatin fiber scaffolds in order to take full advantages of the two natural materials and electrospun fiber structure. Zein and gelatin in four groups of different mass ratios (100:00, 100:20, 100:34, 100:50), and dissolved the mixtures in 1,1,1,3,3,3-hexafluoro-2-propanol, then produced membranes by electrospinning. The results showed that the scaffolds were smooth and homogeneous, as shown in scanning electron micrographs. The diameter of hybrid fibers was increased from 69 ± 22 nm to 950 ± 356 nm, with the proportion of gelatin increase. The cell affinity of zein/gelatin nanofibers was evaluated by using human periodontal ligament stem cells. The data showed that hydrophilicity and cytocompatibility of zein nanofibers were improved by blended gelatin. Taken together, our results indicated that the zein/gelatin co-electrospun fibers had sufficient mechanical properties, satisfied cytocompatibility, and can be utilized as biological scaffolds in the field of tissue regeneration.
机译:牙周炎是一种广泛的牙齿​​疾病,影响了全世界10%至15%的成年人口,但是目前的治疗方法远未令人满意。在基于细胞的治疗和组织再生中,人牙周膜干细胞是一种有前途的潜在种子细胞群体类型,需要适当的支架来提供模拟的细胞外基质。玉米醇溶蛋白,一种来自玉米的天然蛋白质,具有出色的生物降解性,因此成为生物材料领域研究和应用的热点。但是,玉米醇溶蛋白的高疏水性不利于细胞粘附,因此大大限制了其使用。在这项研究中,我们制造共电纺玉米蛋白/明胶纤维支架,以便充分利用两种天然材料和电纺纤维结构的优势。将玉米蛋白和明胶分成四组,分别以不同的质量比(100:00、100:20、100:34、100:50)混合,并将混合物溶解在1,1,1,3,3,3-六氟-2-丙醇中,然后通过静电纺丝生产膜。结果表明,如扫描电子显微照片所示,支架是光滑且均匀的。随着明胶比例的增加,杂化纤维的直径从69±22 nm增加到950±356 nm。玉米蛋白/明胶纳米纤维的细胞亲和力通过使用人牙周膜干细胞进行评估。数据表明,掺合明胶改善了玉米醇溶蛋白纳米纤维的亲水性和细胞相容性。综上所述,我们的结果表明玉米蛋白/明胶共电纺丝纤维具有足够的机械性能,令人满意的细胞相容性,并且可以在组织再生领域中用作生物支架。

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