人脐带-华氏胶间充质干细胞在电纺丝聚乳酸蜡纳米纤维支架上的性能评价

Tina Shafaf, E. Hoveizi, S. R. Kazeminejad
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摘要

背景:间充质干细胞是一种多能性基质细胞,能够分化成不同的细胞系。如今,脐带沃顿氏冻(UC-WJ)越来越多地被用作干细胞的来源。研究表明,支架可以影响干细胞向不同细胞的分化,提高细胞活力和增殖能力。本研究旨在评价WJ-MSCs与PLA/Wax支架的粘附性和生存能力。材料与方法:采用静电纺丝法制备PLA/Wax支架。用扫描电镜(SEM)和MTT法分别观察MSCs在支架上的粘附和活性。结果:SEM结果表明,纤维均匀、均匀、无珠,具有良好的质量性能,在PLA中加入蜡可以显著减小纳米纤维的直径。这些研究证实细胞大量且大小合适地附着在支架上。MTT实验结果表明,细胞制备的支架具有良好的生物相容性,在此期间间充质细胞存活率显著提高。结论:PLA/Wax支架具有促进细胞附着、存活和增殖的作用,有望成为提高3d培养效率、治疗疾病的重要候选材料。
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Evaluation of behavior of human umbilical cord-Wharton’s jelly mesenchymal stem cell on electrospun poly (lactic acid)wax nanofibers scaffold
Background: Mesenchymal stem cells are pluripotent stromal cells which are capable of differentiating into different cell lines. Nowadays, umbilical cord Wharton’s jelly (UC-WJ) are increasingly used as sources of stem cells. Studies show that scaffolds can affect the differentiation of stem cells to different cells and cause higher cell viability and proliferation as well. The present study aimed to evaluate the adhesion and viability of WJ-MSCs to PLA/Wax scaffold. Materials and methods: PLA/Wax scaffold was prepared using electrospinning method. Adhesion and viability of MSCs on this scaffold was investigated using scanning electron microscope (SEM) and MTT assay respectively. Results: SEM results showed that the fibers were homogeneous, uniform, and free of beads with high quality property, and adding wax to PLA significantly reduced the diameter of the nanofibers. These studies confirmed that the cells were attached to the scaffold in large numbers and with appropriate size. The results of MTT show good biocompatibility of the scaffold made with the cells and a significant increase in the survival rate of mesenchymal cells was observed during the period. Conclusion: In conclusion, using PLA/Wax scaffold has promoted the attachment, survival and proliferation of the cells and has the potential to be an important candidate for developing the efficiency of 3D-cultures in order to cure diseases.
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