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用静电纺丝聚(DL-丙交酯-共-乙交酯)纳米纤维膜支架构建的牙周膜细胞结构

Periodontal ligament cellular structures engineered with electrospun poly(DL-lactide-co-glycolide) nanofibrous membrane scaffolds.

作者信息

Inanç Bülend, Arslan Y Emre, Seker Sükran, Elçin A Eser, Elçin Y Murat

机构信息

Tissue Engineering and Biomaterials Laboratory, Ankara University, Faculty of Science and Biotechnology Institute, Ankara 06100, Turkey.

出版信息

J Biomed Mater Res A. 2009 Jul;90(1):186-95. doi: 10.1002/jbm.a.32066.

Abstract

Periodontal tissue engineering is expected to overcome the limitations associated with the existing regenerative techniques for the treatment of periodontal defects involving alveolar bone, cementum, and periodontal ligament. Cell-based tissue engineering approaches involve the utilization of in vitro expanded cells with regenerative capacity and their delivery to the appropriate sites via biomaterial scaffolds. The aim of this study was to establish living periodontal ligament cell-containing structures on electrospun poly(DL-lactic-co-glycolic acid) (PLGA) nanofiber membrane scaffolds, assess their viability and characteristics, and engineer multilayered structures amenable to easy handling. Human periodontal ligament (hPDL) cells were expanded in explant culture and then characterized morphologically and immunohistochemically. PLGA nanofiber membranes were prepared by the electrospinning process; mechanical tensile properties were determined, surface topography, nanofiber size, and porosity status were investigated with SEM. Cells were seeded on the membranes at approximately 50,000 cell/cm(2) and cultured for 21 days either in expansion or in osteogenic induction medium. Cell adhesion and viability were demonstrated using SEM and MTT, respectively, and osteogenic differentiation was determined with IHC and immunohistomorphometric evaluation of osteopontin, osteocalcin, and bone sialoprotein marker expression. At days 3, 6, 9, and 12 additional cell/membrane layers were deposited on the existing ones and multilayered hybrid structures were established. Results indicate the feasibility of periodontal ligament cell-containing tissue-like structures engineering with PDL cells and electrospun nanofiber PLGA scaffolds supporting cell adhesion, viability and osteogenic differentiation properties of cells in hybrid structures amenable to macroscopic handling.

摘要

牙周组织工程有望克服现有再生技术在治疗涉及牙槽骨、牙骨质和牙周韧带的牙周缺损方面的局限性。基于细胞的组织工程方法包括利用具有再生能力的体外扩增细胞,并通过生物材料支架将其递送至合适的部位。本研究的目的是在电纺聚(DL-乳酸-乙醇酸)(PLGA)纳米纤维膜支架上构建含活牙周韧带细胞的结构,评估其活力和特性,并构建易于操作的多层结构。人牙周韧带(hPDL)细胞在组织块培养中扩增,然后进行形态学和免疫组织化学鉴定。通过静电纺丝工艺制备PLGA纳米纤维膜;测定其机械拉伸性能,用扫描电子显微镜(SEM)研究表面形貌、纳米纤维尺寸和孔隙率状况。将细胞以约50,000个细胞/cm²的密度接种到膜上,在扩增培养基或成骨诱导培养基中培养21天。分别用SEM和MTT证明细胞黏附和活力,用免疫组织化学(IHC)以及对骨桥蛋白、骨钙素和骨唾液蛋白标志物表达的免疫组织形态计量学评估来确定成骨分化。在第3、6、9和12天,在现有细胞/膜层上额外沉积细胞/膜层,构建多层混合结构。结果表明,利用PDL细胞和电纺纳米纤维PLGA支架构建含牙周韧带细胞的组织样结构是可行的,该支架支持细胞在易于宏观操作的混合结构中的黏附、活力和成骨分化特性。

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