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仿生三维明胶-蒙脱土/纤维素支架的制备、表征及体外生物学研究及其在组织工程中的应用。

Preparation, characterization and in vitro biological study of biomimetic three-dimensional gelatin-montmorillonite/cellulose scaffold for tissue engineering.

机构信息

Chemical Industries Research Division, Center of Excellency for Advanced Sciences, National Research Centre, Dokki, Cairo, Egypt.

出版信息

J Mater Sci Mater Med. 2009 Dec;20(12):2527-40. doi: 10.1007/s10856-009-3818-x.

Abstract

This work focused on studying the effect of blending gelatin (Gel) with Cellulose (Cel), in the presence of montmorillonite (MMT), on the swelling behavior, in vitro degradation and surface morphology. Additionally, the effect of the prepared biocomposites on the characteristics of the human osteosarcoma cells (Saos-2), including proliferation, scaffold/cells interactions, apoptosis and their potential of the cells to induce osteogenesis and differentiation was evaluated. The crosslinked biocomposites with glutaraldehyde (GA) or N,N-methylene-bisacrylamide (MBA) was prepared via an intercalation process and freeze-drying technique. Properties including SEM morphology, X-ray diffraction characterization and in vitro biodegradation were investigated. The successful generation of 3-D biomimetic porous scaffolds incorporating Saos-2 cells indicated their potential for de novo bone formation that exploits cell-matrix interactions. In vitro studies revealed that the scaffolds containing 12 and 6% MMT crosslinked by 5 and 0.5% GA seem to be the two most efficient and effective biodegradable scaffolds, which promoted Saos-2 cells proliferation, migration, expansion, adhesion, penetration, spreading, and differentiation, respectively. MMT improved cytocompatibility between the osteoblasts and the biocomposite. In vitro analysis indicated good biocompatibility of the scaffold and presents the scaffold as a new potential candidate as suitable biohybrid material for tissue engineering.

摘要

本工作重点研究了在蒙脱土(MMT)存在的情况下,将明胶(Gel)与纤维素(Cel)混合对溶胀行为、体外降解和表面形态的影响。此外,还评估了制备的生物复合材料对人骨肉瘤细胞(Saos-2)特性的影响,包括增殖、支架/细胞相互作用、凋亡以及细胞诱导成骨和分化的潜力。通过插层法和冷冻干燥技术,用戊二醛(GA)或 N,N-亚甲基双丙烯酰胺(MBA)交联制备了交联生物复合材料。研究了包括 SEM 形貌、X 射线衍射表征和体外生物降解在内的性能。成功地生成了含有 Saos-2 细胞的 3-D 仿生多孔支架,表明它们具有利用细胞-基质相互作用进行新骨形成的潜力。体外研究表明,含有 12%和 6%MMT 并分别交联 5%和 0.5%GA 的支架似乎是两种最有效和有效的可生物降解支架,分别促进了 Saos-2 细胞的增殖、迁移、扩张、粘附、渗透、扩展和分化。MMT 提高了成骨细胞与生物复合材料之间的细胞相容性。体外分析表明支架具有良好的生物相容性,并将支架作为一种新的潜在候选材料,作为组织工程的合适生物杂交材料。

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