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聚甲基丙烯酸甲酯(PMMA)接枝胶原蛋白支架增强的 PdO-TiO 纳米复合材料。

Polymethyl methacrylate (PMMA) grafted collagen scaffold reinforced by PdO-TiO nanocomposites.

机构信息

Chemical Laboratory, CSIR-Central Leather Research Institute, Adyar, Chennai, 600 020, India.

Biochemistry and Biotechnology Laboratory, CSIR-Central Leather Research Institute, Adyar, Chennai, 600 020, India.

出版信息

Mater Sci Eng C Mater Biol Appl. 2020 Mar;108:110378. doi: 10.1016/j.msec.2019.110378. Epub 2019 Nov 2.

Abstract

In the past few decades, the design and fabrication of bio-scaffolds exhibiting structural stability in long-term and biocompatibility has received much attention in the field of tissue engineering application. In this direction, we have synthesized different mole ratio of PdO-TiO nanocomposites (1:1, 2:1 and 3:1 of Pd:Ti, size 5-11nm, 7-16 nm and 9-22 nm) through a simple single step sol-gel method. The obtained nanocomposites of different sizes were assimilated into poly (methyl methacrylate) grafted collagen biopolymer (g-PMMA-Collagen), resulting in a PdO-TiO-g-PMMA-Collagen based scaffold. Physico-chemical properties and biocompatibility of g-PMMA-Collagen/PdO-TiO-g-PMMA-Collagen scaffolds were analysed by using various techniques such as XRD, FT-IR, TGA, DSC, Universal Testing Machine, MTT, Alkaline phosphatase, Alizarin Red S staining assay and the obtained results were compared against pure collagen scaffold. Our results suggest that the incorporation of 1:1 mol ratio PdO-TiO nanocomposite (Size, 5-11 nm) offers a higher thermal stability (83.45 °C) and mechanical strength (Young's modulus 105.57 MPa) than the pure collagen scaffold (71.64 °C, 11.67 MPa). The PdO-TiO endowed scaffolds were not toxic to MG 63 cells (human osteosarcoma) and enhanced the ALP activity on the scaffolds during in vitro osteogenic differentiation. This work provides a new approach for mechanical reinforcing and enhanced osteogenic activity of collagen scaffolds without affecting its conformation or biocompatibility, an aspect that possibly makes them ideal for bone tissue engineering applications.

摘要

在过去的几十年中,设计和制造具有结构稳定性和生物相容性的生物支架在组织工程应用领域受到了广泛关注。在这一方向上,我们通过简单的一步溶胶-凝胶法合成了不同摩尔比的 PdO-TiO 纳米复合材料(Pd:Ti 为 1:1、2:1 和 3:1,尺寸为 5-11nm、7-16nm 和 9-22nm)。将不同尺寸的所得纳米复合材料同化到聚甲基丙烯酸甲酯接枝胶原蛋白生物聚合物(g-PMMA-Collagen)中,得到基于 PdO-TiO-g-PMMA-Collagen 的支架。通过使用各种技术,如 XRD、FT-IR、TGA、DSC、万能试验机、MTT、碱性磷酸酶、茜素红 S 染色测定法,分析了 g-PMMA-Collagen/PdO-TiO-g-PMMA-Collagen 支架的物理化学性质和生物相容性,并将结果与纯胶原蛋白支架进行了比较。我们的结果表明,掺入 1:1mol 比 PdO-TiO 纳米复合材料(尺寸为 5-11nm)可提供比纯胶原蛋白支架更高的热稳定性(83.45°C)和机械强度(杨氏模量 105.57MPa)。PdO-TiO 赋予的支架对 MG63 细胞(人骨肉瘤)无毒性,并在体外成骨分化过程中增强了支架上的 ALP 活性。这项工作为机械增强和增强胶原蛋白支架的成骨活性提供了一种新方法,而不会影响其构象或生物相容性,这可能使它们成为理想的骨组织工程应用材料。

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