Mimicking bone remodeling scaffolds of polyvinylalcohol/silk fibroin with phytoactive compound of soy protein isolate as surgical supporting biomaterials for tissue formation at defect area in osteoporosis; characterization, morphology, andin-vitrotesting.

Nattawat Watcharajittanont, Kanon Jatuworapruk, Worasak Prarokijjak, Prawichaya Sangsuwan, Jirut Meesane
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Abstract

Mimicking bone remodeling scaffolds were developed as supportive biomaterials to promote tissue formation at defect sites in osteoporosis. Scaffolds made of polyvinyl alcohol (PVA) were mixed with varying weight ratios of silk fibroin (SF) and a phytoactive compound-based soy protein isolate (SPI); PVA30SF, PVA20SF10SPI, PVA15SF15SPI, PVA10SF20SPI, PVA30SPI. PVA was used as control. These components were mixed into aqueous solution and crosslinking with EDC before freeze thawing and freeze drying, respectively. Then, the scaffolds were characterized at the molecular level using Fourier transform infrared spectroscopy and their morphology was observed using scanning electron microscopy. Physical properties including swelling and degradation were tested, as well as mechanical properties like stress-strain behavior and modulus. The biological performance of the scaffolds was evaluated through osteoblast cell culturing, assessing cell viability, proliferation, alkaline phosphatase (ALP) activity, calcium content, and calcium deposition. The results demonstrate that the scaffolds with both SF and SPI had greater molecular mobility of -OH, amide I, II, and III groups, compared to the scaffold with only SF or SPI. These scaffolds also displayed larger pore sizes. Scaffolds with both SF and SPI showed higher swelling and degradation rates than those with only SF or SPI. Additionally, they exhibited better cell viability and calcium deposition, along with increased cell proliferation, ALP activity, and calcium content. Notably, the scaffold with a higher amount of SPI, PVA10SF20SPI, exhibited the most suitable performance for enhancing cell response, thereby promoting bone formation. This scaffold is proposed as a supportive biomaterial to be incorporated with plates and screws for bone fixation at defect sites in osteoporosis.

含大豆分离蛋白活性化合物的聚乙烯醇/丝素蛋白模拟骨重建支架作为骨质疏松症缺损区组织形成的外科支撑材料表征,形态学和体外测试。
模拟骨重塑支架是一种促进骨质疏松症缺损部位组织形成的支持性生物材料。由聚乙烯醇(PVA)制成的支架与不同重量比的丝素(SF)和基于植物活性化合物的大豆分离蛋白(SPI)混合;Pva30sf, pva10sf20spi, pva20sf10spi, pva30spi。以PVA为对照。在冻融和冷冻干燥前,将这些组分分别混合到水溶液中,与EDC交联。然后利用FTIR在分子水平上对支架进行表征,并用扫描电镜观察支架的形态。测试了膨胀和降解等物理性能,以及应力-应变行为和模量等机械性能。通过成骨细胞培养,评估细胞活力、增殖、碱性磷酸酶活性、钙含量和钙沉积来评估支架的生物学性能。结果表明,与仅含有SF或SPI的支架相比,含有SF和SPI的支架具有更高的-OH、酰胺I、II和III基团的分子迁移率。这些支架也显示出更大的孔径。与仅含SF或SPI的支架相比,含SF和SPI的支架具有更高的溶胀率和降解率。此外,它们表现出更好的细胞活力和钙沉积,以及细胞增殖、ALP活性和钙含量的增加。值得注意的是,SPI含量较高的支架PVA10SF20SPI在增强细胞反应从而促进骨形成方面表现出最合适的性能。该支架被认为是一种支持生物材料,可与钢板和螺钉结合用于骨质疏松症缺陷部位的骨固定。 。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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