Regional Photoimmobilized Growth Factors-Polystyrene Scaffold Induced Reverted Senescence BMSCs for Bone Regeneration

Ling-Kun Zhang, Wu-Ya Chen, Huimin Wang, Yuxuan Jiao, Yunzhi Tang, Yi Zhang, Yanqing Guan
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Abstract

Bone diseases such as bone cancer, osteomalacia, osteoporosis, and osteomyelitis represent major illnesses that threaten the health of humans. Bone transplantations often needs restoration to the damaged bone. However, autografts still have some limitations. This study aimed to provide a region-specific immobilization of growth factors (GFs) in the scaffolds, which in turn can help in differentiating of BMSCs into three different cells in the same scaffold. The exposure tert-butyl hydroperoxide (t-BHP) aging model of BMSCs was reverted in vitro by using CNT-IGF-PCL-PLA scaffolds. Polystyrene (PS) region-specific immobilized GFs was then used by interference and diffraction of ultraviolet (UV). In addition, the reverted BMSCs were regionally differentiation into three kinds of cells. In vivo, GFs-PS scaffolds accelerate bone healing in injured Sprague-Dawley (SD) rats after treatment for 21 days. The CNT-IGF-PCL-PLA scaffolds demonstrated good biological and chemical properties, and the external experiments showed significant resistance of senescence in BMSC. Meanwhile, GFs-PS effectively promoted the differentiation of reverted BMSCs in the designated area on day 21. These results suggested that GFs are localized by co-immobilization on PS for the first time by optical interference and diffraction of UV light, which isconsidered as a short-time, low cost, and simple operation method.
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区域光固定化生长因子-聚苯乙烯支架诱导恢复衰老骨髓间充质干细胞骨再生
骨癌、骨软化症、骨质疏松症和骨髓炎等骨病是威胁人类健康的主要疾病。骨移植通常需要修复受损的骨。然而,自体移植物仍有一些局限性。本研究旨在提供生长因子(GFs)在支架中的区域特异性固定,从而有助于BMSCs在同一支架中分化为三种不同的细胞。采用CNT-IGF-PCL-PLA支架体外修复骨髓间充质干细胞暴露性过氧化叔丁基(t-BHP)老化模型。然后通过干涉和紫外衍射对聚苯乙烯(PS)区域特异性固定化GFs进行了研究。此外,修复的骨髓间充质干细胞被区域分化为3种细胞。在体内,GFs-PS支架在治疗21天后加速了SD大鼠的骨愈合。cnts - igf - pcl - pla支架具有良好的生物学和化学性能,体外实验显示其在骨髓间充质干细胞中具有明显的抗衰老能力。同时,GFs-PS在第21天有效促进了指定区域内恢复的骨髓间充质干细胞的分化。这些结果表明,利用光干涉和紫外光衍射首次将GFs共固定在PS上,是一种时间短、成本低、操作简单的方法。
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