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负载山奈酚的生物活性玻璃基支架用于骨组织工程:体外和体内评价。

Kaempferol-loaded bioactive glass-based scaffold for bone tissue engineering: in vitro and in vivo evaluation.

机构信息

Molecular Medicine Research Center, Research Institute of Basic Medical Sciences, Rafsanjan University of Medical Sciences, Rafsanjan, Iran.

Department of Surgery and Radiology, Faculty of Veterinary Medicine, University of Tehran, Dr. Qarib Street, Azadi Street, Tehran, 1419963111, Iran.

出版信息

Sci Rep. 2023 Jul 31;13(1):12375. doi: 10.1038/s41598-023-39505-8.

Abstract

Due to the increasing prevalence of bone disorders among people especially in average age, the future of treatments for osseous abnormalities has been illuminated by scaffold-based bone tissue engineering. In this study, in vitro and in vivo properties of 58S bioactive glass-based scaffolds for bone tissue engineering (bare (B.SC), Zein-coated (C.SC), and Zein-coated containing Kaempferol (KC.SC)) were evaluated. This is a follow-up study on our previously published paper, where we synthesized 58S bioactive glass-based scaffolds coated with Kaempferol-loaded Zein biopolymer, and characterized from mostly engineering points of view to find the optimum composition. For this aim, in vitro assessments were done to evaluate the osteogenic capacity and biological features of the scaffolds. In the in vivo section, all types of scaffolds with/without bone marrow-derived stem cells (BMSC) were implanted into rat calvaria bone defects, and potential of bone healing was assessed using imaging, staining, and histomorphometric analyses. It was shown that, Zein-coating covered surface cracks leading to better mechanical properties without negative effect on bioactivity and cell attachment. Also, BMSC differentiation proved that the presence of Kaempferol caused higher calcium deposition, increased alkaline phosphatase activity, bone-specific gene upregulation in vitro. Further, in vivo study confirmed positive effect of BMSC-loaded KC.SC on significant new bone formation resulting in complete bone regeneration. Combining physical properties of coated scaffolds with the osteogenic effect of Kaempferol and BMSCs could represent a new strategy for bone regeneration and provide a more effective approach to repairing critical-sized bone defects.

摘要

由于骨骼疾病在人群中尤其是在平均年龄中的发病率不断增加,基于支架的骨组织工程为骨异常的治疗前景带来了曙光。在这项研究中,评估了用于骨组织工程的 58S 生物活性玻璃基支架的体外和体内特性(裸(B.SC)、玉米醇溶蛋白涂层(C.SC)和载有山奈酚的玉米醇溶蛋白涂层(KC.SC))。这是我们之前发表的论文的后续研究,我们在该论文中合成了载有山奈酚的玉米醇溶蛋白涂层的 58S 生物活性玻璃基支架,并从大多是工程角度对其进行了表征,以找到最佳的组成。为此,进行了体外评估以评估支架的成骨能力和生物学特性。在体内部分,将所有类型的支架(有/无骨髓间充质干细胞(BMSC))植入大鼠颅骨骨缺损中,并使用成像、染色和组织形态计量学分析评估骨愈合的潜力。结果表明,玉米醇溶蛋白涂层覆盖了表面裂缝,从而在不影响生物活性和细胞附着的情况下提高了机械性能。此外,BMSC 分化证明,山奈酚的存在导致钙沉积增加,体外碱性磷酸酶活性增加,骨特异性基因上调。进一步的体内研究证实,负载 BMSC 的 KC.SC 对显著的新骨形成有积极影响,导致完全的骨再生。将涂层支架的物理性能与山奈酚和 BMSCs 的成骨作用相结合,可能代表一种新的骨再生策略,并为修复临界尺寸骨缺损提供更有效的方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c024/10390521/c442421bf167/41598_2023_39505_Fig1_HTML.jpg

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