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一种基于细胞工程化的小肠黏膜下层的仿生骨构建物用于骨再生。

A Cell-Engineered Small Intestinal Submucosa-Based Bone Mimetic Construct for Bone Regeneration.

机构信息

1 Zhejiang Key Laboratory of Pathophysiology, Medical School, Ningbo University , Ningbo, People's Republic of China .

2 Ningbo Institute of Medical Sciences , Ningbo, People's Republic of China .

出版信息

Tissue Eng Part A. 2018 Jul;24(13-14):1099-1111. doi: 10.1089/ten.TEA.2017.0407. Epub 2018 Apr 12.

DOI:10.1089/ten.TEA.2017.0407
PMID:29318958
Abstract

Extracellular matrix (ECM)-ornamented biomaterials have attracted attention due to their high potential to improve the biofunctionality of original materials. It is thought that ECM with a bone mimetic microenvironment generated by the specific induction of osteoblasts would be more beneficial for bone regeneration than a regular ECM. In this study, we developed an osteogenic and mineralized ECM construct (Os/M-ECM-SIS) under the guidance of osteoblasts on a small intestinal submucosa (SIS) scaffold cotreated with icariin and calcium. The generated Os/M-ECM-SIS scaffolds exhibited similar morphology and inorganic components as natural bone and higher mechanical strength than ECM-SIS. Cell adhesion, proliferation, and differentiation of osteoblasts and fibroblasts were also enhanced in the cells cultured on the Os/M-ECM-SIS scaffolds. The Os/M-ECM-SIS scaffolds even promoted transdifferentiation of fibroblasts with an upregulation of osteogenic differentiation markers. In a calvarial defect model, new bone formation was greatly enhanced in defects implanted with the Os/M-ECM-SIS scaffolds compared with ECM-SIS scaffolds. Further study showed that the Os/M-ECM-SIS scaffolds promoted bone regeneration in vitro and in vivo via the Bmp/Smad-signaling pathway. Thus, this work proposes a valuable method for generating a mineralized bone mimetic scaffold with SIS as off-the-shelf bone graft substitute that provides an excellent osteogenic microenvironment, making it suitable for application in bone tissue engineering.

摘要

细胞外基质(ECM)修饰的生物材料因其具有提高原始材料生物功能性的巨大潜力而受到关注。人们认为,由成骨细胞特异性诱导产生的具有仿生骨微环境的 ECM 比普通 ECM 更有利于骨再生。在这项研究中,我们在小肠黏膜下层(SIS)支架上,用淫羊藿苷和钙共同处理,在成骨细胞的引导下开发了一种成骨和矿化 ECM 构建体(Os/M-ECM-SIS)。生成的 Os/M-ECM-SIS 支架表现出与天然骨相似的形态和无机成分,以及比 ECM-SIS 更高的机械强度。在 Os/M-ECM-SIS 支架上培养的细胞中,成骨细胞和纤维母细胞的黏附、增殖和分化也得到了增强。Os/M-ECM-SIS 支架甚至促进了纤维母细胞的转分化,上调了成骨分化标志物。在颅骨缺损模型中,与 ECM-SIS 支架相比,植入 Os/M-ECM-SIS 支架的缺损部位新骨形成明显增强。进一步的研究表明,Os/M-ECM-SIS 支架通过 Bmp/Smad 信号通路在体外和体内促进骨再生。因此,这项工作提出了一种有价值的方法,即用 SIS 作为现成的骨移植物替代物生成矿化的仿生骨支架,为骨组织工程提供了优异的成骨微环境,使其适用于骨组织工程。

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