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仿生羟基磷灰石/胶原蛋白复合材料在兔原位模型中驱动骨微环境重塑。

Biomimetic hydroxyapatite/collagen composite drives bone niche recapitulation in a rabbit orthotopic model.

作者信息

Minardi S, Taraballi F, Cabrera F J, Van Eps J, Wang X, Gazze S A, Fernandez-Mourev Joseph S, Tampieri A, Francis L, Weiner B K, Tasciotti E

机构信息

Center for Musculoskeletal Regeneration, Houston Methodist Research Institute (HMRI), 6670 Bertner Ave. Houston, TX 77030, USA.

National Research Council of Italy, Institute of Science and Technology for Ceramics (ISTEC-CNR), Via Granarolo 64, 48018 Faenza, RA Italy.

出版信息

Mater Today Bio. 2019 Apr 20;2:100005. doi: 10.1016/j.mtbio.2019.100005. eCollection 2019 Mar.

Abstract

Synthetic osteoinductive materials that mimic the human osteogenic niche have emerged as ideal candidates to address this area of unmet clinical need. In this study, we evaluated the osteoinductive potential in a rabbit orthotopic model of a magnesium-doped hydroxyapatite/type I collagen ​(MHA/Coll) composite. The composite was fabricated to exhibit a highly fibrous structure of carbonated MHA with 70% (±2.1) porosity and a Ca/P ratio of 1.5 (±0.03) as well as a diverse range of elasticity separated to two distinct stiffness peaks of low (2.35 ​± ​1.16 ​MPa) and higher (9.52 ​± ​2.10 ​MPa) Young's Modulus. Data suggested that these specific compositional and nanomechanical material properties induced the deposition of mineral phase, while modulating the expression of early and late osteogenic marker genes, in a 3D model using human bone marrow-derived mesenchymal stem cells (hBM-MSCs). When tested in the rabbit orthotopic model, MHA/Col1 scaffold induction of new trabecular bone mass was observed by DynaCT scan, only 2 weeks after implantation. Bone histomorphometry at 6 weeks revealed a significant amount of bone matrix formation. qPCR demonstrated MHA/Coll scaffold full cellularization and the expression of both osteogenesis-associated genes () as well as hematopoietic () and bone marrow stromal cell marker genes (). Altogether, these data provide ​evidence of the solid osteoinductive potential of MHA/Coll and its suitability for multiple approaches of bone regeneration.

摘要

能够模拟人类骨生成微环境的合成骨诱导材料已成为满足这一未满足临床需求领域的理想候选材料。在本研究中,我们在兔原位模型中评估了镁掺杂羟基磷灰石/ I型胶原蛋白(MHA/Coll)复合材料的骨诱导潜力。该复合材料制成具有高度纤维状结构的碳酸化MHA,孔隙率为70%(±2.1),钙磷比为1.5(±0.03),以及具有不同弹性范围,分为低(2.35±1.16 MPa)和高(9.52±2.10 MPa)杨氏模量的两个不同刚度峰值。数据表明,这些特定的组成和纳米机械材料特性在使用人骨髓间充质干细胞(hBM-MSCs)的三维模型中诱导了矿相沉积,同时调节了早期和晚期成骨标记基因的表达。在兔原位模型中进行测试时,植入仅2周后通过DynaCT扫描观察到MHA/Col1支架诱导新的小梁骨量。6周时的骨组织形态计量学显示有大量骨基质形成。qPCR显示MHA/Coll支架完全细胞化以及成骨相关基因()以及造血()和骨髓基质细胞标记基因()的表达。总之,这些数据提供了MHA/Coll具有强大骨诱导潜力及其适用于多种骨再生方法的证据。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f0c6/7061691/07b3680be12f/gr1.jpg

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