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Preparation of a new composite combining strengthened β-tricalcium phosphate with platelet-rich plasma as a potential scaffold for the repair of bone defects

机译:结合增强的β-磷酸三钙和富血小板血浆作为修复骨缺损的潜在支架的新型复合材料的制备

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摘要

β-tricalcium phosphate (β-TCP) and platelet-rich plasma (PRP) are commonly used in bone tissue engineering. In the present study, a new composite combining strengthened β-TCP and PRP was prepared and its morphological and mechanical properties were investigated by scanning electron microscopy (SEM) and material testing. The biocompatibility was evaluated by measuring the adhesion rate and cytotoxicity of bone marrow stromal cells (BMSCs). The strengthened β-TCP/PRP composite had an appearance like the fungus Boletus kermesinus with the PRP gel distributed on the surface of the micropores. The maximum load and load intensity were 945.6±86.4 N and 13.1±0.5 MPa, which were significantly higher than those of β-TCP (110.1±14.3 N and 1.6±0.2 MPa; P<0.05). The BMSC adhesion rate on the strengthened β-TCP/PRP composite was >96% after 24 h, with a cell cytotoxicity value of zero. SEM micrographs revealed that following seeding of BMSCs onto the composite in high-glucose Dulbecco’s modified Eagle’s medium culture for two weeks, the cells grew well and exhibited fusiform, spherical and polygonal morphologies, as well as pseudopodial connections. The strengthened β-TCP/PRP composite has the potential to be used as a scaffold in bone tissue engineering due to its effective biocompatibility and mechanical properties.
机译:β-磷酸三钙(β-TCP)和富血小板血浆(PRP)通常用于骨组织工程。本研究制备了一种新型的增强β-TCP和PRP相结合的复合材料,并通过扫描电子显微镜(SEM)和材料测试研究了其形态和力学性能。通过测量骨髓基质细胞(BMSCs)的黏附率和细胞毒性来评估生物相容性。增强的β-TCP/ PRP复合材料的外观类似于真菌牛肝菌,其PRP凝胶分布在微孔表面。最大负荷和负荷强度分别为945.6±86.4 N和13.1±0.5 MPa,明显高于β-TCP(110.1±14.3 N和1.6±0.2 MPa; P <0.05)。 24小时后,增强的β-TCP/ PRP复合材料的BMSC粘附率> 96%,细胞毒性值为零。 SEM显微照片显示,在高葡萄糖的Dulbecco改良的Eagle培养基中将BMSCs播种到复合材料中两周后,细胞生长良好,并呈梭状,球形和多边形形态,并具有假足连接。增强的β-TCP/ PRP复合材料由于其有效的生物相容性和机械性能,有可能在骨组织工程中用作支架。

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