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一种通过干热法与水热法相结合将DCPD包覆的β-TCP两步转化为低结晶度β-TCP多孔支架的新方法:对前成骨细胞反应的影响。

A novel two-step conversion from DCPD-coated β-TCP to low crystallinity β-TCP porous scaffolds via combination between dry heating and hydrothermal methods: Effects on pre-osteoblast cell responses.

作者信息

Mohammed Ahmed Hafedh Mohammed, Shariff Khairul Anuar, Abu Bakar Mohamad Hafizi, Salman Ali A, Matsugaki Aira, Nakano Takayoshi, Nirwana Intan, Nugraha Alexander Patera

机构信息

School of Materials and Mineral Resources Engineering, Engineering Campus, Universiti Sains Malaysia, Nibong Tebal, Malaysia.

Department of Materials Engineering, College of Engineering, Mustansiriyah University, Baghdad, Iraq.

出版信息

J Biomater Appl. 2025 Aug;40(2):218-235. doi: 10.1177/08853282251333231. Epub 2025 Apr 8.

Abstract

This study presents a novel two-step process to fabricate low crystallinity (LC) β-tricalcium phosphate (β-TCP) porous scaffolds and evaluates their implications for pre-osteoblast cell responses. The novelty of this study lies in the two-step conversion of dicalcium phosphate dihydrate (DCPD) -coated β-TCP porous scaffold into LC β-TCP porous scaffolds through a combination of dry heating and hydrothermal conditions at 200°C. The obtained LC β-TCP porous scaffolds were characterised using a Scanning Electron Microscope (SEM), X-Ray Diffraction (XRD), Fourier-Transform Infrared (FTIR), porosity, and compressive strength analysis confirmed the successful fabrication of LC β-TCP scaffolds. Besides, in vitro tests using pre-osteoblast MC3T3-E1 cells were conducted to investigate the cell responses toward LC β-TCP porous scaffolds. The results revealed that the LC β-TCP porous scaffolds were successfully fabricated by converting the DCPD-coated β-TCP into the dicalcium phosphate anhydrous (DCPA) coated β-TCP, followed by a hydrothermal process in a 0.1 mol/L calcium chloride (CaCl) aqueous solution at 200°C for 24 hours to obtain LC of pure β-TCP scaffold. Moreover, in vitro cell study indicated that the cell density and proliferation surrounding the surface of the LC β-TCP porous scaffold were greater than DCPD-coated β-TCP porous scaffolds. The findings from this study are expected to significantly impact bioceramic technology by enhancing cell responses.

摘要

本研究提出了一种新颖的两步法来制备低结晶度(LC)β-磷酸三钙(β-TCP)多孔支架,并评估其对前成骨细胞反应的影响。本研究的新颖之处在于通过在200°C下结合干热和水热条件,将二水磷酸二钙(DCPD)涂层的β-TCP多孔支架两步转化为LC β-TCP多孔支架。使用扫描电子显微镜(SEM)、X射线衍射(XRD)、傅里叶变换红外(FTIR)对所得的LC β-TCP多孔支架进行表征,孔隙率和抗压强度分析证实成功制备了LC β-TCP支架。此外,使用前成骨细胞MC3T3-E1细胞进行体外测试,以研究细胞对LC β-TCP多孔支架的反应。结果表明,通过将DCPD涂层的β-TCP转化为无水磷酸二钙(DCPA)涂层的β-TCP,然后在0.1 mol/L氯化钙(CaCl)水溶液中于200°C进行24小时水热过程,成功制备了LC β-TCP多孔支架,从而获得了纯β-TCP支架的低结晶度。此外,体外细胞研究表明,LC β-TCP多孔支架表面周围的细胞密度和增殖大于DCPD涂层的β-TCP多孔支架。预期本研究的结果将通过增强细胞反应对生物陶瓷技术产生重大影响。

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