新型泡沫磷酸镁抗菌骨水泥增强骨。

IF 3.2 4区 医学 Q2 ENGINEERING, BIOMEDICAL
Jie Chen, Ziqing Cheng, Jiawen Wang, Huifen Ding, Kai Wang, Ping Deng, Ling Xu, Jiao Huang
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引用次数: 0

摘要

在植牙手术中,感染被认为是导致骨移植失败的主要因素。迫切需要开发具有抗菌特性的骨移植材料来促进骨再生。磷酸镁骨水泥(MPC)具有良好的生物相容性、可塑性和成骨能力,是骨再生的理想材料。然而,传统MPC有限的孔隙率阻碍了营养物质的供应、气体的扩散和细胞的浸润,从而影响了其成骨功效。本课题主要研究了以柠檬酸(CA)和碳酸钙(CaCO3)为发泡剂制备高孔MPC (CaCO3/CA-MPC)。所得材料表现出增强的物理化学特性、生物活性和抗菌作用。与常规MPC相比,CaCO3/CA-MPC培养的人牙周韧带干细胞(hPDLSCs)表现出更好的成骨分化。泡沫剂的加入显著增强了MPC对革兰氏阳性菌(金黄色葡萄球菌)和革兰氏阴性菌(大肠杆菌)的抑菌效果。大鼠体内抗感染实验结果显示,与Bio-Oss和对照组相比,3%CaCO3/CA- mpc在体外和体内均表现出优异的抗菌和成骨性能,表明其有潜力作为牙种植手术植骨材料。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Novel Foamed Magnesium Phosphate Antimicrobial Bone Cement for Bone Augmentation

In dental implant surgery, infection is identified as the primary factor contributing to the failure of bone grafts. There is an urgent need to develop bone graft materials possessing antibacterial characteristics to facilitate bone regeneration. Magnesium phosphate bone cement (MPC) is highly desirable for bone regeneration due to its favorable biocompatibility, plasticity, and osteogenic capabilities. However, the limited porosity of conventional MPC hinders the nutrient supply, gas diffusion, and cell infiltration, thereby compromising its osteogenic efficacy. This research focused on the fabrication of a highly porous MPC (CaCO3/CA-MPC) by incorporating citric acid (CA) and calcium carbonate (CaCO3) as foaming agents. The resulting material demonstrated enhanced physicochemical properties, bioactivity, and antimicrobial effects. When compared with conventional MPC, human periodontal ligament stem cells (hPDLSCs) showed improved osteogenic differentiation when cultured with CaCO3/CA-MPC. The inclusion of foaming agents significantly enhanced the antimicrobial efficacy of MPC against both Gram-positive bacteria (Staphylococcus aureus) and Gram-negative bacteria (Escherichia coli). The results of in vivo anti-infection experiments in rats revealed that 3%CaCO3/CA-MPC displayed superior bactericidal activity compared with Bio-Oss and control groups (p < 0.05), thereby enhancing the anti-infective outcomes post-bone grafting and stimulating osteogenesis in the infected bone defect region. The study demonstrated that MPC containing 3%CaCO3/CA exhibited excellent antimicrobial and osteogenic properties both in vitro and in vivo, suggesting its potential as a promising candidate as bone graft material for dental implant surgeries.

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来源期刊
CiteScore
7.50
自引率
2.90%
发文量
199
审稿时长
12 months
期刊介绍: Journal of Biomedical Materials Research – Part B: Applied Biomaterials is a highly interdisciplinary peer-reviewed journal serving the needs of biomaterials professionals who design, develop, produce and apply biomaterials and medical devices. It has the common focus of biomaterials applied to the human body and covers all disciplines where medical devices are used. Papers are published on biomaterials related to medical device development and manufacture, degradation in the body, nano- and biomimetic- biomaterials interactions, mechanics of biomaterials, implant retrieval and analysis, tissue-biomaterial surface interactions, wound healing, infection, drug delivery, standards and regulation of devices, animal and pre-clinical studies of biomaterials and medical devices, and tissue-biopolymer-material combination products. Manuscripts are published in one of six formats: • original research reports • short research and development reports • scientific reviews • current concepts articles • special reports • editorials Journal of Biomedical Materials Research – Part B: Applied Biomaterials is an official journal of the Society for Biomaterials, Japanese Society for Biomaterials, the Australasian Society for Biomaterials, and the Korean Society for Biomaterials. Manuscripts from all countries are invited but must be in English. Authors are not required to be members of the affiliated Societies, but members of these societies are encouraged to submit their work to the journal for consideration.
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