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氧化锆-氧化铝-硅酸盐@透辉石复合材料的物理性能、生物相容性及其对斑马鱼胚胎的毒性研究

Investigation on the physical properties and biocompatibility of zirconia-alumina-silicate@diopside composite materials and its toxicity study in embryonic zebrafish.

作者信息

Rittidach Tanawut, Sillapaprayoon Siwapech, Chantho Varissara, Pimtong Wittaya, Charoenphandhu Narattaphol, Thongbunchoo Jirawan, Krishnamra Nateetip, Bootchanont Atipong, Porjai Porramain, Pon-On Weeraphat

机构信息

Department of Physics, Faculty of Science, Kasetsart University Bangkok 10900 Thailand

Nano Environmental and Health Safety Research Team, National Nanotechnology Center (NANOTEC), National Science and Technology Development Agency (NSTDA) Pathum Thani 12120 Thailand.

出版信息

RSC Adv. 2023 Oct 18;13(44):30575-30585. doi: 10.1039/d3ra04555b.

Abstract

Bioceramic materials have a wide range of applications in the biomedical field, such as in the repair of bone defects and dental surgery. Silicate-based bioceramics have attracted biomedical researchers' interest due to their bioactivity and biodegradability. In this study, extended the scope of ZAS utilization in bone tissue engineering by introducing calcium-magnesium-silicate (diopside, CMS) as an interface material aim to develop a machinable bioceramic composite (ZASCMS) by the sol-gel method. The physicochemical characterization, biological properties and zebrafish cytotoxicity study of ZAS-based composites as a function of CMS contents, 0, 25, 50, 75 and 100 wt%, were performed. Results showed that the as-prepared ZASCMS possessed porous architecture with well-interconnected pore structure. Results also revealed that the mechanical properties of ZASCMS composite materials were gradually improved with increasing CMS contents. The ZASCMS composites with more than 50 wt% CMS had the highest compressive strength and modulus of 6.78 ± 0.62 MPa and 340.10 ± 16.81 MPa, respectively. Regarding bioactivities, the composite scaffolds were found to stimulate osteoblast-like UMR-106 cell adhesion, growth, and proliferation. The antibacterial activity of the ZASCMS composite scaffolds was tested against () and () also exhibited an antibacterial property. Furthermore, the studies using embryonic zebrafish were exposed to as-prepared particles (0-500 μg mL) and showed that the synthesized ZAS, CMS and ZASCMS composite particles were non-toxic based on the evaluation of survivability, hatching rate and embryonic morphology. In conclusions, our results indicated that the synthesized composite exhibited their biological properties and antibacterial activity, which could well be a promising material with high potential to be applied in orthopaedic and dental tissue engineering.

摘要

生物陶瓷材料在生物医学领域有着广泛的应用,例如用于骨缺损修复和牙科手术。基于硅酸盐的生物陶瓷因其生物活性和生物可降解性而引起了生物医学研究人员的兴趣。在本研究中,通过引入钙镁硅酸盐(透辉石,CMS)作为界面材料,扩展了ZAS在骨组织工程中的应用范围,旨在通过溶胶-凝胶法开发一种可加工的生物陶瓷复合材料(ZASCMS)。对基于ZAS的复合材料进行了物理化学表征、生物学性能以及斑马鱼细胞毒性研究,该研究考察了CMS含量(0、25、50、75和100 wt%)对复合材料的影响。结果表明,所制备的ZASCMS具有多孔结构,孔隙结构相互连通良好。结果还表明,ZASCMS复合材料的力学性能随着CMS含量的增加而逐渐提高。CMS含量超过50 wt%的ZASCMS复合材料具有最高的抗压强度和模量,分别为6.78±0.62 MPa和340.10±16.81 MPa。关于生物活性,发现复合支架能刺激成骨样UMR-106细胞的黏附、生长和增殖。测试了ZASCMS复合支架对()和()的抗菌活性,其也表现出抗菌性能。此外,使用胚胎斑马鱼进行的研究将胚胎暴露于所制备的颗粒(0 - 500 μg/mL)中,结果表明,基于对存活率、孵化率和胚胎形态的评估,合成的ZAS、CMS和ZASCMS复合颗粒是无毒的。总之,我们的结果表明,合成的复合材料表现出其生物学性能和抗菌活性,这很可能是一种有前途的材料,在骨科和牙科组织工程中具有很高的应用潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f69e/10583262/d2440d2e8855/d3ra04555b-f1.jpg

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