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合成聚合物和还原氧化石墨烯的骨植入替代物:当前视角。

Bone implant substitutes from synthetic polymer and reduced graphene oxide: Current perspective.

机构信息

Department of Pharmacology, Saveetha Dental College and Hospitals, Saveetha Institute of Medical and Technical Sciences, Saveetha University, Chennai, Tamil Nadu, India.

出版信息

Int J Artif Organs. 2024 Jan;47(1):57-66. doi: 10.1177/03913988231216572. Epub 2023 Dec 12.

Abstract

In the present work, bone implant materials (BIM) were produced, in sheet form which comprises epoxy resin (synthetic polymer) (ER), calcium carbonate (CaCO), and reduced graphene oxide (R-GO), by open mold method, for the possibility uses in bone tissue engineering. The developed BIM was analyzed for its physico-chemical, mechanical, bioactivity test, antimicrobial study, and biocompatibility. The BIM had excellent mechanical properties such as tensile strength (194.44  0.21 MPa), flexural strength (278.76  0.41 MPa), and water absorption (02.61  0.24%). A pore size distribution study using the HR-SEM has proved the 180 and 255 μm average pore was observed in the BIM structure. The Bioactivity test of BIM was examined after being immersed in a simulated body fluids (SBF) solution. The result of BIM formed an excellent deposition of bone tube apatite crystals. High-resolution scanning electron microscopy (HR-SEM) morphology of the bone tube apatite crystals revealed the diameter size in the range from 100 ± 159 to 210 ± 188 nm. BIM has excellent antimicrobial characteristics against (8.75  0.06 mm) and (9.82  0.08 mm). The biocompatibility of the study MTT (3-(4, 5-dimethyl) thiazol-2-yl-2, 5-dimethyl tetrazolium bromide) assay using the MG-63 (human osteoblast cell line) has proven to be the 78% viable cell presence in BIM. After receiving the necessary approval, the scaffold with the required strength and biocompatibility could be tested as a bone implant material in large animals.

摘要

在本工作中,通过开模法制备了片状的骨植入材料 (BIM),其由环氧树脂(合成聚合物)(ER)、碳酸钙 (CaCO) 和还原氧化石墨烯 (R-GO) 组成,用于骨组织工程的潜在应用。对所开发的 BIM 进行了物理化学、机械、生物活性测试、抗菌研究和生物相容性分析。BIM 具有出色的机械性能,如拉伸强度(194.44 ± 0.21 MPa)、弯曲强度(278.76 ± 0.41 MPa)和吸水率(02.61 ± 0.24%)。使用高分辨率扫描电子显微镜 (HR-SEM) 的孔径分布研究证明,BIM 结构中观察到 180 和 255 μm 的平均孔径。在浸入模拟体液 (SBF) 溶液后,对 BIM 的生物活性测试进行了检查。结果表明,BIM 形成了出色的骨管磷灰石晶体沉积。骨管磷灰石晶体的高分辨率扫描电子显微镜 (HR-SEM) 形貌显示其直径尺寸范围为 100 ± 159 至 210 ± 188 nm。BIM 对 和 具有出色的抗菌特性(分别为 8.75 ± 0.06 mm 和 9.82 ± 0.08 mm)。使用 MG-63(人成骨肉瘤细胞系)进行 MTT(3-(4,5-二甲基)噻唑-2-基-2,5-二甲基四唑溴盐)测定的生物相容性研究证明,BIM 中存在 78%的存活细胞。在获得必要的批准后,具有所需强度和生物相容性的支架可以作为骨植入材料在大型动物中进行测试。

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