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生物医用 Ti-24Nb-4Zr-8Sn 合金在氧化应激微环境下的腐蚀与生物学行为。

Corrosion and Biological Behaviors of Biomedical Ti-24Nb-4Zr-8Sn Alloy under an Oxidative Stress Microenvironment.

机构信息

School of Stomatology, Jiamusi University, Jiamusi, Heilongjiang 154004, People's Republic of China.

Liaoning Provincial Key Laboratory of Oral Diseases, School and Hospital of Stomatology, China Medical University, Shenyang, Liaoning 110001, People's Republic of China.

出版信息

ACS Appl Mater Interfaces. 2024 Apr 17;16(15):18503-18521. doi: 10.1021/acsami.4c00562. Epub 2024 Apr 3.

Abstract

Biomaterials can induce an inflammatory response in surrounding tissues after implantation, generating and releasing reactive oxygen species (ROS), such as hydrogen peroxide (HO). The excessive accumulation of ROS may create a microenvironment with high levels of oxidative stress (OS), which subsequently accelerates the degradation of the passive film on the surface of titanium (Ti) alloys and affects their biological activity. The immunomodulatory role of macrophages in biomaterial osteogenesis under OS is unknown. This study aimed to explore the corrosion behavior and bone formation of Ti implants under an OS microenvironment. In this study, the corrosion resistance and osteoinduction capabilities in normal and OS conditions of the Ti-24Nb-4Zr-8Sn (wt %, Ti2448) were assessed. Electrochemical impedance spectroscopy analysis indicated that the Ti2448 alloy exhibited superior corrosion resistance on exposure to excessive ROS compared to the Ti-6Al-4V (TC4) alloy. This can be attributed to the formation of the TiO and NbO passive films, which mitigated the adverse effects of OS. In vitro MC3T3-E1 cell experiments revealed that the Ti2448 alloy exhibited good biocompatibility in the OS microenvironment, whereas the osteogenic differentiation level was comparable to that of the TC4 alloy. The Ti2448 alloy significantly alleviates intercellular ROS levels, inducing a higher proportion of M2 phenotypes (52.7%) under OS. Ti2448 alloy significantly promoted the expression of the anti-inflammatory cytokine, interleukin 10 (IL-10), and osteoblast-related cytokines, bone morphogenetic protein 2 (BMP-2), which relatively increased by 26.9 and 31.4%, respectively, compared to TC4 alloy. The Ti2448 alloy provides a favorable osteoimmune environment and significantly promotes the proliferation and differentiation of osteoblasts in vitro compared to the TC4 alloy. Ultimately, the Ti2448 alloy demonstrated excellent corrosion resistance and immunomodulatory properties in an OS microenvironment, providing valuable insights into potential clinical applications as implants to repair bone tissue defects.

摘要

生物材料在植入后会在周围组织中引发炎症反应,产生并释放活性氧(ROS),如过氧化氢(HO)。ROS 的过度积累可能会产生氧化应激(OS)水平较高的微环境,从而加速钛(Ti)合金表面钝化膜的降解,并影响其生物活性。在 OS 下,巨噬细胞在生物材料成骨中的免疫调节作用尚不清楚。本研究旨在探索 OS 微环境下 Ti 植入物的腐蚀行为和骨形成。本研究评估了 Ti-24Nb-4Zr-8Sn(wt%,Ti2448)在正常和 OS 条件下的耐腐蚀性和骨诱导能力。电化学阻抗谱分析表明,与 Ti-6Al-4V(TC4)合金相比,Ti2448 合金在暴露于过量 ROS 时表现出更好的耐腐蚀性。这可以归因于 TiO 和 NbO 钝化膜的形成,减轻了 OS 的不利影响。体外 MC3T3-E1 细胞实验表明,Ti2448 合金在 OS 微环境中具有良好的生物相容性,而其成骨分化水平与 TC4 合金相当。Ti2448 合金显著减轻细胞间 ROS 水平,在 OS 下诱导更高比例的 M2 表型(52.7%)。Ti2448 合金显著促进抗炎细胞因子白细胞介素 10(IL-10)和骨形成蛋白 2(BMP-2)的表达,与 TC4 合金相比,分别相对增加了 26.9%和 31.4%。Ti2448 合金在体外提供了有利的骨免疫环境,并显著促进了成骨细胞的增殖和分化,优于 TC4 合金。最终,Ti2448 合金在 OS 微环境中表现出优异的耐腐蚀性和免疫调节性能,为作为修复骨组织缺损的植入物的潜在临床应用提供了有价值的见解。

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