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使用磷酸化普鲁兰多糖对新型植入物表面改性的研究。

Investigation of a new implant surface modification using phosphorylated pullulan.

作者信息

Nagamoto Kanako, Nakanishi Ko, Akasaka Tsukasa, Abe Shigeaki, Yoshihara Kumiko, Nakamura Mariko, Hayashi Hiroshi, Takemoto Shinji, Tamura Masato, Kitagawa Yoshimasa, Van Meerbeek Bart, Yoshida Yasuhiro

机构信息

Oral Diagnosis and Medicine, Faculty of Dental Medicine, Hokkaido University, Sapporo, Japan.

Department of Biomaterials and Bioengineering, Faculty of Dental Medicine, Hokkaido University, Sapporo, Japan.

出版信息

Front Bioeng Biotechnol. 2024 May 22;12:1378039. doi: 10.3389/fbioe.2024.1378039. eCollection 2024.

Abstract

Various implant surface treatment methods have been developed to achieve good osseointegration in implant treatment. However, some cases remain impossible to treat with implants because osseointegration is not obtained after implantation, and the implants fail. Thus, this study focused on phosphorylated pullulan because of its adhesiveness to titanium (Ti) and bone, high biocompatibility, and early replacement with bone. In this study, the response of bone-related cells to phosphorylated pullulan was evaluated to develop a new surface treatment method. Saos-2 (human osteosarcoma-derived osteoblast-like cells), MC3T3-E1 (mouse calvaria-derived osteoblast-like cells), and RAW264.7 (mouse macrophage-like cells) were used. In evaluating cellular responses, phosphorylated pullulan was added to the culture medium, and cell proliferation and calcification induction tests were performed. The proliferation and calcification of cells on the surface of Ti disks coated with phosphorylated pullulan were also evaluated. In addition, bone morphogenetic protein-2 (BMP-2), an osteogenic factor, was used to evaluate the role of phosphorylated pullulan as a drug carrier in inducing calcification on Ti disks. Phosphorylated pullulan tended to promote the proliferation of osteoblast-like cells and the formation of calcification on Ti disks coated with phosphorylated pullulan. Ti disks coated with phosphorylated pullulan loaded with BMP-2 enhanced calcification. Phosphorylated pullulan inhibited osteoclast-like cell formation. These results are due to the properties of phosphorylated pullulan, such as adhesiveness to titanium and drug-loading function. Therefore, phosphorylated pullulan effectively promotes bone regeneration when coated on titanium implants and is useful for developing a new surface treatment method.

摘要

为了在种植治疗中实现良好的骨整合,人们开发了各种种植体表面处理方法。然而,有些病例仍然无法用种植体治疗,因为植入后无法实现骨整合,种植体会失败。因此,本研究聚焦于磷酸化普鲁兰多糖,因为它对钛(Ti)和骨具有粘附性、高生物相容性以及能早期被骨替代。在本研究中,评估了骨相关细胞对磷酸化普鲁兰多糖的反应,以开发一种新的表面处理方法。使用了Saos-2(人骨肉瘤来源的成骨样细胞)、MC3T3-E1(小鼠颅骨来源的成骨样细胞)和RAW264.7(小鼠巨噬样细胞)。在评估细胞反应时,将磷酸化普鲁兰多糖添加到培养基中,并进行细胞增殖和钙化诱导试验。还评估了涂有磷酸化普鲁兰多糖的Ti盘表面细胞的增殖和钙化情况。此外,使用骨形成蛋白-2(BMP-2)这种成骨因子来评估磷酸化普鲁兰多糖作为药物载体在诱导Ti盘钙化中的作用。磷酸化普鲁兰多糖倾向于促进成骨样细胞的增殖以及涂有磷酸化普鲁兰多糖的Ti盘上钙化的形成。负载BMP-2的磷酸化普鲁兰多糖涂层的Ti盘增强了钙化。磷酸化普鲁兰多糖抑制破骨样细胞的形成。这些结果归因于磷酸化普鲁兰多糖的特性,如对钛的粘附性和载药功能。因此,磷酸化普鲁兰多糖涂覆在钛种植体上时能有效促进骨再生,并且有助于开发一种新的表面处理方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3cde/11150837/71b5ab235731/fbioe-12-1378039-g001.jpg

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