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从牙齿黏附到生物黏附:基于新型材料“磷酸化普鲁兰多糖”的具有骨黏附性的可生物吸收的腻子状人工骨的研发

From Tooth Adhesion to Bioadhesion: Development of Bioabsorbable Putty-like Artificial Bone with Adhesive to Bone Based on the New Material "Phosphorylated Pullulan".

作者信息

Nakanishi Ko, Akasaka Tsukasa, Hayashi Hiroshi, Yoshihara Kumiko, Nakamura Teppei, Nakamura Mariko, Meerbeek Bart Van, Yoshida Yasuhiro

机构信息

Department of Biomaterials and Bioengineering, Faculty of Dental Medicine, Hokkaido University, Kita 13, Nishi 7, Kita-ku, Sapporo 060-8586, Hokkaido, Japan.

Section for Dental Innovation, Faculty of Dental Medicine, Hokkaido University, Kita 13, Nishi 7, Kita-ku, Sapporo 060-8586, Hokkaido, Japan.

出版信息

Materials (Basel). 2024 Jul 25;17(15):3671. doi: 10.3390/ma17153671.

Abstract

Bioabsorbable materials have a wide range of applications, such as scaffolds for regenerative medicine and cell transplantation therapy and carriers for drug delivery systems. Therefore, although many researchers are conducting their research and development, few of them have been used in clinical practice. In addition, existing bioabsorbable materials cannot bind to the body's tissues. If bioabsorbable materials with an adhesive ability to biological tissues can be made, they can ensure the mixture remains fixed to the affected area when mixed with artificial bone or other materials. In addition, if the filling material in the bone defect is soft and uncured, resorption is rapid, which is advantageous for bone regeneration. In this paper, the development and process of a new bioabsorbable material "Phosphorylated pullulan" and its capability as a bone replacement material were demonstrated. Phosphorylated pullulan, which was developed based on the tooth adhesion theory, is the only bioabsorbable material able to adhere to bone and teeth. The phosphorylated pullulan and β-TCP mixture is a non-hardening putty. It is useful as a new resorbable bone replacement material with an adhesive ability for bone defects around implants.

摘要

生物可吸收材料具有广泛的应用,例如用于再生医学和细胞移植治疗的支架以及药物递送系统的载体。因此,尽管许多研究人员正在进行研发,但其中很少有应用于临床实践的。此外,现有的生物可吸收材料无法与人体组织结合。如果能够制造出对生物组织具有粘附能力的生物可吸收材料,那么当与人工骨或其他材料混合时,它们可以确保混合物固定在受影响区域。另外,如果骨缺损中的填充材料柔软且未固化,吸收会很快,这对骨再生是有利的。本文展示了一种新型生物可吸收材料“磷酸化普鲁兰多糖”的开发过程及其作为骨替代材料的性能。基于牙齿粘附理论开发的磷酸化普鲁兰多糖是唯一能够粘附于骨骼和牙齿的生物可吸收材料。磷酸化普鲁兰多糖与β - 磷酸三钙的混合物是一种非硬化性油灰。它作为一种对植入物周围骨缺损具有粘附能力的新型可吸收骨替代材料很有用。

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