Lee Jue-Yeon, Choo Jung-Eun, Choi Young-Suk, Park Jun-Bum, Min Do-Sik, Lee Seung-Jin, Rhyu Hyung Keun, Jo In-Ho, Chung Chong-Pyoung, Park Yoon-Jeong
Department of Craniomaxillofacial Reconstructive Science, Dental Research Institute, School of Dentistry, Seoul National University, Seoul, South Korea.
Biomaterials. 2007 Oct;28(29):4257-67. doi: 10.1016/j.biomaterials.2007.05.040. Epub 2007 Jun 29.
Bioactive scaffolds inducing cell adhesion, differentiation have been premise for optimal formation of target tissue. Collagen has been employed as a tissue regenerative scaffold especially for bone regeneration and has been chemically surface-modified to present bioactivity. Herein, we show that peptide, denoted as collagen-binding motif (CBM, GLRSKSKKFRRPDIQYPDATDEDITSHM) identified from osteopontin (OPN) protein, was able to specifically bind collagen without chemical conjugation, while presenting apatite forming capability in vitro and in vivo. Collagen surface alone was not able to induce noticeable apatite nucleation however, mineralization was evident when assembled with CBM peptide, implying that the collagen-CBM assembly played a pivotal role in biomineralization. In vivo result further demonstrated that the CBM peptide in complex with material was able to induce bone formation by helping mineralization in the bone defect. Taken together, the CBM peptide herein and its assembly with collagen can be applied as an inducer of biomineralization as well as a bioactive scaffold for bone regeneration.
诱导细胞黏附、分化的生物活性支架是目标组织最佳形成的前提。胶原蛋白已被用作组织再生支架,尤其是用于骨再生,并已进行化学表面修饰以呈现生物活性。在此,我们表明,从骨桥蛋白(OPN)中鉴定出的一种名为胶原蛋白结合基序(CBM,GLRSKSKKFRRPDIQYPDATDEDITSHM)的肽,能够在不进行化学偶联的情况下特异性结合胶原蛋白,同时在体外和体内均具有磷灰石形成能力。单独的胶原蛋白表面不能诱导明显的磷灰石成核,然而,当与CBM肽组装时矿化明显,这意味着胶原蛋白-CBM组装在生物矿化中起关键作用。体内结果进一步证明,与材料复合的CBM肽能够通过促进骨缺损中的矿化来诱导骨形成。综上所述,本文中的CBM肽及其与胶原蛋白的组装体可作为生物矿化诱导剂以及骨再生的生物活性支架。