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从Copine-7 蛋白中鉴定出具有穿细胞能力的成骨肽及其递药系统以增强骨形成。

Identification of cell-penetrating osteogenic peptide from copine-7 protein and its delivery system for enhanced bone formation.

机构信息

Department of Oral Biochemistry, Dental Regenerative Bioengineering Major and Dental Research Institute, School of Dentistry, Seoul National University, Seoul, Republic of Korea.

Central Research Institute, Nano Intelligent Biomedical Engineering Corporation (NIBEC), Seoul, Republic of Korea.

出版信息

J Biomed Mater Res A. 2019 Nov;107(11):2392-2402. doi: 10.1002/jbm.a.36746. Epub 2019 Jun 20.

Abstract

Peptide and proteins are recognized as highly selective and therapeutically active biomaterials, as well as relatively safe in clinical application. A calcium phospholipid-binding protein, copine 7 (CPNE7), has been recently identified to induce hard tissue regeneration, including bone and dentin by internalizing into the cells. However, the clinical application of the full length of CPNE7 has limited due to its large size with short half-life. Herein, as an alternative to CPNE7, six bioactive synthetic peptides are designed from CPNE7 (CPNE7-derived peptides, CDP1-CDP6) and investigated their osteogenic potential. Among the CDPs, CDP4 have the highest level of cell-penetrating activity as well as osteogenic efficiency in dental pulp stem cells (DPSCs). CDP4 increased the expression of osteogenesis-related genes and proteins, which was comparable to that by BMP-2. The cell penetration capacity of CDP4 may synergistically induce the osteogenic potential of DPSCs. Moreover, the implantation of the mixture of CDP4 with injectable collagen gel increased bone formation with recovery in the mouse calvarial defect model, comparable to full-length CPNE7 and even BMP-2. In conclusion, these results suggest that our synthetic peptide, CDP4, can be applied in combination with biomaterial to provide high osteogenic efficacy in the field of bone tissue engineering.

摘要

肽和蛋白质被认为是高度选择性和治疗活性的生物材料,并且在临床应用中相对安全。最近发现一种钙磷脂结合蛋白,copine 7(CPNE7),通过内化到细胞中诱导硬组织再生,包括骨和牙本质。然而,由于其半衰期短,全长 CPNE7 的临床应用受到限制。在此,作为 CPNE7 的替代物,从 CPNE7 设计了六个生物活性合成肽(CPNE7 衍生肽,CDP1-CDP6),并研究了它们的成骨潜力。在 CDP 中,CDP4 具有最高的细胞穿透活性和牙髓干细胞(DPSCs)中的成骨效率。CDP4 增加了与成骨相关的基因和蛋白质的表达,与 BMP-2 相当。CDP4 的细胞穿透能力可能协同诱导 DPSCs 的成骨潜能。此外,将 CDP4 与可注射胶原凝胶的混合物植入小鼠颅骨缺损模型中,可增加骨形成并恢复,与全长 CPNE7 甚至 BMP-2 相当。总之,这些结果表明,我们的合成肽 CDP4 可以与生物材料联合应用,在骨组织工程领域提供高成骨效果。

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