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由富含RGD的重组人胶原蛋白多肽组成的生物可吸收骨移植材料诱导成熟骨组织的新生血管形成和再生。

Bioresorbable Bone Graft Composed of an RGD-Enriched Recombinant Human Collagen Polypeptide Induced Neovascularization and Regeneration of Mature Bone Tissue.

作者信息

Hiratsuka Takahiro, Ogura Izumi, Okamura Ai, Fushimi Hideo, Yamaguchi Kazuhiro, Nishimura Ichiro

机构信息

Bio Science & Engineering Laboratory, Research & Development Management Headquarters, FUJIFILM Corporation, 577 Ushijima, Kaisei-machi, Ashigarakami-gun, Kanagawa 258-8577, Japan.

Weintraub Center for Reconstructive Biotechnology, UCLA School of Dentistry, Box 951668 CHS B3-087, Los Angeles, California 90095, United States.

出版信息

ACS Appl Bio Mater. 2020 Dec 21;3(12):8592-8602. doi: 10.1021/acsabm.0c00986. Epub 2020 Nov 25.

Abstract

Bone graft materials provide a scaffold for migrating cells for bone regeneration. One of the major challenges is to support adequate neovascularization in the graft materials and bone tissue. Vascular endothelial cells have been shown to recognize the integrin-binding Arg-Gly-Asp (RGD) sequence in natural extracellular matrix (ECM) molecules. Here, we report a bone graft material composed of an RGD-enriched recombinant polypeptide based on human type I collagen alpha 1 chain (RCPhC1) and propose a category of bone graft materials called the recombinant bone matrix. RCPhC1 demonstrated significantly increased human umbilical vein endothelial cell attachment in vitro and was further processed through freeze casting and heat crosslinking processes to generate porous granular bone graft, in which RGD sequences remained canonical. When grafted in the rat model, RCPhC1 bone graft demonstrated a uniquely increased presence of CD34+ endothelial cells within the graft material. Bone tissue was found directly in contact with the pore structure of RCPhC1 bone graft, resulting in the regeneration of large bone tissue. By contrast, the combined demineralized and decellularized bone allograft containing bone collagen in the ECM did not show vascular formation within the graft material. When applied to canine tooth extraction socket, RCPhC1 bone graft rapidly induced highly vascularized regenerating tissues, which became a mature bone with the bone marrow tissue. These results indicate that RCPhC1 bone graft is a promising material and generated highly active bone tissues, which rapidly matured.

摘要

骨移植材料为细胞迁移以实现骨再生提供了支架。其中一个主要挑战是在移植材料和骨组织中支持充分的新血管形成。血管内皮细胞已被证明能识别天然细胞外基质(ECM)分子中整合素结合的精氨酸 - 甘氨酸 - 天冬氨酸(RGD)序列。在此,我们报告一种基于人I型胶原α1链(RCPhC1)的富含RGD的重组多肽组成的骨移植材料,并提出一类称为重组骨基质的骨移植材料。RCPhC1在体外表现出显著增加的人脐静脉内皮细胞附着,并通过冷冻铸造和热交联工艺进一步加工以生成多孔颗粒状骨移植材料,其中RGD序列保持规范。当移植到大鼠模型中时,RCPhC1骨移植材料在移植材料内显示出CD34 +内皮细胞的独特增加。发现骨组织直接与RCPhC1骨移植材料的孔隙结构接触,从而导致大骨组织的再生。相比之下,含有ECM中骨胶原的联合脱矿质和脱细胞骨同种异体移植材料在移植材料内未显示血管形成。当应用于犬牙拔牙窝时,RCPhC1骨移植材料迅速诱导高度血管化的再生组织,其随后成为带有骨髓组织的成熟骨。这些结果表明,RCPhC1骨移植材料是一种有前景的材料,可生成高度活跃且迅速成熟的骨组织。

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