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尺寸为何重要:脱矿骨基质颗粒的差异会影响胶原蛋白结构、间充质干细胞行为和成骨潜能。

When size matters: differences in demineralized bone matrix particles affect collagen structure, mesenchymal stem cell behavior, and osteogenic potential.

作者信息

Dozza B, Lesci I G, Duchi S, Della Bella E, Martini L, Salamanna F, Falconi M, Cinotti S, Fini M, Lucarelli E, Donati D

机构信息

Osteoarticolar Regeneration Laboratory, 3rd Orthopaedic and Traumatologic Clinic Prevalently Oncologic, Rizzoli Orthopaedic Institute, via di Barbiano 1/10, Bologna, 40136, Italy.

Department of Biomedical and Neuromotor Sciences (DIBINEM), Alma Mater Studiorum University of Bologna, via G. C. Pupilli 1, Bologna, 40136, Italy.

出版信息

J Biomed Mater Res A. 2017 Apr;105(4):1019-1033. doi: 10.1002/jbm.a.35975. Epub 2017 Feb 1.

Abstract

Demineralized bone matrix (DBM) is a natural, collagen-based, osteoinductive biomaterial. Nevertheless, there are conflicting reports on the efficacy of this product. The purpose of this study was to evaluate whether DBM collagen structure is affected by particle size and can influence DBM cytocompatibility and osteoinductivity. Sheep cortical bone was ground and particles were divided in three fractions with different sizes, defined as large (L, 1-2 mm), medium (M, 0.5-1 mm), and small (S, <0.5 mm). After demineralization, the chemical-physical analysis clearly showed a particle size-dependent alteration in collagen structure, with DBM-M being altered but not as much as DBM-S. DBM-M displayed a preferable trend in almost all biological characteristics tested, although all DBM particles revealed an optimal cytocompatibility. Subcutaneous implantation of DBM particles into immunocompromised mice resulted in bone induction only for DBM-M. When sheep MSC were seeded onto particles before implantation, all DBM particles were able to induce new bone formation with the best incidence for DBM-M and DBM-S. In conclusion, the collagen alteration in DBM-M is likely the best condition to promote bone induction in vivo. Furthermore, the choice of 0.5-1 mm particles may enable to obtain more efficient and consistent results among different research groups in bone tissue-engineering applications. © 2017 Wiley Periodicals, Inc. J Biomed Mater Res Part A: 105A: 1019-1033, 2017.

摘要

脱矿骨基质(DBM)是一种天然的、基于胶原蛋白的骨诱导生物材料。然而,关于该产品疗效的报道存在矛盾。本研究的目的是评估DBM胶原蛋白结构是否受颗粒大小影响,以及是否会影响DBM的细胞相容性和骨诱导性。将绵羊皮质骨研磨,颗粒分为三个不同大小的部分,定义为大颗粒(L,1 - 2毫米)、中颗粒(M,0.5 - 1毫米)和小颗粒(S,<0.5毫米)。脱矿后,化学物理分析清楚地显示胶原蛋白结构存在颗粒大小依赖性改变,DBM-M有所改变,但不如DBM-S明显。DBM-M在几乎所有测试的生物学特性方面都呈现出较好的趋势,尽管所有DBM颗粒都显示出最佳的细胞相容性。将DBM颗粒皮下植入免疫受损小鼠体内,只有DBM-M诱导出了骨组织。当在植入前将绵羊间充质干细胞接种到颗粒上时,所有DBM颗粒都能够诱导新骨形成,其中DBM-M和DBM-S的诱导率最高。总之,DBM-M中的胶原蛋白改变可能是促进体内骨诱导的最佳条件。此外,选择0.5 - 1毫米的颗粒可能使不同研究组在骨组织工程应用中获得更高效和一致的结果。© 2017威利期刊公司。《生物医学材料研究杂志》A部分:105A:1019 - 1033,2017年。

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