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Bone tissue engineering with a collagen–hydroxyapatite scaffold and culture expanded bone marrow stromal cells

机译:用胶原-羟基磷灰石支架进行骨组织工程和培养扩增的骨髓基质细胞

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摘要

Osteoprogenitor cells combined with supportive biomaterials represent a promising approach to advance the standard of care for bone grafting procedures. However, this approach faces challenges, including inconsistent bone formation, cell survival in the implant, and appropriate biomaterial degradation. We have developed a collagen–hydroxyapatite (HA) scaffold that supports consistent osteogenesis by donor derived osteoprogenitors, and is more easily degraded than a pure ceramic scaffold. Herein, the material properties are characterized as well as cell attachment, viability, and progenitor distribution in vitro. Furthermore, we examined the biological performance in vivo in a critical-size mouse calvarial defect. To aid in the evaluation of the in-house collagen–HA scaffold, the in vivo performance was compared with a commercial collagen–HA scaffold (Healos®, Depuy). The in-house collagen–HA scaffold supported consistent bone formation by predominantly donor-derived osteoblasts, nearly completely filling a 3.5 mm calvarial defect with bone in all samples (n=5) after 3 weeks of implantation. In terms of bone formation and donor cell retention at 3 weeks postimplantation, no statistical difference was found between the in-house and commercial scaffold following quantitative histomorphometry. The collagen–HA scaffold presented here is an open and well-defined platform that supports robust bone formation and should facilitate the further development of collagen–hydroxyapatite biomaterials for bone tissue engineering.
机译:骨祖细胞与支持性生物材料的结合代表了一种有前途的方法,可以提高骨移植程序的护理标准。然而,这种方法面临挑战,包括不一致的骨形成,植入物中的细胞存活以及适当的生物材料降解。我们开发了一种胶原-羟基磷灰石(HA)支架,该支架支持供体来源的骨祖细胞持续的成骨作用,并且比纯陶瓷支架更容易降解。在本文中,材料特性以及体外细胞附着,生存力和祖细胞分布均经过表征。此外,我们检查了临界大小的小鼠颅盖缺损的体内生物学性能。为了帮助评估内部胶原蛋白HA支架,将其体内性能与商用胶原蛋白HA支架(Healos ®,Depuy)进行了比较。内部胶原-HA支架主要由供体来源的成骨细胞支持一致的骨形成,在植入3周后,所有样品(n = 5)中的骨头几乎完全充满了3.5 mm颅骨缺损。就植入后3周的骨形成和供体细胞保留而言,在定量组织形态测定法的内部和商业支架之间未发现统计学差异。本文介绍的胶原蛋白-HA支架是一个开放的,定义明确的平台,可支持牢固的骨形成,并应促进用于骨组织工程的胶原蛋白-羟基磷灰石生物材料的进一步开发。

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