Novel Sheep Model to Assess Critical-Sized Bone Regeneration with Periosteum for In Vivo Bioreactors

骨膜 生物医学工程 生物反应器 体内 肩胛骨 生物材料 材料科学 解剖 化学 医学 生物 有机化学 生物技术
作者
Yohaann A. Ghosh,Hai Xin,Abdullah Al Maruf,Kai Cheng,Innes Wise,Chris Burrows,Ruta Gupta,Veronica Cheung,James Wykes,David Leinkram,Catriona Froggatt,Will Lewin,Hedi V. Kruse,Eva Tomaskovic‐Crook,David R. McKenzie,Jeremy M. Crook,Jonathan R. Clark
出处
期刊:Tissue Engineering Part C-methods [Mary Ann Liebert]
卷期号:30 (4): 159-169
标识
DOI:10.1089/ten.tec.2023.0345
摘要

Considerable research is being undertaken to develop novel biomaterials-based approaches for surgical reconstruction of bone defects. This extends to three-dimensional (3D) printed materials that provide stable, structural, and functional support in vivo. However, few preclinical models can simulate in vivo human biological conditions for clinically relevant testing. In this study we describe a novel ovine model that allows evaluation of in vivo osteogenesis via contact with bone and/or periosteum interfaced with printed polymer bioreactors loaded with biomaterial bone substitutes. The infraspinous scapular region of 14 Dorset cross sheep was exposed. Vascularized periosteum was elevated either attached to the infraspinatus muscle or separately. In both cases, the periosteum was supplied by the periosteal branch of the circumflex scapular vessels. In eight sheep, a 3D printed 4-chambered polyetheretherketone bioreactor was wrapped circumferentially in vascularized periosteum. In 6 sheep, 12 double-sided 3D printed 2-chambered polyetherketone bioreactors were secured to the underlying bone allowing direct contact with the bone on one side and periosteum on the other. Our model enabled simultaneous testing of up to 24 (12 double-sided) 10 × 10 × 5 mm bioreactors per scapula in the flat contact approach or a single 40 × 10 mm four-chambered bioreactor per scapula using the periosteal wrap. De novo bone growth was evaluated using histological and radiological analysis. Of importance, the experimental model was well tolerated by the animals and provides a versatile approach for comparing the osteogenic potential of cambium on the bone surface and elevated with periosteum. Furthermore, the periosteal flaps were sufficiently large for encasing bioreactors containing biomaterial bone substitutes for applications such as segmental mandibular reconstruction.

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