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骨组织预制采用体内生物反应器原理。

Bone Graft Prefabrication Following the In Vivo Bioreactor Principle.

机构信息

Department of Plastic and Reconstructive Surgery, Shanghai Ninth People's Hospital, Shanghai Jiao Tong University School of Medicine, China.

Department of Organ Fabrication, Keio University School of Medicine, Tokyo, Japan.

出版信息

EBioMedicine. 2016 Oct;12:43-54. doi: 10.1016/j.ebiom.2016.09.016. Epub 2016 Sep 20.

Abstract

Large bone defect treatment represents a great challenge due to the difficulty of functional and esthetic reconstruction. Tissue-engineered bone grafts created by in vitro manipulation of bioscaffolds, seed cells, and growth factors have been considered potential treatments for bone defect reconstruction. However, a significant gap remains between experimental successes and clinical translation. An emerging strategy for bridging this gap is using the in vivo bioreactor principle and flap prefabrication techniques. This principle focuses on using the body as a bioreactor to cultivate the traditional triad (bioscaffolds, seed cells, and growth factors) and leveraging the body's self-regenerative capacity to regenerate new tissue. Additionally, flap prefabrication techniques allow the regenerated bone grafts to be transferred as prefabricated bone flaps for bone defect reconstruction. Such a strategy has been used successfully for reconstructing critical-sized bone defects in animal models and humans. Here, we highlight this concept and provide some perspective on how to translate current knowledge into clinical practice.

摘要

由于功能和美学重建的困难,大骨缺损的治疗仍然是一个巨大的挑战。通过体外操纵生物支架、种子细胞和生长因子来制造组织工程化骨移植物,已被认为是骨缺损重建的潜在治疗方法。然而,实验成功与临床转化之间仍然存在显著差距。一种新兴的策略是使用体内生物反应器原理和皮瓣预制技术来缩小这一差距。该原理侧重于利用身体作为生物反应器来培养传统的三联体(生物支架、种子细胞和生长因子),并利用身体的自我再生能力来再生新组织。此外,皮瓣预制技术可将再生的骨移植物作为预制骨瓣转移,用于骨缺损重建。该策略已成功用于动物模型和人类的临界尺寸骨缺损的重建。在这里,我们强调了这一概念,并就如何将现有知识转化为临床实践提供了一些看法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4d72/5078640/5209c0797e29/gr1.jpg

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