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A potential translational approach for bone tissue engineering through endochondral ossification

机译:通过软骨内骨化进行骨组织工程的潜在翻译方法

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Bone defect repair is a significant clinical challenge in orthopedic surgery. Despite tremendous efforts, the majority of the current bone tissue engineering strategies depend on bone formation via intramembranous ossification (IO), which often results in poor vascularization and limited-area bone regeneration. Recently, there has been increasing interest in exploring bone regeneration through a cartilage-mediated process similar to endochondral ossification (EO). This method is advantageous because long bones are originally developed through EO and moreover, vascularization is an inherent step of this process. Therefore, it may be possible to effectively employ the EO method for the repair and regeneration of large and segmental bone defects. Although a number of studies have demonstrated engineered bone formation through EO, there are no approaches aiming for their clinical translation. In this study, we propose a strategy modeled after the U.S. Food and Drug Administration (FDA) aproved Autologus Chondrocyte Implantation (ACI) procedure. In its implementation, we concentrated human bone marrow aspirate via a minimally manipulated process and demonstrated the potential of human bone marrow derived cells for in vitro pre-cartilage template formation and bone regeneration in vivo.
机译:骨缺损修复是整形外科手术中的重大临床挑战。尽管付出了巨大的努力,但当前的大多数骨组织工程策略都依赖于通过膜内骨化(IO)进行的骨形成,这通常会导致血管化不良和有限区域的骨再生。最近,人们越来越关注通过软骨介导的类似于软骨内骨化(EO)的过程来探索骨再生。该方法的优势在于长骨最初是通过EO发育而成的,此外,血管形成是该过程的固有步骤。因此,有可能有效地采用EO方法修复和再生大的和节段性骨缺损。尽管许多研究表明可通过EO改造工程骨的形成,但尚无针对其临床翻译的方法。在这项研究中,我们提出了一种在美国食品药品监督管理局(FDA)批准的自体软骨细胞植入(ACI)程序之后制定的策略。在其实施过程中,我们通过最少的操作过程浓缩了人类骨髓抽吸物,并证明了人类骨髓衍生细胞在体外预软骨模板形成和体内骨再生方面的潜力。

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