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利用旋转壁式生物反应器从软骨祖细胞构建人弹性软骨组织工程

Human elastic cartilage engineering from cartilage progenitor cells using rotating wall vessel bioreactor.

作者信息

Takebe T, Kobayashi S, Kan H, Suzuki H, Yabuki Y, Mizuno M, Adegawa T, Yoshioka T, Tanaka J, Maegawa J, Taniguchi H

机构信息

Department of Regenerative Medicine, Yokohama City University Graduate School of Medicine, Kanazawa-ku, Yokohama, Kanagawa, Japan.

出版信息

Transplant Proc. 2012 May;44(4):1158-61. doi: 10.1016/j.transproceed.2012.03.038.

Abstract

Transplantation of bioengineered elastic cartilage is considered to be a promising approach for patients with craniofacial defects. We have previously shown that human ear perichondrium harbors a population of cartilage progenitor cells (CPCs). The aim of this study was to examine the use of a rotating wall vessel (RWV) bioreactor for CPCs to engineer 3-D elastic cartilage in vitro. Human CPCs isolated from ear perichondrium were expanded and differentiated into chondrocytes under 2-D culture conditions. Fully differentiated CPCs were seeded into recently developed pC-HAp/ChS (porous material consisted of collagen, hydroxyapatite, and chondroitinsulfate) scaffolds and 3-D cultivated utilizing a RWV bioreactor. 3-D engineered constructs appeared shiny with a yellowish, cartilage-like morphology. The shape of the molded scaffold was maintained after RWV cultivation. Hematoxylin and eosin staining showed engraftment of CPCs inside pC-HAp/ChS. Alcian blue and Elastica Van Gieson staining showed of proteoglycan and elastic fibers, which are unique extracellular matrices of elastic cartilage. Thus, human CPCs formed elastic cartilage-like tissue after 3-D cultivation in a RWV bioreactor. These techniques may assist future efforts to reconstruct complicate structures composed of elastic cartilage in vitro.

摘要

生物工程弹性软骨移植被认为是治疗颅面缺陷患者的一种有前景的方法。我们之前已经表明,人耳软骨膜中存在一群软骨祖细胞(CPCs)。本研究的目的是研究使用旋转壁式生物反应器(RWV)对CPCs进行体外三维弹性软骨工程构建。从耳软骨膜分离出的人CPCs在二维培养条件下进行扩增并分化为软骨细胞。将完全分化的CPCs接种到最近开发的pC-HAp/ChS(由胶原蛋白、羟基磷灰石和硫酸软骨素组成的多孔材料)支架中,并使用RWV生物反应器进行三维培养。三维工程构建体呈现出有光泽的淡黄色软骨样形态。在RWV培养后,成型支架的形状得以保持。苏木精和伊红染色显示CPCs植入了pC-HAp/ChS内部。阿尔辛蓝和弹性纤维染色显示了蛋白聚糖和弹性纤维,它们是弹性软骨独特的细胞外基质。因此,人CPCs在RWV生物反应器中进行三维培养后形成了弹性软骨样组织。这些技术可能有助于未来在体外重建由弹性软骨组成的复杂结构的努力。

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