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A highly organized three-dimensional alginate scaffold for cartilage tissue engineering prepared by microfluidic technology.

机译:通过微流技术制备的用于软骨组织工程的高度组织化的三维藻酸盐支架。

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摘要

Osteoarthritis is a degenerative disease and frequently involves the knee, hip and phalangeal joints. Current treatments used in small cartilage defects including multiple drilling, abrasion arthroplasty, mosaicplasty, and autogenous chondrocyte transplantation, however, there are problems needed to be solved. The standard treatment for severe osteoarthritis is total joint arthroplasty. The disadvantages of this surgery are the possibility of implant loosening. Therefore, tissue engineering for cartilage regeneration has become a promising topic. We have developed a new method to produce a highly organized single polymer (alginate) scaffold using microfluidic device. Scanning electron microscope and confocal fluoroscope examinations showed that the scaffold has a regular interconnected porous structure in the scale of 250 mum and high porosity. The scaffold is effective in chondrocyte culture; the cell viability test (WST-1 assay), cell toxicity (lactate dehydrogenase assay), cell survival rate, extracellular matrix production (glycosaminoglycans contents), cell proliferation (DNA quantification), and gene expression (real-time PCR) all revealed good results for chondrocyte culture. The chondrocytes can maintain normal phenotypes, highly express aggrecan and type II collagen, and secrete a great deal of extracellular matrix when seeded in the alginate scaffold. This study demonstrated that a highly organized alginate scaffold can be prepared with an economical microfluidic device, and this scaffold is effective in cartilage tissue engineering.
机译:骨关节炎是一种退行性疾病,经常累及膝盖,臀部和指骨关节。目前用于小软骨缺损的治疗方法包括多次钻孔,磨损性关节置换术,镶嵌术和自体软骨细胞移植,但是,仍然需要解决一些问题。重度骨关节炎的标准治疗是全关节置换术。该手术的缺点是植入物可能松动。因此,用于软骨再生的组织工程已经成为有前途的话题。我们已经开发出一种使用微流体装置生产高度组织化的单一聚合物(藻酸盐)支架的新方法。扫描电子显微镜和荧光共聚焦显微镜检查表明,该支架具有规则的相互连接的多孔结构,尺寸为250微米,孔隙率高。该支架在软骨细胞培养中是有效的。细胞活力测试(WST-1测定),细胞毒性(乳酸脱氢酶测定),细胞存活率,细胞外基质产生(糖胺聚糖含量),细胞增殖(DNA定量)和基因表达(实时PCR)均显示良好软骨细胞培养的结果。当植入藻酸盐支架中时,软骨细胞可以维持正常的表型,高表达聚集蛋白聚糖和II型胶原,并分泌大量的细胞外基质。这项研究表明,可以使用经济的微流控设备制备高度组织化的藻酸盐支架,该支架可有效用于软骨组织工程。

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