Jin Xiao Bing, Sun Yong Sheng, Zhang Ke, Wang Jing, Shi Tai Ping, Ju Xiao Dong, Lou Si Quan
Orthopaedics Department, Peking University Third Hospital, Beijing, People's Republic of China.
J Biomed Mater Res A. 2008 Sep 15;86(4):1077-87. doi: 10.1002/jbm.a.31656.
Chondrogenic potential of human adipose derived stem cells (hASCs) makes them a possible source of seeding cells for cartilage tissue engineering. We aim to examine the chondrogenic differentiation of human transforming growth factor beta2 (hTGF beta2) transduced hASCs seeded in three-dimensional scaffold in vitro and in vivo. In this study, hASCs were isolated from human subcutaneous adipose tissue and transduced with a replication deficient adenovirus carrying hTGF beta2 (Ad5-hTGF beta2), and then the transduced cells were seeded and cultured in PLGA/alginate compounds. RT-PCR analysis revealed that Ad5-hTGF beta2 transduced hASCs produced aggrecan and collagen type II after 7-day induction in vitro and continued throughout the culture period; this was also demonstrated by the positive staining of Alcian blue and immunohistochemistry for collagen type II. For in vivo study, Ad5-hTGF beta2 transduced hASCs seeded in PLGA/alginate compounds were implanted in subcutaneous pockets of nude mice; after 12 weeks, the implants were harvested and examined by haematoxylin and eosin staining, AB-PAS staining, and immunohistochemical analysis, and the results demonstrated the formation of cartilage tissue. As a control, all these were not observed in the constructs with Ad5-EGFP transduced hASCs. In conclusion, our study demonstrates that adenovirus-mediated hTGF beta2 gene transfer is able to induce the hASCs into chondrogenic lineage both in vitro and in vivo. Ad5-hTGF beta2 transduced hASCs combined with three-dimensional PLGA/alginate compound may be a viable method in treating injuries of cartilage.
人脂肪来源干细胞(hASCs)的软骨生成潜能使其成为软骨组织工程种子细胞的一个可能来源。我们旨在研究人转化生长因子β2(hTGFβ2)转导的hASCs在三维支架中体外和体内的软骨分化情况。在本研究中,从人皮下脂肪组织中分离出hASCs,并用携带hTGFβ2的复制缺陷型腺病毒(Ad5-hTGFβ2)进行转导,然后将转导后的细胞接种到PLGA/藻酸盐复合物中进行培养。RT-PCR分析显示,Ad5-hTGFβ2转导的hASCs在体外诱导7天后产生了聚集蛋白聚糖和II型胶原,并且在整个培养期间持续产生;阿尔辛蓝阳性染色和II型胶原免疫组化也证实了这一点。对于体内研究,将接种在PLGA/藻酸盐复合物中的Ad5-hTGFβ2转导的hASCs植入裸鼠的皮下囊袋中;12周后,取出植入物,进行苏木精和伊红染色、AB-PAS染色及免疫组化分析,结果显示形成了软骨组织。作为对照,在Ad5-EGFP转导的hASCs构建物中未观察到上述所有情况。总之,我们的研究表明腺病毒介导的hTGFβ2基因转移能够在体外和体内诱导hASCs向软骨谱系分化。Ad5-hTGFβ2转导的hASCs与三维PLGA/藻酸盐复合物相结合可能是治疗软骨损伤的一种可行方法。