Wu Wei, Feng Xue, Mao Tianqiu, Feng Xinghua, Ouyang Hong-Wei, Zhao Guifang, Chen Fulin
Department of Oral and Maxillofacial Surgery, Qindu Hospital, The Fourth Military Medical University, Xi'an, PR China.
Br J Oral Maxillofac Surg. 2007 Jun;45(4):272-8. doi: 10.1016/j.bjoms.2006.09.004. Epub 2006 Nov 13.
The purpose of the current study is to fabricate tissue engineered trachea with poly-lactic-glycolic acid (PLGA) non-woven mesh enforced by collagen type I. PLGA fibres coated with collagen solution were put together and fabricated into the shape of a human trachea, after drying and cross-linking treatment, a non-woven mesh with "C" shape formed. Chondrocytes from sheep nasal septum cartilage were expanded in vitro and seeded into PLGA/collagen non-woven mesh in the density of 5.0 x 10(7)mL(-1). After 5 days of in vitro incubation, six Cell-PLGA/collagen composites were implanted subcutaneously into the back of 6 nude mice to prefabricate a tissue engineering trachea. Eight weeks later, the cartilage formation was observed by gross inspection and histological examination. Cartilage-like tissue in the shape of the initial PLGA/collagen scaffold had been regenerated successfully without obvious inflammatory response. The tissue engineered trachea cartilage consisted of evenly spaced lacunae embedded in matrix stained red with safranin-O staining. The amount of GAGs in tissue engineered trachea cartilage reached 71.42% of normal value in native cartilage. This study demonstrated that collagen-enforced PLGA non-woven mesh facilitated the adhesion and proliferation of chondrocytes, it also owned adequate mechanical strength to serve as an ideal scaffold for trachea tissue engineering without internal support.
本研究的目的是构建由I型胶原增强的聚乳酸-乙醇酸共聚物(PLGA)无纺布网片制成的组织工程气管。将涂有胶原溶液的PLGA纤维组装在一起,制成人体气管形状,经干燥和交联处理后,形成“C”形无纺布网片。将来自绵羊鼻中隔软骨的软骨细胞进行体外扩增,并以5.0×10⁷mL⁻¹的密度接种到PLGA/胶原无纺布网片中。体外培养5天后,将6个细胞-PLGA/胶原复合物皮下植入6只裸鼠背部,以预制组织工程气管。8周后,通过大体观察和组织学检查观察软骨形成情况。成功再生出了初始PLGA/胶原支架形状的软骨样组织,且无明显炎症反应。组织工程气管软骨由嵌入番红O染色呈红色的基质中的均匀间隔的陷窝组成。组织工程气管软骨中糖胺聚糖(GAGs)的含量达到天然软骨正常值的71.42%。本研究表明,胶原增强的PLGA无纺布网片促进了软骨细胞的黏附和增殖,它还具有足够的机械强度,可作为无内部支撑的气管组织工程的理想支架。