Department of Biomedical Engineering, Cornell University, Ithaca, New York 14853, USA.
Tissue Eng Part A. 2013 Jun;19(11-12):1443-50. doi: 10.1089/ten.TEA.2012.0645. Epub 2013 Apr 4.
This study investigates the effect of insulin-like growth factor (IGF)-I on the development of anatomically-shaped alginate menisci seeded with meniscal fibrochondrocytes. To accomplish this, bovine meniscal fibrochondrocytes were seeded into 2% w/v alginate, crosslinked with calcium sulfate, and injected into anatomical molds derived from microcomputed tomography scans. The meniscal constructs were then cultured for up to 4 weeks with or without 100 ng/mL IGF-I supplemented in the media. Histological, immunohistological, biochemical, and mechanical analyses were performed to characterize tissue development, accumulation and localization of extracellular matrix, and mechanical properties. After 4 weeks of culture, IGF-I treatment significantly improved mechanical and biochemical properties, while maintaining DNA content, with a 26-fold increase in glycosaminoglycan (GAG) content and 10-fold increase in collagen content compared to 0-week controls, and a 3-fold increase in the equilibrium modulus at 2 weeks compared to controls. IGF-I-treated menisci had ∼60% of the GAG content of native tissue and the compressive equilibrium modulus matched native properties by 2 weeks of culture. Further, IGF-I-treated menisci developed a distinct surface layer similar to native tissue with elongated cells and collagen fibers aligned parallel to the surface, the presence of types I and II collagen, and accumulation of lubricin. This study demonstrates that IGF-I treatment can greatly increase the mechanical and biochemical properties of engineered tissues and aid in the development of a distinct surface zone similar to the superficial zone of native menisci.
本研究探讨了胰岛素样生长因子(IGF)-I 对经半月板纤维软骨细胞种植的具有解剖形状的藻酸盐半月板的发育的影响。为了实现这一目标,将牛半月板纤维软骨细胞接种到 2%w/v 的藻酸盐中,用硫酸钙交联,并注入源自微计算机断层扫描的解剖模具中。然后,将半月板构建体在有或没有 100ng/mL IGF-I 补充的培养基中培养长达 4 周。进行组织学、免疫组织化学、生物化学和力学分析,以表征组织发育、细胞外基质的积累和定位以及力学特性。培养 4 周后,IGF-I 处理可显著改善力学和生物化学特性,同时保持 DNA 含量,与 0 周对照组相比,糖胺聚糖(GAG)含量增加 26 倍,胶原含量增加 10 倍,与对照组相比,在第 2 周时平衡模量增加 3 倍。IGF-I 处理的半月板的 GAG 含量约为天然组织的 60%,并且在培养 2 周时的压缩平衡模量与天然组织的特性相匹配。此外,IGF-I 处理的半月板形成了类似于天然组织的明显表面层,具有拉长的细胞和与表面平行排列的胶原纤维,存在 I 型和 II 型胶原,以及滑液素的积累。本研究表明,IGF-I 处理可以极大地增加工程组织的力学和生物化学特性,并有助于形成类似于天然半月板的浅表层的明显表面层。