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分层接种软骨细胞的海藻酸盐水凝胶支架的整合

Integration of layered chondrocyte-seeded alginate hydrogel scaffolds.

作者信息

Lee Christopher S D, Gleghorn Jason P, Won Choi Nak, Cabodi Mario, Stroock Abraham D, Bonassar Lawrence J

机构信息

Department of Materials Science and Engineering, Cornell University, Bard Hall 214, Ithaca, NY 14853, USA.

出版信息

Biomaterials. 2007 Jul;28(19):2987-93. doi: 10.1016/j.biomaterials.2007.02.035. Epub 2007 Mar 5.

Abstract

Motivated by the necessity to engineer appropriately stratified cartilage, the shear mechanics of layered, bovine chondrocyte-seeded 20mg/mL alginate scaffolds were investigated and related to the structure and biochemical composition. Chondrocyte-seeded alginate scaffolds were exposed to a calcium-chelating solution, layered, crosslinked in CaCl(2), and cultured for 10 weeks. The shear mechanical properties of the layered gels were statistically similar to those of the non-layered controls. Shear modulus of layered gels increased by approximately six-fold while toughness and shear strength increased by more than two-fold during the culture period. Hydroxyproline content in both layered gels and controls had statistically significant increases after 6 weeks. Glycosaminoglycan (GAG) content of controls increased throughout culture while GAG content in layered gels leveled off after 4 weeks. Hematoxylin and eosin histological staining showed tissue growth at the interface over the first 4 weeks. Shear mechanical properties in the engineered tissues showed significant correlations to hydroxyproline content. Dependence of interfacial mechanical properties on hydroxyproline content was most evident for layered gels when compared to controls, especially for toughness and shear strength. Additionally, interfacial properties showed almost no dependence on GAG content. These findings demonstrate the feasibility of creating stratified engineered tissues through layering and that collagen deposition is necessary for interfacial integrity.

摘要

出于构建具有适当分层结构软骨的必要性,对接种牛软骨细胞的20mg/mL海藻酸盐分层支架的剪切力学进行了研究,并将其与结构和生化组成相关联。将接种软骨细胞的海藻酸盐支架暴露于钙螯合溶液中,进行分层,在CaCl₂中交联,并培养10周。分层凝胶的剪切力学性能在统计学上与非分层对照相似。在培养期间,分层凝胶的剪切模量增加了约六倍,而韧性和剪切强度增加了两倍以上。6周后,分层凝胶和对照中的羟脯氨酸含量均有统计学上的显著增加。对照中的糖胺聚糖(GAG)含量在整个培养过程中增加,而分层凝胶中的GAG含量在4周后趋于稳定。苏木精和伊红组织学染色显示在最初4周界面处有组织生长。工程组织中的剪切力学性能与羟脯氨酸含量显著相关。与对照相比,分层凝胶中界面力学性能对羟脯氨酸含量的依赖性最为明显,尤其是韧性和剪切强度。此外,界面性能几乎不依赖于GAG含量。这些发现证明了通过分层创建分层工程组织的可行性,并且胶原蛋白沉积对于界面完整性是必要的。

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