Suppr超能文献

一种用于在接种软骨细胞的构建物中制造深度依赖性不均匀性的分层琼脂糖方法。

A layered agarose approach to fabricate depth-dependent inhomogeneity in chondrocyte-seeded constructs.

作者信息

Ng Kenneth W, Wang Christopher C-B, Mauck Robert L, Kelly Terri-Ann N, Chahine Nadeen O, Costa Kevin D, Ateshian Gerard A, Hung Clark T

机构信息

Cellular Engineering Laboratory, 351 Engineering Terrace, MC8904, 1210 Amsterdam Avenue, Department of Biomedical Engineering, Columbia University, New York, NY 10027, USA.

出版信息

J Orthop Res. 2005 Jan;23(1):134-41. doi: 10.1016/j.orthres.2004.05.015.

Abstract

Inspired by the depth-dependent inhomogeneity of articular cartilage, it was hypothesized that a novel layered agarose technique, using a 2% (wt/vol) top and a 3% (wt/vol) bottom layer, would create an inhomogenous tissue construct with distinct material properties in conjoined regions. The biochemical and mechanical development of these constructs was observed alongside uniform 2% and 3% constructs. Initially, uniform 3% agarose disks had the highest bulk Young's modulus (E(Y) approximately 28 kPa) of all groups. After 28 days of culture in 20% FBS-containing media, however, uniform 2% chondrocyte-seeded constructs achieved the highest Young's modulus compared to bilayered and 3% agarose disks. Though all three groups contained similar GAG content ( approximately 1.5% ww), uniform 2% agarose disks on day 28 possessed the highest collagen content ( approximately 1% ww). Unlike in either homogeneous construct type, microscopic analysis of axial strain fields in bilayered constructs in response to applied static compression revealed two mechanically disparate regions on day 0: a softer 2% layer and a stiffer 3% layer. With time in culture, this inhomogeneity became less distinct, as indicated by increased continuity in both the local displacement field and local E(Y), and depended on the level of FBS supplementation of the feed media, with lower FBS concentrations (10%) more closely maintaining the original distinction of material properties. These results shed positive light on a layered agarose technique for the production of inhomogeneous bilayered chondrocyte-seeded agarose constructs with applications for investigations of chondrocyte mechanotransduction and for possible use in the tissue engineering of inhomogeneous articular cartilage constructs.

摘要

受关节软骨深度依赖性不均匀性的启发,有人提出一种新的分层琼脂糖技术,即上层为2%(重量/体积),下层为3%(重量/体积),该技术将在连接区域创建具有不同材料特性的不均匀组织构建体。观察了这些构建体的生化和力学发育情况,并与均匀的2%和3%构建体进行了对比。最初,均匀的3%琼脂糖圆盘在所有组中具有最高的整体杨氏模量(E(Y)约为28 kPa)。然而,在含20%胎牛血清的培养基中培养28天后,均匀接种2%软骨细胞的构建体与双层和3%琼脂糖圆盘相比,获得了最高的杨氏模量。尽管所有三组的糖胺聚糖含量相似(约1.5%湿重),但28天时均匀的2%琼脂糖圆盘的胶原蛋白含量最高(约1%湿重)。与任何一种均匀构建体类型不同,对双层构建体在施加静态压缩时的轴向应变场进行微观分析发现,在第0天有两个力学性质不同的区域:较软的2%层和较硬的3%层。随着培养时间的推移,这种不均匀性变得不那么明显,局部位移场和局部E(Y)的连续性增加表明了这一点,并且这取决于培养基中胎牛血清的补充水平,较低的胎牛血清浓度(10%)能更紧密地保持材料特性的原始差异。这些结果为分层琼脂糖技术带来了积极的影响,该技术可用于生产不均匀的双层接种软骨细胞的琼脂糖构建体,应用于软骨细胞机械转导的研究以及可能用于不均匀关节软骨构建体的组织工程。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验