Morphogenetically active scaffold for osteochondral repair (polyphosphate/alginate/N,O-carboxymethyl chitosan)

软骨 脚手架 材料科学 生物医学工程 阿格里坎 化学 壳聚糖 极限抗拉强度 骨关节炎 生物物理学 复合材料 解剖 生物化学 关节软骨 替代医学 病理 生物 医学
作者
Werner E. G. Müller,Meik Neufurth,Shuxiao Wang,Emad Tolba,Heinz C. Schröder,X Wang
出处
期刊:European cells & materials [European Cells and Materials]
卷期号:31: 174-190 被引量:30
标识
DOI:10.22203/ecm.v031a12
摘要

Here we describe a novel bioinspired hydrogel material that can be hardened with calcium ions to yield a scaffold material with viscoelastic properties matching those of cartilage.This material consists of a negatively charged biopolymer triplet, composed of morphogenetically active natural inorganic polyphosphate (polyP), along with the likewise biocompatible natural polymers N,Ocarboxymethyl chitosan (N,O-CMC) and alginate.The porosity of the hardened scaffold material obtained after calcium exposure can be adjusted by varying the preprocessing conditions.Various compression tests were applied to determine the local (nanoindentation) and bulk mechanical properties (tensile/compression test system for force measurements) of the N,O-CMC-polyPalginate material.Determinations of the Young's modulus revealed that the stiffness of this comparably water rich (and mouldable) material increases during successive compression cycles to values measured for native cartilage.The material not only comprises viscoelastic properties suitable for a cartilage substitute material, but also displays morphogenetic activity.It upregulates the expression of genes encoding for collagen type II and aggrecan, the major proteoglycan within the articular cartilage, in human chondrocytes, and the expression of alkaline phosphatase in human bone-like SaOS-2 cells, as revealed in RT qPCR experiments.Further, we demonstrate that the new polyPbased material can be applied for manufacturing 3D solid models of cartilage bone such as of the tibial epiphyseal plate and the superior articular cartilage surface.Since the material is resorbable and enhances the activity of cells involved in regeneration of cartilage tissue, this material has the potential to be used for artificial articular cartilage implants.

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