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Glycosylated superparamagnetic nanoparticle gradients for osteochondral tissue engineering

机译:糖基化超顺磁性纳米粒子梯度用于骨软骨组织工程

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摘要

In developmental biology, gradients of bioactive signals direct the formation of structural transitions in tissue that are key to physiological function. Failure to reproduce these native features in an in vitro setting can severely limit the success of bioengineered tissue constructs. In this report, we introduce a facile and rapid platform that uses magnetic field alignment of glycosylated superparamagnetic iron oxide nanoparticles, pre-loaded with growth factors, to pattern biochemical gradients into a range of biomaterial systems. Gradients of bone morphogenetic protein 2 in agarose hydrogels were used to spatially direct the osteogenesis of human mesenchymal stem cells and generate robust osteochondral tissue constructs exhibiting a clear mineral transition from bone to cartilage. Interestingly, the smooth gradients in growth factor concentration gave rise to biologically-relevant, emergent structural features, including a tidemark transition demarcating mineralized and non-mineralized tissue and an osteochondral interface rich in hypertrophic chondrocytes. This platform technology offers great versatility and provides an exciting new opportunity for overcoming a range of interfacial tissue engineering challenges.
机译:在发育生物学中,生物活性信号的梯度指导组织中生理功能关键的结构转变的形成。在体外无法重现这些天然特征会严重限制生物工程组织构建的成功。在本报告中,我们介绍了一个便捷的平台,该平台使用预先加载有生长因子的糖基化超顺磁性氧化铁纳米粒子的磁场对准,将生化梯度模式化为一系列生物材料系统。琼脂糖水凝胶中的骨形态发生蛋白2梯度用于空间指导人间充质干细胞的成骨作用,并生成坚固的骨软骨组织构建体,表现出从骨骼到软骨的清晰矿物质过渡。有趣的是,生长因子浓度的平滑梯度产生了生物学上相关的,新兴的结构特征,包括区分矿化和非矿化组织的潮汐过渡以及富含肥大软骨细胞的骨软骨界面。该平台技术具有出色的多功能性,为克服一系列界面组织工程挑战提供了令人兴奋的新机遇。

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