首页> 外文期刊>Acta biomaterialia >Spatially patterned microribbon-based hydrogels induce zonally-organized cartilage regeneration by stem cells in 3D
【24h】

Spatially patterned microribbon-based hydrogels induce zonally-organized cartilage regeneration by stem cells in 3D

机译:空间图案化的基于微藻的水凝胶诱导了3D中干细胞的Zonaly组织的软骨再生

获取原文
获取原文并翻译 | 示例
           

摘要

Regenerating cartilage with biomimetic zonal organization, which is critical for tissue function, remains a great challenge. The objective of this study was to evaluate the potential of spatially-patterned, multi compositional, macroporous, extracellular matrix-based microribbon (mu RB) mu RB scaffolds to regenerate cartilage with biochemical, mechanical, and morphological zonal organization by mesenchymal stem cells (MSCs) compared to conventional multi-layer nanoporous hydrogels. MSCs were seeded in either trilayer microribbon (RB) or hydrogel (HG) scaffolds that were composed of layered biomaterial compositions that had been chosen for their ability to differentiate MSCs into chondrocytes with zonal properties. To mimic the aligned collagen morphology in the superficial layer of native cartilage, an additional experimental group added MSC-laden aligned mu RBs to the surface of the superficial layer of a mu RB trilayer. Tuning mu RB alignment and compositions in different zones led to zonal-specific responses of MSCs to create neocartilage with zonal biochemical, morphological, and mechanical properties, while trilayer HGs led to minimal cartilaginous deposition overall. Trilayer mu RBs created neocartilage exhibiting significant increases in compressive modulus (up to 456 kPa) and > 4-fold increase in sGAG production from superficial to deep zones. Aligned gelatin RBs in the superficial zone further enhanced biomimetic mimicry of the produced neocartilage by leading to robust collagen deposition and superficial zone protein production.
机译:用仿生区组织再生软骨,这对组织功能至关重要,仍然是一个很大的挑战。本研究的目的是评估空间图案化,多元组成,大孔,细胞外基质基质的微孔(MU RB)MU RB支架的潜力,以通过间充质干细胞再生软骨(MSC) )与传统的多层纳米多孔水凝胶相比。在三层微卷(Rb)或水凝胶(Hg)支架中播种MSCs,所述水凝胶(Hg)支架由层状生物材料组合物组成,所述层状生物材料组合物被选择用于将MSC分化为具有区间特性的软骨细胞的能力。为了模拟天然软骨浅表层中的对齐的胶原形态,将MSC-Laden的另外的实验组与Mu RB三层仪的表面层的表面上加入MS RB。调整MU RB对准和不同地区的组成导致MSC的特异性响应,以具有区域生化,形态学和机械性能的新核,而三层HGS总体上导致了最小的软骨沉积。 Trilayer MU RBS创建了新古绿,表现出较大的压缩模量(高达456 kPa)的显着增加,并且SGAG生产从浅表深处的缓和增长。通过导致强大的胶原沉积和浅表区蛋白质产生,进一步增强了产生的新核的仿生模拟物的对齐明胶RB。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号