首页> 外文会议>ASME bioengineering conference >MURINE OSTEOCHONDRAL STEM CELLS EXPRESS COLLAGEN TYPE I MORE STRONGLY ON PDMS SUBSTRATES THAN ON TISSUE CULTURE PLASTIC
【24h】

MURINE OSTEOCHONDRAL STEM CELLS EXPRESS COLLAGEN TYPE I MORE STRONGLY ON PDMS SUBSTRATES THAN ON TISSUE CULTURE PLASTIC

机译:相比于组织培养塑料,PDMS上的小鼠骨软骨干细胞表达I型胶原更强

获取原文

摘要

The discovery of the multipotent lineage of mesenchymal stem cells has dawned a new age in tissue engineering, where an autologous cell-seeded scaffold can be implanted into different therapeutic sites. Mesenchymal stem cells have been reported to differentiate into numerous anchorage-dependent cell phenotypes, including neurons, adipocytes, myoblasts, chondrocytes, tenocytes, and osteoblasts. A seminal work detailing that mesenchymal stem cells can be directed towards differentiation of different cell types by substrate stiffness alone has led to numerous studies attempting to understand how cells can sense the stiffness of their substrate Substrate stiffness has been shown to be an inducer of stem cell differentiation. MSCs on extremely soft substrates (250 Pa), similar to the stiffness of bone marrow, became quiescent but still retained their multipotency . Elastic substrates in the stiffness range of 34 kPa revealed MSCs with osteoblast morphology, and osteocalcin along with other osteoblast markers were expressed. However, osteogenesis has been found to increase on much stiffer (20-80 kPa) (400 kPa) as well as much softer substrates (75 Pa). Overall, cells have increased projected cell area and proliferation on stiffer substrates, leading to higher stress fiber formation. This study seeks to understand if the stiffness of the substrate has any effect on the differentiation potential of osteochondral progenitor cells into bone cells, using an in vitro dual fluorescent mouse model.
机译:间充质干细胞多能谱系的发现开创了组织工程学的新纪元,在那里可以将自体细胞播种的支架植入不同的治疗部位。据报道,间充质干细胞可分化为多种依赖锚固的细胞表型,包括神经元,脂肪细胞,成肌细胞,软骨细胞,肌腱细胞和成骨细胞。一项开创性的工作详细介绍了间充质干细胞可以仅通过基质刚度就可以分化为不同类型的细胞,这导致了众多研究试图了解细胞如何感知其基质的刚度。基质刚度已被证明是干细胞的诱导剂。差异化。与骨髓的刚度相似,在极其柔软的底物(250 Pa)上的MSC静止不动,但仍保持其多能性。刚度范围为34 kPa的弹性底物显示出具有成骨细胞形态的MSC,并表达了骨钙素和其他成骨细胞标志物。但是,已经发现,在刚度更高(20-80 kPa)(400 kPa)和更柔软的底材(75 Pa)上,成骨作用会增加。总体而言,细胞在较硬的基材上具有增加的投射细胞面积和增殖能力,从而导致形成更高应力的纤维。这项研究试图使用体外双荧光小鼠模型来了解底物的硬度是否对骨软骨祖细胞向骨细胞的分化潜能产生任何影响。

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