from    
to    
search  

 


学堂班系列讲座:“人工光合作用”
【千帆讲堂】对话NEJM主编Eric Rubin:Safe but not too safe – human challenge i...
中国新型城镇化理论·政策·实践论坛2023
航空发动机三维数值仿真软件研发进展
报告题目:
肌肉骨骼再生:从生物材料到干细胞(Musculoskeletal regeneration: from biomaterials to stem cells)
 报告人:
Jennifer Elisseeff
Asscociate Professor
Department of Biomedical Engineering
Johns Hopkins University
报告时间:
2008-04-16 15:30
报告地点:
医学科学楼B323
主办单位:
医学院
  简介:

Abastrct

 

Design and translation of tissue engineering strategies in the musculoskeletal system requires both basic science and applied engineering design considerations.  Cartilage is an ideal target tissue for repair since it lacks the ability to regenerate.  Current surgical techniques for cartilage repair aim to provide an avenue for marrow cells to enter a defect site and produce new tissue.  We are designing materials to improve standard surgical techniques but older or arthritic patients will likely require exogenous cells to achieve repair.  Tissue engineering strategies, including cells and a biomaterial scaffold, are at the forefront of cartilage repair.  To evaluate cell types for cartilage repair, we compared the differentiation and tissue forming capabilities of cells derived from adult marrow, embryonic germ and stem cells, in addition to primary cells (chondrocytes).  The different cell types, particularly the embryonic-derived, required unique biological signals to be incorporated in the biomaterial scaffold to direct the cell behavior and achieve functional tissue formation.  Understanding the biology of cell response and tissue development was critical for proper biomaterial design consideration.  To translate cell and tissue engineering strategies to the challenging joint environment, novel chemistry to integrate synthetic materials and surrounding tissue was developed.  We both chemically modified the tissue surface and a cartilage-derived polysaccharide to covalently bond the lubricous cartilage surface with a synthetic biomaterial.  Biomaterial integration was required to retain biomaterials in vivo and was the basis for a one year large animal study to demonstrate efficacy in cartilage repair.  Modification of tissue surfaces to improve biomaterial implantation is an important general technique that may be applied to other fields and both short and long term implantation of synthetic materials.
今日相关信息
让“MS WORD”的实用功能助你写出漂亮论文
美术学院将举办讲座:“怎样成为一个成功的...
 
同类别相关信息
Lilly Open Innovation Drug Discover...
清华大学科学哲学和技术哲学沙龙第118...
Molecular Imaging Probes for Cancer...
Smart Sensing Technologies for Chro...
海外学者短期讲学项目:欧盟科研与创新系...
学术活动