from    
to    
search  

 


学堂班系列讲座:“Towards Energy Efficient Information Processing withIntelli...
Sculpting quantum phases of matter with measurements
吉林大学化学学院-清华大学化学系双边学术研讨会(2024)
纳米结构工程与纳米压印
报告题目:
Mechanistic studies of regenerative medicine and nano-biology
 报告人:
David Leong, Ph.D.
Assistant Professor, National University of Singapore
报告时间:
2012-09-03 15:30
报告地点:
医学科学楼 C201
主办单位:
清华大学医学院
  简介:

       Mechanistic studies of regenerative medicine and nano-biology Regenerative medicine holds many promises and raises hope for patientswho do not have much choices beyond the current transplantation and rehabilitative options.

       One of the pillars of regenerative medicine are the multipotent stem cells that provide the myriad of possibilities of replacement tissues. We had earlier reported adipose tissue as a good source of these stem cells and showed osteogenic commitment from the petri dish to the animal. However, the transcriptional master switches that brings about the wonders of these adult stem cells remain elusive. Here we report how we arrive at and showed that ATF5 primes adipose stem cells to ostegenic lineage commitment. This opens up an exciting new area where by knowing and controlling the molecular switches, regenerative medicine can better take the differentiation "bull" by its "horn" and thereby control bone lineage commitment. A deviation from this, we are also interested in nanomaterials-biology. Nanomaterials have very useful chemical and physical properties and its prevalence in everyday consumer products can be surprising. However, its biological effects are still largely unknown with possible deleterious effects only apparent after a long period with chronic exposure and accumulation in body tissues. We focussed on metal oxide based nanomaterials like ZnO and TiO2 due to their high abundance and presense and studied their biological effects in cells.

     We found deleterious cell effects like activation of DNA damage genes and showed that cellular responses largely worked through p53, the key tumor suppressor. Cells without p53 tends to be resistant to large dose nanomaterials induced cell death and these nanomaterials induced stress may push these cells a step closer to malignancy.

今日相关信息
第四届中德前沿科学研讨会
Lyman-alpha emission of high redshift...
Electron microscopy of carbon nano-st...
Design-for-Yield for Advanced Circuit...
Design and Development of Molecular E...
 
同类别相关信息
基于第一原理的深度(卷积)神经网络
公共卫生系列讲座:Traditional Easte...
AIR学术工作坊第1期 | AI赋能基因分析...
学堂班系列讲座:“生物合成高性能融合及...
AIR学术沙龙第2期|人工智能赋能个体化...
学术活动