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:
Immunotherapy Targeting the Tumor Glycocalyx
 报告人:
肖汉博士
Department of Chemistry, Stanford University
报告时间:
2017-03-31 15:00
报告地点:
化学馆301会议室
主办单位:
化学系生命有机磷化学及化学生物学教育部重点实验室
  简介:

Abstract:

Cell surface glycans constitute a central axis of immune modulation that is exploited by tumors to evade immune destruction. Therapeutic strategies that target tumor-associated glycans may therefore potentiate anti-tumor immunity. In previous work, we identified hypersialylation, a common tumor phenotype, as a resistance mechanism against antibody-dependent cell-mediated cytotoxicity (ADCC) by natural killer (NK) cells. Sialylated glycans on cancer cells engaged sialic acid-binding immunoglobulin-like lectin (Siglec) receptors on NK cells, leading to enhanced inhibitory signaling. Here, we report the development of antibody-sialidase conjugates that enhance tumor cell susceptibility to ADCC by selective desialylation of the tumor cell glycocalyx. We chemically linked the monoclonal antibody cancer drug trastuzumab to a recombinant sialidase using a combination of bioorthogonal chemistry methods. The trastuzumab-sialidase conjugate desialylated tumor cells in a HER2-dependent manner, reduced binding by NK cell inhibitory Siglec receptors, and enhanced binding to the NK cell activating receptor NKG2D. Compared to the activity of trastuzumab alone, the trastuzumab-sialidase conjugate led to enhanced NK cell killing against tumor cells with moderate levels of HER2, suggesting potential clinical utility for treating cancer patients with low HER2 levels or trastuzumab resistance. Precision glycocalyx editing with antibody-enzyme conjugates is a promising avenue for cancer immune therapy.

今日相关信息
Internet免费学术资源的检索与利用
 
同类别相关信息
Cooperative late transition metal p...
碳中和背景下林木纤丝的可持续化开发
可控裂结芯片上的单分子电子学研究
On the Way to Single-Cell Metabolom...
Innovations in Micro- & Nanotec...
学术活动