化学
膜
细胞
细胞膜
表面改性
生物物理学
组合化学
生物化学
生物
物理化学
作者
Tao Xiong,Yingchao Chen,Qiang Peng,Mingle Li,Sheng Lu,Xiaoqiang Chen,Jiangli Fan,Lei Wang,Xiaojun Peng
摘要
Cell membrane genetic engineering has been utilized to confer cell membranes with functionalities for diagnostic and therapeutic purposes but concerns over cost and variable modification results. Although nongenetic chemical modification and phospholipid insertion strategies are more convenient, they still face bottlenecks in either biosafety or stability of the modifications. Herein, we show that pyrazolone-bearing molecules can bind to proteins with high stability, which is mainly contributed to by the multiple interactions between pyrazolone and basic amino acids. This new binding model offers a simple and versatile noncovalent approach for cell membrane functionalization. By binding to cell membrane proteins, pyrazolone-bearing dyes enabled precise cell tracking in vitro (>96 h) and in vivo (>21 days) without interfering with the protein function or causing cell death. Furthermore, the convenient anchor of pyrazolone-bearing biotin on cell membranes rendered the biorecognition to avidin, showing the potential for artificially creating cell targetability.
科研通智能强力驱动
Strongly Powered by AbleSci AI