Potassium ion(K^+)is one of the most essential ingredients of life that plays a vital regulatory role in numerous cellular processes,whose dyshomeostasis is featured in the occurrence and development of various diseas...Potassium ion(K^+)is one of the most essential ingredients of life that plays a vital regulatory role in numerous cellular processes,whose dyshomeostasis is featured in the occurrence and development of various diseases including neurodegenerative diseases and cancers[1].Consequently,in situ real-time imaging of K^+ dynamic changes is an excellent option to visualize the progress of diseases.However,it is very challenging to achieve such a goal due to the following limitations of conventional imaging sensors[2].展开更多
基金supported by the National Key Research and Development Program of China(2016YFA0203600)the National Natural Science Foundation of China(31822019,51703195,and 91859116)+2 种基金One Belt and One Road International Cooperation Project from Key Research and Development Program of Zhejiang Province(2019C04024)the Zhejiang Provincial Natural Science Foundation(LGF19C100002)the Fundamental Research Funds for the Central Universities(2019XZZX004-15)。
文摘Potassium ion(K^+)is one of the most essential ingredients of life that plays a vital regulatory role in numerous cellular processes,whose dyshomeostasis is featured in the occurrence and development of various diseases including neurodegenerative diseases and cancers[1].Consequently,in situ real-time imaging of K^+ dynamic changes is an excellent option to visualize the progress of diseases.However,it is very challenging to achieve such a goal due to the following limitations of conventional imaging sensors[2].