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- W4292663603 endingPage "121753" @default.
- W4292663603 startingPage "121753" @default.
- W4292663603 abstract "Diseases are often accompanied by abnormal expression of gaseous signaling molecules including nitric oxide (NO), carbon monoxide (CO), and hydrogen sulfide (H2S). Sensing these gaseous markers is thus important for identification and investigation of pathological processes. In contrast to conventional approaches, such as electrochemical, chromatographical methods, etc., optical imaging shows merits including high sensitivity, good spatiotemporal resolution, and ideal selectivity. Especially, optical molecular probes with aggregation-induced emission (AIE) properties have good potential for bio-detection since they show maintained optical signals in the aggregated state. Recently, many AIE molecular probes have been developed for imaging disease-related gaseous signaling molecules. Generally, these probes recognize the analytes through turn-on or ratiometric approaches. This review summarizes the recent progress in organic probes with AIE properties for sensing gaseous markers and relative disease diagnosis applications. Based on the types of analytes, the probes are divided into three groups: NO, CO and H2S sensors. Molecular designs and sensing mechanisms of these AIE probes are highlighted. Their gaseous signaling molecules detection applications at cellular and animal levels are presented. Finally, some existing problems and future promising development directions are discussed with the hope to inspire further developments of AIE probes for precise disease diagnosis." @default.
- W4292663603 created "2022-08-23" @default.
- W4292663603 creator A5003157392 @default.
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- W4292663603 creator A5028910367 @default.
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- W4292663603 creator A5055075769 @default.
- W4292663603 creator A5078632164 @default.
- W4292663603 creator A5091342200 @default.
- W4292663603 date "2022-10-01" @default.
- W4292663603 modified "2023-09-27" @default.
- W4292663603 title "Innovative probes with aggregation-induced emission characteristics for sensing gaseous signaling molecules" @default.
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