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  5. Bright, photostable and long-circulating NIR-II nanoparticles for whole-process monitoring and evaluation of renal transplantation

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Article
en
2023

Bright, photostable and long-circulating NIR-II nanoparticles for whole-process monitoring and evaluation of renal transplantation

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en
2023
Vol 11 (2)
Vol. 11
DOI: 10.1093/nsr/nwad286

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Ben Zhong Tang
Ben Zhong Tang

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Ben Zhong Tang
Ping Shen
Yu Xiong
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Abstract

Kidney transplantation is the gold standard for the treatment of end-stage renal diseases (ESRDs). However, the scarcity of donor kidneys has caused more and more ESRD patients to be stuck on the waiting list for transplant surgery. Improving the survival rate for renal grafts is an alternative solution to the shortage of donor kidneys. Therefore, real-time monitoring of the surgical process is crucial to the success of kidney transplantation, but efficient methods and techniques are lacking. Herein, a fluorescence technology based on bright, photostable and long-circulating aggregation-induced emission (AIE) active NIR-II nano-contrast agent DIPT-ICF nanoparticles for the whole-process monitoring and evaluation of renal transplantation has been reported. In the aggregated state, DIPT-ICF exhibits superior photophysical properties compared with the commercial dyes IR-26 and IR-1061. Besides, the long-circulating characteristic of the AIE nano-contrast agent helps to achieve renal angiography in kidney retrieval surgery, donor kidney quality evaluation, diagnosing vascular and ureteral complications, and assessment of renal graft reperfusion beyond renovascular reconstruction, which considerably outperforms the clinically approved indocyanine green (ICG).

How to cite this publication

Ben Zhong Tang, Ping Shen, Yu Xiong, Tianjing Wu, Gang Wang, Yucheng Wang, Liping Zhang, Han Yang, Wei He, Jian Du, Xuedong Wei, Siwei Zhang, Zijie Qiu, Weijie Zhang, Zheng Zhao, Ben Zhong Tang (2023). Bright, photostable and long-circulating NIR-II nanoparticles for whole-process monitoring and evaluation of renal transplantation. , 11(2), DOI: https://doi.org/10.1093/nsr/nwad286.

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Publication Details

Type

Article

Year

2023

Authors

16

Datasets

0

Total Files

0

Language

en

DOI

https://doi.org/10.1093/nsr/nwad286

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