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Zwitterionic near infrared fluorescent agents for noninvasive real-time transcutaneous assessment of kidney function.


ABSTRACT: We developed novel zwitterionic near infrared (NIR) fluorescent agents (ABZWCY-HP?CD and AAZWCY-HP?CD), which exhibit favorable hydrophilicity, low plasma protein binding, high stability and non-toxicity. These attractive characteristics ensure that they are excreted rapidly, without any skin accumulation or metabolism in vivo. More importantly, zwitterionic HP?CD based agents can be efficiently filtrated by the glomerulus and completely excreted through the kidneys into urine without reabsorption or secretion in the kidney proximal tubule. Relying on these novel zwitterionic NIR agents and a transcutaneous device, we demonstrate a rapid, robust and biocompatible approach for assessing kidney function in rat models of both healthy rats and those with kidney disease, without the need for time-consuming blood/urine sample preparation. Our work provides a promising tool for in vivo real-time non-invasive kidney function assessment in preclinical applications.

SUBMITTER: Huang J 

PROVIDER: S-EPMC5431684 | biostudies-literature | 2017 Apr

REPOSITORIES: biostudies-literature

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Zwitterionic near infrared fluorescent agents for noninvasive real-time transcutaneous assessment of kidney function.

Huang Jiaguo J   Weinfurter Stefanie S   Daniele Cristina C   Perciaccante Rossana R   Federica Rodeghiero R   Della Ciana Leopoldo L   Pill Johannes J   Gretz Norbert N  

Chemical science 20170111 4


We developed novel zwitterionic near infrared (NIR) fluorescent agents (ABZWCY-HPβCD and AAZWCY-HPβCD), which exhibit favorable hydrophilicity, low plasma protein binding, high stability and non-toxicity. These attractive characteristics ensure that they are excreted rapidly, without any skin accumulation or metabolism <i>in vivo</i>. More importantly, zwitterionic HPβCD based agents can be efficiently filtrated by the glomerulus and completely excreted through the kidneys into urine without rea  ...[more]

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