Maltohexaose-indocyanine green (MH-ICG) for near infrared imaging of endocarditis

Author:

Takemiya KiyokoORCID,Røise Joachim J.ORCID,He Maomao,Taing ChungORCID,Rodriguez Alexander G.,Murthy Niren,Goodman Mark M.,Taylor W. Robert

Abstract

Infectious endocarditis is a life-threatening disease, and diagnostics are urgently needed to accurately diagnose this disease especially in the case of prosthetic valve endocarditis. We show here that maltohexaose conjugated to indocyanine green (MH-ICG) can detect Staphylococcus aureus (S. aureus) infection in a rat model of infective endocarditis. The affinity of MH-ICG to S. aureus was determined and had a Km and Vmax of 5.4 μM and 3.0 X 10−6 μmol/minutes/108 CFU, respectively. MH-ICG had no detectable toxicity to mammalian cells at concentrations as high as 100 μM. The in vivo efficiency of MH-ICG in rats was evaluated using a right heart endocarditis model, and the accumulation of MH-ICG in the bacterial vegetations was 2.5 ± 0.2 times higher than that in the control left ventricular wall. The biological half-life of MH-ICG in healthy rats was 14.0 ± 1.3 minutes, and approximately 50% of injected MH-ICG was excreted into the feces after 24 hours. These data demonstrate that MH-ICG was internalized by bacteria with high specificity and that MH-ICG specifically accumulated in bacterial vegetations in a rat model of endocarditis. These results demonstrate the potential efficacy of this agent in the detection of infective endocarditis.

Funder

American Heart Association

National Institute of Biomedical Imaging and Bioengineering

Publisher

Public Library of Science (PLoS)

Subject

Multidisciplinary

Reference31 articles.

1. Infective endocarditis;TJ Cahill;Lancet,2016

2. Prosthetic valve endocarditis;M Nataloni;Journal of cardiovascular medicine,2010

3. Maltodextrin-based imaging probes detect bacteria in vivo with high sensitivity and specificity;X Ning;Nature Materials,2011

4. Novel PET and near infrared imaging probes for the specific detection of bacterial infections associated with cardiac devices. JACC Cardiovasc Imaging;K Takemiya,2018

5. PET imaging of bacterial infections with fluorine-18-labeled maltohexaose;X Ning;Angewandte Chemie,2014

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