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Monitoring drug nanocarriers in human blood by near-infrared fluorescence correlation spectroscopy.


ABSTRACT: Nanocarrier-based drug delivery is a promising therapeutic approach that offers unique possibilities for the treatment of various diseases. However, inside the blood stream, nanocarriers' properties may change significantly due to interactions with proteins, aggregation, decomposition or premature loss of cargo. Thus, a method for precise, in situ characterization of drug nanocarriers in blood is needed. Here we show how the fluorescence correlation spectroscopy that is a well-established method for measuring the size, loading efficiency and stability of drug nanocarriers in aqueous solutions can be used to directly characterize drug nanocarriers in flowing blood. As the blood is not transparent for visible light and densely crowded with cells, we label the nanocarriers or their cargo with near-infrared fluorescent dyes and fit the experimental autocorrelation functions with an analytical model accounting for the presence of blood cells. The developed methodology contributes towards quantitative understanding of the in vivo behavior of nanocarrier-based therapeutics.

SUBMITTER: Negwer I 

PROVIDER: S-EPMC6294246 | biostudies-literature | 2018 Dec

REPOSITORIES: biostudies-literature

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Monitoring drug nanocarriers in human blood by near-infrared fluorescence correlation spectroscopy.

Negwer Inka I   Best Andreas A   Schinnerer Meike M   Schäfer Olga O   Capeloa Leon L   Wagner Manfred M   Schmidt Manfred M   Mailänder Volker V   Helm Mark M   Barz Matthias M   Butt Hans-Jürgen HJ   Koynov Kaloian K  

Nature communications 20181213 1


Nanocarrier-based drug delivery is a promising therapeutic approach that offers unique possibilities for the treatment of various diseases. However, inside the blood stream, nanocarriers' properties may change significantly due to interactions with proteins, aggregation, decomposition or premature loss of cargo. Thus, a method for precise, in situ characterization of drug nanocarriers in blood is needed. Here we show how the fluorescence correlation spectroscopy that is a well-established method  ...[more]

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