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Enhanced Delivery of 4-Thioureidoiminomethylpyridinium Perchlorate in Tuberculosis Models with IgG Functionalized Poly(Lactic Acid)-Based Particles

The compound 4-thioureidoiminomethylpyridinium perchlorate (perchlozone(©)) is a novel anti-tuberculosis drug that is active in multiple drug resistance cases, but the compound is hepatotoxic. To decrease the systemic load and to achieve targeting, we encapsulated the drug into poly(lactic acid)-bas...

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Autores principales: Churilov, Leonid, Korzhikov-Vlakh, Viktor, Sinitsyna, Ekaterina, Polyakov, Dmitry, Darashkevich, Oleg, Poida, Mikhail, Platonova, Galina, Vinogradova, Tatiana, Utekhin, Vladimir, Zabolotnykh, Natalia, Zinserling, Vsevolod, Yablonsky, Peter, Urtti, Arto, Tennikova, Tatiana
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6359407/
https://www.ncbi.nlm.nih.gov/pubmed/30577686
http://dx.doi.org/10.3390/pharmaceutics11010002
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author Churilov, Leonid
Korzhikov-Vlakh, Viktor
Sinitsyna, Ekaterina
Polyakov, Dmitry
Darashkevich, Oleg
Poida, Mikhail
Platonova, Galina
Vinogradova, Tatiana
Utekhin, Vladimir
Zabolotnykh, Natalia
Zinserling, Vsevolod
Yablonsky, Peter
Urtti, Arto
Tennikova, Tatiana
author_facet Churilov, Leonid
Korzhikov-Vlakh, Viktor
Sinitsyna, Ekaterina
Polyakov, Dmitry
Darashkevich, Oleg
Poida, Mikhail
Platonova, Galina
Vinogradova, Tatiana
Utekhin, Vladimir
Zabolotnykh, Natalia
Zinserling, Vsevolod
Yablonsky, Peter
Urtti, Arto
Tennikova, Tatiana
author_sort Churilov, Leonid
collection PubMed
description The compound 4-thioureidoiminomethylpyridinium perchlorate (perchlozone(©)) is a novel anti-tuberculosis drug that is active in multiple drug resistance cases, but the compound is hepatotoxic. To decrease the systemic load and to achieve targeting, we encapsulated the drug into poly(lactic acid)-based micro- (1100 nm) and nanoparticles (170 nm) that were modified with single-chain camel immunoglobulin G (IgG) for targeting. Both micro- and nanoparticles formed stable suspensions in saline solution at particle concentrations of 10–50 mg/mL. The formulations were injected intraperitoneally and intravenously into the mice with experimental tuberculosis. The survival of control animals was compared to that of mice which were treated with daily oral drug solution, single intraperitoneal administration of drug-loaded particles, and those treated both intravenously and intraperitoneally by drug-loaded particles modified with polyclonal camel IgGs. The distribution of particles in the organs of mice was analyzed with immunofluorescence and liquid chromatography/mass spectrometry. Morphological changes related to tuberculosis and drug toxicity were registered. Phagocytic macrophages internalized particles and transported them to the foci of tuberculosis in inner organs. Nanoparticle-based drug formulations, especially those with IgG, resulted in better survival and lower degree of lung manifestations than the other modes of treatment.
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spelling pubmed-63594072019-02-14 Enhanced Delivery of 4-Thioureidoiminomethylpyridinium Perchlorate in Tuberculosis Models with IgG Functionalized Poly(Lactic Acid)-Based Particles Churilov, Leonid Korzhikov-Vlakh, Viktor Sinitsyna, Ekaterina Polyakov, Dmitry Darashkevich, Oleg Poida, Mikhail Platonova, Galina Vinogradova, Tatiana Utekhin, Vladimir Zabolotnykh, Natalia Zinserling, Vsevolod Yablonsky, Peter Urtti, Arto Tennikova, Tatiana Pharmaceutics Article The compound 4-thioureidoiminomethylpyridinium perchlorate (perchlozone(©)) is a novel anti-tuberculosis drug that is active in multiple drug resistance cases, but the compound is hepatotoxic. To decrease the systemic load and to achieve targeting, we encapsulated the drug into poly(lactic acid)-based micro- (1100 nm) and nanoparticles (170 nm) that were modified with single-chain camel immunoglobulin G (IgG) for targeting. Both micro- and nanoparticles formed stable suspensions in saline solution at particle concentrations of 10–50 mg/mL. The formulations were injected intraperitoneally and intravenously into the mice with experimental tuberculosis. The survival of control animals was compared to that of mice which were treated with daily oral drug solution, single intraperitoneal administration of drug-loaded particles, and those treated both intravenously and intraperitoneally by drug-loaded particles modified with polyclonal camel IgGs. The distribution of particles in the organs of mice was analyzed with immunofluorescence and liquid chromatography/mass spectrometry. Morphological changes related to tuberculosis and drug toxicity were registered. Phagocytic macrophages internalized particles and transported them to the foci of tuberculosis in inner organs. Nanoparticle-based drug formulations, especially those with IgG, resulted in better survival and lower degree of lung manifestations than the other modes of treatment. MDPI 2018-12-21 /pmc/articles/PMC6359407/ /pubmed/30577686 http://dx.doi.org/10.3390/pharmaceutics11010002 Text en © 2018 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Churilov, Leonid
Korzhikov-Vlakh, Viktor
Sinitsyna, Ekaterina
Polyakov, Dmitry
Darashkevich, Oleg
Poida, Mikhail
Platonova, Galina
Vinogradova, Tatiana
Utekhin, Vladimir
Zabolotnykh, Natalia
Zinserling, Vsevolod
Yablonsky, Peter
Urtti, Arto
Tennikova, Tatiana
Enhanced Delivery of 4-Thioureidoiminomethylpyridinium Perchlorate in Tuberculosis Models with IgG Functionalized Poly(Lactic Acid)-Based Particles
title Enhanced Delivery of 4-Thioureidoiminomethylpyridinium Perchlorate in Tuberculosis Models with IgG Functionalized Poly(Lactic Acid)-Based Particles
title_full Enhanced Delivery of 4-Thioureidoiminomethylpyridinium Perchlorate in Tuberculosis Models with IgG Functionalized Poly(Lactic Acid)-Based Particles
title_fullStr Enhanced Delivery of 4-Thioureidoiminomethylpyridinium Perchlorate in Tuberculosis Models with IgG Functionalized Poly(Lactic Acid)-Based Particles
title_full_unstemmed Enhanced Delivery of 4-Thioureidoiminomethylpyridinium Perchlorate in Tuberculosis Models with IgG Functionalized Poly(Lactic Acid)-Based Particles
title_short Enhanced Delivery of 4-Thioureidoiminomethylpyridinium Perchlorate in Tuberculosis Models with IgG Functionalized Poly(Lactic Acid)-Based Particles
title_sort enhanced delivery of 4-thioureidoiminomethylpyridinium perchlorate in tuberculosis models with igg functionalized poly(lactic acid)-based particles
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6359407/
https://www.ncbi.nlm.nih.gov/pubmed/30577686
http://dx.doi.org/10.3390/pharmaceutics11010002
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