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In Vitro Efficacy of Free and Nanoparticle Formulations of Gallium(III) meso-Tetraphenylporphyrine against Mycobacterium avium and Mycobacterium abscessus and Gallium Biodistribution in Mice.
Choi, Seoung-Ryoung; Britigan, Bradley E; Switzer, Barbara; Hoke, Traci; Moran, David; Narayanasamy, Prabagaran.
Afiliação
  • Choi SR; Department of Pathology and Microbiology, College of Medicine , University of Nebraska Medical Center , Omaha , Nebraska 68198 , United States.
  • Britigan BE; Department of Pathology and Microbiology, College of Medicine , University of Nebraska Medical Center , Omaha , Nebraska 68198 , United States.
  • Switzer B; Department of Internal Medicine, College of Medicine , University of Nebraska Medical Center , Omaha , Nebraska 68198 , United States.
  • Hoke T; Research Service, Veterans Affairs Medical Center-Nebraska Western Iowa , Omaha , Nebraska 68105 , United States.
  • Moran D; Department of Internal Medicine, College of Medicine , University of Nebraska Medical Center , Omaha , Nebraska 68198 , United States.
  • Narayanasamy P; Research Service, Veterans Affairs Medical Center-Nebraska Western Iowa , Omaha , Nebraska 68105 , United States.
Mol Pharm ; 15(3): 1215-1225, 2018 03 05.
Article em En | MEDLINE | ID: mdl-29421865
ABSTRACT
The nontuberculous mycobacterial (NTM) pathogens, M. avium complex (MAC) and M. abscessus, can result in severe pulmonary infections. Current antibiotics confront significant challenges for treatment of these NTM infections due to emerging multidrug-resistance. Thus, development of new antibiotics targeted against these agents is needed. We examined the inhibitory activities of Ga(NO3)3, GaCl3, gallium meso-tetraphenylporphyrine (GaTP), and gallium nanoparticles (GaNP) against intra- and extracellular M. avium and M. abscessus. GaTP, an analogue of natural heme, inhibited growth of both M. avium and M. abscessus with MICs in Fe-free 7H9 media of 0.5 and 2 µg/mL, respectively. GaTP was more active than Ga(NO3)3 and GaCl3. Ga(NO3)3 and GaCl3 were not as active in Fe-rich media compared to Fe-free media. However, GaTP was much less impacted by exogenous Fe, with MICs against M. avium and M. abscessus of 2 and 4 µg/mL, respectively, in 7H9 OADC media (Fe rich). Confocal microscopy showed that GaNP penetrates the M. avium cell wall. As assessed by determining colony forming units, GaNP inhibited the growth of NTM growing in THP-1 macrophages up to 15 days after drug-loading of the cells, confirming a prolonged growth inhibitory activity of the GaNP. Biodistribution studies of GaNP conducted in mice showed that intraperitoneal injection is more effective than intramuscular injection in delivering Ga(III) into lung tissue. GaTP exhibits potential as a lead compound for development of anti-NTM agents that target heme-bound iron uptake mechanisms by mycobacteria and inhibit growth by disrupting mycobacterial iron acquisition/utilization.
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Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Assunto principal: Infecções Respiratórias / Mycobacterium abscessus / Gálio / Antibacterianos / Mycobacterium avium / Infecções por Mycobacterium não Tuberculosas Limite: Animals / Female / Humans Idioma: En Ano de publicação: 2018 Tipo de documento: Article

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Assunto principal: Infecções Respiratórias / Mycobacterium abscessus / Gálio / Antibacterianos / Mycobacterium avium / Infecções por Mycobacterium não Tuberculosas Limite: Animals / Female / Humans Idioma: En Ano de publicação: 2018 Tipo de documento: Article