Literature DB >> 28416543

Potential Toxicity of Polymyxins in Human Lung Epithelial Cells.

Maizbha U Ahmed1,2, Tony Velkov1, Yu-Wei Lin3, Bo Yun1, Cameron J Nowell4, Fanfan Zhou3, Qi Tony Zhou5, Kim Chan3, Mohammad A K Azad6, Jian Li6.   

Abstract

Inhaled polymyxins are of considerable utility in achieving optimal exposure in the respiratory tract for the treatment of lung infections caused by multidrug-resistant Gram-negative pathogens. Current inhaled polymyxin therapy is empirical, and often large doses are used that may lead to potential pulmonary adverse effects. This study aimed to investigate the effect of polymyxins on human lung epithelial (A549) cells. The viability of A549 cells was examined after treatment with polymyxins by flow cytometry. Activation of caspases 3, 8, and 9, expression of Fas ligand (FasL), loss of mitochondrial membrane potential, and mitochondrial oxidative stress induced by polymyxin B were evaluated. The concentration of polymyxin B required to induce 50% of maximal cell death was 1.74 mM (95% confidence interval, 1.60 to 1.90 mM). Colistin was at least 2-fold less toxic than polymyxin B, while colistimethate was nontoxic. With 2.0 mM polymyxin B, 30.6% ± 11.5% (mean ± standard deviation) of the cells were apoptotic at 8 h and this increased to 71.3% ± 3.72% at 24 h. Concentration- and time-dependent activation of caspases 3, 8, and 9 was evident, while the activation of caspase 9 was more dramatic. Furthermore, polymyxin B caused concentration- and time-dependent FasL expression, production of mitochondrial reactive oxygen species, and changes in mitochondrial membrane potential. This is the first study to demonstrate that both extrinsic death receptor and intrinsic mitochondrial pathways are involved in polymyxin-induced toxicity in A549 cells. This knowledge base is critical for the development of novel strategies for the safe and effective inhalation therapy of polymyxins against Gram-negative "superbugs."
Copyright © 2017 American Society for Microbiology.

Entities:  

Keywords:  apoptosis; mitochondria; polymyxin; pulmonary delivery; respiratory toxicity

Mesh:

Substances:

Year:  2017        PMID: 28416543      PMCID: PMC5444173          DOI: 10.1128/AAC.02690-16

Source DB:  PubMed          Journal:  Antimicrob Agents Chemother        ISSN: 0066-4804            Impact factor:   5.191


  46 in total

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7.  Salvage treatment of pneumonia and initial treatment of tracheobronchitis caused by multidrug-resistant Gram-negative bacilli with inhaled polymyxin B.

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  19 in total

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Journal:  J Antimicrob Chemother       Date:  2019-01-01       Impact factor: 5.790

2.  Synchrotron-based X-ray fluorescence microscopy reveals accumulation of polymyxins in single human alveolar epithelial cells.

Authors:  Mohamad A K Azad; Shuo Zhang; Jiayao Li; Yeonuk Kim; Heidi H Yu; Alex J Fulcher; Daryl L Howard; Martin D de Jonge; Simon A James; Kade D Roberts; Tony Velkov; Jing Fu; Qi Tony Zhou; Jian Li
Journal:  Antimicrob Agents Chemother       Date:  2021-03-01       Impact factor: 5.191

3.  Evaluation of co-delivery of colistin and ciprofloxacin in liposomes using an in vitro human lung epithelial cell model.

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4.  Effects of the antibiotic component on in-vitro bacterial killing, physico-chemical properties, aerosolization and dissolution of a ternary-combinational inhalation powder formulation of antibiotics for pan-drug resistant Gram-negative lung infections.

Authors:  Sharad Mangal; Jiayang Huang; Nivedita Shetty; Heejun Park; Yu-Wei Lin; Heidi H Yu; Dmitry Zemlyanov; Tony Velkov; Jian Li; Qi Tony Zhou
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5.  Improved Aerosolization Stability of Inhalable Tobramycin Powder Formulation by Co-Spray Drying with Colistin.

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Review 6.  Rescuing the Last-Line Polymyxins: Achievements and Challenges.

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7.  In vitro evaluation of drug delivery behavior for inhalable amorphous nanoparticle formulations in a human lung epithelial cell model.

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9.  Sputum Active Polymyxin Lipopeptides: Activity against Cystic Fibrosis Pseudomonas aeruginosa Isolates and Their Interactions with Sputum Biomolecules.

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Journal:  ACS Infect Dis       Date:  2018-04-02       Impact factor: 5.084

10.  Polymyxin-Induced Metabolic Perturbations in Human Lung Epithelial Cells.

Authors:  Mohammad A K Azad; Jian Li; Maizbha U Ahmed; Mengyao Li; Darren J Creek; Meiling Han; Fanfan Zhou; Kim Chan; Qi Tony Zhou; Tony Velkov
Journal:  Antimicrob Agents Chemother       Date:  2021-08-17       Impact factor: 5.191

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