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Published on: August 31, 2015
Streptomycin generates oxidative stress in melanin-producing cells: In vitro study with EPR spectroscopy evidence
Zuzanna Rzepka1, Jakub Rok1, Magdalena Zdybel2
1Department of Pharmaceutical Chemistry, Faculty of Pharmaceutical Sciences in Sosnowiec, Medical University of Silesia in Katowice, 4 Jagiellońska Str., 41-200 Sosnowiec, Poland.
Abstract:
Streptomycin (STR) is an aminoglycoside antibiotic with a broad-spectrum of activity and ototoxic potential. The mechanism of STR-induced inner ear damage has not been fully elucidated. It was previously found that STR binds to melanin, which may result in the accumulation of the drug in melanin-containing tissues. Melanin pigment is present in various parts of the inner ear, including the cochlea and vestibular organ. The present study aimed to assess if streptomycin generates oxidative stress and affects melanogenesis in normal human melanocytes. Moreover the variation of free radical concentration in STR-treated melanocytes was examined by electron paramagnetic resonance spectroscopy (EPR). We found that STR decreases cell metabolic activity and reduces melanin content. The observed changes in the activity of antioxidant enzymes activity in HEMn-DPs treated with streptomycin may suggest that the drug affects redox homeostasis in melanocytes. In this work EPR study expanded knowledge about free radicals in interactions of STR and melanin in melanocytes. The results may help elucidate the mechanisms of STR toxicity on pigment cells, including melanin-producing cells in the inner ear. This is important because understanding the mechanism of STR-induced ototoxicity would be helpful in developing new therapeutic strategies to protect patients' hearing.
Insights
Streptomycin (STR) antibiotic reduces melanin production and antioxidant enzyme activity in human melanocytes, suggesting a role in inner ear toxicity. Further research may protect hearing from STR side effects.
Area of Science:
- Ototoxicity research
- Melanogenesis studies
- Free radical biology
Background:
- Streptomycin (STR) is an ototoxic antibiotic.
- STR accumulates in melanin-containing tissues, including the inner ear.
- The mechanism of STR-induced ototoxicity remains unclear.
Purpose of the Study:
- To investigate if STR induces oxidative stress in human melanocytes.
- To determine STR's effect on melanogenesis.
- To analyze free radical variations in STR-treated melanocytes using EPR spectroscopy.
Main Methods:
- Culturing normal human melanocytes (HEMn-DPs).
- Treating melanocytes with Streptomycin (STR).
- Measuring cell metabolic activity and melanin content.
- Assessing antioxidant enzyme activity.
- Utilizing electron paramagnetic resonance (EPR) spectroscopy for free radical analysis.
Main Results:
- STR significantly decreased cell metabolic activity and melanin content.
- Changes in antioxidant enzyme activity suggest STR disrupts redox homeostasis.
- EPR studies revealed alterations in free radical concentrations upon STR-melanin interaction.
Conclusions:
- Streptomycin impacts melanogenesis and redox balance in human melanocytes.
- The findings provide insights into STR's interaction with melanin and free radicals.
- Understanding these mechanisms is crucial for developing strategies against STR-induced ototoxicity and hearing loss.
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