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Published on: March 28, 2012
Designer aminoglycosides prevent cochlear hair cell loss and hearing loss
Abstract:
Bacterial infections represent a rapidly growing challenge to human health. Aminoglycosides are widely used broad-spectrum antibiotics, but they inflict permanent hearing loss in up to ~50% of patients by causing selective sensory hair cell loss. Here, we hypothesized that reducing aminoglycoside entry into hair cells via mechanotransducer channels would reduce ototoxicity, and therefore we synthesized 9 aminoglycosides with modifications based on biophysical properties of the hair cell mechanotransducer channel and interactions between aminoglycosides and the bacterial ribosome. Compared with the parent aminoglycoside sisomicin, all 9 derivatives displayed no or reduced ototoxicity, with the lead compound N1MS 17 times less ototoxic and with reduced penetration of hair cell mechanotransducer channels in rat cochlear cultures. Both N1MS and sisomicin suppressed growth of E. coli and K. pneumoniae, with N1MS exhibiting superior activity against extended spectrum β lactamase producers, despite diminished activity against P. aeruginosa and S. aureus. Moreover, systemic sisomicin treatment of mice resulted in 75% to 85% hair cell loss and profound hearing loss, whereas N1MS treatment preserved both hair cells and hearing. Finally, in mice with E. coli-infected bladders, systemic N1MS treatment eliminated bacteria from urinary tract tissues and serially collected urine samples, without compromising auditory and kidney functions. Together, our findings establish N1MS as a nonototoxic aminoglycoside and support targeted modification as a promising approach to generating nonototoxic antibiotics.
Insights
Researchers developed a new non-ototoxic aminoglycoside antibiotic, N1MS, by modifying existing drugs. This novel compound reduces hearing loss while effectively fighting bacterial infections, offering a safer alternative for patients.
Area of Science:
- Pharmacology
- Ototoxicity Research
- Infectious Diseases
Background:
- Aminoglycoside antibiotics are crucial for treating bacterial infections but cause significant hearing loss.
- This ototoxicity stems from damage to sensory hair cells in the inner ear.
Purpose of the Study:
- To synthesize novel aminoglycoside derivatives with reduced ototoxicity.
- To investigate if blocking hair cell mechanotransducer channels mitigates aminoglycoside-induced hearing loss.
Main Methods:
- Synthesized nine aminoglycoside derivatives based on biophysical properties and ribosome interactions.
- Tested derivatives for ototoxicity and hair cell penetration in rat cochlear cultures.
- Evaluated antibacterial activity and in vivo efficacy and safety in mouse models.
Main Results:
- All nine derivatives showed reduced or no ototoxicity compared to sisomicin.
- The lead compound, N1MS, was 17 times less ototoxic and penetrated hair cells less.
- N1MS preserved hearing and hair cells in mice, unlike sisomicin, and treated bacterial infections effectively.
Conclusions:
- Targeted modification of aminoglycosides can yield non-ototoxic antibiotics.
- N1MS represents a promising non-ototoxic aminoglycoside for treating bacterial infections without causing hearing loss.
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