Related Experiment Video
Updated: Mar 22, 2026

An Assay for Lateral Line Regeneration in Adult Zebrafish
Published on: April 8, 2014
Natural Bizbenzoquinoline Derivatives Protect Zebrafish Lateral Line Sensory Hair Cells from Aminoglycoside Toxicity
Matthew Kruger1, Robert Boney2, Alexander J Ordoobadi3
1School of Biological Sciences, Washington State University Vancouver, WA, USA.
Abstract:
Moderate to severe hearing loss affects 360 million people worldwide and most often results from damage to sensory hair cells. Hair cell damage can result from aging, genetic mutations, excess noise exposure, and certain medications including aminoglycoside antibiotics. Aminoglycosides are effective at treating infections associated with cystic fibrosis and other life-threatening conditions such as sepsis, but cause hearing loss in 20-30% of patients. It is therefore imperative to develop new therapies to combat hearing loss and allow safe use of these potent antibiotics. We approach this drug discovery question using the larval zebrafish lateral line because zebrafish hair cells are structurally and functionally similar to mammalian inner ear hair cells and respond similarly to toxins. We screened a library of 502 natural compounds in order to identify novel hair cell protectants. Our screen identified four bisbenzylisoquinoline derivatives: berbamine, E6 berbamine, hernandezine, and isotetrandrine, each of which robustly protected hair cells from aminoglycoside-induced damage. Using fluorescence microscopy and electrophysiology, we demonstrated that the natural compounds confer protection by reducing antibiotic uptake into hair cells and showed that hair cells remain functional during and after incubation in E6 berbamine. We also determined that these natural compounds do not reduce antibiotic efficacy. Together, these natural compounds represent a novel source of possible otoprotective drugs that may offer therapeutic options for patients receiving aminoglycoside treatment.
Insights
Four natural compounds protect against hearing loss caused by aminoglycoside antibiotics. These compounds reduce antibiotic uptake into hair cells without affecting treatment efficacy, offering potential otoprotective therapies.
Area of Science:
- Ototoxicity and drug discovery
- Cellular biology and toxicology
- Pharmacology and natural products
Background:
- Moderate to severe hearing loss impacts 360 million globally, often due to sensory hair cell damage.
- Aminoglycoside antibiotics, vital for treating serious infections, cause hearing loss in 20-30% of patients.
- Developing otoprotective therapies is crucial for safe antibiotic use and preventing hearing loss.
Purpose of the Study:
- To screen natural compounds for hair cell protection against aminoglycoside-induced damage.
- To identify novel therapeutic agents for preventing antibiotic-associated hearing loss.
- To investigate the mechanism of hair cell protection by identified compounds.
Main Methods:
- Screening of 502 natural compounds using larval zebrafish lateral line hair cells.
- Utilizing fluorescence microscopy and electrophysiology to assess hair cell protection and function.
- Evaluating the impact of compounds on antibiotic uptake and efficacy.
Main Results:
- Four bisbenzylisoquinoline derivatives (berbamine, E6 berbamine, hernandezine, isotetrandrine) showed robust hair cell protection.
- Compounds were found to reduce aminoglycoside uptake into hair cells.
- Hair cell function remained intact during and after compound treatment, with no loss of antibiotic efficacy.
Conclusions:
- Bisbenzylisoquinoline derivatives represent a novel class of potential otoprotective drugs.
- These compounds may enable the safe use of essential aminoglycoside antibiotics.
- Further research into these natural compounds could lead to new treatments for hearing loss.

