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Updated: May 21, 2025

Trans-Tympanic Drug Delivery for the Treatment of Ototoxicity
Published on: March 16, 2018
Paving the way for better ototoxicity assessments in cisplatin therapy using more reliable animal models
Vijayprakash Manickam1, Marisa Zallocchi1
1Department of Biomedical Sciences, School of Medicine, Creighton University, Omaha, NE, United States.
Abstract:
Cisplatin-induced hearing loss is a common and irreversible side effect affecting a significant proportion of cancer patients. While various strategies to mitigate this toxicity have been explored, there remains a critical need for effective treatments. A major challenge in developing new therapies is the lack of reliable animal models that accurately replicate the clinical use of cisplatin in humans, which typically involves multiple cycles of low-dose administration. Traditional models using high doses of cisplatin have resulted in high mortality and variable hearing loss, complicating the assessment of potential treatments. To address this, a multi-cycle model using lower cisplatin doses in mice was developed, providing hearing loss without mortality. However, variability in outcomes across different research groups persisted. In the present study, we optimize the multi-cycle model of cisplatin-induced ototoxicity by using clinical-grade cisplatin rather than laboratory-grade formulations. The use of clinical cisplatin ensures greater consistency, reliability, and relevance to human treatment protocols, as it adheres to the rigorous quality standards required for patient use. This new administration protocol will minimize variability across research laboratories and more accurately mimic the dosing regimens typically administered to cancer patients. Additionally, we have enhanced a zebrafish model for high-throughput screening of potential therapeutics, further improving the consistency of results. These improvements to the animal models are critical for accelerating the discovery and testing of therapies to prevent cisplatin-induced hearing loss, supporting the development of effective treatments for cancer patients undergoing cisplatin chemotherapy.
Insights
New animal models improve the study of cisplatin-induced hearing loss. Using clinical-grade cisplatin and enhanced zebrafish models offers more reliable results for developing protective therapies for cancer patients.
Area of Science:
- Ototoxicity research
- Cancer chemotherapy side effects
- Animal model development
Background:
- Cisplatin chemotherapy can cause irreversible hearing loss in cancer patients.
- Existing animal models for cisplatin ototoxicity lack clinical relevance and show high variability.
- There is a critical need for improved models to develop effective preventative therapies.
Purpose of the Study:
- To optimize existing multi-cycle cisplatin-induced ototoxicity mouse models.
- To enhance a zebrafish model for high-throughput screening of therapeutics.
- To improve the consistency and clinical relevance of animal models for studying hearing loss prevention.
Main Methods:
- Utilized clinical-grade cisplatin in a multi-cycle low-dose mouse model to reduce mortality and variability.
- Developed an enhanced zebrafish model for consistent, high-throughput screening.
- Compared outcomes between laboratory-grade and clinical-grade cisplatin formulations.
Main Results:
- The optimized multi-cycle mouse model using clinical-grade cisplatin demonstrated consistent hearing loss without significant mortality.
- The enhanced zebrafish model provided more reliable results for therapeutic screening.
- The study established more reproducible and clinically relevant models for cisplatin-induced ototoxicity.
Conclusions:
- Optimized animal models, particularly using clinical-grade cisplatin, are crucial for accurate research into preventing chemotherapy-induced hearing loss.
- These improved models will accelerate the discovery and testing of novel therapeutics.
- This work supports the development of better supportive care for cancer patients receiving cisplatin treatment.

