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Trans-Tympanic Drug Delivery for the Treatment of Ototoxicity
Published on: March 16, 2018
A combinatorial approach to protect sensory tissue against cisplatin-induced ototoxicity
Nicole K Febles1, Mark A Bauer1, Bo Ding2
1Department of Medical Engineering, University of South Florida, Tampa, FL 33620, USA; Global Center for Hearing and Speech Research, University of South Florida, Tampa, FL 33602, USA.
Abstract:
Sensorineural Hearing Loss (SNHL) is a highly prevalent disorder involving permanent damage or loss to the inner ear's mechano-sensory hair cells and nerve fibers. Major contributing causes are ototoxic drugs, loud noises, and aging. Drug-induced hearing loss (DIHL), affects over 25% of patients treated with common therapeutics such as aminoglycoside antibiotics, loop diuretics or chemotherapeutics. A commonly used chemotherapeutic agent, cisplatin, is very effective for treating malignant tumors, but results in a majority of patients experiencing irreversible hearing loss and/or tinnitus. Additionally, since there is currently no FDA-approved treatments for SNHL, attenuation of ototoxicity is a major area of investigation in oncology, otolaryngology and hearing research. Several potential otoprotective agents have been investigated at the clinical trial stage, but none have progressed to a full FDA-approval. In this study, we investigated a combinatorial approach comprised of an antioxidant, a p53 inhibitor and a neurotrophin, as a multifactorial otoprotective treatment for cisplatin exposure. In vitro, HEI-OC1 cells, an immortalized organ of Corti epithelial cell line, pre-treated with this biotherapeutic cocktail had significantly reduced cisplatin-induced cell death, DNA fragmentation, and apoptotic activation. In an ex vivo study, rat pup D2-D3 organ of Corti explants, significant protection against cisplatin-based hair cell and neuronal loss was achieved by delivery of the same combinatorial pretreatment. Interestingly, the hair cell protection was localized to the basal and middle regions of the organ of Corti. Together, these findings highlight a novel approach to attenuate cisplatin ototoxicity and potentially prevent DIHL by addressing biological mechanisms of cisplatin ototoxicity.
Insights
A new combination therapy using an antioxidant, p53 inhibitor, and neurotrophin shows promise in protecting against cisplatin-induced hearing loss. This approach significantly reduced cell death in lab studies, offering hope for preventing drug-induced hearing loss.
Area of Science:
- Ototoxicity Research
- Drug-Induced Hearing Loss (DIHL)
- Cell Biology
Background:
- Sensorineural Hearing Loss (SNHL) is a prevalent condition often caused by ototoxic drugs, noise, and aging.
- Drug-induced hearing loss (DIHL) affects over 25% of patients on certain medications, including chemotherapeutics like cisplatin.
- Currently, no FDA-approved treatments exist for SNHL, making ototoxicity attenuation a critical research area.
Purpose of the Study:
- To investigate a novel combinatorial therapy for preventing cisplatin-induced ototoxicity.
- To evaluate the efficacy of a biotherapeutic cocktail (antioxidant, p53 inhibitor, neurotrophin) in protecting inner ear cells.
Main Methods:
- In vitro studies using immortalized HEI-OC1 cells (organ of Corti epithelial line).
- Ex vivo studies on rat pup D2-D3 organ of Corti explants.
- Assessment of cell death, DNA fragmentation, and apoptotic activation following cisplatin exposure with and without the combinatorial treatment.
Main Results:
- Pre-treatment with the combinatorial cocktail significantly reduced cisplatin-induced cell death and DNA fragmentation in HEI-OC1 cells.
- The treatment also significantly reduced apoptotic activation in vitro.
- Ex vivo studies demonstrated significant protection against hair cell and neuronal loss in the organ of Corti explants.
Conclusions:
- The combinatorial approach effectively attenuates cisplatin ototoxicity in both in vitro and ex vivo models.
- This multifactorial treatment strategy shows potential for preventing drug-induced hearing loss.
- Localized protection was observed in the basal and middle regions of the organ of Corti.

