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Trans-Tympanic Drug Delivery for the Treatment of Ototoxicity
Published on: March 16, 2018
Adenosine A1 Receptor Protects Against Cisplatin Ototoxicity by Suppressing the NOX3/STAT1 Inflammatory Pathway in
Tejbeer Kaur1, Vikrant Borse2, Sandeep Sheth2
1Department of Otolaryngology, Washington University School of Medicine, St. Louis, Missouri 63110, and.
Abstract:
Cisplatin is a commonly used antineoplastic agent that produces ototoxicity that is mediated in part by increasing levels of reactive oxygen species (ROS) via the NOX3 NADPH oxidase pathway in the cochlea. Recent studies implicate ROS generation in mediating inflammatory and apoptotic processes and hearing loss by activating signal transducer and activator of transcription (STAT1). In this study, we show that the adenosine A1 receptor (A1AR) protects against cisplatin ototoxicity by suppressing an inflammatory response initiated by ROS generation via NOX3 NADPH oxidase, leading to inhibition of STAT1. Trans-tympanic administration of the A1AR agonist R-phenylisopropyladenosine (R-PIA) inhibited cisplatin-induced ototoxicity, as measured by auditory brainstem responses and scanning electron microscopy in male Wistar rats. This was associated with reduced NOX3 expression, STAT1 activation, tumor necrosis factor-α (TNF-α) levels, and apoptosis in the cochlea. In vitro studies in UB/OC-1 cells, an organ of Corti immortalized cell line, showed that R-PIA reduced cisplatin-induced phosphorylation of STAT1 Ser(727) (but not Tyr(701)) and STAT1 luciferase activity by suppressing the ERK1/2, p38, and JNK mitogen-activated protein kinase (MAPK) pathways.R-PIA also decreased the expression of STAT1 target genes, such as TNF-α, inducible nitric oxide synthase (iNOS) and cyclooxygenase-2 (COX-2) and reduced cisplatin-mediated apoptosis. These data suggest that the A1AR provides otoprotection by suppressing NOX3 and inflammation in the cochlea and could serve as an ideal target for otoprotective drug therapy.
Significance Statement:
Cisplatin is a widely used chemotherapeutic agent for the treatment of solid tumors. Its use results in significant and permanent hearing loss, for which no US Food and Drug Administration-approved treatment is currently available. In this study, we targeted the cochlear adenosine A1 receptor (A1AR) by trans-tympanic injections of the agonist R-phenylisopropyladenosine (R-PIA) and showed that it reduced cisplatin-induced inflammation and apoptosis in the rat cochlea and preserved hearing. The mechanism of protection involves suppression of the NOX3 NADPH oxidase enzyme, a major target of cisplatin-induced reactive oxygen species (ROS) generation in the cochlea. ROS initiates an inflammatory and apoptotic cascade in the cochlea by activating STAT1 transcription factor, which is attenuated byR-PIA. Therefore, trans-tympanic delivery of A1AR agonists could effectively treat cisplatin ototoxicity.
Insights
Adenosine A1 receptor (A1AR) agonists protect against cisplatin-induced hearing loss by reducing cochlear inflammation and apoptosis. This therapy targets the NOX3 NADPH oxidase pathway, offering a potential treatment for chemotherapy-related ototoxicity.
Area of Science:
- Ototoxicity research
- Pharmacology
- Cellular and molecular biology
Background:
- Cisplatin chemotherapy can cause significant, permanent hearing loss (ototoxicity).
- Ototoxicity is partly mediated by reactive oxygen species (ROS) via NOX3 NADPH oxidase in the cochlea.
- ROS-induced inflammation and apoptosis activate STAT1, contributing to hearing loss.
Purpose of the Study:
- To investigate the protective role of the adenosine A1 receptor (A1AR) against cisplatin ototoxicity.
- To determine if A1AR activation can suppress ROS generation and subsequent inflammatory/apoptotic pathways in the cochlea.
Main Methods:
- Trans-tympanic administration of an A1AR agonist (R-phenylisopropyladenosine, R-PIA) in male Wistar rats.
- Assessment of hearing function using auditory brainstem responses and cochlear damage via scanning electron microscopy.
- In vitro studies using UB/OC-1 cells to analyze molecular signaling pathways (STAT1, MAPK) and gene expression.
Main Results:
- R-PIA treatment significantly inhibited cisplatin-induced ototoxicity and preserved hearing.
- Reduced NOX3 expression, STAT1 activation, TNF-α levels, and apoptosis in the cochlea.
- In vitro, R-PIA suppressed cisplatin-induced STAT1 phosphorylation and target gene expression by inhibiting MAPK pathways.
Conclusions:
- The adenosine A1 receptor (A1AR) pathway offers otoprotection against cisplatin-induced damage.
- A1AR agonists suppress NOX3-mediated ROS generation and downstream STAT1 activation, reducing inflammation and apoptosis.
- Trans-tympanic delivery of A1AR agonists represents a promising therapeutic strategy for preventing cisplatin ototoxicity.
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