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Detecting Novel Ototoxins and Potentiation of Ototoxicity by Disease Settings. | LitMetric

Detecting Novel Ototoxins and Potentiation of Ototoxicity by Disease Settings.

Front Neurol

Department of Biomedical Sciences, School of Medicine, Creighton University, Omaha, NE, United States.

Published: August 2021

AI Article Synopsis

  • Over 100 drugs and chemicals can cause permanent hearing loss, tinnitus, and balance issues (ototoxicity), which is often overlooked during drug development and clinical trials.
  • During the pandemic, some potential COVID-19 treatments, like chloroquine and lopinavir-ritonavir, are known to be ototoxic, highlighting the need for assessing ototoxic risks in new and existing drugs.
  • The review suggests using models like mammalian auditory cell lines and zebrafish to quickly identify ototoxic potential, along with a computational approach to compare new drugs with known ototoxins to enhance preclinical drug development.

Article Abstract

Over 100 drugs and chemicals are associated with permanent hearing loss, tinnitus, and vestibular deficits, collectively known as ototoxicity. The ototoxic potential of drugs is rarely assessed in pre-clinical drug development or during clinical trials, so this debilitating side-effect is often discovered as patients begin to report hearing loss. Furthermore, drug-induced ototoxicity in adults, and particularly in elderly patients, may go unrecognized due to hearing loss from a variety of etiologies because of a lack of baseline assessments immediately prior to novel therapeutic treatment. During the current pandemic, there is an intense effort to identify new drugs or repurpose FDA-approved drugs to treat COVID-19. Several potential COVID-19 therapeutics are known ototoxins, including chloroquine (CQ) and lopinavir-ritonavir, demonstrating the necessity to identify ototoxic potential in existing and novel medicines. Furthermore, several factors are emerging as potentiators of ototoxicity, such as inflammation (a hallmark of COVID-19), genetic polymorphisms, and ototoxic synergy with co-therapeutics, increasing the necessity to evaluate a drug's potential to induce ototoxicity under varying conditions. Here, we review the potential of COVID-19 therapies to induce ototoxicity and factors that may compound their ototoxic effects. We then discuss two models for rapidly detecting the potential for ototoxicity: mammalian auditory cell lines and the larval zebrafish lateral line. These models offer considerable value for pre-clinical drug development, including development of COVID-19 therapies. Finally, we show the validity of screening for ototoxic potential using a computational model that compares structural similarity of compounds of interest with a database of known ototoxins and non-ototoxins. Preclinical screening at , and levels can provide an earlier indication of the potential for ototoxicity and identify the subset of candidate therapeutics for treating COVID-19 that need to be monitored for ototoxicity as for other widely-used clinical therapeutics, like aminoglycosides and cisplatin.

Download full-text PDF

Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC8418111PMC
http://dx.doi.org/10.3389/fneur.2021.725566DOI Listing

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