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Effect of minocycline and its nano-formulation on central auditory system in blast-induced hearing loss rat model

Blast injuries are common among the military service members and veterans. One of the devastating effects of blast wave induced TBI is either temporary or permanent hearing loss. Treating hearing loss using minocycline is restricted by optimal drug concentration, route of administration, and its hal...

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Autores principales: Perumal, Venkatesan, Ravula, Arun Reddy, Shao, Ningning, Chandra, Namas
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Chinese PLA General Hospital 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9937842/
https://www.ncbi.nlm.nih.gov/pubmed/36820161
http://dx.doi.org/10.1016/j.joto.2022.09.002
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author Perumal, Venkatesan
Ravula, Arun Reddy
Shao, Ningning
Chandra, Namas
author_facet Perumal, Venkatesan
Ravula, Arun Reddy
Shao, Ningning
Chandra, Namas
author_sort Perumal, Venkatesan
collection PubMed
description Blast injuries are common among the military service members and veterans. One of the devastating effects of blast wave induced TBI is either temporary or permanent hearing loss. Treating hearing loss using minocycline is restricted by optimal drug concentration, route of administration, and its half-life. Therefore, therapeutic approach using novel therapeutic delivery method is in great need. Among the different delivery methods, nanotechnology-based drug delivery is desirable, which can achieve longer systemic circulation, pass through some biological barriers and specifically targets desired sites. The current study aimed to examine therapeutic effect of minocycline and its nanoparticle formulation in moderate blast induced hearing loss rat model through central auditory system. The I.v. administered nanoparticle at reduced dose and frequency than regularly administered toxic dose. After moderate blast exposure, rats had hearing impairment as determined by ABR at 7- and 30-days post exposure. In chronic condition, free minocycline also showed the significant reduction in ABR threshold. In central auditory system, it is found in this study that minocycline nanoparticles ameliorate excitation in inferior colliculus; and astrocytes and microglia activation after the blast exposure is reduced by minocycline nanoparticles administration. The study demonstrated that in moderate blast induced hearing loss, minocycline and its nanoparticle formulation exhibited the optimal therapeutic effect on the recovery of the ABR impairment and a protective effect through central auditory system. In conclusion, targeted and non-targeted nanoparticle formulation have therapeutic effect on blast induced hearing loss.
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spelling pubmed-99378422023-02-19 Effect of minocycline and its nano-formulation on central auditory system in blast-induced hearing loss rat model Perumal, Venkatesan Ravula, Arun Reddy Shao, Ningning Chandra, Namas J Otol Research Article Blast injuries are common among the military service members and veterans. One of the devastating effects of blast wave induced TBI is either temporary or permanent hearing loss. Treating hearing loss using minocycline is restricted by optimal drug concentration, route of administration, and its half-life. Therefore, therapeutic approach using novel therapeutic delivery method is in great need. Among the different delivery methods, nanotechnology-based drug delivery is desirable, which can achieve longer systemic circulation, pass through some biological barriers and specifically targets desired sites. The current study aimed to examine therapeutic effect of minocycline and its nanoparticle formulation in moderate blast induced hearing loss rat model through central auditory system. The I.v. administered nanoparticle at reduced dose and frequency than regularly administered toxic dose. After moderate blast exposure, rats had hearing impairment as determined by ABR at 7- and 30-days post exposure. In chronic condition, free minocycline also showed the significant reduction in ABR threshold. In central auditory system, it is found in this study that minocycline nanoparticles ameliorate excitation in inferior colliculus; and astrocytes and microglia activation after the blast exposure is reduced by minocycline nanoparticles administration. The study demonstrated that in moderate blast induced hearing loss, minocycline and its nanoparticle formulation exhibited the optimal therapeutic effect on the recovery of the ABR impairment and a protective effect through central auditory system. In conclusion, targeted and non-targeted nanoparticle formulation have therapeutic effect on blast induced hearing loss. Chinese PLA General Hospital 2023-01 2022-10-04 /pmc/articles/PMC9937842/ /pubmed/36820161 http://dx.doi.org/10.1016/j.joto.2022.09.002 Text en © 2022 PLA General Hospital Department of Otolaryngology Head and Neck Surgery. Production and hosting by Elsevier (Singapore) Pte Ltd. https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Research Article
Perumal, Venkatesan
Ravula, Arun Reddy
Shao, Ningning
Chandra, Namas
Effect of minocycline and its nano-formulation on central auditory system in blast-induced hearing loss rat model
title Effect of minocycline and its nano-formulation on central auditory system in blast-induced hearing loss rat model
title_full Effect of minocycline and its nano-formulation on central auditory system in blast-induced hearing loss rat model
title_fullStr Effect of minocycline and its nano-formulation on central auditory system in blast-induced hearing loss rat model
title_full_unstemmed Effect of minocycline and its nano-formulation on central auditory system in blast-induced hearing loss rat model
title_short Effect of minocycline and its nano-formulation on central auditory system in blast-induced hearing loss rat model
title_sort effect of minocycline and its nano-formulation on central auditory system in blast-induced hearing loss rat model
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9937842/
https://www.ncbi.nlm.nih.gov/pubmed/36820161
http://dx.doi.org/10.1016/j.joto.2022.09.002
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