| Literature DB >> 24250363 |
Masoud Motallebi Kashani1, Seyyed Bagher Mortazavi, Ali Khavanin, Abdolamir Allameh, Ramezan Mirzaee, Mehdi Akbari.
Abstract
Noise induced hearin gloss (NIHL) is one of the most important occupational disease world wide. NIHL has been found potentiate by simultaneous carbon monoxide (CO) exposure. Free radicals have been implicated in cochlear damage resulted from the exposure to noise and due to the CO hypoxia. This study examined whether α-tocopherol administration , as a free radical scavenger, causes the attenuation of auditory brainstem response (ABR) threshold shifts resulting from noise exposure and noise plus CO exposure. Forty-two rabbits were divided in to seven groups including control, noise + saline, noise + CO + saline, noise + α-tocopherol, noise + CO + α-tocopherol , CO + α-tocopherol and α-tocopherol alone. ABR was assessed before exposure, 1 hand 14 days post exposure. The administration of 50 mg/Kg of α-tocopherol prior, following and post exposure to noise or noise plus CO recovered permanent ABR threshold shift at 1 and KHz almost to the baseline and provided significant attenuation in permanent ABR threshold shift at 4 and 8 KHz in subject swhich were exposed to noise but it did not block the potentiating of threshold elevation by CO exposure (extra threshold loss by combined exposure) at 4 and 8 KHz. α Tocopherol provides protective effect against the hearing loss resulting from noise exposure and simultaneous exposure to noise plus CO.Entities:
Keywords: Anti oxidant agent; Auditory brainstem response; NIHL potentiation; Noise induced hearin gloss; α-Tocopherol
Year: 2011 PMID: 24250363 PMCID: PMC3828919
Source DB: PubMed Journal: Iran J Pharm Res ISSN: 1726-6882 Impact factor: 1.696
Figure 1Total antioxidant ability of plasma on 4th (prior to exposure) and 8th day (5 days after exposure) in each group Bars show means, error bars show ± 1.0 SD. * p < 0.05, significantly different from group 1. 1: control (no exposure to noise or CO, and no IP injection); 2: noise exposure + saline IP injection; 3: noise plus CO exposure + saline IP injection; 4: noise exposure + α-tocopherol 50 mg/Kg IP injection; 5: noise plus CO exposure + α-tocopherol 50 mg/Kg IP injection; 6: no exposure to noise or CO + α-tocopherol 50 mg/Kg IP injection; 7: CO exposure + saline IP injection
Figure 2ABR threshold shifts on 8th day (1 h post exposure to noise or noise plus CO ) and 22nd day (14 days post exposure to noise or noise plus CO ) in each group at (A) 1 KHz, (B) 2 KHz, (C) 4 KHz and (D) 8 KHz Bars show means, error bars show ± 1.0 SD. * p < 0.05, significantly different from group 2. 1: control (no exposure to noise or CO, and no IP injection); 2: noise exposure + saline IP injection; 3: noise plus CO exposure + saline IP injection; 4: noise exposure + α-tocopherol 50 mg/Kg IP injection; 5: noise plus CO exposure + α-tocopherol 50 mg/Kg IP injection; 6: no exposure to noise or CO + α-tocopherol 50 mg/Kg IP injection; 7: CO exposure + saline IP injection