Investigating The Effects Of Noise-Induced Hearing Loss On Serotonin Transporters In Rat Brain Using 4-[18F]-ADAM/Small Animal PET

博士 === 國防醫學院 === 醫學科學研究所 === 100 === The serotonin transporter (SERT) is an important marker of the status of serotonergic neurons. The main function of SERT is to regulate the serotonin concentration in the synapse. Recent studies have shown that SERT is expressed in the central auditory pathway an...

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Main Authors: Kang, Hsiaohsien, 康孝先
Other Authors: Ma, Kuohsing
Format: Others
Language:zh-TW
Published: 2012
Online Access:http://ndltd.ncl.edu.tw/handle/2b35bh
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spelling ndltd-TW-100NDMC06590172019-05-15T20:43:08Z http://ndltd.ncl.edu.tw/handle/2b35bh Investigating The Effects Of Noise-Induced Hearing Loss On Serotonin Transporters In Rat Brain Using 4-[18F]-ADAM/Small Animal PET 以小動物正子斷層造影探討因噪音性聽損 Kang, Hsiaohsien 康孝先 博士 國防醫學院 醫學科學研究所 100 The serotonin transporter (SERT) is an important marker of the status of serotonergic neurons. The main function of SERT is to regulate the serotonin concentration in the synapse. Recent studies have shown that SERT is expressed in the central auditory pathway and may play a role in the auditory process. However, little is known about the effects of noise on the cerebral serotonin system. In this study, we explored the status of brain SERT in a rat model of noise-induced hearing loss using 4-[18F]-ADAM (a SERT imaging agent) and small animal positron emission tomography (PET) imaging. Male Sprague Dawley rats were exposed to an 8 kHz noise at 118 dB sound pressure level for 3.5 h. An auditory brainstem response test and 4-[18F]-ADAM/small animal PET were performed at different time points after noise exposure. The specific uptake ratios (SURs) for 4-[18F]-ADAM were calculated from the PET imaging data in seven brain regions. Immunohistochemistry and surface preparation of the cochleae were performed 30 days after noise exposure. Our data clearly show that the hearing and cochlear outer hair cells of the rats were lost after noise exposure. In the PET study, the SURs of SERT were markedly reduced by 35%–56% in various brain regions one day after noise exposure. The decrement remained on days 8 and 15 and was approximately 26%–48% on day 29. The distribution and intensity of SERT immunostaining in the brain paralleled the PET imaging data. These results suggest that noise-induced hearing loss involves a reduction in SERT expression in various regions of the rat brain and that changes in SERT are detectable by 4-[18F]-ADAM/small animal PET in vivo. Ma, Kuohsing 馬國興 2012 學位論文 ; thesis 41 zh-TW
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language zh-TW
format Others
sources NDLTD
description 博士 === 國防醫學院 === 醫學科學研究所 === 100 === The serotonin transporter (SERT) is an important marker of the status of serotonergic neurons. The main function of SERT is to regulate the serotonin concentration in the synapse. Recent studies have shown that SERT is expressed in the central auditory pathway and may play a role in the auditory process. However, little is known about the effects of noise on the cerebral serotonin system. In this study, we explored the status of brain SERT in a rat model of noise-induced hearing loss using 4-[18F]-ADAM (a SERT imaging agent) and small animal positron emission tomography (PET) imaging. Male Sprague Dawley rats were exposed to an 8 kHz noise at 118 dB sound pressure level for 3.5 h. An auditory brainstem response test and 4-[18F]-ADAM/small animal PET were performed at different time points after noise exposure. The specific uptake ratios (SURs) for 4-[18F]-ADAM were calculated from the PET imaging data in seven brain regions. Immunohistochemistry and surface preparation of the cochleae were performed 30 days after noise exposure. Our data clearly show that the hearing and cochlear outer hair cells of the rats were lost after noise exposure. In the PET study, the SURs of SERT were markedly reduced by 35%–56% in various brain regions one day after noise exposure. The decrement remained on days 8 and 15 and was approximately 26%–48% on day 29. The distribution and intensity of SERT immunostaining in the brain paralleled the PET imaging data. These results suggest that noise-induced hearing loss involves a reduction in SERT expression in various regions of the rat brain and that changes in SERT are detectable by 4-[18F]-ADAM/small animal PET in vivo.
author2 Ma, Kuohsing
author_facet Ma, Kuohsing
Kang, Hsiaohsien
康孝先
author Kang, Hsiaohsien
康孝先
spellingShingle Kang, Hsiaohsien
康孝先
Investigating The Effects Of Noise-Induced Hearing Loss On Serotonin Transporters In Rat Brain Using 4-[18F]-ADAM/Small Animal PET
author_sort Kang, Hsiaohsien
title Investigating The Effects Of Noise-Induced Hearing Loss On Serotonin Transporters In Rat Brain Using 4-[18F]-ADAM/Small Animal PET
title_short Investigating The Effects Of Noise-Induced Hearing Loss On Serotonin Transporters In Rat Brain Using 4-[18F]-ADAM/Small Animal PET
title_full Investigating The Effects Of Noise-Induced Hearing Loss On Serotonin Transporters In Rat Brain Using 4-[18F]-ADAM/Small Animal PET
title_fullStr Investigating The Effects Of Noise-Induced Hearing Loss On Serotonin Transporters In Rat Brain Using 4-[18F]-ADAM/Small Animal PET
title_full_unstemmed Investigating The Effects Of Noise-Induced Hearing Loss On Serotonin Transporters In Rat Brain Using 4-[18F]-ADAM/Small Animal PET
title_sort investigating the effects of noise-induced hearing loss on serotonin transporters in rat brain using 4-[18f]-adam/small animal pet
publishDate 2012
url http://ndltd.ncl.edu.tw/handle/2b35bh
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