Novel in vivo imaging analysis of an inner ear drug delivery system in mice: comparison of inner ear drug concentrations over time after transtympanic and systemic injections.
OBJECTIVE: Systemic steroid injections are used to treat idiopathic sudden-onset sensorineural hearing loss (ISSHL) and some inner ear disorders. Recent studies show that transtympanic (TT) steroid injections are effective for treating ISSHL. As in vivo monitoring of drug delivery dynamics for inner...
Main Authors: | , , , , , , , |
---|---|
Format: | Article |
Language: | English |
Published: |
Public Library of Science (PLoS)
2012-01-01
|
Series: | PLoS ONE |
Online Access: | http://europepmc.org/articles/PMC3520978?pdf=render |
id |
doaj-93222ff1070b4058b591f9da11aaa277 |
---|---|
record_format |
Article |
spelling |
doaj-93222ff1070b4058b591f9da11aaa2772020-11-25T01:24:44ZengPublic Library of Science (PLoS)PLoS ONE1932-62032012-01-01712e4848010.1371/journal.pone.0048480Novel in vivo imaging analysis of an inner ear drug delivery system in mice: comparison of inner ear drug concentrations over time after transtympanic and systemic injections.Sho KanzakiMasato FujiokaAkimasa YasudaShinsuke ShibataMasaya NakamuraHirotaka James OkanoKaoru OgawaHideyuki OkanoOBJECTIVE: Systemic steroid injections are used to treat idiopathic sudden-onset sensorineural hearing loss (ISSHL) and some inner ear disorders. Recent studies show that transtympanic (TT) steroid injections are effective for treating ISSHL. As in vivo monitoring of drug delivery dynamics for inner ear is lacking, its time course and dispersion of drugs is unknown. Here, we used a new in vivo imaging system to monitor drug delivery in live mice and to compare drug concentrations over time after TT and systemic injections. METHODS: Luciferin delivered into the inner ears of GFAP-Luc transgenic mice reacted with luciferase in GFAP-expressing cells in the cochlear spiral ganglion, resulting in photon bioluminescence. We used the Xenogen IVIS® imaging system to measure how long photons continued to be emitted in the inner ear after TT or systemic injections of luciferin, and then compared the associated drug dynamics. RESULTS: The response to TT and IP injections differed significantly. Photons were detected five minutes after TT injection, peaking at ~20 minutes. By contrast, photons were first detected 30 minutes after i.p. injection. TT and i.p. drug delivery time differed considerably. With TT injections, photons were detected earlier than with IP injections. Photon bioluminescence also disappeared sooner. Delivery time varied with TT injections. CONCLUSIONS: We speculate that the drug might enter the Eustachian tube from the middle ear. We conclude that inner-ear drug concentration can be maintained longer if the two injection routes are combined. As the size of luciferin differs from that of therapeutics like dexamethasone, combining drugs with luciferin may advance our understanding of in vivo drug delivery dynamics in the inner ear.http://europepmc.org/articles/PMC3520978?pdf=render |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Sho Kanzaki Masato Fujioka Akimasa Yasuda Shinsuke Shibata Masaya Nakamura Hirotaka James Okano Kaoru Ogawa Hideyuki Okano |
spellingShingle |
Sho Kanzaki Masato Fujioka Akimasa Yasuda Shinsuke Shibata Masaya Nakamura Hirotaka James Okano Kaoru Ogawa Hideyuki Okano Novel in vivo imaging analysis of an inner ear drug delivery system in mice: comparison of inner ear drug concentrations over time after transtympanic and systemic injections. PLoS ONE |
author_facet |
Sho Kanzaki Masato Fujioka Akimasa Yasuda Shinsuke Shibata Masaya Nakamura Hirotaka James Okano Kaoru Ogawa Hideyuki Okano |
author_sort |
Sho Kanzaki |
title |
Novel in vivo imaging analysis of an inner ear drug delivery system in mice: comparison of inner ear drug concentrations over time after transtympanic and systemic injections. |
title_short |
Novel in vivo imaging analysis of an inner ear drug delivery system in mice: comparison of inner ear drug concentrations over time after transtympanic and systemic injections. |
title_full |
Novel in vivo imaging analysis of an inner ear drug delivery system in mice: comparison of inner ear drug concentrations over time after transtympanic and systemic injections. |
title_fullStr |
Novel in vivo imaging analysis of an inner ear drug delivery system in mice: comparison of inner ear drug concentrations over time after transtympanic and systemic injections. |
title_full_unstemmed |
Novel in vivo imaging analysis of an inner ear drug delivery system in mice: comparison of inner ear drug concentrations over time after transtympanic and systemic injections. |
title_sort |
novel in vivo imaging analysis of an inner ear drug delivery system in mice: comparison of inner ear drug concentrations over time after transtympanic and systemic injections. |
publisher |
Public Library of Science (PLoS) |
series |
PLoS ONE |
issn |
1932-6203 |
publishDate |
2012-01-01 |
description |
OBJECTIVE: Systemic steroid injections are used to treat idiopathic sudden-onset sensorineural hearing loss (ISSHL) and some inner ear disorders. Recent studies show that transtympanic (TT) steroid injections are effective for treating ISSHL. As in vivo monitoring of drug delivery dynamics for inner ear is lacking, its time course and dispersion of drugs is unknown. Here, we used a new in vivo imaging system to monitor drug delivery in live mice and to compare drug concentrations over time after TT and systemic injections. METHODS: Luciferin delivered into the inner ears of GFAP-Luc transgenic mice reacted with luciferase in GFAP-expressing cells in the cochlear spiral ganglion, resulting in photon bioluminescence. We used the Xenogen IVIS® imaging system to measure how long photons continued to be emitted in the inner ear after TT or systemic injections of luciferin, and then compared the associated drug dynamics. RESULTS: The response to TT and IP injections differed significantly. Photons were detected five minutes after TT injection, peaking at ~20 minutes. By contrast, photons were first detected 30 minutes after i.p. injection. TT and i.p. drug delivery time differed considerably. With TT injections, photons were detected earlier than with IP injections. Photon bioluminescence also disappeared sooner. Delivery time varied with TT injections. CONCLUSIONS: We speculate that the drug might enter the Eustachian tube from the middle ear. We conclude that inner-ear drug concentration can be maintained longer if the two injection routes are combined. As the size of luciferin differs from that of therapeutics like dexamethasone, combining drugs with luciferin may advance our understanding of in vivo drug delivery dynamics in the inner ear. |
url |
http://europepmc.org/articles/PMC3520978?pdf=render |
work_keys_str_mv |
AT shokanzaki novelinvivoimaginganalysisofaninnereardrugdeliverysysteminmicecomparisonofinnereardrugconcentrationsovertimeaftertranstympanicandsystemicinjections AT masatofujioka novelinvivoimaginganalysisofaninnereardrugdeliverysysteminmicecomparisonofinnereardrugconcentrationsovertimeaftertranstympanicandsystemicinjections AT akimasayasuda novelinvivoimaginganalysisofaninnereardrugdeliverysysteminmicecomparisonofinnereardrugconcentrationsovertimeaftertranstympanicandsystemicinjections AT shinsukeshibata novelinvivoimaginganalysisofaninnereardrugdeliverysysteminmicecomparisonofinnereardrugconcentrationsovertimeaftertranstympanicandsystemicinjections AT masayanakamura novelinvivoimaginganalysisofaninnereardrugdeliverysysteminmicecomparisonofinnereardrugconcentrationsovertimeaftertranstympanicandsystemicinjections AT hirotakajamesokano novelinvivoimaginganalysisofaninnereardrugdeliverysysteminmicecomparisonofinnereardrugconcentrationsovertimeaftertranstympanicandsystemicinjections AT kaoruogawa novelinvivoimaginganalysisofaninnereardrugdeliverysysteminmicecomparisonofinnereardrugconcentrationsovertimeaftertranstympanicandsystemicinjections AT hideyukiokano novelinvivoimaginganalysisofaninnereardrugdeliverysysteminmicecomparisonofinnereardrugconcentrationsovertimeaftertranstympanicandsystemicinjections |
_version_ |
1725117511865729024 |