Scanning laser optical tomography in a neuropathic mouse model

Publikation: Beitrag in FachzeitschriftArtikelForschungPeer-Review

Autoren

  • J. Schulze
  • L. Nolte
  • S. Lyutenski
  • N. Tinne
  • D. Heinemann
  • T. Ripken
  • M. A. Willaredt
  • H. G. Nothwang
  • T. Lenarz
  • A. Warnecke

Externe Organisationen

  • Medizinische Hochschule Hannover (MHH)
  • Laser Zentrum Hannover e.V. (LZH)
  • Carl von Ossietzky Universität Oldenburg
  • Exzellenzcluster Hearing4all
Forschungs-netzwerk anzeigen

Details

Titel in ÜbersetzungScanning laser optical tomography in a neuropathic mouse model: Visualization of structural changes
OriginalspracheDeutsch
Seiten (von - bis)69-76
Seitenumfang8
FachzeitschriftHNO
Jahrgang67
Frühes Online-Datum7 Mai 2019
PublikationsstatusVeröffentlicht - Juni 2019
Extern publiziertJa

Abstract

Background: In the field of hearing research a variety of imaging techniques are available to study molecular and cellular structures of the cochlea. Most of them are based on decalcifying, embedding, and cutting of the cochlea. By means of scanning laser optical tomography (SLOT), the complete cochlea can be visualized without cutting. The Cav1.3−/− mice have already been extensively characterized and show structural changes in the inner ear. Therefore, they were used in this study as a model to investigate whether SLOT can detect structural differences in the murine cochlea. Materials and methods: Whole undissected cochleae from Cav1.3−/− and wild-type mice of various postnatal stages were immunostained and analyzed by SLOT. The results were compared to cochlea preparations that were immunostained and analyzed by fluorescence microscopy. In addition, cochlea preparations were stained with osmium tetraoxide. Results: Visualization by SLOT showed that the staining of nerve fibers at P27 in Cav1.3−/− mice was almost absent compared to wild-type mice and earlier timepoints (P9). The analysis of cochlea preparations confirmed a reduction of the radial nerve fibers. In addition, a significantly reduced number of ribbon synapses per inner hair cell (IHC) at P20 and P27 in the apical part of the cochlea of Cav1.3−/− mice was detected. Conclusion: The visualization of whole non-dissected cochleae by SLOT is a suitable tool for the analysis of gross phenotypic changes, as demonstrated by means of the Cav1.3−/− mouse model. For the analysis of finer structures of the cochlea, however, further methods must be used.

Schlagwörter

    Ca1.3 calcium channel, mouse, Cochlea, Neurofilaments, Spiral ganglion, Synapses

ASJC Scopus Sachgebiete

Zitieren

Scanning laser optical tomography in a neuropathic mouse model. / Schulze, J.; Nolte, L.; Lyutenski, S. et al.
in: HNO, Jahrgang 67, 06.2019, S. 69-76.

Publikation: Beitrag in FachzeitschriftArtikelForschungPeer-Review

Schulze, J, Nolte, L, Lyutenski, S, Tinne, N, Heinemann, D, Ripken, T, Willaredt, MA, Nothwang, HG, Lenarz, T & Warnecke, A 2019, 'Scanning laser optical tomography in a neuropathic mouse model', HNO, Jg. 67, S. 69-76. https://doi.org/10.1007/s00106-019-0654-2
Schulze, J., Nolte, L., Lyutenski, S., Tinne, N., Heinemann, D., Ripken, T., Willaredt, M. A., Nothwang, H. G., Lenarz, T., & Warnecke, A. (2019). Scanning laser optical tomography in a neuropathic mouse model. HNO, 67, 69-76. https://doi.org/10.1007/s00106-019-0654-2
Schulze J, Nolte L, Lyutenski S, Tinne N, Heinemann D, Ripken T et al. Scanning laser optical tomography in a neuropathic mouse model. HNO. 2019 Jun;67:69-76. Epub 2019 Mai 7. doi: 10.1007/s00106-019-0654-2
Schulze, J. ; Nolte, L. ; Lyutenski, S. et al. / Scanning laser optical tomography in a neuropathic mouse model. in: HNO. 2019 ; Jahrgang 67. S. 69-76.
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title = "Scanning laser optical tomography in a neuropathic mouse model",
abstract = "Background: In the field of hearing research a variety of imaging techniques are available to study molecular and cellular structures of the cochlea. Most of them are based on decalcifying, embedding, and cutting of the cochlea. By means of scanning laser optical tomography (SLOT), the complete cochlea can be visualized without cutting. The Cav1.3−/− mice have already been extensively characterized and show structural changes in the inner ear. Therefore, they were used in this study as a model to investigate whether SLOT can detect structural differences in the murine cochlea. Materials and methods: Whole undissected cochleae from Cav1.3−/− and wild-type mice of various postnatal stages were immunostained and analyzed by SLOT. The results were compared to cochlea preparations that were immunostained and analyzed by fluorescence microscopy. In addition, cochlea preparations were stained with osmium tetraoxide. Results: Visualization by SLOT showed that the staining of nerve fibers at P27 in Cav1.3−/− mice was almost absent compared to wild-type mice and earlier timepoints (P9). The analysis of cochlea preparations confirmed a reduction of the radial nerve fibers. In addition, a significantly reduced number of ribbon synapses per inner hair cell (IHC) at P20 and P27 in the apical part of the cochlea of Cav1.3−/− mice was detected. Conclusion: The visualization of whole non-dissected cochleae by SLOT is a suitable tool for the analysis of gross phenotypic changes, as demonstrated by means of the Cav1.3−/− mouse model. For the analysis of finer structures of the cochlea, however, further methods must be used.",
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T1 - Scanning laser optical tomography in a neuropathic mouse model

AU - Schulze, J.

AU - Nolte, L.

AU - Lyutenski, S.

AU - Tinne, N.

AU - Heinemann, D.

AU - Ripken, T.

AU - Willaredt, M. A.

AU - Nothwang, H. G.

AU - Lenarz, T.

AU - Warnecke, A.

PY - 2019/6

Y1 - 2019/6

N2 - Background: In the field of hearing research a variety of imaging techniques are available to study molecular and cellular structures of the cochlea. Most of them are based on decalcifying, embedding, and cutting of the cochlea. By means of scanning laser optical tomography (SLOT), the complete cochlea can be visualized without cutting. The Cav1.3−/− mice have already been extensively characterized and show structural changes in the inner ear. Therefore, they were used in this study as a model to investigate whether SLOT can detect structural differences in the murine cochlea. Materials and methods: Whole undissected cochleae from Cav1.3−/− and wild-type mice of various postnatal stages were immunostained and analyzed by SLOT. The results were compared to cochlea preparations that were immunostained and analyzed by fluorescence microscopy. In addition, cochlea preparations were stained with osmium tetraoxide. Results: Visualization by SLOT showed that the staining of nerve fibers at P27 in Cav1.3−/− mice was almost absent compared to wild-type mice and earlier timepoints (P9). The analysis of cochlea preparations confirmed a reduction of the radial nerve fibers. In addition, a significantly reduced number of ribbon synapses per inner hair cell (IHC) at P20 and P27 in the apical part of the cochlea of Cav1.3−/− mice was detected. Conclusion: The visualization of whole non-dissected cochleae by SLOT is a suitable tool for the analysis of gross phenotypic changes, as demonstrated by means of the Cav1.3−/− mouse model. For the analysis of finer structures of the cochlea, however, further methods must be used.

AB - Background: In the field of hearing research a variety of imaging techniques are available to study molecular and cellular structures of the cochlea. Most of them are based on decalcifying, embedding, and cutting of the cochlea. By means of scanning laser optical tomography (SLOT), the complete cochlea can be visualized without cutting. The Cav1.3−/− mice have already been extensively characterized and show structural changes in the inner ear. Therefore, they were used in this study as a model to investigate whether SLOT can detect structural differences in the murine cochlea. Materials and methods: Whole undissected cochleae from Cav1.3−/− and wild-type mice of various postnatal stages were immunostained and analyzed by SLOT. The results were compared to cochlea preparations that were immunostained and analyzed by fluorescence microscopy. In addition, cochlea preparations were stained with osmium tetraoxide. Results: Visualization by SLOT showed that the staining of nerve fibers at P27 in Cav1.3−/− mice was almost absent compared to wild-type mice and earlier timepoints (P9). The analysis of cochlea preparations confirmed a reduction of the radial nerve fibers. In addition, a significantly reduced number of ribbon synapses per inner hair cell (IHC) at P20 and P27 in the apical part of the cochlea of Cav1.3−/− mice was detected. Conclusion: The visualization of whole non-dissected cochleae by SLOT is a suitable tool for the analysis of gross phenotypic changes, as demonstrated by means of the Cav1.3−/− mouse model. For the analysis of finer structures of the cochlea, however, further methods must be used.

KW - Ca1.3 calcium channel, mouse

KW - Cochlea

KW - Neurofilaments

KW - Spiral ganglion

KW - Synapses

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VL - 67

SP - 69

EP - 76

JO - HNO

JF - HNO

SN - 0017-6192

ER -

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