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A Versatile, Behavioral Method to Investigate Thyroid Hormone Effects on Cerebellar Function
Published on: October 6, 2023
Thyroid hormone deficiency affects postnatal spiking activity and expression of Ca2+ and K+ channels in rodent inner
Niels Brandt1, Stephanie Kuhn, Stefan Münkner
1Institute of Physiology II and Department of Otolaryngology, Tübingen Hearing Research Centre, University of Tübingen, D-72076 Tübingen, Germany.
Insights
Thyroid hormone (TH) is crucial for hearing development, regulating inner hair cell (IHC) electrical activity and calcium currents before hearing begins. TH deficiency prolongs IHC spiking by affecting calcium and potassium channels.
Area of Science:
- Neuroscience
- Developmental Biology
- Otolaryngology
Background:
- Thyroid hormone (TH) is vital for auditory system development.
- TH deficiency during critical periods causes hearing deficits.
- Inner hair cell (IHC) function is essential for auditory transduction.
Purpose of the Study:
- To investigate the role of thyroid hormone in inner hair cell (IHC) development and function.
- To determine the impact of TH deficiency on IHC electrical activity and synaptic transmission.
- To elucidate the mechanisms underlying TH-dependent regulation of IHCs.
Main Methods:
- Patch-clamp recordings to analyze IHC electrical activity (action potentials, ion currents).
- Capacitance measurements to assess exocytosis.
- Immunocytochemistry to detect protein expression (e.g., otoferlin, BK channels).
Main Results:
- TH deficiency in rats and mice prolonged IHC action potential firing due to increased Ca2+ currents and absent BK currents.
- Otoferlin, crucial for exocytosis, was absent in hypothyroid rat IHCs but present in athyroid mouse IHCs.
- Both hypothyroid and athyroid IHCs exhibited immature exocytosis efficiency despite otoferlin absence in one group.
Conclusions:
- Thyroid hormone directly controls IHC electrical activity before hearing onset via Ca2+ and BK channels.
- TH deficiency leads to prolonged IHC spiking, impacting auditory pathway development.
- The study questions the indispensable role of otoferlin for IHC exocytosis.
Abstract:
Thyroid hormone (TH) is essential for the development of hearing. Lack of TH in a critical developmental period from embryonic day 17 to postnatal day 12 (P12) in rats and mice leads to morphological and functional deficits in the organ of Corti and the auditory pathway. We investigated the effects of TH on inner hair cells (IHCs) using patch-clamp recordings, capacitance measurements, and immunocytochemistry in hypothyroid rats and athyroid Pax8-/- mice. Spontaneous and evoked Ca2+ action potentials (APs) were present in control IHCs from P3-P11 rats and vanished in parallel with the expression of a rapidly activating Ca2+- and voltage-activated K+ (BK) conductance. IHCs of hypothyroid rats and athyroid Pax8-/- mice displayed APs until the end of the third postnatal week because of threefold elevated Ca2+ currents and missing expression of BK currents. After the fourth postnatal week, some IHCs showed BK currents whereas adjacent IHCs did not, demonstrated by electrophysiology and immunocytochemistry. To test whether the prolonged spiking activity during TH deficiency may be transmitted at IHC synapses, capacitance measurements were performed in parallel to analysis of otoferlin expression, a protein thought to play an essential role in exocytosis of IHCs. Strikingly, otoferlin was absent from IHCs of hypothyroid rats but not of Pax8-/- mice, although both cell types showed exocytosis with an efficiency typical for immature IHCs. These results demonstrate for the first time a TH-dependent control of IHC spiking activity before the onset of hearing attributable to effects of TH on Ca2+ and BK channels. Moreover, they question an indispensable role of otoferlin for exocytosis in IHCs.
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