Inner Ear Cell Replacement

Inner ear cell replacement is a regenerative approach that restores damaged or lost sensory and supporting cells in the cochlea or vestibular organs, which are essential for hearing and balance. It relies on progenitor or stem cells being directed to proliferate, differentiate into appropriate inner ear cell types, and integrate with surrounding tissue and neural connections. In developmental biology, researchers study the molecular signals and developmental pathways that establish cell fate, maturation, and tissue organization. Successful replacement could provide models for regeneration, support therapies for sensorineural hearing loss and balance disorders, and clarify why mature mammalian inner ears have limited natural repair.

Inner Ear Cell Replacement - Related Videos

Education

JoVE Science Education - Clinical Skills

Ear Exam

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2023

Source: Richard Glickman-Simon, MD, Assistant Professor, Department of Public Health and Community Medicine, Tufts University School of Medicine, MA This video describes the examination of the ear, beginning with a review of its surface and interior anatomy (Figure 1). The cartilaginous auricle consists of the helix, antihelix, earlobe, and tragus. The mastoid process is positioned just behind the earlobe. The slightly curving auditory canal ends at the tympanic membrane, which transmits sound...

Research

JoVE Journal - Biology

Imaging Effector Memory T cells in the Ear After Induction of Adoptive DTH

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Cited by 2 •

2008

Here we demonstrate a method for inducing and recording the progress of a delayed type-hypersensitivity (DTH) reaction in the rat ear. This is followed by a demonstration of the preparation of rat ear tissue for two-photon imaging of the effector / memory T cell response.

Research

JoVE Journal - Neuroscience
Free Sample

Patch Clamp Recordings in Inner Ear Hair Cells Isolated from Zebrafish

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Cited by 9 •

2012

The purpose of this video is to demonstrate procedures for obtaining healthy, intact hair cells from the inner ear organs of adult zebrafish and then using them for patch clamp studies aimed at characterizing the biophysical properties of their voltage-gated channels.

Isolating LacZ-expressing Cells from Mouse Inner Ear Tissues using Flow Cytometry

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Cited by 7 •

2011

Flow cytometry is a powerful tool allowing for the isolation and study of specific cell populations. This protocol describes steps for isolating LacZ-expressing cells from cochlear tissues from neonatal transgenic mice. Dissociated cochlear cells were labeled using fluorescent-conjugated substrates of β-galactosidase prior to separation via flow cytometry.

Perforated Patch-Clamp Recordings of Inner Ear Sensory Neuron Cell Bodies

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2025

This video demonstrates the patch-clamp technique for measuring ionic currents in inner ear sensory neuron cell bodies. It details the preparation and use of a polished patch-clamp pipette filled with an internal solution containing amphotericin B, which perforates the membrane to allow ion movement while preserving intracellular conditions. Voltage pulses are applied to trigger and record ion channel activity, providing insights into their properties and behavior.

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