TY - JOUR
T1 - MicroRNAs in sensorineural diseases of the ear
AU - Ushakov, Kathy
AU - Rudnicki, Anya
AU - Avraham, Karen B.
PY - 2013/12/23
Y1 - 2013/12/23
N2 - Non-coding microRNAs (miRNAs) have a fundamental role in gene regulation and expression in almost every multicellular organism. Only discovered in the last decade, miRNAs are already known to play a leading role in many aspects of disease. In the vertebrate inner ear, miRNAs are essential for controlling development and survival of hair cells. Moreover, dysregulation of miRNAs has been implicated in sensorineural hearing impairment, as well as in other ear diseases such as cholesteatomas, vestibular schwannomas, and otitis media. Due to the inaccessibility of the ear in humans, animal models have provided the optimal tools to study miRNA expression and function, in particular mice and zebrafish. A major focus of current research has been to discover the targets of the miRNAs expressed in the inner ear, in order to determine the regulatory pathways of the auditory and vestibular systems. The potential for miRNAs manipulation in development of therapeutic tools for hearing impairment is as yet unexplored, paving the way for future work in the field.
AB - Non-coding microRNAs (miRNAs) have a fundamental role in gene regulation and expression in almost every multicellular organism. Only discovered in the last decade, miRNAs are already known to play a leading role in many aspects of disease. In the vertebrate inner ear, miRNAs are essential for controlling development and survival of hair cells. Moreover, dysregulation of miRNAs has been implicated in sensorineural hearing impairment, as well as in other ear diseases such as cholesteatomas, vestibular schwannomas, and otitis media. Due to the inaccessibility of the ear in humans, animal models have provided the optimal tools to study miRNA expression and function, in particular mice and zebrafish. A major focus of current research has been to discover the targets of the miRNAs expressed in the inner ear, in order to determine the regulatory pathways of the auditory and vestibular systems. The potential for miRNAs manipulation in development of therapeutic tools for hearing impairment is as yet unexplored, paving the way for future work in the field.
KW - Cochlea
KW - Deafness
KW - Inner ear
KW - MicroRNAs
KW - Vestibule
UR - https://www.scopus.com/pages/publications/84891138082
U2 - 10.3389/fnmol.2013.00052
DO - 10.3389/fnmol.2013.00052
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AN - SCOPUS:84891138082
SN - 1662-5099
VL - 6
JO - Frontiers in Molecular Neuroscience
JF - Frontiers in Molecular Neuroscience
IS - DEC
M1 - 52
ER -