Hormone Therapy: Challenges for Treating Hearing Impairments

被引:0
作者
Joaquín Guerra
Jesús Devesa
机构
[1] Otolaryngology,
[2] Foltra Medical Center,undefined
[3] Foltra Medical Center,undefined
[4] Scientific Direction,undefined
[5] Foltra Medical Center,undefined
关键词
Hearing loss; Growth hormone; Hair cells; Auditory protection; Inner ear regeneration; Melatonin;
D O I
10.1007/s42399-019-00089-y
中图分类号
学科分类号
摘要
The purpose of this review is to summarize the advances and discoveries in the potential treatment with hormone analogs and some challenges still pending, beyond the classic treatment with corticosteroids. We conduct a review of the functions of hormones on hearing, in human and animal models, the presence of their most relevant receptors, and the desirable and undesirable effects for their therapeutic uses. Different hormones play a regulatory role in the development and maintenance of hearing. Hormone receptors in the ear have been identified over the years, which can be a support to use them as new therapeutic targets Moreover, their mediators, that include cells, neurotrophic factors, or other hormones, could be also useful for treating various hearing impairments The use of synthetic analogs could exert a therapeutic effect on hearing. Hormone therapy, in fact, can contribute positively to the treatment and prevention of various auditory pathologies, through the regeneration or protection. Considering that an optimal result has to be a garantee, it is a must to know their unwanted effects and contraindications. The use of hormones may protect, regenerate, and modulate multiple pathological conditions of the ear, but it would be necessary to standardize drug dosages, find alternative routes, and conduct prospective studies in humans.
引用
收藏
页码:603 / 615
页数:12
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共 491 条
[1]  
Thomas L(2002)Melatonin receptors in human fetal brain: 2-[125I] iodomelatonin binding and MT1 gene expression J Pineal Res 33 218-224
[2]  
Purvis C(2011)The somatostatinergic system in the mammalian cochlea BMC Neurosci 12 89-92
[3]  
Drew J(2001)Estrogen receptors in the normal adult and developing human inner ear and in Turner’s syndrome Hear Res 157 87-1257
[4]  
Abramovich D(2013)No direct nuclear effect of progesterone in the inner ear: other possible pathways Acta Otolaryngol 133 1250-498
[5]  
Williams L(2001)Growth hormone in neural tissues of the chick embryo J Endocrinol 169 487-476
[6]  
Radojevic V(2008)The influence of thyroid hormone deficiency on the development of cochlear nonlinearities J Assoc Res Otolaryngol 9 464-1221
[7]  
Hanusek C(2013)Expression of insulin-like growth factor binding proteins during mouse cochlear development Dev Dyn 242 1210-87
[8]  
Setz C(2013)Effects of diabetes on hearing and cochlear structures J Otol 8 82-673
[9]  
Brand Y(2011)A modifier gene alleviates hypothyroidism-induced hearing impairment in Pou1f1dw dwarf mice Genetics. 189 665-18
[10]  
Kapfhammer J(2012)The cochlea as an independent neuroendocrine organ: expression and possible roles of a local hypothalamic–pituitary–adrenal axis-equivalent signaling system Hear Res 288 3-1278