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Book
How selegiline (( - )-deprenyl) slows brain aging
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ISBN: 1608054705 9781608054701 9781608054701 9781608055944 Year: 2012 Publisher: [Place of publication not identified] Bentham Science Publishers

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Abstract

This e-book is a reference on Selegiline ((-)-Deprenyl) effects on the brain. Selegiline, described in thousands of research papers, is registered in over 60 countries. At present, more than one hundred preparations containing selegiline circulate in the global market under different brand names. They are widely used in the treatment of Parkinson's disease, Alzheimer's disease, major depression and as a geroprotective / anti-aging drug. ((-)-Deprenyl) selegiline, the first selective inhibitor of B-type MAO which, in contrast to the known MAO inhibitors, did not potentiate the effect of tyra


Book
Molecular Mechanisms of Sensorineural Hearing Loss and Development of Inner Ear Therapeutics
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Year: 2021 Publisher: Basel, Switzerland MDPI - Multidisciplinary Digital Publishing Institute

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The sense of hearing is vulnerable to environmental challenges, such as exposure to noise. More than 1.5 billion people experience some decline in hearing ability during their lifetime, of whom at least 430 million will be affected by disabling hearing loss. If not identified and addressed in a timely way, hearing loss can severely reduce the quality of life at various stages. Some causes of hearing loss can be prevented, for example from occupational or leisure noise. The World Health Organization estimates that more than 1 billion young people put themselves at risk of permanent hearing loss by listening to loud music over long periods of time. Mitigating such risks through public health action is essential to reduce the impact of hearing loss in the community. The etiology of sensorineural hearing loss is complex and multifactorial, arising from congenital and acquired causes. This book highlights the diverse range of approaches to sensorineural hearing loss, from designing new animal models of age-related hearing loss, to the use of microRNAs as biomarkers of cochlear injury and drug repurposing for the therapy of age-related and noise-induced hearing loss. Further investigation into the underlying molecular mechanisms of sensorineural hearing loss and the integration of the novel drug, cell, and gene therapy strategies into controlled clinical studies will permit significant advances in a field where there are currently many unmet needs.

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