aminoglycoside ototoxicity
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2021 ◽  
pp. 108368
Author(s):  
Chao-Hui Yang ◽  
Chung-Feng Hwang ◽  
Jiin-Haur Chuang ◽  
Wei-Shiung Lian ◽  
Feng-Sheng Wang ◽  
...  

2019 ◽  
Vol 93 (5) ◽  
pp. 1385-1399 ◽  
Author(s):  
Hyejeong Hong ◽  
Kelly E. Dooley ◽  
Laura E. Starbird ◽  
Howard W. Francis ◽  
Jason E. Farley

2019 ◽  
Vol 39 (15) ◽  
pp. 2951-2964 ◽  
Author(s):  
Douglas Ruhl ◽  
Ting-Ting Du ◽  
Elizabeth L. Wagner ◽  
Jeong Hwan Choi ◽  
Sihan Li ◽  
...  

Author(s):  
Matthew Ryals ◽  
Robert J. Morell ◽  
Daniel Martin ◽  
Erich T. Boger ◽  
Patricia Wu ◽  
...  

2018 ◽  
Author(s):  
Douglas Ruhl ◽  
Ting-Ting Du ◽  
Jeong-Hwan Choi ◽  
Sihan Li ◽  
Robert Reed ◽  
...  

AbstractOtotoxic side effects of cisplatin and aminoglycosides have been extensively studied, but no therapy is available to date. Sensory hair cells, upon exposure to cisplatin or aminoglycosides, undergo apoptotic and necrotic cell death. Blocking these cell death pathways has therapeutic potential in theory, but incomplete protection and lack of therapeutic targets in the case of necrosis, has hampered the development of clinically applicable drugs. Over the past decade, a novel form of necrosis, termed necroptosis, was established as an alternative cell death pathway. Necroptosis is distinguished from passive necrotic cell death, in that it follows a cellular program, involving the receptor-interacting protein kinases 1 and 3 (RIPK1 and 3). In this study, we used pharmacological and genetic intervention to test the relative contributions of necroptosis and caspase-8-mediated apoptosis towards cisplatin and aminoglycoside ototoxicity. We find that ex vivo, only apoptosis contributes to cisplatin and aminoglycoside ototoxicity, while in vivo, both necroptosis and apoptosis are involved. Inhibition of necroptosis and apoptosis using pharmacological compounds is thus a viable strategy to ameliorate aminoglycoside and cisplatin ototoxicity.Significance statementThe clinical application of cisplatin and aminoglycosides is limited due to ototoxic side effects. Here, using pharmaceutical and genetic intervention, we present evidence that two types of programmed cell death, apoptosis and necroptosis, contribute to aminoglycoside and cisplatin ototoxicity. Key molecular factors mediating necroptosis are well characterized and druggable, presenting new avenues for pharmaceutical intervention.


2017 ◽  
Vol 2017 ◽  
pp. 1-9 ◽  
Author(s):  
Hyun Mi Ju ◽  
Sun Hee Lee ◽  
Jin Sil Choi ◽  
Young Joon Seo

Objectives. As a homing factor of stem cell, stromal derived factor-1 (SDF-1) is important for the regenerative research in ototoxicity. Mice models with aminoglycoside ototoxicity have been widely used to study the regeneration capacity of MSCs in repair of cochlear injury. We developed a mouse model with maximal increase in SDF-1 levels in the inner ear, according to the “one-shot” doses of kanamycin and furosemide. Methods. C57BL/6 mice had kanamycin (420, 550, and 600 mg/kg) dissolved in PBS, followed by an intraperitoneal injection of furosemide (130 mg/kg). The injuries of inner ear were measured with hearing thresholds, histology, and outer hair cell counts at 0, 3, 5, 7, 10, and 14 days before the sacrifice. The levels of SDF-1 in the inner ear were tested by real-time RT-PCR and immunohistochemistry. Results. There were a significant reduction in hearing thresholds and a maximal increase of SDF-1 levels in the furosemide 130 mg/kg + kanamycin 550 mg/kg group, but severe hearing deterioration over time was observed in the furosemide 130 mg/kg + kanamycin 600 mg/kg group and four mice were dead. SDF-1 was detected mostly in the stria vascularis and organ of Corti showing the highest increase in expression. Conclusion. We observed optimal induction of the stem cell homing factor in the newly generated aminoglycoside-induced ototoxicity mouse model using a “one-shot” protocol. This study regarding high SDF-1 levels in our mouse model of ototoxicity would play a major role in the development of therapeutic agents using MSC homing.


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