GTTR [Texas Red gentamicin conjugate]
Gentamicin is widely used for treating tuberculosis and Gram-negative infections and is particularly useful in neonatal intensive care units. Fluorophore-tagged drugs, such as gentamicin-Texas Red (GTTR) conjugates, have been used to identify drug trafficking routes across the BLB and into hair cells, and specifically in the cochlea - the sensory organ responsible for hearing. Identifying the mechanisms involved in the intracochlear trafficking of ototoxic drugs to hair cells is of fundamental as well as clinical importance. Texas Red-gentamicin conjugate (GTTR) provides researchers a valuable tool to study the cellular uptake, kinetics and distribution of gentamicin through fluorescence techniques, such as fluorescence microscopy, fluorescence correlation spectroscopy, single molecule spectroscopy. The TR fluorophore can be conveniently excited from 500-600 nm, with an emission maximum centered around 610 nm. Acute nephrotoxicity and permanent ototoxicity are serious side-effects that increase patient morbidity, or induce permanent auditory and vestibular deficits. Several approaches have been used to study the intracellular mechanisms induced by ototoxic drugs. However, ototoxic drugs must first cross the blood-labyrinth barrier (BLB) before entering sensory hair cells to exert their cytotoxic effect that leads to hearing loss and deafness. The BLB is similar to the blood-brain barrier (BBB), and is composed of tight junction-coupled endothelial and epithelial barrier layers that transport nutrients and ions from one side of the barrier to the other.
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Citations
View all 5 citations: Citation Explorer
Bioelectronic drug-free control of opportunistic pathogens through selective excitability
Authors: Kim, Saehyun and Eig, Ethan and Yue, Jiping and Yang, Albert and Comerci, Colin J and Laune, Megan and Yang, Chuanwang and Kamath, Ananth and Shi, Jiuyun and Li, Pengju and others,
Journal: Device (2024)
Authors: Kim, Saehyun and Eig, Ethan and Yue, Jiping and Yang, Albert and Comerci, Colin J and Laune, Megan and Yang, Chuanwang and Kamath, Ananth and Shi, Jiuyun and Li, Pengju and others,
Journal: Device (2024)
Genetics of cystogenesis in base-edited human organoids reveal therapeutic strategies for polycystic kidney disease
Authors: Vishy, Courtney E and Thomas, Chardai and Vincent, Thomas and Crawford, Daniel K and Goddeeris, Matthew M and Freedman, Benjamin S
Journal: Cell Stem Cell (2024): 537--553
Authors: Vishy, Courtney E and Thomas, Chardai and Vincent, Thomas and Crawford, Daniel K and Goddeeris, Matthew M and Freedman, Benjamin S
Journal: Cell Stem Cell (2024): 537--553
Fluid Shear Stress-Induced Changes in Megalin Trafficking Enhance Endocytic Capacity in Proximal Tubule Cells
Authors: Lackner, Emily M and Cowan, Isabella A and Long, Kimberly R and Weisz, Ora A and Shipman, Katherine E
Journal: bioRxiv (2024): 2024--02
Authors: Lackner, Emily M and Cowan, Isabella A and Long, Kimberly R and Weisz, Ora A and Shipman, Katherine E
Journal: bioRxiv (2024): 2024--02
Gentamicin administration leads to synaptic dysfunction in inner hair cells
Authors: Li, Gen and Gao, Yunge and Wu, Hao and Zhao, Ting
Journal: Toxicology Letters (2023)
Authors: Li, Gen and Gao, Yunge and Wu, Hao and Zhao, Ting
Journal: Toxicology Letters (2023)
Susceptibility of immature spiral ganglion neurons to aminoglycoside-induced ototoxicity is mediated by the TRPV1 channel in mice
Authors: Bai, Yijiang and Liu, Jing and Wu, Xuewen and Pang, Bo and Zhang, Shuai and Jiang, Mengzhu and Chen, Anhai and Huang, Huping and Chen, Yongjia and Zeng, Yuan and others,
Journal: Hearing Research (2023): 108910
Authors: Bai, Yijiang and Liu, Jing and Wu, Xuewen and Pang, Bo and Zhang, Shuai and Jiang, Mengzhu and Chen, Anhai and Huang, Huping and Chen, Yongjia and Zeng, Yuan and others,
Journal: Hearing Research (2023): 108910
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