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Xyloside Primed Glycosaminoglycans Alter Hair Bundle Micromechanical Coupling and Synaptic Transmission: Pharmacokinetics

机译:木糖苷丙糖胺聚糖改变毛发束微机械偶联和突触传递:药代动力学

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Glycosaminoglycans (GAGs) are ubiquitous in the inner ear, and disorders altering their structure or production often result in debilitating hearing and balance deficits. The specific mechanisms responsible for loss of hair-cell function are not well understood. We recently reported that introduction of a novel BODIPY conjugated xyloside (BX) into the endolymph primes fluorescent GAGs in vivo [6, 15]. Confocal and two-photon fluorescence imaging revealed rapid turnover and assembly of a glycocalyx enveloping the kinocilia and extending into the cupula, a structure that presumably serves as a mechanical link between the hair bundle and the cupula. Extracellular fluorescence was also observed around the basolateral surface of hair cells and surrounding afferent nerve projections into the crista. Single unit afferent recordings during mechanical hair bundle stimulation revealed temporary interruption of synaptic transmission following BX administration followed by recovery, demonstrating an essential role for GAGs in function of the hair cell synapse. In the present work we present a pharmacokinetic model to quantify the time course of BX primed GAG production and turnover in the ear.
机译:糖酰胺聚糖(GAG)在内耳中无处不在,并且改变其结构或生产的障碍通常导致衰弱的听力和平衡赤字。负责丧失毛细胞功能的具体机制尚不清楚。我们最近报道,将新型Bodipy缀合的木糖苷(Bx)引入体内荧光胶片中的荧光胶片[6,15]。共聚焦和双光子荧光成像揭示了包围胭脂蛋白并延伸到圆柱体的糖钙萼的快速变化和组装,该结构可能用作发束和圆环之间的机械连接。在毛细胞的基底外侧表面和周围传入神经突起周围也观察到细胞外荧光进入Crista。机械束刺激期间的单个单位传入记录刺激揭示了BX管理后突触传播后的暂时中断,然后恢复,展示了胶囊突触功能的GAG的基本作用。在本工作中,我们提出了一种药代动力学模型,以量化BX灌注堵塞的时间过程和耳朵的周转。

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