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Chain length of saturated fatty acids regulates mitochondrial trafficking and function in sensory neurons

机译:饱和脂肪酸的链长调节感觉神经元的线粒体运输和功能

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摘要

Dyslipidemia associated with T2D leads to diabetic neuropathy, a complication characterized by sensory neuronal dysfunction and peripheral nerve damage. Sensory dorsal root ganglion (DRG) neurons are dependent on axonal mitochondrial energy production facilitated by mitochondrial transport mechanisms that distribute mitochondria throughout the axon. Because long-chain saturated FAs (SFAs) damage DRG neurons and medium-chain SFAs are reported to improve neuronal function, we evaluated the impact of SFA chain length on mitochondrial trafficking, mitochondrial function, and apoptosis. DRG neurons were exposed to SFAs with C12:0−C18:0 chain lengths and evaluated for changes in mitochondrial trafficking, mitochondrial polarization, and apoptosis. DRG neurons treated with C16:0 and C18:0 SFAs showed a significant decrease in the percentage of motile mitochondria and velocity of mitochondrial trafficking, whereas C12:0 and C14:0 SFAs had no impact on motility. Treatment with C16:0 and C18:0 SFAs exhibited mitochondrial depolarization correlating with impaired mitochondrial motility; the C12:0- and C14:0-treated neurons retained mitochondrial polarization. The reduction in mitochondrial trafficking and function in C16:0- and C18:0-treated DRG neurons correlated with apoptosis that was blocked in C12:0 and C14:0 SFA treatments. These results suggest that SFA chain length plays an important role in regulating axonal mitochondrial trafficking and function in DRG neurons.
机译:与T2D相关的血脂异常会导致糖尿病性神经病变,这是一种以感觉神经元功能障碍和周围神经损伤为特征的并发症。感觉背根神经节(DRG)神经元依赖于通过线粒体在整个轴突中分布的线粒体转运机制促进的线粒体线粒体能量产生。由于长链饱和FA(SFA)损害了DRG神经元和中链SFA可以改善神经元功能,因此我们评估了SFA链长对线粒体运输,线粒体功能和凋亡的影响。将DRG神经元暴露于C12:0–C18:0链长的SFA,并评估线粒体运输,线粒体极化和凋亡的变化。用C16:0和C18:0 SFA治疗的DRG神经元显示能动线粒体百分比和线粒体运输速度显着降低,而C12:0和C14:0 SFA对运动性没有影响。 C16:0和C18:0 SFA的治疗显示线粒体去极化与线粒体运动力受损有关。 C12:0和C14:0处理的神经元保留了线粒体极化。经C16:0和C18:0处理的DRG神经元线粒体运输和功能的减少与在C12:0和C14:0 SFA治疗中被阻止的凋亡相关。这些结果表明,SFA链长度在调节DRG神经元的轴突线粒体运输和功能中起着重要作用。

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