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Hyaluronan oligosaccharides promote functional recovery after spinal cord injury in rats.

机译:透明质酸寡糖促进大鼠脊髓损伤后的功能恢复。

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摘要

Hyaluronan is a component of the extracellular matrix of the central nervous system, and forms perineuronal nets around neurons. It has been recently reported that the hyaluronan-degrading enzyme hyaluronidase promotes lateral mobility of AMPA-type glutamate receptors and enhances synaptic plasticity. However, the biological significance of hyaluronan-degrading products (oligosaccharides) has not been studied in depth. Here we investigated the effects of hyaluronan oligosaccharides on motor function recovery after spinal cord injury in rats. The disaccharide HA2 and especially the tetrasaccharide HA4, significantly improved motor function, unlike the case with oligosaccharides composed of 6-12 saccharides. Consistent with this finding, HA4 treatment enhanced axonal regeneration/sprouting, as assessed by corticospinal tract tracer fiber counts. HA4 treatment also significantly suppressed accumulation of Iba-1-positive cells in a lesion two weeks after injury. In vitro experiments demonstrated that NMDA-induced neuronal cell death was partly blocked by HA4, but not by other oligosaccharides, whereas proteoglycan-mediated inhibition of neurite outgrowth was not affected by treatment with any oligosaccharide examined. Taken together, the present results revealed that due in part to its neuroprotective activity, HA4 promotes motor function recovery after spinal cord injury.
机译:透明质酸是中枢神经系统细胞外基质的组成部分,并在神经元周围形成神经周围的网。最近有报道说,透明质酸降解酶透明质酸酶促进AMPA型谷氨酸受体的侧向迁移并增强突触可塑性。但是,尚未深入研究透明质酸降解产物(寡糖)的生物学意义。在这里,我们调查了透明质酸寡糖对大鼠脊髓损伤后运动功能恢复的影响。与由6-12个糖组成的寡糖的情况不同,二糖HA2尤其是四糖HA4显着改善了运动功能。与该发现一致的是,HA4处理可增强轴突再生/发芽,如皮质脊髓束示踪剂纤维计数所评估。在损伤后两周,HA4处理还显着抑制了病变中Iba-1阳性细胞的蓄积。体外实验表明,NMDA诱导的神经元细胞死亡部分被HA4阻断,但未被其他寡糖阻断,而蛋白聚糖介导的神经突增生抑制不受所检查的任何寡糖治疗的影响。综上所述,目前的结果表明,部分由于其神经保护活性,HA4促进脊髓损伤后运动功能的恢复。

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