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首页> 外文期刊>Experimental Neurology >Chondroitinase ABC improves basic and skilled locomotion in spinal cord injured cats.
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Chondroitinase ABC improves basic and skilled locomotion in spinal cord injured cats.

机译:软骨素酶ABC可改善脊髓损伤的猫的基本运动能力。

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Chondroitin sulfate proteoglycans (CSPGs) are upregulated in the central nervous system following injury. Chondroitin sulfate glycosaminoglycan (CS GAG) side chains substituted on this family of molecules contribute to the limited functional recovery following injury by restricting axonal growth and synaptic plasticity. In the current study, the effects of degrading CS GAGs with Chondroitinase ABC (Ch'ase ABC) in the injured spinal cords of adult cats were assessed. Three groups were evaluated for 5 months following T10 hemisections: lesion-only, lesion+control, and lesion+Ch'ase ABC. Intraspinal control and Ch'ase ABC treatments to the lesion site began immediately after injury and continued every other day, for a total of 15 treatments, using an injectable port system. Delivery and in vivo cleavage were verified anatomically in a subset of cats across the treatment period. Recovery of skilled locomotion (ladder, peg, and beam) was significantly accelerated, on average, by >3 weeks in Ch'ase ABC-treated cats compared to controls. Ch'ase ABC-treated cats also showed greater recovery of specific skilled locomotor features including intralimb movement patterns and significantly greater paw placement onto pegs. Although recovery of basic locomotion (bipedal treadmill and overground) was not accelerated, intralimb movement patterns were more normal in the Ch'ase ABC-treated cats. Qualitative assessment of serotonergic immunoreactivity also suggested that Ch'ase ABC treatment enhanced plasticity. Finally, analyses using fluorophore-assisted carbohydrate electrophoresis (FACE) indicate CS GAG content is similar in cat and human. These findings show, for the first time, that intraspinal cleavage of CS GAGs can enhance recovery of function following spinal cord injury in large animals with sophisticated motor behaviors and axonal growth requirements similar to those encountered in humans.
机译:损伤后中枢神经系统中硫酸软骨素蛋白聚糖(CSPG)上调。在该分子家族上取代的硫酸软骨素糖胺聚糖(CS GAG)侧链通过限制轴突生长和突触可塑性,促进了损伤后有限的功能恢复。在当前的研究中,评估了用软骨素酶ABC(Ch'ase ABC)降解CS GAG对成年猫受伤脊髓的影响。 T10半切后评估3组,共5个月:仅病变,病变+对照和病变+ Ch'ase ABC。损伤后立即开始对病变部位进行椎内对照和Ch'ase ABC治疗,并使用注射端口系统每隔一天进行一次,共15次。在整个治疗期间内,在猫的子集中,解剖学验证了递送和体内裂解。与对照相比,在经过Ch'ase ABC处理的猫中,熟练运动(梯子,栓钉和梁)的恢复平均显着加快了3周以上。 Ch'ase ABC处理的猫还表现出特定熟练运动特征的更大恢复,包括肢内运动模式和明显更多的爪子固定在钉子上。尽管基本运动(两足踏车和地上运动)的恢复没有加快,但在Ch'ase ABC处理的猫中,肢内运动模式更为正常。对血清素能免疫反应性的定性评估还表明,Ch'ase ABC处理可增强可塑性。最后,使用荧光团辅助碳水化合物电泳(FACE)进行的分析表明,猫和人的CS GAG含量相似。这些发现首次表明,在具有复杂运动行为和轴突生长要求的大型动物中,CS GAG的脊髓内裂解可增强脊髓损伤后的功能恢复,与人类相似。

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