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The potential for salmon fibrin and thrombin to mitigate pain subsequent to cervical nerve root injury.

机译:鲑鱼纤维蛋白和凝血酶减轻颈神经根损伤后疼痛的潜力。

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摘要

Nerve root compression is a common cause of radiculopathy and induces persistent pain. Mammalian fibrin is used clinically as a coagulant but presents a variety of risks. Fish fibrin is a potential biomaterial for neural injury treatment because it promotes neurite outgrowth, is non-toxic, and clots readily at lower temperatures. This study administered salmon fibrin and thrombin following nerve root compression and measured behavioral sensitivity and glial activation in a rat pain model. Fibrin and thrombin each significantly reduced mechanical allodynia compared to injury alone (p < 0.02). Painful compression with fibrin exhibited allodynia that was not different from sham for any day using stimulation by a 2 g filament; allodynia was only significantly different (p < 0.043) from sham using the 4 g filament on days 1 and 3. By day 5, responses for fibrin treatment decreased to sham levels. Allodynia following compression with thrombin treatment were unchanged from sham at any time point. Macrophage infiltration at the nerve root and spinal microglial activation were only mildly modified by salmon treatments. Spinal astrocytic expression decreased significantly with fibrin (p < 0.0001) but was unchanged from injury responses for thrombin treatment. Results suggest that salmon fibrin and thrombin may be suitable biomaterials to mitigate pain.
机译:神经根受压是神经根病的常见原因,并引起持续性疼痛。哺乳动物血纤蛋白在临床上用作凝结剂,但存在多种风险。鱼纤维蛋白是神经损伤治疗的潜在生物材料,因为它促进神经突向外生长,无毒且在较低温度下容易凝结。这项研究在神经痛后给予鲑鱼纤维蛋白和凝血酶,并在大鼠疼痛模型中测量其行为敏感性和神经胶质激活。与单独的损伤相比,血纤蛋白和凝血酶均显着降低了机械性异常性疼痛(p <0.02)。使用2 g细丝刺激,用纤维蛋白进行的痛苦压迫表现出与假手术无异的异常性疼痛。在第1天和第3天,痛觉异常与使用4 g细丝的假手术相比仅存在显着差异(p <0.043)。到第5天,血纤蛋白治疗的反应降至假手术水平。凝血酶治疗压迫后的异常性疼痛在任何时间点均未改变。鲑鱼治疗仅轻微改变了神经根的巨噬细胞浸润和脊髓小胶质细胞活化。纤维蛋白可显着降低脊髓星形细胞的表达(p <0.0001),但对凝血酶治疗的损伤反应没有改变。结果表明,鲑鱼纤维蛋白和凝血酶可能是减轻疼痛的合适生物材料。

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