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Mechanism to preserve phrenic nerve function during photosensitization reaction: drug uptake and photosensitization reaction effect on electric propagation

机译:在光敏反应过程中保留神经功能的机制:药物吸收和光敏反应对电传播的影响

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To study a mechanism of phrenic nerve preservation phenomena during a photosensitization reaction, we investigated an uptake of talaporfin sodium and photosensitization reaction effect on an electric propagation. Right phrenic nerve was completely preserved after superior vena cava isolations using the photosensitization reaction in canine animal experiments, in spite of adjacent myocardium was electrically blocked. We predicted that low drug uptake and/or low photosensitization reaction effect on the nerve might be a mechanism of that phenomena. To investigate uptake to various nerve tissue, a healthy extracted crayfish ventral nerve cord and an extracted porcine phrenic nerve were immersed in 20 μg/ml talaporfin sodium solution for 0-240 min. The mean talaporfin sodium fluorescence brightness increased depending on the immersion time. This brightness saturated around the immersion time of 120 min. We found that talaporfin sodium uptake inside the perineurium which directly related to the electric propagation function was lower than that of outside in the porcine phrenic nerve. To investigate photosensitization reaction effect on electric propagation, the crayfish nerve was immersed into the same solution for 15 min and irradiated by a 663 nm laser light with 120 mW/cm~2. Since we found the action potential disappeared when the irradiation time was 25-65 s, we consider that the crayfish nerve does not tolerant to the photosensitization reaction on electric propagation function at atmospheric pressure. From these results, we think that the low uptake of talaporfin sodium inside the perineurium and low oxygen partial pressure of nerve might be the possible mechanism to preserve phrenic nerve in vivo.
机译:为了研究光敏反应过程中preservation神经保存现象的机制,我们研究了他拉泊芬钠的吸收和光敏反应对电传播的影响。尽管犬的相邻心肌被电阻断,但在犬动物实验中使用光敏反应分离出上腔静脉后,右神经得以完全保留。我们预测低的药物吸收和/或对神经的低的光敏反应作用可能是这种现象的机制。为了研究对各种神经组织的摄取,将健康的小龙虾腹侧神经索和猪的神经提取液浸入20μg/ ml他拉泊芬钠溶液中0-240分钟。他拉泊芬钠的平均荧光亮度随浸入时间的延长而增加。该亮度在120分钟的浸入时间左右达到饱和。我们发现,与神经电传播功能直接相关的会阴神经系统中他拉泊芬钠的摄取量低于猪神经中的摄取量。为了研究光敏反应对电传播的影响,将小龙虾神经浸入相同的溶液中15分钟,然后用663 nm的120 mW / cm〜2激光照射。由于我们发现当照射时间为25-65 s时动作电位消失了,因此我们认为小龙虾神经不耐受在大气压力下对电传播功能的光敏反应。从这些结果,我们认为会阴神经系统中他拉泊芬钠的低摄取和神经的低氧分压可能是体内保存神经的可能机制。

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