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Involvement of nitric oxide in the wound bed microcirculatory change during negative pressure wound therapy

机译:一氧化氮参与负压伤口治疗过程中伤口床微循环的改变

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This study investigated the role of nitric oxide (NO) in the mechanism of blood flow increase in the wound bed during negative pressure wound therapy (NPWT). We developed an improved experimental model that allowed visualisation of the wound bed microcirculation under NPWT. Wounds were created on the mouse ear, taking care to preserve the subdermal vascular plexus, because the wound bed microcirculation was visualised using an intravital microscope system. We investigated whether application of a NO synthase inhibitor (N-G-nitro-l-arginine methyl ester: L-NAME) might diminish the effect of the NPWT in increasing the wound blood flow. The experimental animals were divided into a negative pressure group (negative pressure of -125 mmHg applied to the wound for 5 minutes; n = 8), and a negative pressure plus L-NAME group (administration of L-NAME prior to application of the negative pressure; n = 8). In the negative pressure group, significant increase of blood flow was observed at 1 minute after the negative pressure application, which was sustained until 5 minutes. On the contrary, in the negative pressure plus L-NAME group, no significant changes were observed throughout the period of observation. These findings suggest that NO synthesis is involved in the wound bed microcirculatory change induced by NPWT.
机译:这项研究调查了一氧化氮(NO)在负压伤口治疗(NPWT)期间伤口床血流量增加机制中的作用。我们开发了一种改进的实验模型,可以在NPWT下观察创面的微循环情况。在伤口上创建了伤口,注意保留皮下血管丛,因为使用活体显微镜系统可以看到伤口床的微循环。我们调查了是否应用一氧化氮合酶抑制剂(N-G-硝基-1-精氨酸甲酯:L-NAME)可能会减少NPWT在增加伤口血流量中的作用。将实验动物分为负压组(对伤口施加负压-125 mmHg 5分钟; n = 8)和负压加L-NAME组(在应用负压组之前施用L-NAME)负压; n = 8)。在负压组中,在施加负压后1分钟观察到血流量显着增加,并持续到5分钟。相反,在负压加L-NAME组中,在整个观察期间未观察到明显变化。这些发现表明,NO合成与NPWT诱导的创面微循环改变有关。

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