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烟酰胺腺嘌呤二核苷酸磷酸氧化酶4缺乏会导致伤口修复受损和二酪氨酸交联减少,但不影响肌成纤维细胞的形成。

NADPH oxidase 4 deficiency leads to impaired wound repair and reduced dityrosine-crosslinking, but does not affect myofibroblast formation.

作者信息

Lévigne Dominik, Modarressi Ali, Krause Karl-Heinz, Pittet-Cuénod Brigitte

机构信息

Division of Plastic, Reconstructive & Aesthetic Surgery, Geneva University Hospitals, Geneva, Switzerland.

Division of Plastic, Reconstructive & Aesthetic Surgery, Geneva University Hospitals, Geneva, Switzerland.

出版信息

Free Radic Biol Med. 2016 Jul;96:374-84. doi: 10.1016/j.freeradbiomed.2016.04.194. Epub 2016 Apr 30.

Abstract

NADPH oxidases (NOX) mediate redox signaling by generating superoxide and/or hydrogen peroxide, which are involved in biosynthetic pathways, e.g. thyroid hormone generation, dityrosine crosslinking, as well as bacterial killing. Data investigating the role of NOX enzymes in cutaneous wound repair is limited and specifically their function in skin myofibroblast expression is unknown. The isoform NOX4 was recently shown to be a pre-requisite for the differentiation of cardiac and pulmonary myofibroblasts. In this study we investigate the role of NOX4 in wound repair using a wound model in NOX4 knockout mice (n=16) and wildtype mice (n=16). Wounds were photographed daily until complete wound closure. Mice were sacrificed at day 3, 7, 14; wound tissue was harvested. NOX4-deficient mice healed significantly slower (22 days, SD=1.9) than wild-type mice (17 days, SD=1.4, p<0.005). However, there was no difference in myofibroblast expression. Strong dityrosine formation was observed, but was significantly weaker in NOX4-/- mice (p<0.05). NOX2, HIF1α and CD31 expression was significantly weaker in NOX4-/- mice (p<0.05). In this study we show for the first time that NOX4 plays a role in cutaneous wound repair. Our data suggests that NOX4 mediates HIF1α expression and neoangiogenesis during wound repair. NOX4 deletion led to a decreased expression of NOX2, implying a role of NOX4 in phagocytic cell recruitment. NOX4 was required for effective wound contraction but not myofibroblast expression. We suggest that myofibroblast contraction in NOX4-deficient mice is less effective in contracting the wound because of insufficient dityrosine-crosslinking of the ECM, providing the first indication for a physiological function of dityrosine crosslinking in higher animals.

摘要

NADPH氧化酶(NOX)通过产生超氧化物和/或过氧化氢来介导氧化还原信号传导,这些物质参与生物合成途径,如甲状腺激素生成、二酪氨酸交联以及细菌杀伤。研究NOX酶在皮肤伤口修复中作用的数据有限,特别是它们在皮肤肌成纤维细胞表达中的功能尚不清楚。最近研究表明,NOX4亚型是心脏和肺部肌成纤维细胞分化的先决条件。在本研究中,我们使用NOX4基因敲除小鼠(n = 16)和野生型小鼠(n = 16)的伤口模型来研究NOX4在伤口修复中的作用。每天对伤口进行拍照,直至伤口完全闭合。在第3天、第7天、第14天处死小鼠,收集伤口组织。NOX4缺陷小鼠的愈合速度明显慢于野生型小鼠(22天,标准差=1.9)(野生型为17天,标准差=1.4,p<0.005)。然而,肌成纤维细胞表达没有差异。观察到强烈的二酪氨酸形成,但在NOX4基因敲除小鼠中明显较弱(p<0.05)。NOX4基因敲除小鼠中NOX2、HIF1α和CD31的表达明显较弱(p<0.05)。在本研究中,我们首次表明NOX4在皮肤伤口修复中起作用。我们的数据表明,NOX4在伤口修复过程中介导HIF1α表达和新生血管形成。NOX4缺失导致NOX2表达降低,这意味着NOX4在吞噬细胞募集中起作用。有效伤口收缩需要NOX4,但不需要肌成纤维细胞表达。我们认为,由于细胞外基质的二酪氨酸交联不足,NOX4缺陷小鼠中的肌成纤维细胞收缩在收缩伤口方面效果较差,这为二酪氨酸交联在高等动物中的生理功能提供了首个证据。

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