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α-Klotho protects against oxidative damage in pulmonary epithelia

机译:α-Klotho可预防肺上皮细胞的氧化损伤

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摘要

α-Klotho exerts pleiotropic biological actions. Heterozygous α-Klotho haplo-insufficient mice (kl/+) appear normal at baseline except for age-related changes in the lung, suggesting heightened pulmonary susceptibility to α-Klotho deficiency. We used in vivo and in vitro models to test whether α-Klotho protects lung epithelia against injury. Normally, α-Klotho is not expressed in the lung, but circulating α-Klotho levels are reduced ∼40% in kl/+ mice and undetectable in homozygous α-Klotho-deficient mice (kl/kl). kl/+ mice show distal air space enlargement at a given airway pressure, with elevated lung oxidative damage marker (8-hydroxydeoxyguanosine; 8-OHdG); these abnormalities are exacerbated in kl/kl mice. Studies were performed in A549 lung epithelial cells and/or primary culture of alveolar epithelial cells. Hyperoxia (95% O2) and high inorganic phosphate concentrations (Pi, 3–5 mM) additively caused cell injury (lactate dehydrogenase release), oxidative DNA damage (8-OHdG), lipid oxidation (8-isoprostane), protein oxidation (carbonyl), and apoptosis (caspase-8 activity and TUNEL stain). Transfection of transmembrane or soluble α-Klotho, or addition of soluble α-Klotho-containing conditioned media, increased cellular antioxidant capacity (Cu- and Fe-based assays) via increased nuclear factor erythroid-derived 2-related factors 1 and 2 (Nrf1/2) transcriptional activity and ameliorated hyperoxic and phosphotoxic injury. To validate the findings in vivo, we injected α-Klotho-containing conditioned media into rat peritoneum before and during hyperoxia exposure and found reduced alveolar interstitial edema and oxidative damage. We conclude that circulating α-Klotho protects the lung against oxidative damage and apoptosis partly via increasing endogenous antioxidative capacity in pulmonary epithelia. Cytoprotection by α-Klotho may play an important role in degenerative diseases of the lung.
机译:α-Klotho发挥多效性生物学作用。杂合性α-Klotho单倍体不足小鼠(kl / +)在基线时表现正常,除了与年龄相关的肺部变化外,这提示肺部对α-Klotho缺乏症的敏感性增加。我们使用体内和体外模型来测试α-Klotho是否能保护肺上皮免于损伤。正常情况下,肺中不表达α-Klotho,但是在kl / +小鼠中循环α-Klotho水平降低了约40%,而在纯合α-Klotho缺陷小鼠(kl / kl)中则无法检测到。 kl / +小鼠在给定的气道压力下表现出远端气隙增大,肺氧化损伤标记物(8-羟基脱氧鸟苷; 8-OHdG)升高;这些异常在kl / kl小鼠中加剧。在A549肺上皮细胞和/或肺泡上皮细胞的原代培养中进行了研究。高氧血症(95%O2)和高浓度无机磷酸盐(Pi,3-5 mM)加重引起细胞损伤(乳酸脱氢酶释放),氧化性DNA损伤(8-OHdG),脂质氧化(8-异前列腺素),蛋白质氧化(羰基) )和凋亡(caspase-8活性和TUNEL染色)。跨膜或可溶性α-Klotho的转染,或添加可溶性α-Klotho的条件培养基,可通过增加核因子类红细胞衍生的2相关因子1和2(Nrf1)来提高细胞的抗氧化能力(基于铜和铁的测定) / 2)转录活性和减轻的高氧和磷中毒损伤。为了验证体内的发现,我们在高氧暴露之前和期间向大鼠腹膜中注射了含α-Klotho的条件培养基,发现肺泡间质水肿和氧化损伤减少。我们得出结论,循环中的α-Klotho可以通过增加肺上皮细胞的内源性抗氧化能力来保护肺免受氧化损伤和细胞凋亡。 α-Klotho对细胞的保护作用可能在肺退行性疾病中起重要作用。

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