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Bladder function in mice with inducible smooth muscle-specific deletion of the manganese superoxide dismutase gene

机译:诱导性平滑肌特异性超氧化物歧化酶基因缺失的小鼠膀胱功能

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摘要

Manganese superoxide dismutase (MnSOD) is considered a critical component of the antioxidant systems that protect against oxidative damage. We are interested in the role of oxidative stress in bladder detrusor smooth muscle (SM) in different disease states. In this study, we generated an inducible, SM-specific Sod2−/− mouse model to investigate the effects of MnSOD depletion on the function of the bladder. We crossbred floxed Sod2 (Sod2lox/lox) mice with mice containing heterozygous knock-in of a gene encoding a tamoxifen-activated Cre recombinase in the SM22α promoter locus [SM-CreERT2(ki)Cre/+]. We obtained Sod2lox/lox,SM-CreERT2(ki)Cre/+ mice and injected 8-wk-old males with 4-hydroxytamoxifen to induce Cre-mediated excision of the floxed Sod2 allele. Twelve weeks later, SM-specific deletion of Sod2 and depletion of MnSOD were confirmed by polymerase chain reaction, immunoblotting, and immunohistochemistry. SM-specific Sod2−/− mice exhibited normal growth with no gross abnormalities. A significant increase in nitrotyrosine concentration was found in bladder SM tissue of SM-specific Sod2−/− mice compared with both wild-type mice and Sod2+/+, SM-CreERT2(ki)Cre/+ mice treated with 4-hydroxytamoxifen. Assessment of 24-h micturition in SM-specific Sod2−/− mice revealed significantly higher voiding frequency compared with both wild-type and SM-specific Cre controls. Conscious cystometry revealed significantly shorter intercontraction intervals and lower functional bladder capacity in SM-specific Sod2−/− mice compared with wild-type mice. This novel model can be used for exploring the mechanistic role of oxidative stress in organs rich in SM in different pathological conditions.
机译:锰超氧化物歧化酶(MnSOD)被认为是抗氧化系统的重要组成部分,可防止氧化损伤。我们对氧化应激在不同疾病状态下膀胱逼尿肌平滑肌(SM)中的作用感兴趣。在这项研究中,我们生成了可诱导的SM特异性Sod2 -/-小鼠模型,以研究MnSOD耗竭对膀胱功能的影响。我们将杂乱的Sod2(Sod2 lox / lox )小鼠与含有SM22α启动子位点[SM-CreER T2 中编码他莫昔芬激活的Cre重组酶的基因的杂合敲入小鼠杂交。 sup>(ki) Cre / + ]。我们获得了Sod2 lox / lox ,SM-CreER T2 (ki) Cre / + 小鼠,并向8-wk岁的雄性小鼠注射了4-羟他莫昔芬诱导Cre介导的Sod2等位基因切除。十二周后,通过聚合酶链反应,免疫印迹和免疫组化证实了Sod2的SM特异性缺失和MnSOD的消耗。 SM特异的Sod2 -/-小鼠表现出正常的生长,没有明显的异常。与野生型小鼠和Sod2 + / + ,SM-相比,SM特异性Sod2 -/-小鼠的膀胱SM组织中的硝基酪氨酸浓度显着增加。用4-羟基他莫昔芬治疗的CreER T2 (ki) Cre / + 小鼠。对SM特异的Sod2 -/-小鼠进行24小时排尿的评估显示,与野生型和SM特异的Cre对照相比,排尿频率明显更高。有意识的膀胱测压法显示,与野生型小鼠相比,SM特异性Sod2 -// 小鼠的收缩间隔明显缩短,功能性膀胱容量降低。该新模型可用于探索在不同病理条件下富含SM的器官中氧化应激的机制作用。

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