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本文引用的文献

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The Midkine Family of Growth/ Differentiation Factors: (midkine/pleiotrophin/retinoic acid/neurotrophic factors/ embryonal carcinoma cells).生长/分化因子的中期因子家族:(中期因子/多效营养因子/视黄酸/神经营养因子/胚胎癌细胞)
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The growth factor midkine regulates the renin-angiotensin system in mice.生长因子中期因子调节小鼠的肾素-血管紧张素系统。
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Change in adipocytokines and ghrelin with menopause.绝经后脂肪细胞因子和胃饥饿素的变化。
Maturitas. 2008 Feb 20;59(2):149-57. doi: 10.1016/j.maturitas.2007.12.006. Epub 2008 Feb 14.
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Serum lipids, blood pressure and body weight around the age of the menopause.绝经前后的血脂、血压和体重。
Eur J Cardiovasc Prev Rehabil. 2008 Feb;15(1):83-8. doi: 10.1097/HJR.0b013e3282f0e357.
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17beta-Estradiol attenuates diabetic kidney disease by regulating extracellular matrix and transforming growth factor-beta protein expression and signaling.17β-雌二醇通过调节细胞外基质以及转化生长因子-β蛋白表达和信号传导来减轻糖尿病肾病。
Am J Physiol Renal Physiol. 2007 Nov;293(5):F1678-90. doi: 10.1152/ajprenal.00079.2007. Epub 2007 Aug 8.
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Midkine is involved in tubulointerstitial inflammation associated with diabetic nephropathy.中期因子参与了与糖尿病肾病相关的肾小管间质炎症。
Lab Invest. 2007 Sep;87(9):903-13. doi: 10.1038/labinvest.3700599. Epub 2007 Jul 2.
8
Hormonal status affects the progression of STZ-induced diabetes and diabetic renal damage in the VCD mouse model of menopause.激素状态会影响绝经VCD小鼠模型中链脲佐菌素诱导的糖尿病进展及糖尿病肾损伤。
Am J Physiol Renal Physiol. 2007 Jul;293(1):F193-9. doi: 10.1152/ajprenal.00022.2007. Epub 2007 Mar 27.
9
Effect of duration of dosing on onset of ovarian failure in a chemical-induced mouse model of perimenopause.给药持续时间对化学诱导的围绝经期小鼠模型卵巢功能衰竭发生时间的影响。
Menopause. 2006 May-Jun;13(3):482-8. doi: 10.1097/01.gme.0000191883.59799.2e.
10
Mig6 is a negative regulator of EGF receptor-mediated skin morphogenesis and tumor formation.Mig6是表皮生长因子受体介导的皮肤形态发生和肿瘤形成的负调控因子。
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中期因子(Midkine)是一种肝素结合蛋白,在绝经后糖尿病小鼠的肾脏中增加。

Midkine, a heparin-binding protein, is increased in the diabetic mouse kidney postmenopause.

机构信息

Department of Physiology, College of Medicine, University of Arizona, 1656 E. Mabel St., Tucson, AZ 85724, USA.

出版信息

Am J Physiol Renal Physiol. 2011 Jan;300(1):F139-46. doi: 10.1152/ajprenal.00249.2010. Epub 2010 Nov 3.

DOI:10.1152/ajprenal.00249.2010
PMID:21048029
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3023219/
Abstract

Estrogen is thought to protect against the development of chronic kidney disease, and menopause increases the development and severity of diabetic kidney disease. In this study, we used streptozotocin (STZ) to induce diabetes in the 4-vinylcyclohexene diepoxide (VCD)-treated mouse model of menopause. DNA microarrays were used to identify gene expression changes in the diabetic kidney postmenopause. An ANOVA model, CARMA, was used to isolate the menopause effect between two groups of diabetic mice, diabetic menopausal (STZ/VCD) and diabetic cycling (STZ). In this diabetic study, 8,864 genes of the possible 15,600 genes on the array were included in the ANOVA; 99 genes were identified as demonstrating a >1.5-fold up- or downregulation between the STZ/VCD and STZ groups. We randomly selected genes for confirmation by real-time PCR; midkine (Mdk), immediate early response gene 3 (IEX-1), mitogen-inducible gene 6 (Mig6), and ubiquitin-specific protease 2 (USP2) were significantly increased in the kidneys of STZ/VCD compared with STZ mice. Western blot analysis confirmed that Mdk and IEX-1 protein abundance was significantly increased in the kidney cortex of STZ/VCD compared with STZ mice. In a separate study, DNA microarrays and CARMA analysis were used to identify the effect of menopause on the nondiabetic kidney; VCD-treated mice were compared with cycling mice. Of the possible 15,600 genes on the array, 9,142 genes were included in the ANOVA; 20 genes were identified as demonstrating a >1.5-fold up- or downregulation; histidine decarboxylase and vanin 1 were among the genes identified as differentially expressed in the postmenopausal nondiabetic kidney. These data expand our understanding of how hormone status correlates with the development of diabetic kidney disease and identify several target genes for further studies.

摘要

雌激素被认为可以预防慢性肾脏病的发生,而绝经会增加糖尿病肾病的发生和严重程度。在这项研究中,我们使用链脲佐菌素(STZ)诱导 4-乙烯环己烯二氧化物(VCD)处理的绝经后小鼠模型发生糖尿病。使用 DNA 微阵列鉴定绝经后糖尿病肾脏中的基因表达变化。使用方差分析模型(ANOVA)、CARMA 模型来分离两组糖尿病小鼠(STZ/VCD 和 STZ 循环)之间的绝经效应。在这项糖尿病研究中,在可能的 15600 个基因的数组中,8864 个基因被包含在 ANOVA 中;99 个基因被鉴定为在 STZ/VCD 和 STZ 组之间表现出 >1.5 倍的上调或下调。我们随机选择基因进行实时 PCR 验证;中期因子(Mdk)、早期即刻反应基因 3(IEX-1)、有丝分裂原诱导基因 6(Mig6)和泛素特异性蛋白酶 2(USP2)在 STZ/VCD 肾脏中的表达显著高于 STZ 组。Western blot 分析证实,Mdk 和 IEX-1 蛋白在 STZ/VCD 肾脏中的表达明显高于 STZ 组。在另一项研究中,使用 DNA 微阵列和 CARMA 分析来确定绝经对非糖尿病肾脏的影响;将 VCD 处理的小鼠与循环小鼠进行比较。在可能的 15600 个基因的数组中,9142 个基因被包含在 ANOVA 中;20 个基因被鉴定为表现出 >1.5 倍的上调或下调;组氨酸脱羧酶和 vanin 1 是在绝经后非糖尿病肾脏中鉴定出的差异表达基因之一。这些数据扩展了我们对激素状态与糖尿病肾病发展之间相关性的理解,并确定了几个作为进一步研究目标的靶基因。