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首页> 外文期刊>American Journal of Physiology >Development of age-dependent glomerular lesions in galectin-3/AGE-receptor-3 knockout mice.
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Development of age-dependent glomerular lesions in galectin-3/AGE-receptor-3 knockout mice.

机译:Galectin-3 / AGE-receptor-3基因敲除小鼠中年龄依赖性肾小球病变的发展。

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摘要

Aging is characterized by renal functional and structural abnormalities resembling those observed in diabetes. These changes have been related to the progressive accumulation of advanced glycation end-products (AGEs) and cumulative oxidative stress occurring in both conditions. We previously reported that galectin-3 ablation is associated with increased susceptibility to diabetes- and AGE-induced glomerulopathy, thus indicating a protective role of galectin-3 as an AGE receptor. To investigate the role of the AGE/AGE receptor pathway in the pathogenesis of age-related renal disease, we evaluated the development of glomerular lesions in aging galectin-3 knockout (KO) vs. wild-type (WT) mice and their relation to the increased AGE levels and oxidative stress characterizing the aging process. KO mice showed significantly more pronounced age-dependent increases in proteinuria, albuminuria, glomerular sclerosis, and glomerular and mesangial areas, starting at 18 mo, as well as renal extracellular matrix mRNA and protein expression, starting at 12 mo vs. age-matched WT mice. Circulating and renal AGEs, plasma isoprostane 8-epi-PGF2alpha levels, glomerular content of the glycoxidation and lipoxidation products N(epsilon)-carboxymethyllysine and 4-hydroxy-2-nonenal, and renal nuclear factor-kappaB activity also increased more markedly with age in KO than WT mice. AGE levels correlated significantly with renal functional and structural parameters. These data indicate that aging galectin-3 KO mice develop more pronounced changes in renal function and structure than coeval WT mice, in parallel with a more marked degree of AGE accumulation, oxidative stress, and associated low-grade inflammation, thus supporting the concept that the AGE/AGE receptor pathway is implicated in age-related renal disease.
机译:衰老的特征是类似于在糖尿病中观察到的肾功能和结构异常。这些变化与晚期糖基化终产物(AGEs)的逐步积累和在两种情况下均发生的累积氧化应激有关。我们以前曾报道过,galectin-3的消融与糖尿病和AGE引起的肾小球病易感性增加有关,因此表明galectin-3作为AGE受体具有保护作用。为了研究AGE / AGE受体途径在与年龄有关的肾脏疾病发病机理中的作用,我们评估了衰老的galectin-3基因敲除小鼠与野生型小鼠肾小球病变的发展及其之间的关系。 AGE水平升高和氧化应激是衰老过程的特征。 KO小鼠显示蛋白尿,白蛋白尿,肾小球硬化,肾小球和肾小球膜区的年龄依赖性显着增加(从18 mo开始),以及肾细胞外基质mRNA和蛋白表达(从12 mo开始)。老鼠。循环和肾脏AGEs,血浆异丙肾上腺素8-epi-PGF2α水平,糖氧化和脂氧化产物N(ε-羧甲基赖氨酸和4-羟基-2-壬烯醛)的肾小球含量以及肾脏核因子-κB活性也随着年龄的增长而显着增加在KO中比WT小鼠。 AGE水平与肾功能和结构参数显着相关。这些数据表明,与同龄野生型WT小鼠相比,衰老的galectin-3 KO小鼠的肾脏功能和结构发生了更明显的变化,同时AGE蓄积,氧化应激和相关的轻度炎症程度更为明显,因此支持以下观点: AGE / AGE受体途径与年龄相关的肾脏疾病有关。

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