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藻酸盐寡糖通过激活 Nrf2 信号通路改善 D-半乳糖诱导的小鼠肾脏衰老。

Alginate Oligosaccharide Ameliorates D-Galactose-Induced Kidney Aging in Mice through Activation of the Nrf2 Signaling Pathway.

机构信息

Department of Geriatric Medicine, The Affiliated Hospital of Qingdao University, Qingdao, Shandong 266003, China.

Department of Epidemiology and Health Statistics, The School of Public Health of Qingdao University, Qingdao, Shandong 266021, China.

出版信息

Biomed Res Int. 2021 Jan 9;2021:6623328. doi: 10.1155/2021/6623328. eCollection 2021.

Abstract

Aging is an independent risk factor for the development of age-related progressive kidney injury. As a part of the aging process, kidney aging has been indicated to be associated with oxidative stress-induced damage. Ameliorating oxidative damage is therefore considered a promising strategy for delaying kidney aging. Alginate oligosaccharide (AOS) has been reported to have a wide range of biological and pharmacological activities. However, no studies have focused on the role of AOS in delaying the kidney aging process. In this study, we aimed to evaluate the potential effects of AOS on kidney aging and its possible mechanisms. Subcutaneous injection of D-galactose (D-gal) (200 mg·kg·d) in C57BL/6J mice for 8 weeks was used to establish the aging model. AOS (200 mg·kg·d) was administered via oral gavage for the last four weeks. As a result, AOS inhibited the D-gal-induced upregulation of aging markers and significantly improved the kidney index and kidney function of D-gal-induced mice. In addition, AOS ameliorated the degree of tissue damage and fibrosis in the aging kidney. To further explore the potential mechanisms by which AOS attenuates the kidney aging process, the associated oxidative stress-induced damage was analyzed in depth. The data showed that AOS upregulated the expression of Klotho and decreased malondialdehyde levels by increasing the expression of antioxidant enzymes. Furthermore, our results suggested that AOS activated the nuclear factor erythrogen-2 associated factor 2 (Nrf2) pathway by promoting Nrf2 nuclear translocation in aging mice and upregulated the downstream expression of heme oxygenase-1 (HO-1) and NADPH quinone oxidoreductase 1 (NQO1). In conclusion, the present study demonstrated that AOS is a promising agent for attenuating kidney aging, and the underlying molecular mechanisms are related to the activation of the Nrf2 signaling pathway.

摘要

衰老是与年龄相关的进行性肾损伤发展的独立危险因素。作为衰老过程的一部分,肾脏衰老已被证明与氧化应激诱导的损伤有关。因此,减轻氧化损伤被认为是延缓肾脏衰老的一种有前途的策略。海藻酸钠寡糖(AOS)已被报道具有广泛的生物学和药理学活性。然而,尚无研究关注 AOS 在延缓肾脏衰老过程中的作用。在本研究中,我们旨在评估 AOS 对肾脏衰老的潜在影响及其可能的机制。通过皮下注射 D-半乳糖(D-gal)(200mg·kg·d)8 周建立衰老模型。最后四周通过口服灌胃给予 AOS(200mg·kg·d)。结果表明,AOS 抑制了 D-gal 诱导的衰老标志物的上调,并显著改善了 D-gal 诱导的小鼠的肾脏指数和肾功能。此外,AOS 改善了衰老肾脏的组织损伤和纤维化程度。为了进一步探讨 AOS 减轻肾脏衰老过程的潜在机制,我们深入分析了相关的氧化应激诱导损伤。结果表明,AOS 通过增加抗氧化酶的表达来上调 Klotho 的表达并降低丙二醛水平。此外,我们的结果表明,AOS 通过促进衰老小鼠 Nrf2 的核转位激活核因子红细胞生成素-2 相关因子 2(Nrf2)通路,并上调血红素加氧酶-1(HO-1)和 NADPH 醌氧化还原酶 1(NQO1)的下游表达。综上所述,本研究表明 AOS 是一种有前途的减轻肾脏衰老的药物,其潜在的分子机制与激活 Nrf2 信号通路有关。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8275/7811433/b146f386bebe/BMRI2021-6623328.001.jpg

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