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虾青素对 2 型糖尿病诱导的 APPxhQC 转基因和 NTG 小鼠的影响。

Effect of astaxanthin in type-2 diabetes -induced APPxhQC transgenic and NTG mice.

机构信息

Diagnostic and Research Institute of Pathology Medical University of Graz, Graz, Austria.

Division of Immunology and Pathophysiology, Otto Loewi Research Center, Medical University of Graz, Austria.

出版信息

Mol Metab. 2024 Jul;85:101959. doi: 10.1016/j.molmet.2024.101959. Epub 2024 May 17.

Abstract

OBJECTIVES

Aggregation and misfolding of amyloid beta (Aβ) and tau proteins, suggested to arise from post-translational modification processes, are thought to be the main cause of Alzheimer's disease (AD). Additionally, a plethora of evidence exists that links metabolic dysfunctions such as obesity, type 2 diabetes (T2D), and dyslipidemia to the pathogenesis of AD. We thus investigated the combinatory effect of T2D and human glutaminyl cyclase activity (pyroglutamylation), on the pathology of AD and whether astaxanthin (ASX) treatment ameliorates accompanying pathophysiological manifestations.

METHODS

Male transgenic AD mice, APPxhQC, expressing human APP751 with the Swedish and the London mutation and human glutaminyl cyclase (hQC) enzyme and their non-transgenic (NTG) littermates were used. Both APPxhQC and NTG mice were allocated to 3 groups, control, T2D-control, and T2D-ASX. Mice were fed control or high fat diet ± ASX for 13 weeks starting at an age of 11-12 months. High fat diet fed mice were further treated with streptozocin for T2D induction. Effects of genotype, T2D induction, and ASX treatment were evaluated by analysing glycemic readouts, lipid concentration, Aβ deposition, hippocampus-dependent cognitive function and nutrient sensing using immunosorbent assay, ELISA-based assays, western blotting, immunofluorescence staining, and behavioral testing via Morris water maze (MWM), respectively.

RESULTS

APPxhQC mice presented a higher glucose sensitivity compared to NTG mice. T2D-induced brain dysfunction was more severe in NTG compared to the APPxhQC mice. T2D induction impaired memory functions while increasing hepatic LC3B, ABCA1, and p65 levels in NTG mice. T2D induction resulted in a progressive shift of Aβ from the soluble to insoluble form in APPxhQC mice. ASX treatment reversed T2D-induced memory dysfunction in NTG mice and in parallel increased hepatic pAKT while decreasing p65 and increasing cerebral p-S6rp and p65 levels. ASX treatment reduced soluble Aβ38 and Aβ40 and insoluble Aβ40 levels in T2D-induced APPxhQC mice.

CONCLUSIONS

We demonstrate that T2D induction in APPxhQC mice poses additional risk for AD pathology as seen by increased Aβ deposition. Although ASX treatment reduced Aβ expression in T2D-induced APPxhQC mice and rescued T2D-induced memory impairment in NTG mice, ASX treatment alone may not be effective in cases of T2D comorbidity and AD.

摘要

目的

淀粉样蛋白β(Aβ)和 tau 蛋白的聚集和错误折叠,被认为是由翻译后修饰过程引起的,被认为是阿尔茨海默病(AD)的主要原因。此外,大量证据表明,肥胖、2 型糖尿病(T2D)和血脂异常等代谢功能障碍与 AD 的发病机制有关。因此,我们研究了 T2D 和人谷氨酰胺酰基环化酶活性(焦谷氨酸化)的组合作用对 AD 病理学的影响,以及虾青素(ASX)治疗是否改善伴随的病理生理表现。

方法

使用表达人 APP751 与瑞典和伦敦突变以及人谷氨酰胺酰基环化酶(hQC)酶的转基因 AD 小鼠 APPxhQC 和其非转基因(NTG)同窝仔鼠。将 APPxhQC 和 NTG 小鼠分别分配到 3 组:对照组、T2D-对照组和 T2D-ASX 组。从 11-12 个月大开始,13 周内,用对照或高脂肪饮食喂养小鼠,并用 ASX 喂养。用链脲佐菌素进一步治疗高脂肪饮食喂养的小鼠以诱导 T2D。通过分析血糖读数、脂质浓度、Aβ沉积、海马依赖认知功能和使用免疫吸附测定、ELISA 测定、western blot、免疫荧光染色和通过 Morris 水迷宫(MWM)进行行为测试,分别评估基因型、T2D 诱导和 ASX 治疗的效果。

结果

与 NTG 小鼠相比,APPxhQC 小鼠的葡萄糖敏感性更高。与 APPxhQC 小鼠相比,T2D 诱导的大脑功能障碍在 NTG 小鼠中更为严重。T2D 诱导导致 NTG 小鼠的记忆功能受损,同时增加肝 LC3B、ABCA1 和 p65 水平。T2D 诱导导致 APPxhQC 小鼠中的 Aβ从可溶性向不溶性形式逐渐转移。ASX 治疗逆转了 NTG 小鼠的 T2D 诱导的记忆功能障碍,并平行增加了肝 pAKT,同时降低了 p65,并增加了脑 p-S6rp 和 p65 水平。ASX 治疗降低了 T2D 诱导的 APPxhQC 小鼠中的可溶性 Aβ38 和 Aβ40 和不溶性 Aβ40 水平。

结论

我们证明,T2D 在 APPxhQC 小鼠中的诱导增加了 Aβ沉积,这对 AD 病理学构成了额外的风险。尽管 ASX 治疗降低了 T2D 诱导的 APPxhQC 小鼠中的 Aβ表达,并挽救了 NTG 小鼠中的 T2D 诱导的记忆损伤,但 ASX 治疗本身在 T2D 合并症和 AD 的情况下可能无效。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a25d/11153249/bd3c4823887c/gr1.jpg

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