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Geniposide attenuates Aβ25–35-induced neurotoxicity via the TLR4/NF-κB pathway in HT22 cells

机译:ip子苷通过TLR4 /NF-κB途径减轻HT22细胞中Aβ25-35引起的神经毒性

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Alzheimer's disease (AD), a neurodegenerative disorder, is marked by the accumulation of amyloid-β (Aβ) and neuroinflammation which promote the development of AD. Geniposide, the main ingredient isolated from Chinese herbal medicine Gardenia jasminoides Ellis, has a variety of pharmacological functions such as anti-apoptosis and anti-inflammatory activity. Hence, we estimated the inflammatory cytotoxicity caused by Aβ _(25–35) and the neuroprotective effects of geniposide in HT22 cells. In this research, following incubation with Aβ _(25–35) (40 μM, 24 h) in HT22 cells, the methylthiazolyl tetrazolium (MTT) and lactate dehydrogenase (LDH) release assays showed that the cell survival rate was significantly decreased. In contrast, the reactive oxygen species (ROS) assay indicated that Aβ _(25–35) enhanced ROS accumulation and apoptosis showed in both hoechst 33342 staining and annexin V-FITC/PI double staining. And then, immunofluorescence test revealed that Aβ _(25–35) promoted p65 to transfer into the nucleus indicating p65 was activated by Aβ _(25–35) . Moreover, western blot analysis proved that Aβ _(25–35) increased the expression of nitric oxide species (iNOS), tumor necrosis factor-α (TNF-α), cyclooxygenase-2 (COX-2) and interleukin-1β (IL-1β). Simultaneously, Aβ _(25–35) also promoted the expression of toll-like receptor 4 (TLR4), p-p65 and p-IκB-α accompanied with the increase in the level of beta-secretase 1 (BACE1) and caspase-3 which further supported Aβ _(25–35) induced apoptosis and inflammation. Fortunately, this up-regulation was reversed by geniposide. In conclusion, our data suggest that geniposide can alleviate Aβ _(25–35) -induced inflammatory response to protect neurons, which is possibly involved with the inhibition of the TLR4/NF-κB pathway in HT22 cells. Geniposide may be the latent treatment for AD induced by neuroinflammation and apoptosis.
机译:阿尔茨海默氏病(AD)是一种神经退行性疾病,其特征在于淀粉样β(Aβ)的积累和神经炎症会促进AD的发展。 ip子苷是从中草药Garden子中分离到的主要成分,具有多种药理功能,如抗凋亡和抗炎活性。因此,我们估计了由Aβ_(25–35)引起的炎性细胞毒性和子苷对HT22细胞的神经保护作用。在这项研究中,在HT22细胞中与Aβ_(25–35)(40μM,24 h)一起孵育后,甲基噻唑基四唑(MTT)和乳酸脱氢酶(LDH)释放试验表明细胞存活率显着降低。相比之下,活性氧(ROS)测定表明,hoechst 33342染色和膜联蛋白V-FITC / PI双重染色均显示Aβ_(25–35)增强了ROS的积累和凋亡。然后,免疫荧光测试显示Aβ_(25-35)促进p65转移到细胞核中,表明p65被Aβ_(25-35)激活。此外,蛋白质印迹分析证明Aβ_(25–35)增加了一氧化氮(iNOS),肿瘤坏死因子-α(TNF-α),环氧合酶-2(COX-2)和白介素-1β(IL -1β)。同时,Aβ_(25–35)也促进了Toll样受体4(TLR4),p-p65和p-IκB-α的表达,并伴随着β-分泌酶1(BACE1)和caspase- 3进一步支持Aβ_(25-35)诱导细胞凋亡和炎症。幸运的是,子苷逆转了这种上调。总之,我们的数据表明子苷可以减轻Aβ_(25-35)诱导的炎症反应,从而保护神经元,这可能与抑制HT22细胞中的TLR4 /NF-κB通路有关。子苷可能是神经炎症和凋亡诱导的AD的潜在治疗方法。

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