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Long non-coding RNA MIAT regulates blood tumor barrier permeability by functioning as a competing endogenous RNA

机译:长期非编码RNA MIAT通过作为竞争内源性RNA调节血肿屏障渗透率

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Blood–tumor barrier (BTB) presents a major obstacle to brain drug delivery. Therefore, it is urgent to enhance BTB permeability for the treatment of glioma. In this study, we demonstrated that MIAT, ZAK, and phosphorylated NFκB-p65 (p-NFκB-p65) were upregulated, while miR-140-3p was downregulated in glioma-exposed endothelial cells (GECs) of BTB compared with those in endothelial cells cocultured with astrocytes (ECs) of blood–brain barrier (BBB). MIAT inhibited miR-140-3p expression, increased the expression of ZAK, enhanced the ratio of p-NFκB-p65:NFκB-p65, and promoted the endothelial leakage of BTB. Our current study revealed that miR-140-3p was complementary to the ZAK 3′untranslated regions (3′-UTR), and luciferase activity of ZAK was inhibited by miR-140-3p in 293T cells. MiR-140-3p silencing resulted in an increase in BTB permeability by targeting ZAK, while overexpression of miR-140-3p had the opposite results in GECs of BTB. Overexpression of ZAK induced an increase in BTB permeability, and this effect was related to ZAK’s ability to mediate phosphorylation of NFκB-p65. Conversely, ZAK silencing get opposite results in GECs of BTB. As a molecular sponge of miR-140-3p, MIAT attenuated its negative regulation of the target gene ZAK by adsorbing miR-140-3p. P-NFκB-p65 as a transcription factor negatively regulated the expression of TJ-associated proteins by means of chip assay and luciferase assay. Single or combined application of MIAT and miR-140-3p effectively promoted antitumor drug doxorubicin (Dox) across BTB to induce apoptosis of glioma cells. In summary, MIAT functioned as a miR-140-3p sponge to regulate the expression of its target gene ZAK, which contribution to phosphorylation of NFκB-p65 was associated with an increase in BTB permeability by down-regulating the expression of TJ associated proteins, thereby promoting Dox delivery across BTB. These results might provide a novel strategy and target for chemotherapy of glioma.
机译:血肿瘤屏障(BTB)呈现出脑药递送的主要障碍。因此,迫切需要增强BTB渗透性治疗胶质瘤。在这项研究中,我们证明了MIAI,ZAK和磷酸化的NFκB-P65(P-NFκB-P65)被上调,而MIR-140-3P与内皮内皮的胶质瘤暴露的内皮细胞(GEC)中下调细胞与血脑屏障(BBB)的星形胶质细胞(ECS)共同化。 Miat抑制miR-140-3p表达,增加了Zak的表达,增强了P-NFκB-P65:NFκB-P65的比例,并促进了BTB的内皮泄漏。我们目前的研究表明,MIR-140-3P与ZAK 3'淘汰的地区(3'-UTR)互补,ZAK的荧光素酶活性在293T细胞中抑制miR-140-3p。 MiR-140-3P沉默导致通过靶向ZAK增加BTB渗透性,而MiR-140-3P的过度表达在BTB的GEC中具有相反的结果。 ZAK的过度表达诱导BTB渗透性的增加,这种效果与ZAK介导NFκB-P65的磷酸化的能力有关。相反,Zak Sulencing在BTB的GEC中得到了相反的结果。作为MiR-140-3P的分子海绵,MIAT通过吸附miR-140-3p来减毒其对靶基因扎克的负调节。作为转录因子的P-NFκB-P65通过芯片测定和荧光素酶测定负调节TJ相关蛋白的表达。 MIAI AIAI的单一或综合应用有效地促进了BTB的抗肿瘤药物Doxorubicin(DOX),以诱导胶质瘤细胞的凋亡。总之,MIAI AR作为MIR-140-3P海绵调节其靶基因ZAK的表达,这对NFκB-P65的磷酸化的贡献与通过降低TJ相关蛋白的表达的BTB渗透性的增加有关,从而促进BTB的DOX递送。这些结果可能提供一种新的胶质瘤化疗的新策略和靶标。

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