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首页> 外文期刊>Journal of Neurochemistry: Offical Journal of the International Society for Neurochemistry >rno-miR-665 targets BCL2L1 (Bcl-xl) and increases vulnerability to propofol in developing astrocytes
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rno-miR-665 targets BCL2L1 (Bcl-xl) and increases vulnerability to propofol in developing astrocytes

机译:rno-miR-665靶向BCL2L1(Bcl-xl),并增加发育中的星形胶质细胞对丙泊酚的敏感性

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Propofol exerts a cytotoxic influence over immature neurocytes. Our previous study revealed that clinically relevant doses of propofol accelerated apoptosis of primary cultured astrocytes of developing rodent brains via rno-miR-665 regulation. However, the role of rno-miR-665 during the growth spurt of neonatal rodent brains invivo is still uncertain. Post-natal day 7 (P7) rats received a single injection of propofol 30mg/kg intraperitoneally (i.p.), and neuroapoptosis of hippocampal astrocytes was analyzed by immunofluorescence and scanning electron microscopy. The differential expression of rno-miR-665, BCL2L1 (Bcl-xl), and cleaved caspase 3 (CC3) was surveyed by qRT-PCR and western blotting. In addition, the utility of A-1155463, a highly potent and BCL2L1-selective antagonist, was aimed to assess the contribution of BCL2L1 for neuroglial survival. Following the intraventricular injection of lentivirus rno-miR-665, neuroprotection was detected by 5-point scale measurement. The single dose of propofol 30mg/kg triggered dose-dependent apoptosis of developing hippocampal astrocytes. Meanwhile, propofol triggered both rno-miR-665 and CC3, and depressed BCL2L1, which was predicted as one target gene of rno-miR-665. Combination treatment with A-1155463 and propofol induced lower mRNA and protein levels of BCL2L1 and more CC3 activation than propofol treatment alone invivo. The lentivirus-mediated knockdown of rno-miR-665 elevated BCL2L1 and attenuated CC3 levels, whereas up-regulation of rno-miR-665 suppressed BCL2L1 and induced CC3 expression invivo. More importantly, rno-miR-665 antagomir infusion improved neurological outcomes of pups receiving propofol during the brain growth spurt. Rno-miR-665, providing a potential target for alternative therapeutics for pediatric anesthesia, is susceptible to propofol by negatively targeting antiapoptotic BCL2L1.
机译:异丙酚对未成熟的神经细胞产生细胞毒性影响。我们先前的研究表明,临床上相关剂量的异丙酚可通过rno-miR-665调节来加速啮齿动物大脑发育中的星形胶质细胞的凋亡。然而,rno-miR-665在新生啮齿动物脑活体内生长突中的作用仍不确定。出生后第7天(P7)大鼠腹膜内(i.p.)单次注射异丙酚30mg / kg,并通过免疫荧光和扫描电子显微镜分析海马星形胶质细胞的神经凋亡。通过qRT-PCR和蛋白质印迹法检测了rno-miR-665,BCL2L1(Bcl-xl)和裂解的胱天蛋白酶3(CC3)的差异表达。此外,A-1155463(一种高效的BCL2L1选择性拮抗剂)的用途旨在评估BCL2L1对神经胶质细胞存活的贡献。脑室内注射慢病毒rno-miR-665后,通过5点量表测量来检测神经保护作用。丙泊酚单剂30mg / kg触发发育中的海马星形胶质细胞的剂量依赖性凋亡。同时,异丙酚同时触发了rno-miR-665和CC3,并抑制了BCL2L1,这被认为是rno-miR-665的一个靶基因。与单独使用异丙酚治疗相比,与丙泊酚联合使用A-1155463和丙泊酚治疗可诱导BCL2L1的mRNA和蛋白水平降低,CC3活化更高。慢病毒介导的rno-miR-665的敲低升高了BCL2L1并减弱了CC3水平,而rno-miR-665的上调抑制了BCL2L1并诱导了CC3体内表达。更重要的是,rno-miR-665 antagomir输注改善了在大脑生长突增期间接受丙泊酚的幼崽的神经系统结局。 Rno-miR-665为小儿麻醉的替代疗法提供了潜在的靶标,它通过负性靶向抗凋亡的BCL2L1对丙泊酚敏感。

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