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组织细胞RNA提取试剂盒(异硫氰酸胍提取法)(文献引用产品)
产品名称:
组织细胞RNA提取试剂盒(异硫氰酸胍提取法)(文献引用产品)
产品类别:
科研试剂
产品编号:
L0262
产品编号:
L0262
  • CAS号 :L0262
  • 存储条件:
    2-8℃
    [价格]
    规格 价格 库存
    50T ¥ 680 200

    产品详情

     组织或者细胞核 糖核酸RNA的提取

    文献参考:文章标题:Propofol attenuates prostate cancer progression by upregulating TRHDE-AS1 expression, and METTL14 could mediate its m6A modification

    期刊:CLINICAL AND EXPERIMENTAL PHARMACOLOGY AND PHYSIOLOGY

    作者列表:Zhuo Chen, Quanfu Li, Zhong Li, Guangjun Hu

    发表时间:2024-9-25

    影响因子:2.4

    DOI:10.1111/1440-1681.13924

    主要研究成果:Abstract

    Propofol has become a microtubule-stabilizing drug for prostate cancer (PC) therapy, but propofol resistance impairs the therapeutic effect. This study aimed to explore the regulatory mechanism of propofol in the pathogenesis of PC through mechanisms involving N6-methyladenosine (m6A) modification. The changes in PC cell malignancy were evaluated by means of transwell, cell counting kit 8 (CCK-8), western blotting and tumour xenograft model assays. Long noncoding RNA TRHDE-AS1 and m6A methyltransferase METTL14 expression levels were determined via reverse transcription quantitative polymerase chain reaction (RT-qPCR). The m6A modification of TRHDE-AS1 which was mediated by METTL14 was confirmed by conducting methylated RNA immunoprecipitation (MeRIP) assay. We observed that propofol (200 μM) inhibited PC cell malignancy in vivo and in vitro, elucidating that it impaired cell proliferation, migration and tumour growth but induced apoptosis. TRHDE-AS1 expression was observed to be lower in PC cells and tissues, and propofol induced TRHDE-AS1 upregulation in PC cells. Propofol was capable of reversing the tumour-promoting effect of TRHDE-AS1 knockdown in PC cells. Additionally, METTL14 was upstream of TRHDE-AS1 to induce m6A modification of TRHDE-AS1 in PC cells. Collectively, our results show that propofol prevents PC progression by upregulating TRHDE-AS1 expression and METTL14 is involved in the m6A modification of TRHDE-AS1. These findings suggest that TRHDE-AS1 may be a potential therapeutic target for the improvement of propofol's therapeutic effect.

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