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The construction and proliferative effects of a lentiviral vector capable of stably overexpressing SPINK1 gene in human pancreatic cancer AsPC-1 cell line

机译:稳定表达SPINK1基因的慢病毒载体在人胰腺癌AsPC-1细胞中的构建及增殖作用

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This study aims to design and generate recombinant lentiviral vector containing the complete coding sequence (CDS) region of human serine protease inhibitor Kazal type 1 gene (SPINK1) and establish a human pancreatic cancer cell line (AsPC-1) stably overexpressing SPINK1. Then, to assess the proliferative and oncogenic effects of upregulated SPINK1 gene on pancreatic cancer AsPC-1 cells using different methods. Initially, the target coding sequence (CDS) of SPINK1 was amplified by polymerase chain reaction (PCR) and the synthesized product was subsequently subcloned into the lentiviral vector. The construction of recombinant SPINK1 gene was verified by the restriction digestion and sequencing analysis. The lentiviral particles carrying SPINK1 gene were produced by co-transfection of the recombination lentiviral vector and the packaging mix plasmids into 293 T cells and filtered and concentrated before AsPC-1 cells were infected by the virus particles. The cells transduced were differentially selected with puromycin, and the clones that highly expressed SPINK1 were chosen by real-time PCR and confirmed by Western blot after 7 weeks. The stably transduced AsPC-1 cell line showed significantly increased metabolic and proliferative capability using CCK-8 and Trypan Blue assays (P< 0.001). Cell cycle and DNA content analysis by flow cytometry showed that upregulated SPINK1 elicited significant increase in the percentage of AsPC-1 cells in the S and G2/M phase (P< 0.001). Clone formation assay demonstrated that the number of the colonies formed in the experimental group was greater than that in the control parental cells (P< 0.001). It was concluded that a stable AsPC-1 cell line capable of overexpressing SPINK1 had been successfully created, and that the proliferative capacity of AsPC-1 pancreatic cancer cells was significantly raised by SPINK1 upregulation as well as the ability of a single AsPC-1 cell to grow into a colony.
机译:这项研究旨在设计和生成包含人丝氨酸蛋白酶抑制剂Kazal 1型基因(SPINK1)的完整编码序列(CDS)区的重组慢病毒载体,并建立稳定过量表达SPINK1的人胰腺癌细胞系(AsPC-1)。然后,使用不同方法评估上调的SPINK1基因对胰腺癌AsPC-1细胞的增殖和致癌作用。最初,通过聚合酶链反应(PCR)扩增SPINK1的目标编码序列(CDS),然后将合成的产物亚克隆到慢病毒载体中。通过限制性酶切和测序分析验证了重组SPINK1基因的构建。通过将重组慢病毒载体和包装混合物质粒共转染到293 T细胞中,将带有SPINK1基因的慢病毒颗粒共转染,然后过滤并浓缩,然后用病毒颗粒感染AsPC-1细胞。用嘌呤霉素差异选择转导的细胞,并通过实时PCR选择高表达SPINK1的克隆,并在7周后通过Western印迹进行确认。使用CCK-8和台盼蓝检测法,稳定转导的AsPC-1细胞系显示出明显增强的代谢和增殖能力(P <0.001)。细胞周期和通过流式细胞术进行的DNA含量分析表明,上调的SPINK1导致S和G2 / M期AsPC-1细胞的百分比显着增加(P <0.001)。克隆形成分析表明,实验组中形成的菌落数量大于对照亲本细胞中的菌落数量(P <0.001)。结论是,已经成功地创建了一种能够过表达SPINK1的稳定的AsPC-1细胞系,并且SPINK1的上调显着提高了AsPC-1胰腺癌细胞的增殖能力以及单个AsPC-1细胞的能力。成长为殖民地。

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