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INTERFERin®(专用于siRNA/miRNA转染试剂)(品牌:Polyplus)

产品货号 产品 品牌 单位 存货 价格 数量  
101000028
INTERFERin®(专用于siRNA/miRNA转染试剂)(品牌:Polyplus)
Polyplus 1 mL 有货

价格: ¥2,000.00

产品特性        

试剂名称: INTERFERin®(专用于siRNA/miRNA转染试剂)
递送的分子类型: siRNA, miRNA (microRNA), and other oligonucleotides: pre-miRNA, mimic miRNA, antimiR…
产品应用: siRNA和其他寡核苷酸的转染
细胞类型: 贴壁细胞和悬浮细胞
可转染的数量/次数: 1毫升INTERFERin®足以在24孔板中进行500-1000次转染。
存储: 5 °C ± 3°C.
货号 试剂规格
101000036 INTERFERin® 0.1 mL
101000028 INTERFERin® 1 mL
101000016 INTERFERin® 5 x 1 mL

(产品资料及数据来源于Polyplus官网。)

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产品概述

更少的siRNA,更高的沉默效率,极低的脱靶效应!

  • 高效的基因沉默效应:在多种细胞中达到超过90%的基因沉默;
  • 温和的转染模式:保持绝佳的细胞活率;
  • 极低的脱靶效应:使用低至1 nM siRNA;
  • 操作简单:优化的操作手册,兼容血清和抗生素

产品来源

Polyplus

相关论文

1、Liu, J., Cheng, Y., Zhang, X., Chen, Y., Zhu, H., Chen, K., Liu, S., Li, Z., & Cao, X. (2023). Glycosyltransferase Extl1 promotes CCR7-mediated dendritic cell migration to restrain infection and autoimmunity. Cell reports42(1), 111991. https://doi.org/10.1016/j.celrep.2023.111991

2、Srivastava, V., Zelmanovich, V., Shukla, V., Abergel, R., Cohen, I., Ben-Sasson, S. A., & Gross, E. (2023). Distinct designer diamines promote mitophagy, and thereby enhance healthspan in C. elegans and protect human cells against oxidative damage. Autophagy19(2), 474–504. https://doi.org/10.1080/15548627.2022.2078069

3、Hao, W. Y., Lou, Y., Hu, G. Y., Qian, C. Y., Liang, W. R., Zhao, J., & Wang, X. H. (2022). RNA m6A reader YTHDF1 facilitates inflammation via enhancing NLRP3 translation. Biochemical and biophysical research communications616, 76–81. https://doi.org/10.1016/j.bbrc.2022.05.076

4、Liu, J., Zhang, N., Zeng, J., Wang, T., Shen, Y., Ma, C., & Yang, M. (2022). N6 -methyladenosine-modified lncRNA ARHGAP5-AS1 stabilises CSDE1 and coordinates oncogenic RNA regulons in hepatocellular carcinoma. Clinical and translational medicine12(11), e1107. https://doi.org/10.1002/ctm2.1107

5、Przepiórska, K., Wnuk, A., Beyer, C., & Kajta, M. (2023). Amorfrutin B Protects Mouse Brain Neurons from Hypoxia/Ischemia by Inhibiting Apoptosis and Autophagy Processes Through Gene Methylation- and miRNA-Dependent Regulation. Molecular neurobiology60(2), 576–595. https://doi.org/10.1007/s12035-022-03087-9