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HOME > Product search results > Code No. RN1005 RIP-Assay Kit for microRNA

Code No. RN1005

RIP-Assay Kit for microRNA

Availability (in Japan)

10 or more

(In Japan at 17:00,
Jun 4, 2020 in JST)

Size

10 assays

Related information
Components mi-Lysis Buffer, mi-Wash Buffer, Normal Rabbit IgG, High-Salt Solution, mi-Solution I, mi-Solution II, mi-Solution III, mi-Solution IV, Gel Extraction Buffer, 3M NaOAc, miSPIKETM
Intended use The kit is designed to isolate cellular miRNAs that being incorporated into the RISC and/or to isolate unique group of miRNAs that bind to specific group of mRNAs encoding functionally related proteins.
Storage temp. 4°C Manufacturer MBL
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Citations
  1. Uchino K et al. Therapeutic Effects of MicroRNA-582-5p and -3p on the Inhibition of Bladder Cancer Progression. Mol Ther. 21, 610-9 (2013)(PMID:23295946)
  1. Hoffman AE et al. Targetome profiling, pathway analysis and genetic association study implicate miR-202 in lymphomagenesis. Cancer Epidemiol Biomarkers Prev. 22, 327-36 (2013)(PMID:23334589)
  1. Comincini S et al. microRNA-17 regulates the expression of ATG7 and modulates the autophagy process, improving the sensitivity to temozolomide and low-dose ionizing radiation treatments in human glioblastoma cells. Cancer Biol Ther. 14, 574-86 (2013)(PMID:23792642)
  1. He T et al. MicroRNA-542-3p inhibits tumour angiogenesis by targeting angiopoietin-2. J Pathol. 232, 499-508 (2014)     
     (PMID:24403060)
  1. Fu A et al. Targetome profiling and functional genetics implicate miR-618 in lymphomagenesis. Epigenetics 9, 730-7 (2014)(PMID:24503492)
  1. Marchesi N et al. Autophagy is modulated in human neuroblastoma cells through direct exposition to low frequency electromagnetic fields. J Cell Physiol. 229, 1776-86 (2014)(PMID:24676932)
  1. Madhyastha R et al. NFkappaB activation is essential for miR-21 induction by TGFβ1 in high glucose conditions. Biochem Biophys Res commun. 451, 615-21 (2014)(PMID:25130469)
  1. Kong Y et al. The Role of miR-124 in Drosophila Alzheimer's Disease Model by Targeting Delta in Notch Signaling Pathway. Curr Mol Med. 15, 980-9 (2015)(PMID:26592243)
  1. Lin SC et al. Dysregulation of miRNAs-COUP-TFII-FOXM1-CENPF axis contributes to the metastasis of prostate cancer. Nat Commun. 7, 11418 (2016)(PMID:27108958)
  1. Pandolfini L et al. RISC-mediated control of selected chromatin regulators stabilizes ground state pluripotency of mouse embryonic stem cells. Genome Biol. 17, 94 (2016)(PMID:27154007)
  1. Degrauwe N et al. The RNA Binding Protein IMP2 Preserves Glioblastoma Stem Cells by Preventing let-7 Target Gene Silencing. Cell Rep. 15, 1634-47 (2016)(PMID:27184842)
  1. Kishikawa T et al. Satellite RNAs promote pancreatic oncogenic processes via the dysfunction of YBX1. Nat Commun. 7, 13006 (2016)(PMID:27667193)
  1. Katsushima K et al. Targeting the Notch-regulated non-coding RNA TUG1 for glioma treatment. Nat Commun. 7, 13616 (2016)(PMID:27922002)
  1. Deguchi S et al. Oncogenic effects of evolutionarily conserved noncoding RNA ECONEXIN on gliomagenesis. Oncogene 36, 4629-4640 (2017)(PMID:28368417)
  1. Hwang HS et al. MicroRNA-365 regulates IL-1β-induced catabolic factor expression by targeting HIF-2α in primary chondrocytes. Sci Rep. 7, 17889 (2017)(PMID:29263346)
  1. Higaki S et al. Defensive effect of microRNA-200b/c against amyloid-beta peptide-induced toxicity in Alzheimer's disease models. PLoS One. 13, e0196929 (2018)(PMID:29738527)
  1. Bach DH et al. BMP4 Upregulation Is Associated with Acquired Drug Resistance and Fatty Acid Metabolism in EGFR-Mutant Non-Small-Cell Lung Cancer Cells. Mol Ther Nucleic Acids. 12, 817-828 (2018)(PMID:30153566)
  1. Wen J et al. miR-424 coordinates multilayered regulation of cell cycle progression to promote esophageal squamous cell carcinoma cell proliferation. EBioMedicine. 37, 110-124 (2018)(PMID:30361064)
Product category
Research area
RNA-RNP Network
Brands
RiboCluster Profiler™
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  • The availability is based on the information in Japan at 17:00, Jun 4, 2020 in JST.
  • The special price is shown in red color.
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