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Mouse TNFSF11/RANKL PicoKine ELISA Kit standard curve
Mouse TNFSF11/RANKL PicoKine ELISA Kit standard curve
Mouse TNFSF11/RANKL PicoKine ELISA Kit standard curve

Mouse TNFSF11/RANKL ELISA Kit PicoKine(r)

Research Use Only
EK0843
Boster Bio
ReactivityMouse
Product group Assays
96 wells
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Overview

  • Supplier
    Boster Bio
  • Product Name
    Mouse TNFSF11/RANKL PicoKine ELISA Kit
  • Delivery Days Customer
    9
  • Applications
    ELISA
  • Applications Supplier
    ELI
  • Assay Detection Range
    15.6 pg/ml - 1,000 pg/ml
  • Assay Sensitivity
    <10 pg/ml
  • Assay Specificity
    Natural and recombinant mouse TNFSF11
  • Assay Time
    15-20
  • Certification
    Research Use Only
  • Scientific Description
    Mouse TNFSF11/RANKL ELISA Kit PicoKine® (96 Tests). Quantitate Mouse Tnfsf11 in cell culture supernatants, cell lysates, serum and plasma (heparin, EDTA). Sensitivity: 10pg/ml. The brand Picokine indicates this is a premium quality ELISA kit. Each Picokine kit delivers precise quantification, high sensitivity, and excellent reproducibility. Only our most reliable and effective kits qualify as Picokine, guaranteeing top-tier results for your assays.
  • Reactivity
    Mouse
  • Reactivity Supplier
    Mouse TNFSF11
  • Storage Instruction
    -20°C,2°C to 8°C
  • UNSPSC
    41116158

References

  • Oroxin B Attenuates Ovariectomy-Induced Bone Loss by Suppressing Osteoclast Formation and Activity. Huang JM et al., 2021, Drug Des Devel Ther
    Read more
  • Vinpocetine inhibits RANKL-induced osteoclastogenesis and attenuates ovariectomy-induced bone loss. Zhu M et al., 2020 Mar, Biomed Pharmacother
    Read more
  • Hesperetin suppresses RANKL-induced osteoclastogenesis and ameliorates lipopolysaccharide-induced bone loss. Liu H et al., 2019 Jul, J Cell Physiol
    Read more
  • Effects of Taxifolin on Osteoclastogenesis in vitro and in vivo. Cai C et al., 2018, Front Pharmacol
    Read more
  • (2R,3R)Dihydromyricetin inhibits osteoclastogenesis and bone loss through scavenging LPS-induced oxidative stress and NF-kappaB and MAPKs pathways activating. Zhang X et al., 2018 Nov, J Cell Biochem
    Read more