Strontium Ranelate

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Selleck Chemicals

SKU:S2050-10MG

Regular price €75,00 EUR
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Strontium Ranelate is an activator of Calcium Channels used in studies of Calcium Signaling. It is especially relevant when investigators need a named chemical input and interpretable readouts connected to calcium flux, excitability, and secretion-linked signaling in cardiovascular, cell signaling, and neuroscience models.

By activating Calcium Channels, Strontium Ranelate can be used to examine calcium flux, excitability, and secretion-linked signaling. The ion channel annotation adds relevance to electrophysiology, ion-flux, and membrane-potential studies, together with downstream-response mapping in the same experimental setting. In cardiovascular, cell signaling, and neuroscience models, these readouts can be combined with viability, reporter, localization, biochemical conversion, or morphology endpoints to refine experimental interpretation.

Research Applications

  • Target-focused assays involving Calcium Channels
  • Pathway perturbation studies connected to Calcium Signaling
  • Gain-of-function pathway-activation studies
  • Electrophysiology, ion-flux, and membrane-potential studies

Overall, Strontium Ranelate is appropriate when a defined chemical perturbant is needed to connect Calcium Channels with measurable biochemical, transcriptional, electrophysiological, imaging, or phenotypic readouts in cardiovascular, cell signaling, and neuroscience models. This profile is suited to mechanistic follow-up, comparative profiling, and assay optimization under defined exposure conditions.

Targets:
Calcium Channels
Target Class:
Ion Channel
Pathways:
Calcium Signaling
Research Area:
Cardiovascular • Cell Signaling • Neuroscience
CAS No.:
135459-87-9
Molecular Weight:
513.49
Formula:
C₁₂H₆N₂O₈S·2Sr
SMILES:
C(C1=C(SC(=C1C#N)N(CC(=O)[O-])CC(=O)[O-])C(=O)[O-])C(=O)[O-].[Sr+2].[Sr+2]
InChIKey:
XXUZFRDUEGQHOV-UHFFFAOYSA-J
PubChem:
6918182
Storage Temperature:
-20°C

For Research Use Only. Not intended for diagnostic or therapeutic use.
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