Saracatinib-d3
Saracatinib-d3 (AZD0530-d3) (ZG5129) is the deuterium-labeled analog of Saracatinib (HY-10234). Saracatinib-d3 is an inhibitor of the Src kinase, which can inhibit severe sepsis caused by bacterial or various microbial infections.
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- CAS. Nr.: 2200301-36-4
- Formel: C27H29D3ClN5O5
- Molecular Weight:545.04
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Speicherung:
Please store the product under the recommended conditions in the Certificate of Analysis.
Biologische Aktivität
Beschreibung
Anwendung
1. This compound can be used as a tracer
2. This compound can be used as an internal standard for quantitative analysis by NMR, GC-MS, or LC-MS.
Chemical Information
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CAS. Nr. 2200301-36-4
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Unlabeled CAS 379231-04-6
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Molecular Weight 545.04
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Formel C27H29D3ClN5O5
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SMILES
[2H]C([2H])([2H])N(CC1)CCN1CCOC2=CC3=C(C(OC4CCOCC4)=C2)C(NC5=C6C(OCO6)=CC=C5Cl)=NC=N3
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Synonyms
AZD0530-d3
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Versand
Room temperature in continental US; may vary elsewhere.
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Speicherung
Please store the product under the recommended conditions in the Certificate of Analysis.
Protokoll
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LPS-Induced Endotoxemia/Systemic Inflammation
Lipopolysaccharide (LPS)-induced endotoxemia is a widely used in vivo model of acute systemic inflammation in which LPS, a Gram-negative bacterial endotoxin, activates innate immune signaling primarily through TLR4, leading to rapid and transient induction of pro-inflammatory cytokines such as TNF-α, IL-6, and IL-1β in circulation and tissues. This cytokine surge is commonly used as a measurable readout of systemic inflammatory activation and immune dysregulation, and is typically assessed within hours after intraperitoneal LPS administration in mouse models of endotoxemia. The model captures key features of systemic inflammatory response syndrome, including cytokine release, immune cell activation, and downstream tissue responses, and has been used to evaluate anti-inflammatory interventions such as cytokine modulation, lipid mediators, and immune cell-targeting therapies.
Reinheit & Dokumentation
Verweise
Calculators
Konzentration (Stammlösung) × Volumen (Stammlösung) = Konzentration (Ziellösung) × Volumen (Ziellösung)