DENV-IN-4
DENV-IN-4 is a potent DENV inhibitor (DENV EC50=4.79 μM, Vero CC50>100 μM, SI>20.9). DENV-IN-4 can inhibit the expression level of DENV2 with concentration-dependence and reduce RNA-dependent RNA polymerase (RdRp) enzymatic activity. DENV-IN-4 has antiviral effect.
For research use only. We do not sell to patients.
- CAS No.: 2762302-75-8
- Formula: C28H32N4O4Si
- Molecular Weight:516.66
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Storage:
Please store the product under the recommended conditions in the Certificate of Analysis.
All DNA/RNA Synthesis Isoforms
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Biological Activity
Description
IC50 & Target
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RNA Polymerase |
In Vitro
DENV-IN-4 (compound 15) (0.064-200 μM; 3 days) has antiviral effect and not related to its toxicity (DENV EC50=4.79 μM, Vero CC50>100, SI>20.9)[1].
DENV-IN-4 (3.125-50 μM in Vero, 3.75-30 μM in A549 and Huh-7; 48 hours) inhibits the expression level of DENV2 with concentration-dependence, and inhibition curves were smoother in Vero[1].
DENV-IN-4 (7.5 and 15 μM; 48 hours) can effectively inhibit DENV infection in Vero cells, and completely inhibited at 15 μM[1].
DENV-IN-4 (0-15 μM; 48 hours) inhibits DENV2 E protein production with good concentration-dependent relationship in Vero cells[1].
MedChemExpress (MCE) has not independently confirmed the accuracy of these methods. They are for reference only. Further protocols information, click here.
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Cell Line:Vero[1]
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Concentration:0.064-200 μM
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Incubation Time:3 days
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Result:Showed antiviral effect of DENV-IN-4 was not related to its toxicity (Vero EC50=4.79 μM, CC50>100, SI>20.9).
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Cell Line:Vero, A549 and Huh-7 cells[1]
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Concentration:3.125-50 μM in Vero, 3.75-30 μM in A549 and Huh-7
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Incubation Time:48 hours
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Result:Inhibited the expression level of DENV2 with concentration-dependence, and inhibition curves were smoother in Vero.
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Cell Line:Vero[1]
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Concentration:7.5 and 15 μM
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Incubation Time:48 hours
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Result:Effectively inhibited DENV infection and completely inhibited at 15 μM.
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Cell Line:Vero[1]
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Concentration:0-15 μM
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Incubation Time:48 hours
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Result:Inhibited DENV2 E protein production with good concentration-dependent relationship.
Chemical Information
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CAS No. 2762302-75-8
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Molecular Weight 516.66
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Formula C28H32N4O4Si
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SMILES
O=C1[C@@](CC2=CC=CC=C23)([H])N3[C@](C4=CC=C(C=C4)O[Si](C)(C)C(C)(C)C)([H])N1NC5=CC=C(C=C5)[N+]([O-])=O
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Shipping
Room temperature in continental US; may vary elsewhere.
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Storage
Please store the product under the recommended conditions in the Certificate of Analysis.
Protocols
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RNA extraction experimental
By lysing cells, releasing RNA, and removing impurities such as proteins and DNA, high-purity RNA products are finally obtained. The commonly used traditional method is the guanidine isothiocyanate/phenol/chloroform method (Trizol), which is suitable for a variety of animal materials including animal tissues, microorganisms, cultured cells, etc., and most plant materials.
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Research Protocol for Infectious Diseases
Infectious-disease experiments test how pathogens interact with host barriers, innate immune receptors, inflammatory signaling, pathogen replication, and tissue injury; pattern-recognition receptors such as TLRs, RIG-I-like receptors, NOD-like receptors, and inflammasomes detect microbial molecules and activate NF-κB, interferon, and cytokine responses. The central hypothesis is that infection severity reflects the balance between pathogen burden and host response: protective inflammation restricts pathogen growth, whereas excessive or mislocalized inflammation contributes to tissue damage and disease phenotype. Unresolved questions include which host pathways are protective versus pathogenic, why some infection models fail to translate to human disease, and which combined readouts best predict clinically relevant infection outcomes.
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Cell Cytotoxicity Assay
Cytotoxicity assays are usually based on the assessment of cell membrane damage, which can also be indirectly detected by measuring cell viability. Detection methods include MTT assay, CKK-8 assay, LDH assay and ATP assay, etc.
Purity & Documentation
References
Calculators
Concentration (start) × Volume (start) = Concentration (final) × Volume (final)