PeptideDB

NLRP3-IN-42

NLRP3-IN-42

CAS No.:

NLRP3-IN-42 (compound H28) is a potent NLRP3 inhibitor with a KD of 1.15 µM. NLRP3-IN-42 reduces LPS-induced cleaved-ca
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NLRP3-IN-42 (compound H28) is a potent NLRP3 inhibitor with a KD of 1.15 µM. NLRP3-IN-42 reduces LPS-induced cleaved-caspase-1 (p20) protein expression. NLRP3-IN-42 selectively inhibits IL-1β release.

Physicochemical Properties


Molecular Formula C29H27F3N2O3S2
Molecular Weight 572.66
Appearance Typically exists as solid at room temperature
HS Tariff Code 2934.99.9001
Storage

Powder-20°C 3 years

4°C 2 years

In solvent -80°C 6 months

-20°C 1 month

Shipping Condition Room temperature (This product is stable at ambient temperature for a few days during ordinary shipping and time spent in Customs)

Biological Activity


Targets NLRP3 1.15 μM (Kd) IL-1β
ln Vitro NLRP3-IN-42 (compound H28) (0-30 µM) reduces LPS (HY-D1056)-induced cleaved-caspase-1 (p20) expression in a dose-dependent manner[1]. NLRP3-IN-42 can stably bind to the ADP active site of the NLRP3 NACHT domain[1].
ln Vivo NLRP3-IN-42 (10 mg/kg; ip) selectively inhibits IL-1β release by inhibiting the NLRP3 inflammasome without significantly affecting the inflammatory factor TNF-α[1].
Cell Assay Western Blot Analysis[1]
Cell Types: J774A.1
Tested Concentrations: 0, 3, 10, 30 µM
Incubation Duration: 2.5 h + 30 min
Experimental Results: Decreased the LPS (1 μg/mL) induced protein expression of cleaved-caspase-1 (p20) in culture supernatants (SN) and whole cell lysates (WCL) in a dose-dependent manner.
Animal Protocol Animal/Disease Models:4-8 weeks, Male C57BL/6 mice[1]
Doses: 10 mg/kg
Route of Administration: I.p; 1 h before injection of LPS (35 mg/kg, ip) for 2.5 h
Experimental Results: Significantly inhibited IL-1β production in the treatment mice. It is noteworthy that the treatment with these compounds do not result in significant inhibition of TNF-α levels.
References

[1]. Discovery of novel biphenyl-sulfonamide analogues as NLRP3 inflammasome inhibitors. Bioorg Chem. 2024 May;146:107263.


Solubility Data


Solubility (In Vitro) May dissolve in DMSO (in most cases), if not, try other solvents such as H2O, Ethanol, or DMF with a minute amount of products to avoid loss of samples
Solubility (In Vivo) Note: Listed below are some common formulations that may be used to formulate products with low water solubility (e.g. < 1 mg/mL), you may test these formulations using a minute amount of products to avoid loss of samples.

Injection Formulations
(e.g. IP/IV/IM/SC)
Injection Formulation 1: DMSO : Tween 80: Saline = 10 : 5 : 85 (i.e. 100 μL DMSO stock solution 50 μL Tween 80 850 μL Saline)
*Preparation of saline: Dissolve 0.9 g of sodium chloride in 100 mL ddH ₂ O to obtain a clear solution.
Injection Formulation 2: DMSO : PEG300 :Tween 80 : Saline = 10 : 40 : 5 : 45 (i.e. 100 μL DMSO 400 μLPEG300 50 μL Tween 80 450 μL Saline)
Injection Formulation 3: DMSO : Corn oil = 10 : 90 (i.e. 100 μL DMSO 900 μL Corn oil)
Example: Take the Injection Formulation 3 (DMSO : Corn oil = 10 : 90) as an example, if 1 mL of 2.5 mg/mL working solution is to be prepared, you can take 100 μL 25 mg/mL DMSO stock solution and add to 900 μL corn oil, mix well to obtain a clear or suspension solution (2.5 mg/mL, ready for use in animals).
Injection Formulation 4: DMSO : 20% SBE-β-CD in saline = 10 : 90 [i.e. 100 μL DMSO 900 μL (20% SBE-β-CD in saline)]
*Preparation of 20% SBE-β-CD in Saline (4°C,1 week): Dissolve 2 g SBE-β-CD in 10 mL saline to obtain a clear solution.
Injection Formulation 5: 2-Hydroxypropyl-β-cyclodextrin : Saline = 50 : 50 (i.e. 500 μL 2-Hydroxypropyl-β-cyclodextrin 500 μL Saline)
Injection Formulation 6: DMSO : PEG300 : castor oil : Saline = 5 : 10 : 20 : 65 (i.e. 50 μL DMSO 100 μLPEG300 200 μL castor oil 650 μL Saline)
Injection Formulation 7: Ethanol : Cremophor : Saline = 10: 10 : 80 (i.e. 100 μL Ethanol 100 μL Cremophor 800 μL Saline)
Injection Formulation 8: Dissolve in Cremophor/Ethanol (50 : 50), then diluted by Saline
Injection Formulation 9: EtOH : Corn oil = 10 : 90 (i.e. 100 μL EtOH 900 μL Corn oil)
Injection Formulation 10: EtOH : PEG300:Tween 80 : Saline = 10 : 40 : 5 : 45 (i.e. 100 μL EtOH 400 μLPEG300 50 μL Tween 80 450 μL Saline)

Oral Formulations Oral Formulation 1: Suspend in 0.5% CMC Na (carboxymethylcellulose sodium)
Oral Formulation 2: Suspend in 0.5% Carboxymethyl cellulose
Example: Take the Oral Formulation 1 (Suspend in 0.5% CMC Na) as an example, if 100 mL of 2.5 mg/mL working solution is to be prepared, you can first prepare 0.5% CMC Na solution by measuring 0.5 g CMC Na and dissolve it in 100 mL ddH2O to obtain a clear solution; then add 250 mg of the product to 100 mL 0.5% CMC Na solution, to make the suspension solution (2.5 mg/mL, ready for use in animals).
Oral Formulation 3: Dissolved in PEG400
Oral Formulation 4: Suspend in 0.2% Carboxymethyl cellulose
Oral Formulation 5: Dissolve in 0.25% Tween 80 and 0.5% Carboxymethyl cellulose
Oral Formulation 6: Mixing with food powders

Note: Please be aware that the above formulations are for reference only. InvivoChem strongly recommends customers to read literature methods/protocols carefully before determining which formulation you should use for in vivo studies, as different compounds have different solubility properties and have to be formulated differently.

 (Please use freshly prepared in vivo formulations for optimal results.)
Preparing Stock Solutions 1 mg 5 mg 10 mg
1 mM 1.7462 mL 8.7312 mL 17.4624 mL
5 mM 0.3492 mL 1.7462 mL 3.4925 mL
10 mM 0.1746 mL 0.8731 mL 1.7462 mL
*Note: Please select an appropriate solvent for the preparation of stock solution based on your experiment needs. For most products, DMSO can be used for preparing stock solutions (e.g. 5 mM, 10 mM, or 20 mM concentration); some products with high aqueous solubility may be dissolved in water directly. Solubility information is available at the above Solubility Data section. Once the stock solution is prepared, aliquot it to routine usage volumes and store at -20°C or -80°C. Avoid repeated freeze and thaw cycles.