A potent and selective S1P1 antagonist
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NIBR0213

Item No. 21513

Technical Information
Formal Name
N-[[3'-[[(1R)-1-(4-chloro-3-methylphenyl)ethyl]amino]-3,5-dimethyl[1,1'-biphenyl]-4-yl]carbonyl]-L-alanine
CAS Number
1233332-14-3
Molecular Formula
C27H29ClN2O3
Formula Weight
Purity
≥98%
Formulation
A crystalline solid
DMF: 25 mg/mlDMSO: 25 mg/mlEthanol: 25 mg/mlEthanol:PBS(pH 7.2) (1:5): 0.15 mg/ml
λmax
212, 249, 316 nm
SMILES
CC1=C(Cl)C=CC([C@@H](C)NC2=CC(C3=CC(C)=C(C(N[C@@H](C)C(O)=O)=O)C(C)=C3)=CC=C2)=C1
InChi Code
InChI=1S/C27H29ClN2O3/c1-15-11-20(9-10-24(15)28)18(4)29-23-8-6-7-21(14-23)22-12-16(2)25(17(3)13-22)26(31)30-19(5)27(32)33/h6-14,18-19,29H,1-5H3,(H,30,31)(H,32,33)/t18-,19+/m1/s1
InChi Key
KYHUARFFBDLROH-MOPGFXCFSA-N
Shipping & Storage Information
Storage
-20°C
Shipping
Room temperature in continental US; may vary elsewhere
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    Product Description

    NIBR0213 is an orally bioavailable, potent, and selective antagonist of sphingosine-1-phosphate receptor-1 (S1P1) with IC50 values of 2.5 and 2.0 nM for the hS1P1 in a Ca2+ mobilization assay and GTPγS assay, respectively.1 It is inactive at S1P2, S1P3, and S1P4 receptors (IC50s = >20, >10, and >10 µM, respectively in a Ca2+ mobilization assay). S1P1 plays a key role in the immune system, regulating lymphocyte egress from lymphoid tissues into the circulation.2 In rats, NIBR0213 (30 mg/kg) reduces peripheral blood lymphocytes by 75-85% for up to 24 hours.1 In a mouse model of experimental autoimmune encephalomyelitis (EAE), it significantly reduces disease severity up to 26 days, when administered at 30 mg/kg twice per day for three days, then 60 mg/kg twice per day. However, in a rat model of adjuvant-induced arthritis, chronic administration of 30 mg/kg induces pulmonary damage and chronic lung inflammation.3

    WARNING This product is not for human or veterinary use.

    References & Product Citations
    Product Description References

    1. Quancard, J., Bollbuck, B., Janser, P., et alA potent and selective S1P1 antagonist with efficacy in experimental autoimmune encephalomyelitis. Chem. Biol. 19(9), 1142-1151 (2012).

    2. Huwiler, A., Kolter, T., Pfeilschifter, J., et alPhysiology and pathophysiology of sphingolipid metabolism and signaling. Biochim. Biophys. Acta 1485(2-3), 63-99 (2000).

    3. Bigaud, M., Dincer, Z., Bollbuck, B., et alPathophysiological consequences of a break in S1P1-dependent homeostasis of vascular permeability revealed by S1P1 competitive antagonism. PLoS One 11(12), e0168252 (2016).