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Merck

SML2233

Sigma-Aldrich

XMU-MP-1 hydrochloride

≥98% (HPLC)

Synonym(e):

4-((5,10-Dimethyl-6-oxo-6,10-dihydro-5H-pyrimido[5,4-b]thieno[3,2-e][1,4]diazepin-2-yl)amino)benzenesulfonamide hydrochloride, 4-[(6,10-Dihydro-5,10-dimethyl-6-oxo-5H-pyrimido[5,4-b]thieno[3,2-e][1,4]diazepin-2-yl)amino]benzenesulfonamide hydrochoride

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About This Item

Empirische Formel (Hill-System):
C17H16N6O3S2 · xHCl
CAS-Nummer:
Molekulargewicht:
416.48 (free base basis)
MDL-Nummer:
UNSPSC-Code:
12352200
NACRES:
NA.77

Assay

≥98% (HPLC)

Form

powder

Lagerbedingungen

desiccated

Farbe

white to beige

Löslichkeit

DMSO: 2 mg/mL, clear (warmed)

Lagertemp.

−20°C

SMILES String

CN(C1=CN=C(NC2=CC=C(S(N)(=O)=O)C=C2)N=C1N(C)C3=C4SC=C3)C4=O

Biochem./physiol. Wirkung

XMU-MP-1 inhibits MST kinase activity (IC50 = 9.8 nM/MST1, 18.2 nM/MST2, 44.8 nM/MST3, 27.3 nM/MST4) in a reversible and ATP-competitive manner (MST1 IC50/[ATP] = 164 nM/10 μM and 4036 nM/300 μM; MST2 IC50/[ATP] = 34 nM/10 μM and 1498 nM/300 μM), exhibiting significant affinity and/or inhibitory potency toward only 17 other kinases among a panel of 468 (401 unique kinases). XMU-MP-1 selectively inhibits H2O2-stimulated MST autophosphorylation and phosphorylation of endogenous MST1/2 substrates (MOB1, LATS, YAP), but not JNK, in human and murine cells (Effective conc. 1 μM), effectively upregulating YAP nuclear localization and protecting HepG2 cells (3 μM) against MST2 overexpression-induced cell death. XMU-MP-1 exhibits in vivo efficacy toward liver and intestinal repair and regeneration in various murine models (1-3 mg/kg/day i.p.) and oral availability in rats (t1/2 = 5.18 h, Tmax = 3 h, AUC = 993 ng•h/mL, F = 39.48%; 10 mg/mL p.o.).

Lagerklassenschlüssel

11 - Combustible Solids

WGK

WGK 3

Flammpunkt (°F)

Not applicable

Flammpunkt (°C)

Not applicable


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Fuqin Fan et al.
Science translational medicine, 8(352), 352ra108-352ra108 (2016-08-19)
Tissue repair and regenerative medicine address the important medical needs to replace damaged tissue with functional tissue. Most regenerative medicine strategies have focused on delivering biomaterials and cells, yet there is the untapped potential for drug-induced regeneration with good specificity
Masashi Kanayama et al.
Nature immunology, 18(9), 973-984 (2017-07-04)
The balance of myeloid populations and lymphoid populations must be well controlled. Here we found that osteopontin (OPN) skewed this balance during pathogenic conditions such as infection and autoimmunity. Notably, two isoforms of OPN exerted distinct effects in shifting this

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