TM-2-51
Based on 1 Customer Validation
TM-2-51 is a HDAC8 activator with a Kd value of 0.28 μM. TM-2-51 inhibits α-glucosidase with an IC50 of 171.21 μM. TM-2-51 upregulates HDAC8 expression, modulates the TP53, STAT3/ERK and PI3K-AKT pathways, alleviates LeTx-induced cell cycle arrest, downregulates JMJD3 and increases H3K27me3 levels. TM-2-51 selectively induces apoptosis in tumor cell and upregulates p53/p21 expression. TM-2-51 inhibits tumor cell proliferation, migration and invasion, induces G1-phase arrest and suppresses tumor growth in vivo. TM-2-51 can be used in research on osteosarcoma, anthrax, type 2 diabetes and neuroblastoma.
For research use only. We do not sell to patients.
- CAS No.: 4921-82-8
- Formula: C14H12N2OS
- Molecular Weight:256.32
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Storage:Powder -20°C, 3 years , 4°C, 2 years ; In solvent -80°C, 6 months , -20°C, 1 month
Biological Activity
|
HDAC8 0.28 μM (Kd) |
α-Glucosidase 171.21 μM (IC50) |
TM-2-51 (72 h) potently reduces the viability of U2OS and 143B osteosarcoma cells in a concentration-dependent manner[1].
TM-2-51 (6 days) significantly inhibits the colony-forming ability of U2OS and 143B osteosarcoma cells[1].
TM-2-51 (24 h) significantly reduces the proliferation rate of U2OS and 143B osteosarcoma cells[1].
TM-2-51 (24 h) potently inhibits the migration and invasion abilities of U2OS and 143B osteosarcoma cells[1].
TM-2-51 increases the expression levels of HDAC8 and TP53 proteins above the DMSO baseline in U2OS and 143B osteosarcoma cells, while reduces the expression levels of p-STAT3 and p-ERK proteins below the DMSO baseline, without altering the expression levels of total STAT3 and ERK[1].
TM-2-51 (13-50 μM; 48-96 h) protects the human monocytic cell line THP-1 cells against LeTx-induced cytotoxicity, with its cytoprotective effect peaking at 25 μM and enabling continuous cell proliferation within 96 h[2].
TM-2-51 (25 μM; 24-72 h) enhances the phosphorylation level of AKT at Ser-473 in LeTx-treated human monocytic THP-1 cells at a concentration of 25 μM[2].
TM-2-51 (25 μM) increases the level of histone H3K27 trimethylation in LeTx-treated human monocytic THP-1 cells[2].
TM-2-51 (10-80 μM; 24-72 h) selectively inhibits the proliferation of human neuroblastoma SH-SY5Y cells: at a concentration of 80 μM for 72 h, the proliferation inhibition rate is approximately 22%, while it exerts no effect on human neuroblastoma BE (2)-C cells[4].
TM-2-51 (80 μM; 48 h) enhances the expression of p53 and p21 proteins in SH-SY5Y human neuroblastoma cells when treated at a concentration of 80 μM for 48 h, but exerts no effect on the expression of p53 and p21 in BE (2)-C human neuroblastoma cells[4].
TM-2-51 (48 h) increases the proportion of U2OS and 143B osteosarcoma cells in the G1 phase of the cell cycle and induces cell cycle arrest[1].
TM-2-51 (25 μM; 48-72 h) inhibits LeTx-induced G0-G1 cell cycle arrest in the human monocytic cell line THP-1, and restores the cell cycle to a near-normal progression at 72 h[2].
TM-2-51 potently inhibits α-glucosidase with an IC50 of 171.21 μM[3].
TM-2-51 exhibits no cytotoxicity against 3T3 mouse fibroblasts[3].
TM-2-51 (2-20 μM) activates purified recombinant human HDAC8 by decreasing the Michaelis constant (Km, from 650 μM to 184 μM) and increasing the catalytic constant (kcat, from 0.0072 s-1 to 0.035 s-1; all these changes are measured at the highest tested concentration of 20 μM)[4].
TM-2-51 activates purified recombinant human HDAC8 with positive cooperativity; at subsaturating substrate concentrations, its apparent activation constant is 6.1 μM and Hill coefficient is 1.7, whereas cooperativity decreases at saturating substrate concentrations[4].
TM-2-51 (up to 1.8 μM) binds to purified recombinant human HDAC8, with an equilibrium dissociation constant of 0.28 μM and a stoichiometric ratio close to 1:1[4].
TM-2-51 binds to two functional sites on purified recombinant human HDAC8, with negative cooperativity during the binding process; it exhibits the strongest binding affinity at the first site, with a binding constant of 2.09 × 106 M-1[4].
TM-2-51 (100 μM) increases the binding affinity of SAHA to purified recombinant human HDAC8 by approximately 2-fold, and alters the enthalpic and entropic contributions to the binding process[4].
TM-2-51 (80 μM; 72 h) induces approximately 45% apoptosis in human neuroblastoma SH-SY5Y cells when treated at 80 μM for 72 h, but exerts no effect on human neuroblastoma BE (2)-C cells[4].
TM-2-51 (10-48 μM; saturating concentration) potently and selectively activates recombinant human HDAC-8, reaching a maximum activation fold of 26.8 at saturating concentrations (apparent Ka = 12.4 μM), with no activating effect on other tested human HDAC isozymes[5].
MedChemExpress (MCE) has not independently confirmed the accuracy of these methods. They are for reference only.
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Cell Line:human monocytic THP-1 cells
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Concentration:6, 13, 25 and 50 μM
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Incubation Time:24, 48, 72 and 96 h
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Result:Exerted a cytoprotective effect against LeTx-induced cytotoxicity, with significant effects starting at 13 μM and maximal effects at 25 μM.
Allowed continuous increases in live cell numbers over 96 h in cells treated with both LeTx and 25 μM TM-2-51, albeit at a slower rate than non-treated cells.
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Cell Line:human monocytic THP-1 cells
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Concentration:25 μM
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Incubation Time:48 h and 72 h
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Result:Reduced G0-G1 phase distribution to 62.0% at 48 h post-LeTx treatment, compared to 99.5% G0-G1 arrest in LeTx-only cells.
Resulted in near-normal cell cycle distribution (37.6% G0-G1, 8.2% G2-M, 54.2% S phase) at 72 h post-LeTx treatment, compared to LeTx-only cells with 30.8% G0-G1, 1.11% G2-M, and 68.2% S phase.
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Cell Line:human monocytic THP-1 cells
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Concentration:25 μM
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Incubation Time:24 h, 48 h and 72 h
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Result:Enhanced LeTx-induced AKT phosphorylation at Ser-473 significantly at 24 h, 48 h, and 72 h post-LeTx treatment.
Showed the highest AKT phosphorylation at Ser-473 detected at 72 h post-LeTx treatment.
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Cell Line:SH-SY5Y human neuroblastoma cells, BE(2)-C human neuroblastoma cells
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Concentration:0, 10, 40 and 80 μM
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Incubation Time:24 h, 48 h, 72 h
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Result:Induced concentration- and time-dependent growth inhibition in SH-SY5Y cells.
Decreased SH-SY5Y cell proliferation by approximately 22% at 80 μM for 72 hours compared to control.
Exerted no growth inhibition effect on BE(2)-C cells under the same conditions.
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Cell Line:SH-SY5Y human neuroblastoma cells, BE(2)-C human neuroblastoma cells
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Concentration:80 μM
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Incubation Time:72 h
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Result:Induced approximately 45% apoptosis in SH-SY5Y cells compared to DMSO-treated control cells.
Exerted no apoptotic effect on BE(2)-C cells under the same conditions.
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Cell Line:SH-SY5Y human neuroblastoma cells, BE(2)-C human neuroblastoma cells
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Concentration:80 μM
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Incubation Time:48 h
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Result:Moderately enhanced p53 protein expression in SH-SY5Y cells compared to DMSO-treated controls.
Noticeably enhanced p21 protein expression in SH-SY5Y cells compared to DMSO-treated controls.
Exerted no changes in p53 or p21 expression in BE(2)-C cells under the same conditions.
MedChemExpress (MCE) has not independently confirmed the accuracy of these methods. They are for reference only.
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Animal Model:BALB/C nude mice[1]
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Dosage:10 mg/kg
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Administration:i.p.; every 2 days; 14 days
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Result:Reduced tumor weight and tumor volume compared to vehicle control.
Suppressed tumor cell proliferation confirmed by Ki67 staining, with statistically significant differences (***P<0.001).
Chemical Information
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CAS No. 4921-82-8
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Appearance Solid
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Molecular Weight 256.32
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Formula C14H12N2OS
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SMILES
O=C(NC(=S)NC=1C=CC=CC1)C=2C=CC=CC2
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Shipping
Room temperature in continental US; may vary elsewhere.
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Storage
Powder -20°C 3 years 4°C 2 years In solvent -80°C 6 months -20°C 1 month
Purity & Documentation
References
[1]. Wang L, et al. Activation of HDAC8 Can Suppress the Proliferation of Osteosarcoma Cells via and STAT3/ERK Signaling Pathways. Annals of clinical and laboratory science. 2023 Nov;53(6):920-930. [Content Brief]
[2]. Ha SD, et al. HDAC8 Prevents Anthrax Lethal Toxin-induced Cell Cycle Arrest through Silencing PTEN in Human Monocytic THP-1 Cells. Toxins. 2017 May 16;9(5):162. [Content Brief]
[3]. Akhter S, et al. Synthesis, crystal structure and Hirshfeld Surface analysis of benzamide derivatives of thiourea as potent inhibitors of α-glucosidase in-vitro. Bioorganic chemistry. 2021 Feb;107:104531. [Content Brief]
[4]. Singh RK, et al. Mechanism of N-Acylthiourea-mediated activation of human histone deacetylase 8 (HDAC8) at molecular and cellular levels. The Journal of biological chemistry. 2015 Mar 06;290(10):6607-19. [Content Brief]
[5]. Singh RK, et al. Histone deacetylase activators: N-acetylthioureas serve as highly potent and isozyme selective activators for human histone deacetylase-8 on a fluorescent substrate. Bioorganic & medicinal chemistry letters. 2011 Oct 01;21(19):5920-3. [Content Brief]
Calculators
Concentration (start) × Volume (start) = Concentration (final) × Volume (final)