TPT-004
Based on 1 Customer Validation
TPT-004 is a selective and oraly active tryptophan hydroxylases (TPH) inhibitor with IC50s of 77 nM and 16 nM for TPH1 and TPH2, repsectively. TPT-004 exhibits exceptional selectivity for TPH1 compared with other members of the AAAH family. TPT-004 shows efficacy peripheral serotonin attenuation and colorectal tumor growth in mice[1][2].
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研究用途以外に使用した場合、当社は一切の責任を負いかねます。
- 純度 : 99.90%
- CAS 番号: 3032648-15-7
- 分子式: C18H20N6O3S
- 分子量:400.45
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保管条件:Powder -20°C, 3 years ; In solvent -80°C, 6 months , -20°C, 1 month
生物活性
製品説明
Cellular Effect
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Cell Line
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Type | Value | Description | References |
|---|---|---|---|---|
| THP-1 | IC50 |
0.077 μM
Compound: 32; TPT-004
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Inhibition of recombinant MBP-tagged full length human THP1 using L-Trp as substrate assessed as formation of 5-HTP by measuring fluorescent property
Inhibition of recombinant MBP-tagged full length human THP1 using L-Trp as substrate assessed as formation of 5-HTP by measuring fluorescent property
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[PMID: 37905925] |
体外実験
TPT-004 (72 h) reduces the intracellular serotonin levels, showing a dose-response curve with an IC50 of 0.952 μM, in serotonergic BON cells[1].
TPT-004 inhibits phenylalanine hydroxylase (PAH) and tyrosine hydroxylase (TH) with IC50 values of 403.5 nM and 1.359 μM, repsectively[2].
MedChemExpress (MCE) has not independently confirmed the accuracy of these methods. They are for reference only. Further protocols information, click here.
体内実験
MedChemExpress (MCE) has not independently confirmed the accuracy of these methods. They are for reference only.
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Animal Model:Female C57BL/6N mice (aged 8 weeks) were subcutaneously transplanted with MC38 tumor fragments[1].
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Dosage:50 mg/kg
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Administration:Oral gavage; twice daily; for 20 days
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Result:Attenuated the tumor-growth, especially in the initial growth phase.
化学情報
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CAS 番号 3032648-15-7
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性状 Solid
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分子量 400.45
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分子式 C18H20N6O3S
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Color White to off-white
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SMILES
CCN1C2=C(C(NC1=O)=O)N(C(CC3=CN4C=C(SC4=N3)C)=N2)CC5COC5
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輸送条件
Room temperature in continental US; may vary elsewhere.
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保管条件
Powder -20°C 3 years In solvent -80°C 6 months -20°C 1 month
溶剤 & 溶解度
体外:
DMSO : 125 mg/mL (312.15 mM; Need ultrasonic; Hygroscopic DMSO has a significant impact on the solubility of product, please use newly opened DMSO)
Please refer to the solubility information to select the appropriate solvent. Once prepared, please aliquot and store the solution to prevent product inactivation from repeated freeze-thaw cycles.
Storage method and period of stock solution: -80°C, 6 months; -20°C, 1 month. When stored at -80°C, please use it within 6 months. When stored at -20°C, please use it within 1 month.
Please refer to the solubility information to select the appropriate solvent. Once prepared, please aliquot and store the solution to prevent product inactivation from repeated freeze-thaw cycles.
Storage method and period of stock solution: -80°C, 6 months; -20°C, 1 month. When stored at -80°C, please use it within 6 months. When stored at -20°C, please use it within 1 month.
濃度 (開始) × 体積 (開始) = 濃度 (終了) × 体積 (終了)
プロトコル
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Patient-Derived Xenograft (PDX)
Patient-derived xenograft (PDX) models are generated by engrafting primary human tumor tissue directly into immunodeficient mice, allowing in vivo propagation of patient tumor biology without initial in vitro adaptation. These models are used to preserve key histopathological and molecular characteristics of the original tumor and enable assessment of tumor growth dynamics and therapeutic response in a living organism. The biological readout is tumor engraftment and subsequent growth in the murine host, which reflects the ability of human tumor cells to survive, vascularize, and expand in an immunocompromised microenvironment.
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Patient-Derived Orthotopic Xenograft (PDOX)
Patient-derived orthotopic xenograft (PDOX) modeling implants fresh patient tumor tissue or patient-derived tumor cells into the anatomically corresponding organ or tissue site of immunodeficient mice, usually by surgical orthotopic implantation, to preserve patient tumor histology, local microenvironmental context, invasion, metastatic behavior, and treatment-response features better than subcutaneous implantation. PDOX readouts include tumor engraftment, orthotopic tumor growth, local invasion, metastasis, recurrence after resection, histologic similarity to the donor tumor, biomarker retention, molecular concordance, survival, and response or resistance to therapy. PDOX models are used for preclinical drug testing and individualized therapy evaluation, but engraftment success varies by tumor type and specimen quality.
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Subcutaneous Cell-Line-Derived Xenograft
Subcutaneous cell-line-derived xenograft (CDX) models are established by implanting cultured human cancer cell lines into immunodeficient mice, where the injected cells form localized tumors that can be monitored in vivo as a measure of tumorigenic potential, growth kinetics, and treatment response. These models are widely used in oncology research because they allow reproducible tumor formation and enable comparative assessment of tumor growth between different cell lines or genetic manipulations in a controlled in vivo microenvironment. Subcutaneous implantation of cancer cells in immunodeficient mice is a standard approach for evaluating tumor growth behavior and therapeutic response across multiple cancer types, including prostate, esophageal, pancreatic, and colon cancer models.
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Orthotopic Cell-Line Xenograft
Orthotopic cell-line xenograft models involve implantation of human cancer cell lines into the anatomically corresponding organ of immunodeficient mice to reproduce tumor growth within a native microenvironment, enabling more clinically relevant tumor behavior compared with subcutaneous models. These models are widely used because orthotopic placement better recapitulates tumor progression, including invasion and metastatic spread, which are often underrepresented in heterotopic implantation systems. Compared with conventional xenografts, orthotopic implantation is described as more technically complex but provides improved simulation of tumor-microenvironment interactions and metastatic behavior, making it particularly valuable for translational oncology research. Surgical orthotopic implantation approaches have been emphasized as enabling faithful reproduction of clinical cancer features, including metastasis and disease progression patterns that align with the tumor’s organ of origi
純度とドキュメンテーション
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データシート (279 KB)
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SDS (251 KB)
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- Portuguese - PT (251 KB)
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取扱説明書 (2659 KB)
参考文献
[1]. Specker E, et al. Structure-Based Design of Xanthine-Imidazopyridines and -Imidazothiazoles as Highly Potent and In Vivo Efficacious Tryptophan Hydroxylase Inhibitors. J Med Chem. 2023 Oct 31. [Content Brief]
[2]. Wesolowski R,et al. Selectivity and Safety Characterization of a Xanthine-Imidazothiazole Lead Structure: a Novel Tryptophan Hydroxylase Inhibitor of Peripheral Serotonin Synthesis. ACS Pharmacol Transl Sci. 2025 May 19;8(6):1678-1693. [Content Brief]
Complete Stock Solution Preparation Table
Please refer to the solubility information to select the appropriate solvent. Once prepared, please aliquot and store the solution to prevent product inactivation from repeated freeze-thaw cycles.
Storage method and period of stock solution: -80°C, 6 months; -20°C, 1 month. When stored at -80°C, please use it within 6 months. When stored at -20°C, please use it within 1 month.
| Optional Solvent | Concentration Solvent Mass | 1 mg | 5 mg | 10 mg | 25 mg |
|---|---|---|---|---|---|
| DMSO | 1 mM | 2.4972 mL | 12.4860 mL | 24.9719 mL | 62.4298 mL |
| 5 mM | 0.4994 mL | 2.4972 mL | 4.9944 mL | 12.4860 mL | |
| 10 mM | 0.2497 mL | 1.2486 mL | 2.4972 mL | 6.2430 mL | |
| 15 mM | 0.1665 mL | 0.8324 mL | 1.6648 mL | 4.1620 mL | |
| 20 mM | 0.1249 mL | 0.6243 mL | 1.2486 mL | 3.1215 mL | |
| 25 mM | 0.0999 mL | 0.4994 mL | 0.9989 mL | 2.4972 mL | |
| 30 mM | 0.0832 mL | 0.4162 mL | 0.8324 mL | 2.0810 mL | |
| 40 mM | 0.0624 mL | 0.3121 mL | 0.6243 mL | 1.5607 mL | |
| 50 mM | 0.0499 mL | 0.2497 mL | 0.4994 mL | 1.2486 mL | |
| 60 mM | 0.0416 mL | 0.2081 mL | 0.4162 mL | 1.0405 mL | |
| 80 mM | 0.0312 mL | 0.1561 mL | 0.3121 mL | 0.7804 mL | |
| 100 mM | 0.0250 mL | 0.1249 mL | 0.2497 mL | 0.6243 mL |