C75
Based on 52 publication(s) in Google Scholar
C75 is a synthetic fatty-acid synthase (FASN) inhibitor; inhibits prostate cancer cells PC3 with an IC50 of 35 μM. C75 is a potent CPT1A activator.
Para uso exclusivo en investigación. No vendemos a pacientes.
- Pureza: 99.91%
- No. CAS: 218137-86-1
- Fòrmula: C14H22O4
- Peso molecular:254.32
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Almacenamiento:Powder -20°C, 3 years , 4°C, 2 years ; In solvent -80°C, 6 months , -20°C, 1 month
Publications Citing Use of MedChemExpress (MCE) C75
More- Signal Transduct Target Ther. 2026 Jan 16;11(1):33. [Abstract]
- Nature. 2023 Jun;618(7964):374-382. [Abstract]
- J Hepatol. 2020 May;72(5):976-989. [Abstract]
- Cell Metab. 2021 Jan 5;33(1):51-64.e9. [Abstract]
- Nat Genet. 2025 Mar;57(3):680-693. [Abstract]
- Gastroenterology. 2024 Jan 24:S0016-5085(24)00064-7. [Abstract]
- Bioact Mater. 2023 Nov 9:33:85-99. [Abstract]
- Nat Commun. 2026 Jan 20;17(1):614. [Abstract]
- Nat Commun. 2024 Sep 27;15(1):8273. [Abstract]
- Autophagy. 2026 May 18:1-20. [Abstract]
- Adv Sci (Weinh). 2026 Jun;13(35):e21458. [Abstract]
- Cell Rep Med. 2024 May 29:101592. [Abstract]
- J Immunother Cancer. 2021 Aug;9(8):e003093. [Abstract]
- Cell Mol Biol Lett. 2024 Aug 21;29(1):112. [Abstract]
- J Neuroinflammation. 2023 Nov 15;20(1):264. [Abstract]
- Cell Death Dis. 2025 Oct 7;16(1):715. [Abstract]
- Cell Death Dis. 2021 Oct 12;12(10):934. [Abstract]
- Cell Death Dis. 2020 Jan 13;11(1):25. [Abstract]
- Regen Biomater. 2025 Jun 16:12:rbaf056. [Abstract]
- Cell Death Discov. 2026 Apr 13;12(1):227. [Abstract]
- Cell Death Discov. 2022 Oct 28;8(1):431. [Abstract]
- Cell Rep. 2026 Jan 24;45(2):116910. [Abstract]
- Cell Rep. 2023 Jan 31;42(1):112027. [Abstract]
- Cell Rep. 2022 Nov 8;41(6):111591. [Abstract]
- Anal Chem. 2020 Mar 17;92(6):4419-4426. [Abstract]
- Mol Metab. 2024 Jun:84:101953. [Abstract]
- Ecotoxicol Environ Saf. 2026 May:316:120177. [Abstract]
- Hepatol Int. 2025 Nov 12. [Abstract]
- J Ethnopharmacol. 2026 Feb 28:357:120890. [Abstract]
- Respir Res. 2023 Mar 15;24(1):81. [Abstract]
- PLoS Pathog. 2025 May 6;21(5):e1013068. [Abstract]
- Pharmaceuticals (Basel). 2025 Jan 31;18(2):194. [Abstract]
- Cancers (Basel). 2024 Apr 25;16(9):1651. [Abstract]
- Mol Neurobiol. 2025 Apr 8. [Abstract]
- Lipids Health Dis. 2024 Feb 3;23(1):37. [Abstract]
- Biochim Biophys Acta Mol Basis Dis. 2022 Dec 1;1868(12):166550. [Abstract]
- Aquaculture. 2026 May 7;623:744131.
- J Virol. 2026 Apr 29:e0018226. [Abstract]
- Eur J Immunol. 2025 Dec;55(12):e70087. [Abstract]
- Eur J Immunol. 2025 Oct;55(10):e70068. [Abstract]
- J Cell Sci. 2022 Aug 1;135(15):jcs259090. [Abstract]
- Vet Res. 2026 May 9;57(1):72. [Abstract]
- Food Chem Toxicol. 2022 Nov:169:113450. [Abstract]
- Am J Physiol Gastrointest Liver Physiol. 2026 Feb 1;330(2):G170-G188. [Abstract]
- Mol Immunol. 2026 Apr:192:32-44. [Abstract]
- Am J Cancer Res. 2020 Feb 1;10(2):595-609. [Abstract]
- Vet Microbiol. 2023 Mar:278:109668. [Abstract]
- Anticancer Drugs. 2025 Jul 1;36(6):459-467. [Abstract]
- bioRxiv. 2026 Feb 1.
- SSRN. 2025 Dec 23.
- bioRxiv. 2025 February 08.
- SSRN. 2023 May 24.
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Cell Proliferation/Viability Assay
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Cell Proliferation/Viability Assay
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WB
Actividad biológica
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CPT-1A |
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Cell Line
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Type | Value | Description | References |
|---|---|---|---|---|
| Fibroblast | IC50 |
63.2 μM
Compound: (+/-)-C-75
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Antiproliferative activity against fibroblasts (unknown origin) after 72 hrs by MTT assay
Antiproliferative activity against fibroblasts (unknown origin) after 72 hrs by MTT assay
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[PMID: 28324785] |
| HCT-116 | IC50 |
46.4 μM
Compound: (+/-)-C-75
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Antiproliferative activity against human HCT116 cells after 72 hrs by MTT assay
Antiproliferative activity against human HCT116 cells after 72 hrs by MTT assay
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[PMID: 28324785] |
| HepG2 | IC50 |
7.4 ng/mL
Compound: C75
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Inhibition of fatty acid synthase type 1 in human HepG2 cells assessed as [1-14C]acetate incorporation into cellular fatty acid
Inhibition of fatty acid synthase type 1 in human HepG2 cells assessed as [1-14C]acetate incorporation into cellular fatty acid
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[PMID: 18805004] |
| Huh-7 | CC50 |
>100 μM
Compound: 68
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Cytotoxicity against human HuH7 cells assessed as cell viability after 48 hrs by CellTiter Glo assay
Cytotoxicity against human HuH7 cells assessed as cell viability after 48 hrs by CellTiter Glo assay
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[PMID: 26771861] |
| MCF7 | IC50 |
27.3 μM
Compound: (+/-)-C-75
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Antiproliferative activity against human MCF7 cells after 72 hrs by MTT assay
Antiproliferative activity against human MCF7 cells after 72 hrs by MTT assay
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[PMID: 28324785] |
| MDA-MB-231 | IC50 |
43.8 μM
Compound: (+/-)-C-75
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Antiproliferative activity against human MDA-MB-231 cells after 72 hrs by MTT assay
Antiproliferative activity against human MDA-MB-231 cells after 72 hrs by MTT assay
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[PMID: 28324785] |
| MIA PaCa-2 | IC50 |
21.8 μM
Compound: (+/-)-C-75
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Antiproliferative activity against human MIAPaCa2 cells after 72 hrs by MTT assay
Antiproliferative activity against human MIAPaCa2 cells after 72 hrs by MTT assay
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[PMID: 28324785] |
| OVCAR-3 | IC50 |
21.9 μM
Compound: (+/-)-C-75
|
Antiproliferative activity against human OVCAR3 cells after 72 hrs by MTT assay
Antiproliferative activity against human OVCAR3 cells after 72 hrs by MTT assay
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[PMID: 28324785] |
| PC-3 | IC50 |
26.8 μM
Compound: (+/-)-C-75
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Antiproliferative activity against human PC3 cells after 72 hrs by MTT assay
Antiproliferative activity against human PC3 cells after 72 hrs by MTT assay
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[PMID: 28324785] |
| SK-BR-3 | IC50 |
19.8 μM
Compound: (+/-)-C-75
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Antiproliferative activity against human SKBR3 cells after 72 hrs by MTT assay
Antiproliferative activity against human SKBR3 cells after 72 hrs by MTT assay
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[PMID: 28324785] |
C75 inhibits PC3 cell growht with an IC50 of 35 μM at 24 h. C75 (10-50 μM) also reduces the growth of LNCaP spheroids in a concentration-dependent manner with an IC50 of 50 μM[1]. (-)-C75 inhibits FAS activity and has a cytotoxic effect on tumor cell lines, without affecting food consumption. (+)-C75 inhibits CPT1 and its administration produces anorexia, suggesting that central inhibition of CPT1 is essential for the anorectic effect of C75. The differential activity of C75 enantiomers may lead to the development of potential new specific drugs for cancer and obesity[2].
MedChemExpress (MCE) has not independently confirmed the accuracy of these methods. They are for reference only.
MedChemExpress (MCE) has not independently confirmed the accuracy of these methods. They are for reference only.
Chemical Information
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No. CAS 218137-86-1
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Appearance Solid
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Peso molecular 254.32
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Fòrmula C14H22O4
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Color White to off-white
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SMILES
O=C(C(C1=C)C(CCCCCCCC)OC1=O)O
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Envío
Room temperature in continental US; may vary elsewhere.
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Almacenamiento
Powder -20°C 3 years 4°C 2 years In solvent -80°C 6 months -20°C 1 month
Publications (52)
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Journal Impact Factor
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Most Recent
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Signal Transduct Target Ther
Vertical RAS pathway inhibition in pancreatic cancer drives therapeutically exploitable mitochondrial alterations. [Abstract]2026 Jan 16;11(1):33. PMID: 41545339 -
Nature
2023 Jun;618(7964):374-382. PMID: 37225988 -
J Hepatol
2020 May;72(5):976-989. PMID: 31857195 -
Cell Metab
Metabolic-Pathway-Based Subtyping of Triple-Negative Breast Cancer Reveals Potential Therapeutic Targets. [Abstract]2021 Jan 5;33(1):51-64.e9. PMID: 33181091 -
Nat Genet
2025 Mar;57(3):680-693. PMID: 40069506 -
Gastroenterology
2024 Jan 24:S0016-5085(24)00064-7. PMID: 38272100 -
Bioact Mater
Exosomes derived from impaired liver aggravate alveolar bone loss via shuttle of Fasn in type 2 diabetes mellitus. [Abstract]2023 Nov 9:33:85-99. PMID: 38024229 -
Nat Commun
The UFL1-AKT positive feedback loop promotes breast cancer progression by enhancing lipid synthesis. [Abstract]2026 Jan 20;17(1):614. PMID: 41559041 -
Nat Commun
Lipid droplets sequester palmitic acid to disrupt endothelial ciliation and exacerbate atherosclerosis in male mice. [Abstract]2024 Sep 27;15(1):8273. PMID: 39333556 -
Autophagy
FASN mediates crosstalk between autophagy and lipid metabolism via the AMPK-MTOR pathway in early age-related macular degeneration. [Abstract]2026 May 18:1-20. PMID: 42152481 -
Adv Sci (Weinh)
Extracellular Vesicle-Transferred ATP-Citrate Lyase Induces Monocyte Differentiation Toward Tumor-Associated Macrophages and Fuels Hepatocellular Carcinoma Progression. [Abstract]2026 Jun;13(35):e21458. PMID: 41995119 -
Cell Rep Med
A CD36-dependent non-canonical lipid metabolism program promotes immune escape and resistance to hypomethylating agent therapy in AML. [Abstract]2024 May 29:101592. PMID: 38843841 -
J Immunother Cancer
PI3Kα inhibitor CYH33 triggers antitumor immunity in murine breast cancer by activating CD8+T cells and promoting fatty acid metabolism. [Abstract]2021 Aug;9(8):e003093. PMID: 34373258 -
Cell Mol Biol Lett
CLDN6 inhibits breast cancer growth and metastasis through SREBP1-mediated RAS palmitoylation. [Abstract]2024 Aug 21;29(1):112. PMID: 39169280 -
J Neuroinflammation
Glyceryl triacetate promotes blood-brain barrier recovery after ischemic stroke through lipogenesis-mediated IL-33 in mice. [Abstract]2023 Nov 15;20(1):264. PMID: 37968698 -
Cell Death Dis
Fatty acid synthase-mediated lipid droplet formation enhances macrophage killing of Staphylococcus aureus. [Abstract]2025 Oct 7;16(1):715. PMID: 41057302 -
Cell Death Dis
Metformin alleviates inflammation through suppressing FASN-dependent palmitoylation of Akt. [Abstract]2021 Oct 12;12(10):934. PMID: 34642298 -
Cell Death Dis
SIK2 enhances synthesis of fatty acid and cholesterol in ovarian cancer cells and tumor growth through PI3K/Akt signaling pathway. [Abstract]2020 Jan 13;11(1):25. PMID: 31932581 -
Regen Biomater
Matrix stiffness boosts PDAC chemoresistance via SCD1-dependent lipid metabolic reprogramming. [Abstract]2025 Jun 16:12:rbaf056. PMID: 40741620 -
Cell Death Discov
Oncoprotein CYB561, acting in IRE1-XBP1-SREBF1 and FAK-ERK pathway, promotes breast cancer lipogenesis and progression. [Abstract]2026 Apr 13;12(1):227. PMID: 41974658 -
Cell Death Discov
The interplay of transcriptional coregulator NUPR1 with SREBP1 promotes hepatocellular carcinoma progression via upregulation of lipogenesis. [Abstract]2022 Oct 28;8(1):431. PMID: 36307402
C75 purchased from MedChemExpress. Usage Cited in: Cell Death Discov. 2022 Oct 28;8(1):431. [Abstract]
Cell Counting Kit-8 (CCK8) assay. NUPR1 overexpression-induced proliferation of MHCC-97H and SK-Hep1 cells can be reversed by C75 (50 μM; 48 h).
C75 purchased from MedChemExpress. Usage Cited in: Cell Death Discov. 2022 Oct 28;8(1):431. [Abstract]
Transwell migration assay. C75 reduces the migration ability of NUPR1-overexpressing SK-Hep1 cells.
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Cell Rep
2026 Jan 24;45(2):116910. PMID: 41581148 -
Cell Rep
Oxidized mC modulates synthetic lethality to PARP inhibitors for the treatment of leukemia. [Abstract]2023 Jan 31;42(1):112027. PMID: 36848231 -
Cell Rep
The ApoA-I mimetic peptide 5A enhances remyelination by promoting clearance and degradation of myelin debris. [Abstract]2022 Nov 8;41(6):111591. PMID: 36351388 -
Anal Chem
Molecular Imaging and In Situ Quantitative Profiling of Fatty Acid Synthase with a Chemical Probe. [Abstract]2020 Mar 17;92(6):4419-4426. PMID: 32053360 -
Mol Metab
Long-chain acyl-CoA synthetase-4 regulates endometrial decidualization through a fatty acid β-oxidation pathway rather than lipid droplet accumulation. [Abstract]2024 Jun:84:101953. PMID: 38710444 -
Ecotoxicol Environ Saf
Integrating network toxicology and experimental validation to elucidate the molecular mechanism basis of chondrotoxicity of Benzo[a]pyrene in osteoarthritis. [Abstract]2026 May:316:120177. PMID: 42034589 -
Hepatol Int
Small extracellular vesicles derived from lipotoxic hepatocytes transport FASN to promote hepatic stellate cell activation. [Abstract]2025 Nov 12. PMID: 41225085 -
J Ethnopharmacol
Paris polyphylla Smith var. yunnanensis-derived saponins potentiate the antitumor activity of GPX4 inhibitors. [Abstract]2026 Feb 28:357:120890. PMID: 41232632 -
Respir Res
Inhibition of fatty acid synthase protects obese mice from acute lung injury via ameliorating lung endothelial dysfunction. [Abstract]2023 Mar 15;24(1):81. PMID: 36922854 -
PLoS Pathog
2025 May 6;21(5):e1013068. PMID: 40327680 -
Pharmaceuticals (Basel)
New UB006 Derivatives With Higher Solubility and Cytotoxic Activity in Ovarian Cancer Cells. [Abstract]2025 Jan 31;18(2):194. PMID: 40006009 -
Cancers (Basel)
Liver X Receptor Ligand GAC0001E5 Downregulates Antioxidant Capacity and ERBB2/HER2 Expression in HER2-Positive Breast Cancer Cells. [Abstract]2024 Apr 25;16(9):1651. PMID: 38730603 -
Mol Neurobiol
Ox-LDL Induces Neuron Apoptosis and Worsens Neurological Outcomes in aSAH via Fas/FADD Pathway. [Abstract]2025 Apr 8. PMID: 40199806 -
Lipids Health Dis
2024 Feb 3;23(1):37. PMID: 38308271 -
Biochim Biophys Acta Mol Basis Dis
Integrated application of transcriptome and metabolomics reveals potential therapeutic targets for the polarization of atherosclerotic macrophages. [Abstract]2022 Dec 1;1868(12):166550. PMID: 36150660 -
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J Virol
Pvf/Pvr signaling relieves white spot syndrome virus-induced lipid consumption to inhibit viral infection in shrimp. [Abstract]2026 Apr 29:e0018226. PMID: 42053404 -
Eur J Immunol
Hyperinflammation by Human Macrophages Induced by SARS-CoV-2 Anti-Spike IgG Is Dependent on Glucose and Fatty Acid Metabolism. [Abstract]2025 Dec;55(12):e70087. PMID: 41416928 -
Eur J Immunol
2025 Oct;55(10):e70068. PMID: 41054024 -
J Cell Sci
Redox-dependent AMPK inactivation disrupts metabolic adaptation to glucose starvation in xCT-overexpressing cancer cells. [Abstract]2022 Aug 1;135(15):jcs259090. PMID: 35775474 -
Vet Res
2026 May 9;57(1):72. PMID: 42106845 -
Food Chem Toxicol
Apoptosis induction in human prostate cancer cells related to the fatty acid metabolism by wogonin-mediated regulation of the AKT-SREBP1-FASN signaling network. [Abstract]2022 Nov:169:113450. PMID: 36208653 -
Am J Physiol Gastrointest Liver Physiol
Low-dose galactose rebalances HBP-mTORC1-SREBP-1c signaling to suppress hepatic lipogenesis and protect against early-stage alcohol-related liver disease. [Abstract]2026 Feb 1;330(2):G170-G188. PMID: 41528029 -
Mol Immunol
High fat diet promotes asthma by inhibiting the differentiation of regulatory T cells via E3 ubiquitin ligase ITCH. [Abstract]2026 Apr:192:32-44. PMID: 41791173 -
Am J Cancer Res
Angiopoietin-like 4 deficiency upregulates macrophage function through the dysregulation of cell-intrinsic fatty acid metabolism. [Abstract]2020 Feb 1;10(2):595-609. PMID: 32195030
C75 purchased from MedChemExpress. Usage Cited in: Am J Cancer Res. 2020 Feb 1;10(2):595-609. [Abstract]
Of the transcription of spliced X-box-binding protein 1 (sXBP1) and phosphorylated translational initiation factor 2 in eukaryotes (eIF2α) are higher in ANGTPL4-/- macrophages but are restored to normal levels following C75 treatment.
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Vet Microbiol
25-hydroxycholesterol inhibits classical swine fever virus entry into porcine alveolar macrophages by depleting plasma membrane cholesterol. [Abstract]2023 Mar:278:109668. PMID: 36709687 -
Anticancer Drugs
Thrombospondin-2 induces M2 macrophage polarization through fatty acid metabolism to drive lung adenocarcinoma proliferation. [Abstract]2025 Jul 1;36(6):459-467. PMID: 40053399 -
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Solvente y solubilidad
DMSO : 100 mg/mL (393.21 mM; Need ultrasonic; Hygroscopic DMSO has a significant impact on the solubility of product, please use newly opened DMSO)
H2O : < 0.1 mg/mL (insoluble)
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.
Concentration (start) × Volume (start) = Concentration (final) × Volume (final)
Select the appropriate dissolution method based on your experimental animal and administration route.
- For the following dissolution methods, please ensure to first prepare a clear stock solution using an In Vitro approach and then sequentially add co-solvents:
- To ensure reliable experimental results, the clarified stock solution can be appropriately stored based on storage conditions. As for the working solution for In Vivo experiments, it is recommended to prepare freshly and use it on the same day.
- The percentages shown for the solvents indicate their volumetric ratio in the final prepared solution. If precipitation or phase separation occurs during preparation, heat and/or sonication can be used to aid dissolution.
Add each solvent one by one: 10% DMSO 40% PEG300 5% Tween-80 45% Saline
Solubility: ≥ 2.5 mg/mL (9.83 mM); Clear solution
This protocol yields a clear solution of ≥ 2.5 mg/mL (saturation unknown).
Taking 1 mL working solution as an example, add 100 μL DMSO stock solution (25.0 mg/mL) to 400 μL PEG300, and mix evenly; then add 50 μL Tween-80 and mix evenly; then add 450 μL Saline to adjust the volume to 1 mL.
Preparation of Saline: Dissolve 0.9 g sodium chloride in ddH₂O and dilute to 100 mL to obtain a clear Saline solution.
Add each solvent one by one: 10% DMSO 90% (20% SBE-β-CD in Saline)
Solubility: ≥ 2.5 mg/mL (9.83 mM); Clear solution
This protocol yields a clear solution of ≥ 2.5 mg/mL (saturation unknown).
Taking 1 mL working solution as an example, add 100 μL DMSO stock solution (25.0 mg/mL) to 900 μL 20% SBE-β-CD in Saline, and mix evenly.
Preparation of 20% SBE-β-CD in Saline (4°C, storage for one week): 2 g SBE-β-CD powder is dissolved in 10 mL Saline, completely dissolve until clear.
Please enter the basic information of animal experiments:
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-
-
-
Recommended: Prepare an additional quantity of animals to account for potential losses during experiments.
Please enter your animal formula composition:
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%DMSO +
Recommended: Keep the proportion of DMSO in working solution below 2% if your animal is weak.
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%+
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+%Tween-80 + +
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%Saline +
The co-solvents required include: DMSO, . All of co-solvents are available by MedChemExpress (MCE). , Tween 80. All of co-solvents are available by MedChemExpress (MCE).
Working solution concentration: 0.22 mg/mL
Method for preparing stock solution: mg drug dissolved in μL DMSO. Stock solution concentration: mg/mL.
1. Take μL DMSO stock solution;
2. Add μL .
μL , mix evenly;
3. Then add μL Tween 80, mix evenly;
4. Then add μL
Please ensure that the stock solution in the first step is dissolved to a clear state, and add co-solvents in sequence. You can use ultrasonic heating (ultrasonic cleaner, recommended frequency 20-40 kHz), vortexing, etc. to assist dissolution.
Protocolo
Cells are seeded in 96-well plates and incubated for 2 days to allow exponential phase growth. Cells are then ished twice with PBS and treated with C75. After 24 or 48 h incubation, MTT is added to a final concentration of 0.5 mg/ml and cultures are incubated for 2 h. Cells are then solubilized with DMSO before measuring absorbance at 570 nm. Cell growth is also measured, using MTT assay, every 24 h up to 96 h[1].
MedChemExpress (MCE) has not independently confirmed the accuracy of these methods. They are for reference only.
Mice: C75 is administered either by i.p. (i.p.; 30 mg/kg of body weight) or i.c.v. (10 μg in 3 μL of RPMI medium 1640) injection. One, 11.5, and 24 h after i.p. injection, cumulative food intake is measured, mice are killed, brains are sectioned, and slices are subjected to immunohistochemical staining for c-Fos. All i.p. injections are given 1 h before the start of the dark cycle. For i.c.v. injection, mice are anesthetized with metofane and given 3 μl of RPMI medium 1640 (control) or C75 in RPMI medium 1640 into the lateral ventricle with a calibrated 10-μl Hamilton syringe[3].
MedChemExpress (MCE) has not independently confirmed the accuracy of these methods. They are for reference only.
Pureza y Documentación
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Ficha de datos (278 KB)
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SDS (393 KB)
- English - EN (393 KB)
- Français - FR (393 KB)
- Deutsch - DE (393 KB)
- Norwegian - NO (393 KB)
- Español - ES (393 KB)
- Swedish - SV (393 KB)
- Italian - IT (393 KB)
- Korean - KR (393 KB)
- Portuguese - PT (393 KB)
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Instrucciones de manejo (2659 KB)
Referencias
[1]. Rae C, et al. Inhibition of Fatty Acid Synthase Sensitizes Prostate Cancer Cells to Radiotherapy. [Content Brief]
[2]. Makowski K, et al. Differential pharmacologic properties of the two C75 enantiomers: (+)-C75 is a strong anorectic drug; (-)-C75 has antitumor activity. Chirality. 2013 May;25(5):281-7. [Content Brief]
[3]. Gao S, et al. Effect of the anorectic fatty acid synthase inhibitor C75 on neuronal activity in the hypothalamus and brainstem. Proc Natl Acad Sci U S A. 2003 May 13;100(10):5628-33. [Content Brief]
[4]. Thupari JN, et al. C75 increases peripheral energy utilization and fatty acid oxidation in diet-induced obesity. Proc Natl Acad Sci U S A. 2002 Jul 9;99(14):9498-502. [Content Brief]
[5]. Yan Xue, et al. Inhibition of Carnitine Palmitoyltransferase 1A Aggravates Fatty Liver Graft Injury via Promoting Mitochondrial Permeability Transition. Transplantation. 2021 Mar 1;105(3):550-560. [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 | 3.9321 mL | 19.6603 mL | 39.3205 mL | 98.3013 mL |
| 5 mM | 0.7864 mL | 3.9321 mL | 7.8641 mL | 19.6603 mL | |
| 10 mM | 0.3932 mL | 1.9660 mL | 3.9321 mL | 9.8301 mL | |
| 15 mM | 0.2621 mL | 1.3107 mL | 2.6214 mL | 6.5534 mL | |
| 20 mM | 0.1966 mL | 0.9830 mL | 1.9660 mL | 4.9151 mL | |
| 25 mM | 0.1573 mL | 0.7864 mL | 1.5728 mL | 3.9321 mL | |
| 30 mM | 0.1311 mL | 0.6553 mL | 1.3107 mL | 3.2767 mL | |
| 40 mM | 0.0983 mL | 0.4915 mL | 0.9830 mL | 2.4575 mL | |
| 50 mM | 0.0786 mL | 0.3932 mL | 0.7864 mL | 1.9660 mL | |
| 60 mM | 0.0655 mL | 0.3277 mL | 0.6553 mL | 1.6384 mL | |
| 80 mM | 0.0492 mL | 0.2458 mL | 0.4915 mL | 1.2288 mL | |
| 100 mM | 0.0393 mL | 0.1966 mL | 0.3932 mL | 0.9830 mL |