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stf  (MedChemExpress)


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    Structured Review

    MedChemExpress stf
    Stf, supplied by MedChemExpress, used in various techniques. Bioz Stars score: 94/100, based on 5 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/product/stf/STF-118804/pm42018568-65-9-13
    Average 94 stars, based on 5 article reviews
    stf - by Bioz Stars, 2026-09
    94/100 stars

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    Related Articles

    In Vitro:

    Article Title: Efficacy of NAMPT inhibition in T-cell acute lymphoblastic leukemia.
    Article Snippet: .. For in vitro studies, PHA-793887, AZD7762, FK866, STF-118804, gedatolisib, and doxorubicin were purchased from Selleckchem (Houston, TX, USA), and LY3023414, AZD2014, and AT7519 were purchased from MedChem Express (Monmouth Junction, NJ, USA). ..

    Article Title: Efficacy of NAMPT inhibition in T-cell acute lymphoblastic leukemia
    Article Snippet: .. For in vitro studies, PHA-793887, AZD7762, FK866, STF-118804, gedatolisib, and doxorubicin were purchased from Selleckchem (Houston, TX, USA), and LY3023414, AZD2014, and AT7519 were purchased from MedChem Express (Monmouth Junction, NJ, USA). ..

    other:

    Article Title: Nicotinamide metabolism is essential for Hepatitis C Virus replication and the production of infectious Lipo-Viro-Particles
    Article Snippet: 6-Aminonicotinamide (6-AN), Nicotinamide (NAM), Nicotinamide Riboside (NR), FK866, STF-118804 were obtained from MedChemExpress (CliniSciences; France).

    Article Title: Genomic and tumor biological aspects of the anticancer nicotinamide phosphoribosyltransferase inhibitor FK866 in resistant human colorectal cancer cells.
    Article Snippet: Other classes of NAMPT inhibitors, namely, CHS-828, GNE-617, and STF-118804, were obtained from Cayman Chemical (Ann Arbor, Michigan, USA), MedChem Express (Monmouth Junction, New Jersey, USA), and Toronto Research Chemicals (North York, Ontario, Canada), respectively.

    Article Title: Cross resistance to diverse anticancer nicotinamide phosphoribosyltransferase inhibitors induced by FK866 treatment
    Article Snippet: NAMPT inhibitors FK866, CHS-828, GNE-617, and STF-118804 were obtained from Focus Biomolecules, Cayman Chemical, MedChem Express, and Toronto Research Chemicals, respectively.



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    IL22 upregulates PD-L1 expression in gastric cancer cells through the UPR IRE1α–XBP1 axis. A, mIF images show the alterations of PD-L1 + tumor cells (purple), CD4 + (green), and CD8 + (red) T cells in orthotopic gastric cancer tumors from control and Abhd16a -knockdown mice following IL22 treatment. Scale bar, 50 μm. B, KEGG pathway enrichment analysis of RNA-seq data of gastric cancer tissues with or without IL22 treatment. C, RT-PCR was used to assess the mRNA expression of key downstream molecules of the UPR branches ( XBP1 , ATF4 , ATF6 ) in control and IL22RA1 -knockdown gastric cancer cells. D, Western blotting analysis of PD-L1 and <t>XBP1s</t> levels in control and IL22RA1 -knockdown MGC-803 cells treated with IL22 (100 μg/L). E, Western blotting detection of PD-L1 and XBP1s levels in XBP1- knockdown MGC-803 cells treated with IL22 and MGC-803 cells treated with IL22 or XBP1s inhibitor (STF083010, 30 μmol/L) in combination with IL22. F, The binding sequence of XBP1 on the CD274 promoter. G and H, ChIP ( G ) and luciferase reporter assay ( H ) showing the transcriptional regulation of CD274 by XBP1s under IL22 stimulation. I, Orthotopic gastric cancer mouse models ( n = 5 per group) were injected with anti-IL22 (200 μg per mouse), anti-CD90.2 antibody (150 μg per mouse), anti-CD90.2 antibody in combination with IL22 (500 ng per mouse), or anti-CD90.2 antibody in combination with XBP1s inhibitors (STF083010, 30 mg/kg) and IL22 for 2 weeks. IHC analysis was used to show IL22, XBP1s, and PD-L1 levels in gastric cancer tissues. Scale bar, 200 μm. J, Tumor volume of orthotopic gastric cancer models under treatments the same as in I . *, P < 0.05; **, P < 0.01; ***, P < 0.001; ns, nonsignificant.
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    Image Search Results


    Characterization of DI/Ce6 and DI/Ce6@STF. (A, B) Representative electron microscopy images of DI/Ce6 and DI/Ce6@STF, respectively (scale bar: 100 nm); (C) Zeta potential of DI/Ce6 and DI/Ce6@STF; (D, E) Hydrodynamic particle size distributions of DI/Ce6 and DI/Ce6@STF measured by dynamic light scattering; (F) Particle size stability of DI/Ce6 and DI/Ce6@STF in PBS over 7 days; (G, H) Release Curves of DIABZI and STF-31 in DI/Ce6@STF; (I) Comparison of HPLC chromatograms for DI/Ce6@STF nanoparticles and free drug.

    Journal: Materials Today Bio

    Article Title: A photodynamically activated nanoplatform relieves glucose-driven immunosuppression to potentiate STING immunotherapy in triple-negative breast cancer

    doi: 10.1016/j.mtbio.2026.103071

    Figure Lengend Snippet: Characterization of DI/Ce6 and DI/Ce6@STF. (A, B) Representative electron microscopy images of DI/Ce6 and DI/Ce6@STF, respectively (scale bar: 100 nm); (C) Zeta potential of DI/Ce6 and DI/Ce6@STF; (D, E) Hydrodynamic particle size distributions of DI/Ce6 and DI/Ce6@STF measured by dynamic light scattering; (F) Particle size stability of DI/Ce6 and DI/Ce6@STF in PBS over 7 days; (G, H) Release Curves of DIABZI and STF-31 in DI/Ce6@STF; (I) Comparison of HPLC chromatograms for DI/Ce6@STF nanoparticles and free drug.

    Article Snippet: STF-31 (HY-18728), DIABZI (HY-112921A) and Ce6(HY-13594) were all purchased from MedChemExpress (Shanghai, China).

    Techniques: Electron Microscopy, Zeta Potential Analyzer, Comparison

    IL22 upregulates PD-L1 expression in gastric cancer cells through the UPR IRE1α–XBP1 axis. A, mIF images show the alterations of PD-L1 + tumor cells (purple), CD4 + (green), and CD8 + (red) T cells in orthotopic gastric cancer tumors from control and Abhd16a -knockdown mice following IL22 treatment. Scale bar, 50 μm. B, KEGG pathway enrichment analysis of RNA-seq data of gastric cancer tissues with or without IL22 treatment. C, RT-PCR was used to assess the mRNA expression of key downstream molecules of the UPR branches ( XBP1 , ATF4 , ATF6 ) in control and IL22RA1 -knockdown gastric cancer cells. D, Western blotting analysis of PD-L1 and XBP1s levels in control and IL22RA1 -knockdown MGC-803 cells treated with IL22 (100 μg/L). E, Western blotting detection of PD-L1 and XBP1s levels in XBP1- knockdown MGC-803 cells treated with IL22 and MGC-803 cells treated with IL22 or XBP1s inhibitor (STF083010, 30 μmol/L) in combination with IL22. F, The binding sequence of XBP1 on the CD274 promoter. G and H, ChIP ( G ) and luciferase reporter assay ( H ) showing the transcriptional regulation of CD274 by XBP1s under IL22 stimulation. I, Orthotopic gastric cancer mouse models ( n = 5 per group) were injected with anti-IL22 (200 μg per mouse), anti-CD90.2 antibody (150 μg per mouse), anti-CD90.2 antibody in combination with IL22 (500 ng per mouse), or anti-CD90.2 antibody in combination with XBP1s inhibitors (STF083010, 30 mg/kg) and IL22 for 2 weeks. IHC analysis was used to show IL22, XBP1s, and PD-L1 levels in gastric cancer tissues. Scale bar, 200 μm. J, Tumor volume of orthotopic gastric cancer models under treatments the same as in I . *, P < 0.05; **, P < 0.01; ***, P < 0.001; ns, nonsignificant.

    Journal: Cancer Research

    Article Title: Nerves Stimulate Cross-talk Between Gastric Cancer and Group 3 Innate Lymphoid Cells to Enhance Immunosuppression

    doi: 10.1158/0008-5472.CAN-25-3092

    Figure Lengend Snippet: IL22 upregulates PD-L1 expression in gastric cancer cells through the UPR IRE1α–XBP1 axis. A, mIF images show the alterations of PD-L1 + tumor cells (purple), CD4 + (green), and CD8 + (red) T cells in orthotopic gastric cancer tumors from control and Abhd16a -knockdown mice following IL22 treatment. Scale bar, 50 μm. B, KEGG pathway enrichment analysis of RNA-seq data of gastric cancer tissues with or without IL22 treatment. C, RT-PCR was used to assess the mRNA expression of key downstream molecules of the UPR branches ( XBP1 , ATF4 , ATF6 ) in control and IL22RA1 -knockdown gastric cancer cells. D, Western blotting analysis of PD-L1 and XBP1s levels in control and IL22RA1 -knockdown MGC-803 cells treated with IL22 (100 μg/L). E, Western blotting detection of PD-L1 and XBP1s levels in XBP1- knockdown MGC-803 cells treated with IL22 and MGC-803 cells treated with IL22 or XBP1s inhibitor (STF083010, 30 μmol/L) in combination with IL22. F, The binding sequence of XBP1 on the CD274 promoter. G and H, ChIP ( G ) and luciferase reporter assay ( H ) showing the transcriptional regulation of CD274 by XBP1s under IL22 stimulation. I, Orthotopic gastric cancer mouse models ( n = 5 per group) were injected with anti-IL22 (200 μg per mouse), anti-CD90.2 antibody (150 μg per mouse), anti-CD90.2 antibody in combination with IL22 (500 ng per mouse), or anti-CD90.2 antibody in combination with XBP1s inhibitors (STF083010, 30 mg/kg) and IL22 for 2 weeks. IHC analysis was used to show IL22, XBP1s, and PD-L1 levels in gastric cancer tissues. Scale bar, 200 μm. J, Tumor volume of orthotopic gastric cancer models under treatments the same as in I . *, P < 0.05; **, P < 0.01; ***, P < 0.001; ns, nonsignificant.

    Article Snippet: For immunotherapy, anti-mouse PD-L1 antibody (100 μg/mouse, TargetMol, T78270 ), GPR34 inhibitor (GPR34 receptor antagonist 2, 20 mg/kg, MERYER, 907952), and XBP1s inhibitor (STF-083010, 30 mg/kg, MedChemExpress, HY-15845) were intraperitoneally injected once every 3 days, and ACh receptor inhibitor (darifenacin, 2.5 mg/kg, MedChemExpress, HY–A0033) was intraperitoneally injected every day after tumor formation.

    Techniques: Expressing, Control, Knockdown, RNA Sequencing, Reverse Transcription Polymerase Chain Reaction, Western Blot, Binding Assay, Sequencing, Luciferase, Reporter Assay, Injection

    Combination therapy enhances the anti–PD-L1 immunotherapeutic effect in gastric cancer. A and B, After tumor formation, the orthotopic gastric cancer mice ( n = 5 per group) were treated with anti–PD-L1 (100 μg per mouse), GPR34 inhibitor (20 mg/kg), or XBP1s inhibitor (30 mg/kg) every 3 days or ACh inhibitor (2.5 mg/kg) daily. Combinations of anti–PD-L1 with each inhibitor followed the every 3-day dosing schedule for a total duration of 2 weeks via i.p. injection. Living images were used to monitor tumor progression at 5-day intervals from the time of drug administration ( A ); IHC and mIF were performed to detect PD-L1 and XBP1s levels and proportions of CD4 + (green) and CD8 + (red) T cells in gastric cancer tissues at the end of treatments ( B ). Scale bars, 1.000e+5 –∼ 5.000e + 5 p/s/cm 2 /sr for living images; 200 μm for IHC; 50 μm for immunofluorescence. C and D, Representative images ( C ) and tumor volume ( D ) of subcutaneous tumors. The administration protocol for the mice was consistent with the description provided in A and B . **, P < 0.01; ***, P < 0.001.

    Journal: Cancer Research

    Article Title: Nerves Stimulate Cross-talk Between Gastric Cancer and Group 3 Innate Lymphoid Cells to Enhance Immunosuppression

    doi: 10.1158/0008-5472.CAN-25-3092

    Figure Lengend Snippet: Combination therapy enhances the anti–PD-L1 immunotherapeutic effect in gastric cancer. A and B, After tumor formation, the orthotopic gastric cancer mice ( n = 5 per group) were treated with anti–PD-L1 (100 μg per mouse), GPR34 inhibitor (20 mg/kg), or XBP1s inhibitor (30 mg/kg) every 3 days or ACh inhibitor (2.5 mg/kg) daily. Combinations of anti–PD-L1 with each inhibitor followed the every 3-day dosing schedule for a total duration of 2 weeks via i.p. injection. Living images were used to monitor tumor progression at 5-day intervals from the time of drug administration ( A ); IHC and mIF were performed to detect PD-L1 and XBP1s levels and proportions of CD4 + (green) and CD8 + (red) T cells in gastric cancer tissues at the end of treatments ( B ). Scale bars, 1.000e+5 –∼ 5.000e + 5 p/s/cm 2 /sr for living images; 200 μm for IHC; 50 μm for immunofluorescence. C and D, Representative images ( C ) and tumor volume ( D ) of subcutaneous tumors. The administration protocol for the mice was consistent with the description provided in A and B . **, P < 0.01; ***, P < 0.001.

    Article Snippet: For immunotherapy, anti-mouse PD-L1 antibody (100 μg/mouse, TargetMol, T78270 ), GPR34 inhibitor (GPR34 receptor antagonist 2, 20 mg/kg, MERYER, 907952), and XBP1s inhibitor (STF-083010, 30 mg/kg, MedChemExpress, HY-15845) were intraperitoneally injected once every 3 days, and ACh receptor inhibitor (darifenacin, 2.5 mg/kg, MedChemExpress, HY–A0033) was intraperitoneally injected every day after tumor formation.

    Techniques: Injection, Immunofluorescence