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Fisher Scientific singlet oxygen sensor green fluorescent probe
Production of singlet oxygen and intracellular ROS upon light treatment of [Ru(II)]. Results were obtained using <t>SOSG</t> ( a ) and DCFH-DA ( b ), respectively; S. aureus and P. aeruginosa were RN4220 and PA19660, respectively. [Ru(II)] = 25 µM in Tris-HCl for SOSG and 1X NaCl for DCFH-DA. Mean ± SD with n = 3 (representative results of N = 2). ***, p -value ≤ 0.001; **, p -value ≤ 0.01; *, p -value ≤ 0.05. See for more data.
Singlet Oxygen Sensor Green Fluorescent Probe, supplied by Fisher Scientific, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/result/singlet oxygen sensor green fluorescent probe/product/Fisher Scientific
Average 90 stars, based on 1 article reviews
singlet oxygen sensor green fluorescent probe - by Bioz Stars, 2026-03
90/100 stars

Images

1) Product Images from "Ruthenium(II) Polypyridyl Complexes for Antimicrobial Photodynamic Therapy: Prospects for Application in Cystic Fibrosis Lung Airways"

Article Title: Ruthenium(II) Polypyridyl Complexes for Antimicrobial Photodynamic Therapy: Prospects for Application in Cystic Fibrosis Lung Airways

Journal: Pharmaceutics

doi: 10.3390/pharmaceutics14081664

Production of singlet oxygen and intracellular ROS upon light treatment of [Ru(II)]. Results were obtained using SOSG ( a ) and DCFH-DA ( b ), respectively; S. aureus and P. aeruginosa were RN4220 and PA19660, respectively. [Ru(II)] = 25 µM in Tris-HCl for SOSG and 1X NaCl for DCFH-DA. Mean ± SD with n = 3 (representative results of N = 2). ***, p -value ≤ 0.001; **, p -value ≤ 0.01; *, p -value ≤ 0.05. See for more data.
Figure Legend Snippet: Production of singlet oxygen and intracellular ROS upon light treatment of [Ru(II)]. Results were obtained using SOSG ( a ) and DCFH-DA ( b ), respectively; S. aureus and P. aeruginosa were RN4220 and PA19660, respectively. [Ru(II)] = 25 µM in Tris-HCl for SOSG and 1X NaCl for DCFH-DA. Mean ± SD with n = 3 (representative results of N = 2). ***, p -value ≤ 0.001; **, p -value ≤ 0.01; *, p -value ≤ 0.05. See for more data.

Techniques Used:



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Characterization of SC@Lip. ( A ) TEM image of SC@Lip (scale bar: 600nm, 200 nm). ( B ) Digital photos of Sora@Lip, Ce6@Lip and SC@Lip. ( C ) UV-Vis-NIR absorption spectra of Lipo, Sorafenib, Ce6, Sora@Lip, Ce6@Lip and SC@Lip. (D) UV-Vis-NIR absorption spectra of Sorafenib, Ce6, and SC@Lip. ( E ) Hydrodynamic diameter of SC@Lip. ( F ) Hydrodynamic diameter of SC@Lip in 28 days. ( G ) Drug loading rate and entrapment efficiency of Sorafenib and Ce6 in SC@Lip. ( H ) DPBF absorption curve and (I) <t>SOSG</t> fluorescence spectrum of SC@Lip under US irradiation.
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Physicochemical properties of the TCCHA nanoparticles. ( A ) Fluorescence spectra of TPA solutions and ( B ) UV-vis spectra of MB solutions after incubation with pristine H 2 O 2 , TCCHA and H 2 O 2 /TCCHA mixed solutions. UV-vis spectra of MB solutions incubated with H 2 O 2 /TCCHA mixed solutions at ( C ) different time intervals and ( D ) different H 2 O 2 concentrations. ( E ) Changes in the dissolved oxygen concentration in pristine H 2 O 2 , TCCHA and H 2 O 2 /TCCHA mixed solutions. n = 3, *** p < 0.001. ( F ) Fluorescence intensities of the <t>SOSG</t> probe after incubation with Ce6 or TCCHA in the presence of H 2 O 2 under normoxic/hypoxic conditions before and after NIR laser irradiation. n = 3, ** p < 0.01. Cumulative release profiles of ( G ) Cu 2+ , ( H ) Ce6 and ( I ) AL3818 from TCCHA nanoparticles dispersed in different pH buffers (pH 7.4, pH 6.5, pH 5.0). n = 3, ** p < 0.01, *** p < 0.001
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Physicochemical properties of the TCCHA nanoparticles. ( A ) Fluorescence spectra of TPA solutions and ( B ) UV-vis spectra of MB solutions after incubation with pristine H 2 O 2 , TCCHA and H 2 O 2 /TCCHA mixed solutions. UV-vis spectra of MB solutions incubated with H 2 O 2 /TCCHA mixed solutions at ( C ) different time intervals and ( D ) different H 2 O 2 concentrations. ( E ) Changes in the dissolved oxygen concentration in pristine H 2 O 2 , TCCHA and H 2 O 2 /TCCHA mixed solutions. n = 3, *** p < 0.001. ( F ) Fluorescence intensities of the <t>SOSG</t> probe after incubation with Ce6 or TCCHA in the presence of H 2 O 2 under normoxic/hypoxic conditions before and after NIR laser irradiation. n = 3, ** p < 0.01. Cumulative release profiles of ( G ) Cu 2+ , ( H ) Ce6 and ( I ) AL3818 from TCCHA nanoparticles dispersed in different pH buffers (pH 7.4, pH 6.5, pH 5.0). n = 3, ** p < 0.01, *** p < 0.001
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Physicochemical properties of the TCCHA nanoparticles. ( A ) Fluorescence spectra of TPA solutions and ( B ) UV-vis spectra of MB solutions after incubation with pristine H 2 O 2 , TCCHA and H 2 O 2 /TCCHA mixed solutions. UV-vis spectra of MB solutions incubated with H 2 O 2 /TCCHA mixed solutions at ( C ) different time intervals and ( D ) different H 2 O 2 concentrations. ( E ) Changes in the dissolved oxygen concentration in pristine H 2 O 2 , TCCHA and H 2 O 2 /TCCHA mixed solutions. n = 3, *** p < 0.001. ( F ) Fluorescence intensities of the <t>SOSG</t> probe after incubation with Ce6 or TCCHA in the presence of H 2 O 2 under normoxic/hypoxic conditions before and after NIR laser irradiation. n = 3, ** p < 0.01. Cumulative release profiles of ( G ) Cu 2+ , ( H ) Ce6 and ( I ) AL3818 from TCCHA nanoparticles dispersed in different pH buffers (pH 7.4, pH 6.5, pH 5.0). n = 3, ** p < 0.01, *** p < 0.001
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Fisher Scientific singlet oxygen sensor green fluorescent probe
Production of singlet oxygen and intracellular ROS upon light treatment of [Ru(II)]. Results were obtained using <t>SOSG</t> ( a ) and DCFH-DA ( b ), respectively; S. aureus and P. aeruginosa were RN4220 and PA19660, respectively. [Ru(II)] = 25 µM in Tris-HCl for SOSG and 1X NaCl for DCFH-DA. Mean ± SD with n = 3 (representative results of N = 2). ***, p -value ≤ 0.001; **, p -value ≤ 0.01; *, p -value ≤ 0.05. See for more data.
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https://www.bioz.com/result/singlet oxygen sensor green fluorescent probe/product/Fisher Scientific
Average 90 stars, based on 1 article reviews
singlet oxygen sensor green fluorescent probe - by Bioz Stars, 2026-03
90/100 stars
  Buy from Supplier

Image Search Results


Characterization of SC@Lip. ( A ) TEM image of SC@Lip (scale bar: 600nm, 200 nm). ( B ) Digital photos of Sora@Lip, Ce6@Lip and SC@Lip. ( C ) UV-Vis-NIR absorption spectra of Lipo, Sorafenib, Ce6, Sora@Lip, Ce6@Lip and SC@Lip. (D) UV-Vis-NIR absorption spectra of Sorafenib, Ce6, and SC@Lip. ( E ) Hydrodynamic diameter of SC@Lip. ( F ) Hydrodynamic diameter of SC@Lip in 28 days. ( G ) Drug loading rate and entrapment efficiency of Sorafenib and Ce6 in SC@Lip. ( H ) DPBF absorption curve and (I) SOSG fluorescence spectrum of SC@Lip under US irradiation.

Journal: International Journal of Nanomedicine

Article Title: Bioactive Nanoliposomes for Enhanced Sonodynamic-Triggered Disulfidptosis-Like Cancer Cell Death via Lipid Peroxidation

doi: 10.2147/IJN.S464178

Figure Lengend Snippet: Characterization of SC@Lip. ( A ) TEM image of SC@Lip (scale bar: 600nm, 200 nm). ( B ) Digital photos of Sora@Lip, Ce6@Lip and SC@Lip. ( C ) UV-Vis-NIR absorption spectra of Lipo, Sorafenib, Ce6, Sora@Lip, Ce6@Lip and SC@Lip. (D) UV-Vis-NIR absorption spectra of Sorafenib, Ce6, and SC@Lip. ( E ) Hydrodynamic diameter of SC@Lip. ( F ) Hydrodynamic diameter of SC@Lip in 28 days. ( G ) Drug loading rate and entrapment efficiency of Sorafenib and Ce6 in SC@Lip. ( H ) DPBF absorption curve and (I) SOSG fluorescence spectrum of SC@Lip under US irradiation.

Article Snippet: Singlet oxygen sensor green fluorescent probe (SOSG) is from Invitrogen. (California, USA).

Techniques: Fluorescence, Irradiation

Physicochemical properties of the TCCHA nanoparticles. ( A ) Fluorescence spectra of TPA solutions and ( B ) UV-vis spectra of MB solutions after incubation with pristine H 2 O 2 , TCCHA and H 2 O 2 /TCCHA mixed solutions. UV-vis spectra of MB solutions incubated with H 2 O 2 /TCCHA mixed solutions at ( C ) different time intervals and ( D ) different H 2 O 2 concentrations. ( E ) Changes in the dissolved oxygen concentration in pristine H 2 O 2 , TCCHA and H 2 O 2 /TCCHA mixed solutions. n = 3, *** p < 0.001. ( F ) Fluorescence intensities of the SOSG probe after incubation with Ce6 or TCCHA in the presence of H 2 O 2 under normoxic/hypoxic conditions before and after NIR laser irradiation. n = 3, ** p < 0.01. Cumulative release profiles of ( G ) Cu 2+ , ( H ) Ce6 and ( I ) AL3818 from TCCHA nanoparticles dispersed in different pH buffers (pH 7.4, pH 6.5, pH 5.0). n = 3, ** p < 0.01, *** p < 0.001

Journal: Journal of Nanobiotechnology

Article Title: Self-assembled copper-based nanoparticles for enzyme catalysis-enhanced chemodynamic/photodynamic/antiangiogenic tritherapy against hepatocellular carcinoma

doi: 10.1186/s12951-024-02626-x

Figure Lengend Snippet: Physicochemical properties of the TCCHA nanoparticles. ( A ) Fluorescence spectra of TPA solutions and ( B ) UV-vis spectra of MB solutions after incubation with pristine H 2 O 2 , TCCHA and H 2 O 2 /TCCHA mixed solutions. UV-vis spectra of MB solutions incubated with H 2 O 2 /TCCHA mixed solutions at ( C ) different time intervals and ( D ) different H 2 O 2 concentrations. ( E ) Changes in the dissolved oxygen concentration in pristine H 2 O 2 , TCCHA and H 2 O 2 /TCCHA mixed solutions. n = 3, *** p < 0.001. ( F ) Fluorescence intensities of the SOSG probe after incubation with Ce6 or TCCHA in the presence of H 2 O 2 under normoxic/hypoxic conditions before and after NIR laser irradiation. n = 3, ** p < 0.01. Cumulative release profiles of ( G ) Cu 2+ , ( H ) Ce6 and ( I ) AL3818 from TCCHA nanoparticles dispersed in different pH buffers (pH 7.4, pH 6.5, pH 5.0). n = 3, ** p < 0.01, *** p < 0.001

Article Snippet: A singlet oxygen sensor green (SOSG) fluorescent probe was obtained from Beyotime Biotechnology Co., Ltd. (Shanghai, China).

Techniques: Fluorescence, Incubation, Concentration Assay, Irradiation

Production of singlet oxygen and intracellular ROS upon light treatment of [Ru(II)]. Results were obtained using SOSG ( a ) and DCFH-DA ( b ), respectively; S. aureus and P. aeruginosa were RN4220 and PA19660, respectively. [Ru(II)] = 25 µM in Tris-HCl for SOSG and 1X NaCl for DCFH-DA. Mean ± SD with n = 3 (representative results of N = 2). ***, p -value ≤ 0.001; **, p -value ≤ 0.01; *, p -value ≤ 0.05. See for more data.

Journal: Pharmaceutics

Article Title: Ruthenium(II) Polypyridyl Complexes for Antimicrobial Photodynamic Therapy: Prospects for Application in Cystic Fibrosis Lung Airways

doi: 10.3390/pharmaceutics14081664

Figure Lengend Snippet: Production of singlet oxygen and intracellular ROS upon light treatment of [Ru(II)]. Results were obtained using SOSG ( a ) and DCFH-DA ( b ), respectively; S. aureus and P. aeruginosa were RN4220 and PA19660, respectively. [Ru(II)] = 25 µM in Tris-HCl for SOSG and 1X NaCl for DCFH-DA. Mean ± SD with n = 3 (representative results of N = 2). ***, p -value ≤ 0.001; **, p -value ≤ 0.01; *, p -value ≤ 0.05. See for more data.

Article Snippet: The singlet oxygen sensor green (SOSG) fluorescent probe (Fisher Scientific, Eugene, OR, USA) was used to quantify 1 O 2 .

Techniques: