h2o2 Search Results


94
Elabscience Biotechnology hydrogen peroxide assay
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Elabscience Biotechnology h2o2 colorimetric assay kit
Fig. 4 | Pathogenic factors scavenging properties of PEI-L/D-TA@MON. a Molecular model and electrostatic potential of the pathogenic factors and PEI-L/ D-TA@MON. b MD simulation on the adsorbing of pathogenic factors onto PEI-L/D- TA@MON. cThe EINT and electrostatic force (EEF) of the adsorbing of pathogenic factors onto PEI-L/D-TA@MON. d Equations on the scavenging of various patho- genic factors. Time-dependent (e). cfDNA and (f) LPS scavenging capacities of nanomedicines. Data are presented as the mean ± SD (n = 3 independent experi- ments). ***P < 0.001 by two-tailed Student’s t test. g FTIR and h. XPS spectra of PEI- L-TA@MON before and after incubation with <t>H2O2.</t> Concentration-dependent
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Athens Research catalase
Fig. 4 | Pathogenic factors scavenging properties of PEI-L/D-TA@MON. a Molecular model and electrostatic potential of the pathogenic factors and PEI-L/ D-TA@MON. b MD simulation on the adsorbing of pathogenic factors onto PEI-L/D- TA@MON. cThe EINT and electrostatic force (EEF) of the adsorbing of pathogenic factors onto PEI-L/D-TA@MON. d Equations on the scavenging of various patho- genic factors. Time-dependent (e). cfDNA and (f) LPS scavenging capacities of nanomedicines. Data are presented as the mean ± SD (n = 3 independent experi- ments). ***P < 0.001 by two-tailed Student’s t test. g FTIR and h. XPS spectra of PEI- L-TA@MON before and after incubation with <t>H2O2.</t> Concentration-dependent
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Thermo Fisher h2o2
Fig. 4 | Pathogenic factors scavenging properties of PEI-L/D-TA@MON. a Molecular model and electrostatic potential of the pathogenic factors and PEI-L/ D-TA@MON. b MD simulation on the adsorbing of pathogenic factors onto PEI-L/D- TA@MON. cThe EINT and electrostatic force (EEF) of the adsorbing of pathogenic factors onto PEI-L/D-TA@MON. d Equations on the scavenging of various patho- genic factors. Time-dependent (e). cfDNA and (f) LPS scavenging capacities of nanomedicines. Data are presented as the mean ± SD (n = 3 independent experi- ments). ***P < 0.001 by two-tailed Student’s t test. g FTIR and h. XPS spectra of PEI- L-TA@MON before and after incubation with <t>H2O2.</t> Concentration-dependent
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Rockland Immunochemicals hydrogen peroxide
Fig. 4 | Pathogenic factors scavenging properties of PEI-L/D-TA@MON. a Molecular model and electrostatic potential of the pathogenic factors and PEI-L/ D-TA@MON. b MD simulation on the adsorbing of pathogenic factors onto PEI-L/D- TA@MON. cThe EINT and electrostatic force (EEF) of the adsorbing of pathogenic factors onto PEI-L/D-TA@MON. d Equations on the scavenging of various patho- genic factors. Time-dependent (e). cfDNA and (f) LPS scavenging capacities of nanomedicines. Data are presented as the mean ± SD (n = 3 independent experi- ments). ***P < 0.001 by two-tailed Student’s t test. g FTIR and h. XPS spectra of PEI- L-TA@MON before and after incubation with <t>H2O2.</t> Concentration-dependent
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MedChemExpress nucpe1
Fig. 4 | Pathogenic factors scavenging properties of PEI-L/D-TA@MON. a Molecular model and electrostatic potential of the pathogenic factors and PEI-L/ D-TA@MON. b MD simulation on the adsorbing of pathogenic factors onto PEI-L/D- TA@MON. cThe EINT and electrostatic force (EEF) of the adsorbing of pathogenic factors onto PEI-L/D-TA@MON. d Equations on the scavenging of various patho- genic factors. Time-dependent (e). cfDNA and (f) LPS scavenging capacities of nanomedicines. Data are presented as the mean ± SD (n = 3 independent experi- ments). ***P < 0.001 by two-tailed Student’s t test. g FTIR and h. XPS spectra of PEI- L-TA@MON before and after incubation with <t>H2O2.</t> Concentration-dependent
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GORYO Chemical hydrop extm
Fig. 4 | Pathogenic factors scavenging properties of PEI-L/D-TA@MON. a Molecular model and electrostatic potential of the pathogenic factors and PEI-L/ D-TA@MON. b MD simulation on the adsorbing of pathogenic factors onto PEI-L/D- TA@MON. cThe EINT and electrostatic force (EEF) of the adsorbing of pathogenic factors onto PEI-L/D-TA@MON. d Equations on the scavenging of various patho- genic factors. Time-dependent (e). cfDNA and (f) LPS scavenging capacities of nanomedicines. Data are presented as the mean ± SD (n = 3 independent experi- ments). ***P < 0.001 by two-tailed Student’s t test. g FTIR and h. XPS spectra of PEI- L-TA@MON before and after incubation with <t>H2O2.</t> Concentration-dependent
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Aladdin Scientific Corporation o h 2 o
Fig. 4 | Pathogenic factors scavenging properties of PEI-L/D-TA@MON. a Molecular model and electrostatic potential of the pathogenic factors and PEI-L/ D-TA@MON. b MD simulation on the adsorbing of pathogenic factors onto PEI-L/D- TA@MON. cThe EINT and electrostatic force (EEF) of the adsorbing of pathogenic factors onto PEI-L/D-TA@MON. d Equations on the scavenging of various patho- genic factors. Time-dependent (e). cfDNA and (f) LPS scavenging capacities of nanomedicines. Data are presented as the mean ± SD (n = 3 independent experi- ments). ***P < 0.001 by two-tailed Student’s t test. g FTIR and h. XPS spectra of PEI- L-TA@MON before and after incubation with <t>H2O2.</t> Concentration-dependent
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Merck & Co dan h2o2
Fig. 4 | Pathogenic factors scavenging properties of PEI-L/D-TA@MON. a Molecular model and electrostatic potential of the pathogenic factors and PEI-L/ D-TA@MON. b MD simulation on the adsorbing of pathogenic factors onto PEI-L/D- TA@MON. cThe EINT and electrostatic force (EEF) of the adsorbing of pathogenic factors onto PEI-L/D-TA@MON. d Equations on the scavenging of various patho- genic factors. Time-dependent (e). cfDNA and (f) LPS scavenging capacities of nanomedicines. Data are presented as the mean ± SD (n = 3 independent experi- ments). ***P < 0.001 by two-tailed Student’s t test. g FTIR and h. XPS spectra of PEI- L-TA@MON before and after incubation with <t>H2O2.</t> Concentration-dependent
Dan H2o2, supplied by Merck & Co, used in various techniques. Bioz Stars score: 86/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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Macklin Inc h2o2
Fig. 4 | Pathogenic factors scavenging properties of PEI-L/D-TA@MON. a Molecular model and electrostatic potential of the pathogenic factors and PEI-L/ D-TA@MON. b MD simulation on the adsorbing of pathogenic factors onto PEI-L/D- TA@MON. cThe EINT and electrostatic force (EEF) of the adsorbing of pathogenic factors onto PEI-L/D-TA@MON. d Equations on the scavenging of various patho- genic factors. Time-dependent (e). cfDNA and (f) LPS scavenging capacities of nanomedicines. Data are presented as the mean ± SD (n = 3 independent experi- ments). ***P < 0.001 by two-tailed Student’s t test. g FTIR and h. XPS spectra of PEI- L-TA@MON before and after incubation with <t>H2O2.</t> Concentration-dependent
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Valiant Co Ltd catalase domain
Fig. 4 | Pathogenic factors scavenging properties of PEI-L/D-TA@MON. a Molecular model and electrostatic potential of the pathogenic factors and PEI-L/ D-TA@MON. b MD simulation on the adsorbing of pathogenic factors onto PEI-L/D- TA@MON. cThe EINT and electrostatic force (EEF) of the adsorbing of pathogenic factors onto PEI-L/D-TA@MON. d Equations on the scavenging of various patho- genic factors. Time-dependent (e). cfDNA and (f) LPS scavenging capacities of nanomedicines. Data are presented as the mean ± SD (n = 3 independent experi- ments). ***P < 0.001 by two-tailed Student’s t test. g FTIR and h. XPS spectra of PEI- L-TA@MON before and after incubation with <t>H2O2.</t> Concentration-dependent
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Chem Impex International chemical compound
Fig. 4 | Pathogenic factors scavenging properties of PEI-L/D-TA@MON. a Molecular model and electrostatic potential of the pathogenic factors and PEI-L/ D-TA@MON. b MD simulation on the adsorbing of pathogenic factors onto PEI-L/D- TA@MON. cThe EINT and electrostatic force (EEF) of the adsorbing of pathogenic factors onto PEI-L/D-TA@MON. d Equations on the scavenging of various patho- genic factors. Time-dependent (e). cfDNA and (f) LPS scavenging capacities of nanomedicines. Data are presented as the mean ± SD (n = 3 independent experi- ments). ***P < 0.001 by two-tailed Student’s t test. g FTIR and h. XPS spectra of PEI- L-TA@MON before and after incubation with <t>H2O2.</t> Concentration-dependent
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Image Search Results


Fig. 4 | Pathogenic factors scavenging properties of PEI-L/D-TA@MON. a Molecular model and electrostatic potential of the pathogenic factors and PEI-L/ D-TA@MON. b MD simulation on the adsorbing of pathogenic factors onto PEI-L/D- TA@MON. cThe EINT and electrostatic force (EEF) of the adsorbing of pathogenic factors onto PEI-L/D-TA@MON. d Equations on the scavenging of various patho- genic factors. Time-dependent (e). cfDNA and (f) LPS scavenging capacities of nanomedicines. Data are presented as the mean ± SD (n = 3 independent experi- ments). ***P < 0.001 by two-tailed Student’s t test. g FTIR and h. XPS spectra of PEI- L-TA@MON before and after incubation with H2O2. Concentration-dependent

Journal: Nature communications

Article Title: Biosilicification-mimicking chiral nanostructures for targeted treatment of inflammatory bowel disease.

doi: 10.1038/s41467-025-57890-8

Figure Lengend Snippet: Fig. 4 | Pathogenic factors scavenging properties of PEI-L/D-TA@MON. a Molecular model and electrostatic potential of the pathogenic factors and PEI-L/ D-TA@MON. b MD simulation on the adsorbing of pathogenic factors onto PEI-L/D- TA@MON. cThe EINT and electrostatic force (EEF) of the adsorbing of pathogenic factors onto PEI-L/D-TA@MON. d Equations on the scavenging of various patho- genic factors. Time-dependent (e). cfDNA and (f) LPS scavenging capacities of nanomedicines. Data are presented as the mean ± SD (n = 3 independent experi- ments). ***P < 0.001 by two-tailed Student’s t test. g FTIR and h. XPS spectra of PEI- L-TA@MON before and after incubation with H2O2. Concentration-dependent

Article Snippet: The H2O2 elimination capacity of nanomedicines was assayed by H2O2 Colorimetric Assay Kit (Elabscience, Wuhan).

Techniques: Two Tailed Test, Incubation, Concentration Assay