estimating protein concentration by dot blotting of multiple samples Search Results


93
Cusabio recombinant human nox2 protein
Fig. 7. Validation of compound-target interactions through molecular docking and protein-small molecule binding assays. (A) Chemical structure of EGCG and molecular docking models showing its interactions with <t>NOX2</t> and p47phox. (B) Chemical structure of quercetin and molecular docking models illustrating its interactions with NOX2 and p47phox. (C) An SPR sensorgram displaying the binding affinity of the NOX2-EGCG interaction. (D) An SPR sensorgram showing the binding affinity of the NOX2-quercetin interaction. (E) A BLI sensorgram illustrating the binding affinity of the p47phox-EGCG interaction. (F)A BLI sensorgram depicting the binding affinity of the p47phox-quercetin interaction. Abbreviations: BLI, Bio-layer interferometry; EGCG, epigallocatechin-3-gallate; NOX2, NADPH oxidase 2; p47phox (NCF1), 47 kDa neutrophil oxidase factor; Que, quercetin; SPR, surface plasmon resonance.
Recombinant Human Nox2 Protein, supplied by Cusabio, used in various techniques. Bioz Stars score: 93/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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CEM Corporation multi antigen peptide (map4
Fig. 7. Validation of compound-target interactions through molecular docking and protein-small molecule binding assays. (A) Chemical structure of EGCG and molecular docking models showing its interactions with <t>NOX2</t> and p47phox. (B) Chemical structure of quercetin and molecular docking models illustrating its interactions with NOX2 and p47phox. (C) An SPR sensorgram displaying the binding affinity of the NOX2-EGCG interaction. (D) An SPR sensorgram showing the binding affinity of the NOX2-quercetin interaction. (E) A BLI sensorgram illustrating the binding affinity of the p47phox-EGCG interaction. (F)A BLI sensorgram depicting the binding affinity of the p47phox-quercetin interaction. Abbreviations: BLI, Bio-layer interferometry; EGCG, epigallocatechin-3-gallate; NOX2, NADPH oxidase 2; p47phox (NCF1), 47 kDa neutrophil oxidase factor; Que, quercetin; SPR, surface plasmon resonance.
Multi Antigen Peptide (Map4, supplied by CEM Corporation, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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LifeTein Inc multiple antigenic peptides (maps)
Fig. 7. Validation of compound-target interactions through molecular docking and protein-small molecule binding assays. (A) Chemical structure of EGCG and molecular docking models showing its interactions with <t>NOX2</t> and p47phox. (B) Chemical structure of quercetin and molecular docking models illustrating its interactions with NOX2 and p47phox. (C) An SPR sensorgram displaying the binding affinity of the NOX2-EGCG interaction. (D) An SPR sensorgram showing the binding affinity of the NOX2-quercetin interaction. (E) A BLI sensorgram illustrating the binding affinity of the p47phox-EGCG interaction. (F)A BLI sensorgram depicting the binding affinity of the p47phox-quercetin interaction. Abbreviations: BLI, Bio-layer interferometry; EGCG, epigallocatechin-3-gallate; NOX2, NADPH oxidase 2; p47phox (NCF1), 47 kDa neutrophil oxidase factor; Que, quercetin; SPR, surface plasmon resonance.
Multiple Antigenic Peptides (Maps), supplied by LifeTein Inc, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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MacVector inc macvector software
Fig. 7. Validation of compound-target interactions through molecular docking and protein-small molecule binding assays. (A) Chemical structure of EGCG and molecular docking models showing its interactions with <t>NOX2</t> and p47phox. (B) Chemical structure of quercetin and molecular docking models illustrating its interactions with NOX2 and p47phox. (C) An SPR sensorgram displaying the binding affinity of the NOX2-EGCG interaction. (D) An SPR sensorgram showing the binding affinity of the NOX2-quercetin interaction. (E) A BLI sensorgram illustrating the binding affinity of the p47phox-EGCG interaction. (F)A BLI sensorgram depicting the binding affinity of the p47phox-quercetin interaction. Abbreviations: BLI, Bio-layer interferometry; EGCG, epigallocatechin-3-gallate; NOX2, NADPH oxidase 2; p47phox (NCF1), 47 kDa neutrophil oxidase factor; Que, quercetin; SPR, surface plasmon resonance.
Macvector Software, supplied by MacVector inc, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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FUJIFILM multi-gauge v3.1
Fig. 7. Validation of compound-target interactions through molecular docking and protein-small molecule binding assays. (A) Chemical structure of EGCG and molecular docking models showing its interactions with <t>NOX2</t> and p47phox. (B) Chemical structure of quercetin and molecular docking models illustrating its interactions with NOX2 and p47phox. (C) An SPR sensorgram displaying the binding affinity of the NOX2-EGCG interaction. (D) An SPR sensorgram showing the binding affinity of the NOX2-quercetin interaction. (E) A BLI sensorgram illustrating the binding affinity of the p47phox-EGCG interaction. (F)A BLI sensorgram depicting the binding affinity of the p47phox-quercetin interaction. Abbreviations: BLI, Bio-layer interferometry; EGCG, epigallocatechin-3-gallate; NOX2, NADPH oxidase 2; p47phox (NCF1), 47 kDa neutrophil oxidase factor; Que, quercetin; SPR, surface plasmon resonance.
Multi Gauge V3.1, supplied by FUJIFILM, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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HealthTech Connex Inc deeploc 2.1
Fig. 7. Validation of compound-target interactions through molecular docking and protein-small molecule binding assays. (A) Chemical structure of EGCG and molecular docking models showing its interactions with <t>NOX2</t> and p47phox. (B) Chemical structure of quercetin and molecular docking models illustrating its interactions with NOX2 and p47phox. (C) An SPR sensorgram displaying the binding affinity of the NOX2-EGCG interaction. (D) An SPR sensorgram showing the binding affinity of the NOX2-quercetin interaction. (E) A BLI sensorgram illustrating the binding affinity of the p47phox-EGCG interaction. (F)A BLI sensorgram depicting the binding affinity of the p47phox-quercetin interaction. Abbreviations: BLI, Bio-layer interferometry; EGCG, epigallocatechin-3-gallate; NOX2, NADPH oxidase 2; p47phox (NCF1), 47 kDa neutrophil oxidase factor; Que, quercetin; SPR, surface plasmon resonance.
Deeploc 2.1, supplied by HealthTech Connex Inc, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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New England Biolabs pmxs ires gfp
Fig. 7. Validation of compound-target interactions through molecular docking and protein-small molecule binding assays. (A) Chemical structure of EGCG and molecular docking models showing its interactions with <t>NOX2</t> and p47phox. (B) Chemical structure of quercetin and molecular docking models illustrating its interactions with NOX2 and p47phox. (C) An SPR sensorgram displaying the binding affinity of the NOX2-EGCG interaction. (D) An SPR sensorgram showing the binding affinity of the NOX2-quercetin interaction. (E) A BLI sensorgram illustrating the binding affinity of the p47phox-EGCG interaction. (F)A BLI sensorgram depicting the binding affinity of the p47phox-quercetin interaction. Abbreviations: BLI, Bio-layer interferometry; EGCG, epigallocatechin-3-gallate; NOX2, NADPH oxidase 2; p47phox (NCF1), 47 kDa neutrophil oxidase factor; Que, quercetin; SPR, surface plasmon resonance.
Pmxs Ires Gfp, supplied by New England Biolabs, used in various techniques. Bioz Stars score: 99/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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Molecular Devices LLC spectramax i3x multi mode plate reader
Fig. 7. Validation of compound-target interactions through molecular docking and protein-small molecule binding assays. (A) Chemical structure of EGCG and molecular docking models showing its interactions with <t>NOX2</t> and p47phox. (B) Chemical structure of quercetin and molecular docking models illustrating its interactions with NOX2 and p47phox. (C) An SPR sensorgram displaying the binding affinity of the NOX2-EGCG interaction. (D) An SPR sensorgram showing the binding affinity of the NOX2-quercetin interaction. (E) A BLI sensorgram illustrating the binding affinity of the p47phox-EGCG interaction. (F)A BLI sensorgram depicting the binding affinity of the p47phox-quercetin interaction. Abbreviations: BLI, Bio-layer interferometry; EGCG, epigallocatechin-3-gallate; NOX2, NADPH oxidase 2; p47phox (NCF1), 47 kDa neutrophil oxidase factor; Que, quercetin; SPR, surface plasmon resonance.
Spectramax I3x Multi Mode Plate Reader, supplied by Molecular Devices LLC, used in various techniques. Bioz Stars score: 99/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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Danaher Inc m2e multi mode microplate reader spectrophotometer
Fig. 7. Validation of compound-target interactions through molecular docking and protein-small molecule binding assays. (A) Chemical structure of EGCG and molecular docking models showing its interactions with <t>NOX2</t> and p47phox. (B) Chemical structure of quercetin and molecular docking models illustrating its interactions with NOX2 and p47phox. (C) An SPR sensorgram displaying the binding affinity of the NOX2-EGCG interaction. (D) An SPR sensorgram showing the binding affinity of the NOX2-quercetin interaction. (E) A BLI sensorgram illustrating the binding affinity of the p47phox-EGCG interaction. (F)A BLI sensorgram depicting the binding affinity of the p47phox-quercetin interaction. Abbreviations: BLI, Bio-layer interferometry; EGCG, epigallocatechin-3-gallate; NOX2, NADPH oxidase 2; p47phox (NCF1), 47 kDa neutrophil oxidase factor; Que, quercetin; SPR, surface plasmon resonance.
M2e Multi Mode Microplate Reader Spectrophotometer, supplied by Danaher Inc, used in various techniques. Bioz Stars score: 96/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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Miltenyi Biotec multi tissue dissociation kits miltenyi
Fig. 7. Validation of compound-target interactions through molecular docking and protein-small molecule binding assays. (A) Chemical structure of EGCG and molecular docking models showing its interactions with <t>NOX2</t> and p47phox. (B) Chemical structure of quercetin and molecular docking models illustrating its interactions with NOX2 and p47phox. (C) An SPR sensorgram displaying the binding affinity of the NOX2-EGCG interaction. (D) An SPR sensorgram showing the binding affinity of the NOX2-quercetin interaction. (E) A BLI sensorgram illustrating the binding affinity of the p47phox-EGCG interaction. (F)A BLI sensorgram depicting the binding affinity of the p47phox-quercetin interaction. Abbreviations: BLI, Bio-layer interferometry; EGCG, epigallocatechin-3-gallate; NOX2, NADPH oxidase 2; p47phox (NCF1), 47 kDa neutrophil oxidase factor; Que, quercetin; SPR, surface plasmon resonance.
Multi Tissue Dissociation Kits Miltenyi, supplied by Miltenyi Biotec, used in various techniques. Bioz Stars score: 96/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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Bio-Rad multiplex protein array kit
The cytokines and chemokines of V-SiO 2 -P/LB nanoparticles in vivo . The levels of the cytokines and chemokines (A) TNF-α, (B) TNF-γ, (C) IL-1b, (D) IL-2, (E) IL-3, (F) IL-4, (G) IL-10, (H) IL-12p70, and (I) IL-13 determined by a <t>multiplex</t> <t>protein</t> <t>array</t> <t>kit.</t>
Multiplex Protein Array Kit, supplied by Bio-Rad, used in various techniques. Bioz Stars score: 92/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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LINCO multi-species leptin ria kit
The cytokines and chemokines of V-SiO 2 -P/LB nanoparticles in vivo . The levels of the cytokines and chemokines (A) TNF-α, (B) TNF-γ, (C) IL-1b, (D) IL-2, (E) IL-3, (F) IL-4, (G) IL-10, (H) IL-12p70, and (I) IL-13 determined by a <t>multiplex</t> <t>protein</t> <t>array</t> <t>kit.</t>
Multi Species Leptin Ria Kit, supplied by LINCO, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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Image Search Results


Fig. 7. Validation of compound-target interactions through molecular docking and protein-small molecule binding assays. (A) Chemical structure of EGCG and molecular docking models showing its interactions with NOX2 and p47phox. (B) Chemical structure of quercetin and molecular docking models illustrating its interactions with NOX2 and p47phox. (C) An SPR sensorgram displaying the binding affinity of the NOX2-EGCG interaction. (D) An SPR sensorgram showing the binding affinity of the NOX2-quercetin interaction. (E) A BLI sensorgram illustrating the binding affinity of the p47phox-EGCG interaction. (F)A BLI sensorgram depicting the binding affinity of the p47phox-quercetin interaction. Abbreviations: BLI, Bio-layer interferometry; EGCG, epigallocatechin-3-gallate; NOX2, NADPH oxidase 2; p47phox (NCF1), 47 kDa neutrophil oxidase factor; Que, quercetin; SPR, surface plasmon resonance.

Journal: Phytomedicine

Article Title: Qingke Pingchuan granules alleviate airway inflammation in COPD exacerbation by inhibiting neutrophil extracellular traps in mice

doi: 10.1016/j.phymed.2024.156283

Figure Lengend Snippet: Fig. 7. Validation of compound-target interactions through molecular docking and protein-small molecule binding assays. (A) Chemical structure of EGCG and molecular docking models showing its interactions with NOX2 and p47phox. (B) Chemical structure of quercetin and molecular docking models illustrating its interactions with NOX2 and p47phox. (C) An SPR sensorgram displaying the binding affinity of the NOX2-EGCG interaction. (D) An SPR sensorgram showing the binding affinity of the NOX2-quercetin interaction. (E) A BLI sensorgram illustrating the binding affinity of the p47phox-EGCG interaction. (F)A BLI sensorgram depicting the binding affinity of the p47phox-quercetin interaction. Abbreviations: BLI, Bio-layer interferometry; EGCG, epigallocatechin-3-gallate; NOX2, NADPH oxidase 2; p47phox (NCF1), 47 kDa neutrophil oxidase factor; Que, quercetin; SPR, surface plasmon resonance.

Article Snippet: Recombinant human NOX2 protein was acquired from CUSABIO (Wuhan, China), while recombinant human P47phox protein was sourced from TargetMol Co., Ltd. (USA).

Techniques: Biomarker Discovery, Binding Assay, SPR Assay

Fig. 8. QKPC and its components, EGCG and quercetin, reduce NOX2-p47phox/ROS signaling in vivo and in vitro. (A) Protein levels of NOX2 and p47phox in human neutrophils were assessed by Western blotting analysis, with relative density quantification shown as the ratio of NOX2 or p47phox to GAPDH (n = 3). (B) Protein levels of NOX2 and p47phox in lung tissues of mice were determined by Western blotting analysis and presented as the ratio of NOX2 or p47phox to GAPDH (n = 3). (C) Cellular ROS levels were measured using the oxidant-sensing probe DCFH-DA, and fluorescence intensity was recorded for each group. EGCG, quercetin, and the positive drugs NAC (20 μM, a ROS scavenger), DPI (50 μM, a general NADPH oxidase inhibitor), and GSK (50 μM, a NOX2-specific inhibitor) effectively suppressed ROS levels elevated by the combined CSE and LPS exposure (n = 6–8). (D) MDA levels in lung tissues were measured with an MDA assay kit. Data are presented as mean ± SD, with statistical significance set at p < 0.05. *p < 0.05; **p < 0.01; ***p < 0.001; ****p < 0.0001. Abbreviations: CS, cigarette smoke; CSE, cigarette smoke extract; DPI, Diphenyleneiodonium chloride; EGCG, epigallocatechin-3-gallate; GSK, GSK2795039; LPS, lipopolysaccharide; MDA, malondialdehyde; NOX2, NADPH oxidase 2; p47phox (NCF1), 47 kDa neutrophil oxidase factor; QKPC, Qingke Pingchuan; Que, quercetin; ROS, reactive oxygen species.

Journal: Phytomedicine

Article Title: Qingke Pingchuan granules alleviate airway inflammation in COPD exacerbation by inhibiting neutrophil extracellular traps in mice

doi: 10.1016/j.phymed.2024.156283

Figure Lengend Snippet: Fig. 8. QKPC and its components, EGCG and quercetin, reduce NOX2-p47phox/ROS signaling in vivo and in vitro. (A) Protein levels of NOX2 and p47phox in human neutrophils were assessed by Western blotting analysis, with relative density quantification shown as the ratio of NOX2 or p47phox to GAPDH (n = 3). (B) Protein levels of NOX2 and p47phox in lung tissues of mice were determined by Western blotting analysis and presented as the ratio of NOX2 or p47phox to GAPDH (n = 3). (C) Cellular ROS levels were measured using the oxidant-sensing probe DCFH-DA, and fluorescence intensity was recorded for each group. EGCG, quercetin, and the positive drugs NAC (20 μM, a ROS scavenger), DPI (50 μM, a general NADPH oxidase inhibitor), and GSK (50 μM, a NOX2-specific inhibitor) effectively suppressed ROS levels elevated by the combined CSE and LPS exposure (n = 6–8). (D) MDA levels in lung tissues were measured with an MDA assay kit. Data are presented as mean ± SD, with statistical significance set at p < 0.05. *p < 0.05; **p < 0.01; ***p < 0.001; ****p < 0.0001. Abbreviations: CS, cigarette smoke; CSE, cigarette smoke extract; DPI, Diphenyleneiodonium chloride; EGCG, epigallocatechin-3-gallate; GSK, GSK2795039; LPS, lipopolysaccharide; MDA, malondialdehyde; NOX2, NADPH oxidase 2; p47phox (NCF1), 47 kDa neutrophil oxidase factor; QKPC, Qingke Pingchuan; Que, quercetin; ROS, reactive oxygen species.

Article Snippet: Recombinant human NOX2 protein was acquired from CUSABIO (Wuhan, China), while recombinant human P47phox protein was sourced from TargetMol Co., Ltd. (USA).

Techniques: In Vivo, In Vitro, Western Blot, Fluorescence, Multiple Displacement Amplification

Fig. 9. Proposed mechanisms of QKPC action against ECOPD. Abbreviations: COPD, chronic obstructive pulmonary disease; EGCG, epigallocatechin-3-gallate; LPS, lipopolysaccharide; MPO, myeloperoxidase; NE, neutrophil Elastase; NET, neutrophil extracellular trap; NOX2, NADPH oxidase 2; p47phox (NCF1), 47 kDa neutrophil oxidase factor; QKPC, Qingke Pingchuan; ROS, reactive oxygen species.

Journal: Phytomedicine

Article Title: Qingke Pingchuan granules alleviate airway inflammation in COPD exacerbation by inhibiting neutrophil extracellular traps in mice

doi: 10.1016/j.phymed.2024.156283

Figure Lengend Snippet: Fig. 9. Proposed mechanisms of QKPC action against ECOPD. Abbreviations: COPD, chronic obstructive pulmonary disease; EGCG, epigallocatechin-3-gallate; LPS, lipopolysaccharide; MPO, myeloperoxidase; NE, neutrophil Elastase; NET, neutrophil extracellular trap; NOX2, NADPH oxidase 2; p47phox (NCF1), 47 kDa neutrophil oxidase factor; QKPC, Qingke Pingchuan; ROS, reactive oxygen species.

Article Snippet: Recombinant human NOX2 protein was acquired from CUSABIO (Wuhan, China), while recombinant human P47phox protein was sourced from TargetMol Co., Ltd. (USA).

Techniques:

The cytokines and chemokines of V-SiO 2 -P/LB nanoparticles in vivo . The levels of the cytokines and chemokines (A) TNF-α, (B) TNF-γ, (C) IL-1b, (D) IL-2, (E) IL-3, (F) IL-4, (G) IL-10, (H) IL-12p70, and (I) IL-13 determined by a multiplex protein array kit.

Journal: Frontiers in Bioengineering and Biotechnology

Article Title: Novel bionic inspired nanosystem construction for precise delivery of mRNA

doi: 10.3389/fbioe.2023.1160509

Figure Lengend Snippet: The cytokines and chemokines of V-SiO 2 -P/LB nanoparticles in vivo . The levels of the cytokines and chemokines (A) TNF-α, (B) TNF-γ, (C) IL-1b, (D) IL-2, (E) IL-3, (F) IL-4, (G) IL-10, (H) IL-12p70, and (I) IL-13 determined by a multiplex protein array kit.

Article Snippet: Serum was separated from the blood samples, and the levels of cytokines and chemokines, including TNF-α, TNF-γ, IL-1b, IL-2, IL-3, IL-4, IL-10, IL-12p70, IL-13, and IL-17, were determined by a multiplex protein array kit according to the manufacturer’s protocols (Bio-Rad Laboratories, CA).

Techniques: In Vivo, Multiplex Assay, Protein Array