Hydrogen Peroxide (H₂O₂) Content Assay Kit (TTS, Colorimetric Method) - BioReagent

Cat. No.: H1505496
Disponible para pedir
GRADE & PURITY BioReagent ? BioReagent grade — tested suitable for life-science and molecular-biology use. Use for cell culture, assays, and biochemical work needing biological compatibility.
Storage
Store at 2-8°C,Protected from light,Room temperature
Shipped In
Wet ice
Application
Cell Metabolism
 ·  off list, applied to all prices below.
Size
Estado
Price
Qty
50T
H1505496-50T
1-2 wks(?)
Item is derived from our semi-finished stock and is processed in 1-2 weeks.
69,90US$
Enter a quantity for the sizes you want to add.
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Why this grade

BioReagent BioReagent for sensitive chromatographic and analytical workflows requiring minimal baseline interference.

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Storage & shipping

Store at 2-8°C,Protected from light,Room temperature Ships Wet ice Check lot-specific COA for exact specifications.

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Quality documents

SDS, COA, datasheet, and spec sheet available for download. Lot-specific COA accessible via lot number lookup.

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Literature proof

Cited in 0 peer-reviewed publications across chromatography, organic synthesis, and cross-coupling reactions.

Descripción general

Hydrogen peroxide (H₂O₂) is the most common reactive oxygen species (ROS) molecule in living organisms. It is a byproduct of active oxygen metabolism, primarily generated by enzymes like SOD and XOD, and degraded by enzymes such as CAT and POD. H₂O₂ is not only a significant ROS but also a hub for the interconversion of various reactive oxygen species. On one hand, H₂O₂ can directly or indirectly oxidize biological macromolecules like nucleic acids and proteins within cells, damaging cell membranes and thereby accelerating cellular aging and disintegration. On the other hand, H₂O₂ is a key regulatory factor in many oxidative stress responses. It can activate factors like NF-κB, and these H₂O₂-related signaling pathways are associated with numerous diseases such as asthma, inflammatory arthritis, arteriosclerosis, and neurodegenerative disorders. H₂O₂ is also closely linked to processes like cell apoptosis and proliferation.

Assay Principle

H₂O₂ reacts with titanium sulfate to form a yellow peroxide-titanium complex precipitate. This precipitate dissolves in strong acid, and the intensity of the yellow color is linearly proportional to the H₂O₂ concentration within a certain range. The absorbance at 412 nm is measured using a colorimetric method. This kit is primarily used to detect H₂O₂ content in samples such as plant tissues, serum, and plasma. It is intended for research use only and not suitable for clinical diagnosis or other purposes.


H1505496
Component
50TStorage
H1505496A
H₂O₂ Stock Solution
1 mL2-8℃. Store in the dark.
H1505496B
Alkaline Matrix Solution
10.5 mLRT.
H1505496C
Titanium Sulfate
0.3 gRT.
H1505496D
Acidic Matrix Solution
100 mLRT.

Required Materials Not Provided

1. Distilled water, Acetone

2. Homogenizer or mortar and pestle, Refrigerated centrifuge, Spectrophotometer, Cuvettes

Experimental Procedure

1. Sample Preparation

1.1 Plant Samples

  • Take fresh plant tissue (under normal or stress conditions), wash clean, dry, and mince.

  • Quickly weigh 5 g, add 5 mL of pre-chilled acetone.

  • Homogenize or grind rapidly in an ice bath.

  • Centrifuge at 12,000 g for 20 min at 4°C.

  • Collect the supernatant, measure the total volume of the extract, and store at 4°C for later use.

1.2 Plasma, Serum, and Urine Samples

  • Plasma and serum, prepared by conventional methods, can be directly used for assay with this kit. Store at 4°C for H₂O₂ determination.

1.3 High-Activity Samples

  • If the sample contains a high concentration of H₂O₂, it can be appropriately diluted with acetone.

2. Preparation of 10 mM H₂O₂ Standard Solution

  • Since H₂O₂ is not very stable, its actual concentration needs to be determined before use.

  • The H₂O₂ Stock Solution provided has an H₂O₂ concentration of approximately 1 M. Dilute it 100-fold with distilled water to achieve ~10 mM.

  • Zero the spectrophotometer with distilled water and measure the absorbance at 240 nm (A₂₄₀).

  • Calculate the actual H₂O₂ concentration using the formula: H₂O₂ concentration (mM) = A₂₄₀ × 22.94.

  • Then, dilute the H₂O₂ Stock Solution with acetone to prepare a 10 mM H₂O₂-acetone standard solution.

  • Prepare serial dilutions according to the table below (common range 0.3-3 mM, i.e., Tubes 1-5):

Tube10 mM H₂O₂-Acetone Standard (mL)
Pre-chilled Acetone (mL)
Final H₂O₂ Concentration (mM)
10.030.970.3
20.050.950.5
30.080.920.8
40.10.91
50.30.73
60.50.55
70.80.28

3. Preparation of Titanium Sulfate Solution

  • Add 0.3 g of Titanium Sulfate to 6 mL of distilled water to make a 5% Titanium Sulfate solution. Store at 4°C.

4. H₂O₂ Assay Setup

  • Set up Blank, Standard, and Test tubes as per the table below.

  • Add reagents in the specified order, avoiding bubbles.

  • If the sample H₂O₂ concentration is too high, reduce the sample volume or dilute appropriately before assay. Duplicate tubes are recommended.

Reagent (mL)
Blank Tube
Standard Tube
Test Tube

Pre-chilled Acetone
1.0

Serial H₂O₂-Acetone Standards

1.0

Sample Extract


1.0
Alkaline Matrix Solution
0.20.2
0.2
Titanium Sulfate Solution
0.10.1
0.1

Note: When adding Alkaline Matrix Solution and Titanium Sulfate Solution, add them directly into the liquid, avoiding the tube walls.

5. H₂O₂ Measurement

  • Mix well and incubate at room temperature for 5 minutes.
  • Centrifuge at 12,000 g for 15 minutes.
  • Discard the supernatant, retaining the precipitate.
  • If necessary, wash the precipitate repeatedly with pre-chilled acetone.
  • Add 2 mL of Acidic Matrix Solution to the precipitate in each tube.
  • Shake to dissolve the precipitate completely.
  • Using a 1 cm light path cuvette, zero the spectrophotometer with the blank solution.
  • Measure the absorbance of standard and test tubes at 412 nm.
  • Note: A microplate reader can also be used if a spectrophotometer is unavailable.

6. Calculation of Results

6.1 Standard Curve Plotting

  • Plot the standard curve with H₂O₂-acetone standard concentrations (0.3, 0.5, 0.8, 1, 3, 5, 8 mM) on the X-axis and corresponding absorbances on the Y-axis. Determine the regression equation.

6.2 Sample H₂O₂ Concentration Calculation

  • Substitute the test sample absorbance into the regression equation to find its H₂O₂ concentration (C₀).

  • For tissue samples: H₂O₂ (mmol/g weight) = (C₀ × VT × N) / m

  • For liquid samples: H₂O₂ (mmol/L) = C₀ × N

Parameter Definitions:

C₀: H₂O₂ concentration (mM) obtained from the standard curve based on the sample's absorbance.

VT: Total volume of the test sample extract (L).

m: Sample mass (g).

N: Sample dilution factor.

Results Presentation

Standard Curve Example: When measured according to the instructions at room temperature, the absorbance values for the serial standards and a typical standard curve are as follows (for reference only). A standard curve was plotted using H₂O₂ standards (0.1, 0.3, 0.5, 0.8, 1, 3, 5, 8, 10 mM). Note: Standard concentrations that are too high or too low may affect the accuracy of the standard curve.

H₂O₂ Standard (mM)
0.10.30.50.8135810
Absorbance0.0090.0650.1410.2160.2640.8121.2622.0102.355

Note: H₂O₂ concentrations below 0.3 mM are basically colorless, 0.3~1 mM appear yellow, and 3~10 mM appear orange-yellow. Refer to the image below for expected results. 

Precautions

1. This kit can also be used with a microplate reader, allowing for a corresponding increase in the number of samples processed.

2. When adding Alkaline Matrix Solution and Titanium Sulfate Solution, add them directly into the solution, avoiding the tube walls.

3. Dissolving the yellow peroxide-titanium complex precipitate in the Acidic Matrix Solution takes time. Ensure complete dissolution to prevent affecting the results.

4. The H₂O₂ Stock Solution and Alkaline Matrix Solution should be tightly sealed to prevent evaporation, which could reduce efficiency.

5. The H₂O₂ Stock Solution and Acidic Matrix Solution are corrosive. Handle with care.

6. The Titanium Sulfate solution should be used promptly after preparation. If not used immediately, it can be stored short-term at 4°C. Alternatively, prepare a 5% solution by weighing the appropriate amount of powder as needed.

7. For your safety and health, wear lab coats and disposable gloves during operation.

8. Use reagents promptly after opening to avoid affecting subsequent experimental results.

Specifications

Especificaciones y pureza
BioReagent
Estabilidad y almacenamiento
Each component has a shelf life of 1 year under corresponding storage conditions. H1505496A: Store at 2-8℃ long term (12 months). Store in the dark. H1505496B, H1505496C, H1505496D: Store at room temperature long term (12 months).
Condiciones de almacenamiento de almacenamiento
Store at 2-8°C, Protected from light, Room temperature
Enviado en
Wet ice
Este producto requiere envío en cadena de frío. Los servicios terrestres y otros servicios económicos no están disponibles.
Grado
BioReagent

Documentation

📋 Safety Data Sheet (SDS)

Comprehensive hazard, handling, storage, and regulatory compliance document.

Download SDS →

✅ Certificate of Analysis (COA)

Lot-specific quality data. Enter your lot number to retrieve the exact COA.

Look up COA →

📊 Datasheet

Quick-reference summary of product specifications and applications.

View datasheet →

🔬 Specification Sheet

Full quality attributes and acceptance criteria for this grade.

View spec sheet →

Advanced Data

Certificados (CoA, COO, BSE/TSE y tabla de análisis)
C of A & Other Certificates(BSE/TSE, COO):
Analytical Chart:

Find and download the COA for your product by matching the lot number on the packaging.

18 results found

Lot NumberCertificate TypeFechaArticulo
F2613045Certificate of AnalysisJun 13, 2026 H1505496
F2611339Certificate of AnalysisJun 11, 2026 H1505496
F2611338Certificate of AnalysisJun 11, 2026 H1505496
F2606003Certificate of AnalysisJun 06, 2026 H1505496
F2603452Certificate of AnalysisJun 03, 2026 H1505496
F2602409Certificate of AnalysisJun 02, 2026 H1505496
F2601443Certificate of AnalysisJun 01, 2026 H1505496
ZJ26F0535447Certificate of AnalysisMay 15, 2026 H1505496
C2627453Certificate of AnalysisMar 27, 2026 H1505496
C2624380Certificate of AnalysisMar 24, 2026 H1505496
C2624382Certificate of AnalysisMar 24, 2026 H1505496
C2619369Certificate of AnalysisMar 19, 2026 H1505496
C2613192Certificate of AnalysisMar 13, 2026 H1505496
ZJ26F0332460Certificate of AnalysisMar 04, 2026 H1505496
L2525506Certificate of AnalysisDec 25, 2025 H1505496
L2517140Certificate of AnalysisDec 17, 2025 H1505496
L2512318Certificate of AnalysisDec 12, 2025 H1505496
ZJ25F1129728Certificate of AnalysisNov 21, 2025 H1505496

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Propiedades químicas y físicas
SensibilidadLight-sensitive
Preguntas frecuentes y artículos
Calculadoras de soluciones
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