AccuSignal™ Nuclease ELISA Kit for Impurity Detection
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- Key Features
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- Impurity detection in the manufacturing of biological drugs.
- The AccuSignal™ Nuclease ELISA Kit is designed for sensitive and reliable quantification of nucleases in therapeutic products, including DENARASE®, Benzonase®, and Turbonuclease.
- Offers a broad quantification spectrum, maintaining outstanding dilution linearity, instilling trust in the accuracy of results over a wide array of nuclease concentrations.
- Delivers consistent and repeatable outcomes, characterized by minimal intra- and inter-assay variability.
- Tailored antibody specificity allows for application across diverse materials, accommodating various nuclease products from multiple suppliers.
- Components: 96-well strip plate, plate sealer, nuclease standard, biotinylated detection antibody, Streptavidin-HRO (100X), buffers.
- 抗原 See all Nuclease products
- Nuclease
- 检测方法
- Colorimetric
- 宿主
- 兔
- 克隆类型
- 多克隆
- 实验类型
- Sandwich ELISA
- 检测范围
- 0.03 ng/mL - 20 ng/mL
- 最低检测浓度
- 0.03 ng/mL
- 应用范围
- ELISA, Impurity Detection (Imp De)
- 原理
- Nuclease ELISA kit is designed for the quantitative detection of Nuclease/NucA in serum, plasma, and hybridoma cell supernatants.
- 品牌
- AccuSignal™
- Analytical Method
- Quantitative
- 特异性
- Benzonase, Nuclease, Endonuclease, Serratia marcescens endonuclease, NucA, Denarase
- 灵敏度
- 3 ng/mL
- 组件
- This kit contains: Nuclease antibody coated 96-well strip plate, Plate Sealer, Nuclease standard, biotinylated Detection Antibody, streptavidin-peroxidase conjugate, along with buffers and protocol.
- 试剂未包括
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- Microplate shaker (up tp 450 rpm)
- Interval timer
- Multichannel pipettor (50-300 µL)
- Precision single pipettes (10 µL, 35 µL, 100 µL, 1000 µL, etc.)
- Disposable pipette tips
- Deionized water
- Disposable microcentrifuge Tube(s) or microplate
- Polypropylene centrifuge tubes (15 mL)
- Spectrophotometer microplate reader (450 nm absorbance, 630–650 nm reference filter)
- Disposable gloves
- Graduated cylinder
- Reagent reservoirs
- Vortex mixer
- Stir plate & magnetic stir bar
- Absorbent paper
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- 应用备注
- This kit was shown to positively detect commercially available nuclease variants, such as Benzonase, Denarase and other analogs.
- 实验时间
- 3 h
- 试剂准备
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Preparation of Standards & Test Samples
- Reconstitute the standard vial with 1.0 mL deionized water to obtain a final concentration of 200 ng/mL. Note: This is the “reference stock solution” that will be used below to make the standards.
- Prepare dilutions of standard.
- Test samples should be diluted in Nuclease Kit Sample Buffer based on empirically determined criteria for each sample.
Detection antibody working solution preparation- Add 110 µL of conjugated antibody to 11 mL of Sample Buffer for use in a full 96-well assay.
- Mix well by pipette or inversion. Do not vortex.
- Distribute antibody working solution as described in the assay procedure.
Streptavidin-HRP Working Solution Preparation- Add 110 µL of Streptavidin-HRP to 11 mL of Sample Buffer, respectively for use in a full 96-well assay.
- Mix well by pipette or inversion. Do not vortex.
- Distribute Streptavidin-HRP working solution as described in the assay procedure.
Wash Buffer (1X) Preparation- Add 50 mL of Nuclease Kit Wash Buffer (10X) to 450 mL of deionized water.
- Mix for at least 10-minutes using a magnetic stir bar.
- 实验流程
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- To each well add 100 µL of unknown or standard sample per well and incubate at room temperature for 60-minutes with shaking at 450 revolutions per minutes (rpm) on a shaker.
- Wash the wells with Wash Buffer as follows:
- Decant the contents of the wells manually with a hard, rapid downward motion. Fluid should be captured in a receptable designed to collect the waste. Remove all residual reagent from the microplate by tapping it on absorbent paper with the opening facing downwards.
- Fill each well with 300 µL of Washing Buffer with a multichannel pipettor.
- Decant the Washing Buffer from the wells with a hard, rapid downward motion. Remove all residual solution from the microplate by tapping it on absorbent paper with the opening facing downwards.
- Repeat steps ii and iii two more times (total of 3 washings). Do not leave any residual moisture in the wells on each washing step.
- To each well add 100 µL of detection antibody working solution
- Incubate at room temperature for 60-minutes, covered to protect from light, with shaking at 450 rpm.
- Following 60-minute incubation, wash with Wash Buffer as follows:
- Decant the contents of the wells manually with a hard, rapid downward motion. Fluid should be captured in a receptable designed to collect the waste. Remove all residual reagent from the microplate by tapping it on absorbent paper with the opening facing downwards.
- Fill each well with 300 µL of Washing Buffer with a multichannel pipettor.
- Decant the Washing Buffer from the wells with a hard, rapid downward motion. Remove all residual solution from the microplate by tapping it on absorbent paper with the opening facing downwards.
- Repeat steps ii and iii two more times (total of 3 washings). Do not leave any residual moisture in the wells on each washing step.
- To each well add 100 µL of Streptavidin-HRP working solution
- Incubate at room temperature for 20-minutes, covered to protect from light, with shaking at 450 rpm.
- Following 20-minute incubation, wash with Wash Buffer as follows:
- Decant the contents of the wells manually with a hard, rapid downward motion. Fluid should be captured in a receptable designed to collect the waste. Remove all residual reagent from the microplate by tapping it on absorbent paper with the opening facing downwards.
- Fill each well with 300 µL of Washing Buffer with a multichannel pipettor.
- Decant the Washing Buffer from the wells with a hard, rapid downward motion. Remove all residual solution from the microplate by tapping it on absorbent paper with the opening facing downwards
- Repeat steps ii and iii two more times (total of 3 washings). Do not leave any residual moisture in the wells on each washing step.
- Next add 100 µL per well of room temperature TMB solution and incubate the plate with TMB solution at room temperature for 20 minutes (covered and protected from light).
- Then add 100 µL of stop solution per well. Gently tap the plate to mix, ensuring no bubbles are formed, and read plate within 5 minutes after stopping the reaction.
- On plate reader, measure absorbance at 450 nm with the reference wavelength set at 630–650 nm.
- 结果分析
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Follow the steps below to estimate the nuclease concentration of the test samples.
- Calculate the relative OD 450 using the following formula: Relative OD 450 = (OD 450 of well) – (OD 630-650 nm of the well)
- Calculate the mean relative OD 450 of the replicates for each standard solution.
- Plot the standard solutions data as mean relative OD 450 for each standard solution (Y) vs the respective concentration of the standard solutions (X).
- Fit the standard solution data with a 4-parameter logistic (4-PL) curve. Weight by 1/Y^2 is intended to be used during generation of 4-PL curve
- Estimate the Nuclease concentration of each test sample well using interpolation from the standard curve. Calculate the average of each respective sample solution concentration.
Note: If the spectrometer used for the assay does not automatically subtract the reference wavelength, do this manually. - 实验精密度
- Intra-and inter-assay CV% <20%
- 限制
- 仅限研究用
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- 储存条件
- 4 °C
- 储存方法
- The kit and reagents should be stored at 2-8°C. Allow reagents to reach room temperature (18-26°C) before use and may be used until the expiration date. It is recommended to aliquot the reconstituted standard solution and store it at -20°C to avoid freeze/thaw cycles.
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- 抗原
- Nuclease
- 别名
- nucA (Nuclease 产品)
- 别名
- F15D2.37 Kit, F15D2_37 Kit, 5'-3' exonuclease family protein Kit, Nuclease Kit, AT1G29630 Kit, Nuc Kit
- 背景
- Nucleases are secreted by Serratia marcescens into the medium it surrounds. The enzyme is a sugar-nonspecific hydrolase, capable of cleaving both RNA and DNA in either double or single stranded form. It requires divalent cations, preferably Mg2+, and is functional across a broad pH range from 6 to 10 (optimal at 8-8.5) and wide temperature ranges between 35°C and 44°C. The ability of Serratia to secrete nuclease appears to be regulated. Bacterial cultures at differing cell densities display different kinetics and efficiencies of nuclease secretion [i.e. growth medium, growth conditions, and host cell mutations]. Anti-Nuclease/NucA Antibody is useful for researcher interested in identifying nucleic acid contamination.
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