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主营:化学试剂,CCK-8试剂盒,细胞检测,自噬研究,化学标记,生化试剂等
℡ 4000-520-616
℡ 4000-520-616
Dojindo/BMPO/50/B568
产品编号:B568
市  场 价:¥0.00
场      地:美国(厂家直采)
产品分类: 蛋白类>多肽>多肽合成>
联系QQ:1570468124
电话号码:4000-520-616
邮      箱: info@ebiomall.com
美  元  价:待定
品      牌: Dojindo
公司分类:
Dojindo/BMPO/50/B568
商品介绍
DescriptionApplicationReferencesDataS.D.S

Chemical Structure

Product DescriptionSpin trapping analysis is one of the most reliable techniques for detecting and identifying short-lived free radicals. The EPR (ESR) spin trap reagent detects both superoxide and hydroxyl radicals produced by systems in vitro and in vivo. BMPO was developed as a spin trapping reagent that adducts superoxide and shows a much longer half-life (t1/2=23 min) than other spin trap reagents. It gives us reproducible and steady results. Because BMPO is highly soluble in water, hydrophilic sample is applicable to analyze the free radicals.

General ProtocolMeasuring hydroxyl radical from Fenton reaction1. Dissolve 1.5 mg of BMPO with 5 ml of ddH2O.2. Add 15 μl of the BMPO solution, 75 μl of 1 mM H2O2 and 75 μl of 100 μM FeSO4 to 50 μl of ddH2O.3. Transfer the solution to ESR sample tube and measure ESR spectra after certain time of period, e.g. 1 minute.4. Calculate relative intensity from the peak height.

Measuring superoxide radical from xanthine oxidase(XO) reaction1. Dissolve 1 mg of BMPO with 1 ml of 50 mM Phosphate buffer(pH7.4).2. Prepare 50 mM Phosphate buffer(pH 7.4) containing 1 mM DTPA and 0.4 mM Xanthine.3. Prepare 50 mM Phosphate buffer(pH 7.4) containing 0.1 U/ml xanthine oxidase.4. Mix 15 μl of Solution A, 135 μl of solution B and 10 μl of Solution C.5. Transfer the solution to ESR sample tube and measure ESR spectra after certain time of period, e.g. 8 minutes.6. Calculate relative intensity from the peak height.


Experimental Data from Bruker  >> Download the detail (PDF)Superoxide Detection

Protocol1. Prepare a solution of 100 mM phosphate buffer (pH 7.4) containing 25 µM diethylenetriaminepentaacetic acid (DTPA) as transition metal chelator.2. Make up a solution of 1 mM hypoxanthine in 100 mM phosphate buffer, pH 7.4.3. Make up a solution of xanthine oxidase with concentration of 1 unit/ml4. Make up a solution of BMPO with dissolved 10 mg of BMPO into 200 µl phosphate buffer (the final concentration should be 250 mM).5. Prepare your reaction mixture to a total reaction volume of 200 µl.6. Add 70 µl of buffer to an Eppendorf tube.7. Add 20 µl of your 250 mM BMPO solution and 100 µl hypoxanthine of the stock 1 mM solution.8. Initiate the reaction with 10 µl xanthine oxidase, vortex the tube and transfer the solution to a flat cell.9. Insert the flat cell into the cavity, tune the spectrometer, and acquire the spectrum.

The final concentrations of the components are: 25 mM BMPO, 0.5 mM hypoxanthine, and 0.05 units/ml xanthine oxidase.

Hydroxyl radical detection

Protocol1. Make up a solution of 1 mM FeSO4, 10 mM H2O2, and 250 mM BMPO in water.2. Prepare your reaction mixture to a total reaction volume of 200 µl.3. Add 140 µl of distilled water to an Eppendorf tube.4. Add 20 µl of your 250 mM BMPO solution and 20 µl FeSO4 of the stock 1 mM solution.5. Initiate the reaction with 20 µl 10 mM H2O2.6. Mix the reactants and quickly transfer the solution to a flat cell.7. Insert the flat cell into the cavity, tune the spectrometer, and acquire the spectrum.

The final concentrations of the components are: 25 mM BMPO, 0.1 mM FeSO4, and 1 mM H2O2.Output spectra of the BMPO spin trapping of free hydroxyl radical are presented. In the case of BMPO, two stereoisomers of BMPO/OH were formed similar to BMPO/OOH results. The two BMPO adducts were fitted with aN = 13.47 G, aHβ = 15.31 G, and aHγ1 = 0.62 G for conformer I and aN = 13.56 G, aHβ = 12.3 G, and aHγ1 = 0.66 G for conformer II.

You should always perform control experiments in which one or more of the reagents are excluded. These experiments will reveal any paramagnetic impurities and will demonstrate that all the components were required to produce the EPR signal.

Time Course of the Superoxide Signal

Data and Protocol were kindly provided by Bruker Corporation.

After feeding the results of SpinFit into SpinCount, the concentration changes over the time of the experiment are obtained.


Stability and Reaction Data for O2.- DetectionBMPO gives the rate constants for the reaction superoxide under different experimental conditions and longer stability of the corresponding spin trap adduct.Link to Published Paper

1. H. Zhao, J. Joseph, H. Zhang, H. Karoui and B. Kalyanaraman, Synthesis and biochemical applications of a solid cyclic nitrone spin trap: a relatively superior trap for detecting superoxide anions and glutathiyl radicals. Free Radic Biol Med. 2001;31:599-606.2. G.M. Rosen, P. Tsai, J. Weaver, S. Porasuphatana, L. Roman, A. A. Starkov, G. Fiskum and S. Pou, The Role of Tetrahydrobiopterin in the Regulation of Neuronal Nitric-oxide Synthase-generated Superoxide. J Biol Chem. 2002;277:40275-40280.

Half-Life Time DataLong Half-Life is observed in O2.- detection.

BMPO is applicable for experiments which requires longer handlin time. (ex. monitoring of enzyme reactions)

Related Categories Spin Trap Reagent

品牌介绍

Dojindo Molecular Technologies,Inc.是美国领先的生命科学研究专用试剂盒和化学品分销商。我们通过提供优质的支持和创新产品,不断扩大客户的满意度,以扩大生命科学研究和开发领域。

我们的公司文化反映出“ Jin”(仁)字符背后的含义,即尊重和关爱他人。当我们公司执行上述任务时,“ Jin”精神始终处于我们思想的最前沿。  


我们如何开始

1996年

作为日本Dojindo实验室的子公司,Dojindo Molecular Technologies,Inc.在马里兰州盖瑟斯堡开业,这是新产品开发的主要设施。开发了诸如DNA损伤定量试剂盒SOD检测试剂盒WST标记试剂盒系列之类的产品,为全球客户提供现成的检测试剂盒。


2000

Dojindo Molecular Technologies,Inc.成为了另一个销售地点,将Dojindo产品带到了北美地区的研究专业人员手中。


2008年

我们搬迁至马里兰州罗克维尔,仅专注于北美的销售和营销活动。我们目前的位置非常接近美国国立卫生研究院(NIH),美国国家癌症研究所(NCI),FDA,约翰·霍普金斯大学的研究人员。


我们不仅向周边地区,而且向我们在美国,加拿大和南美的客户提供日本优质的客户支持和创新产品。

关于同人堂实验室

Dojindo Laboratories由螯合化学领域的著名研究人员上野敬平教授创立。同人堂实验室是1951年第一家将EDTA(乙二胺四乙酸)商业化的日本公司。自那以后,同人堂实验室一直在生产用于支持科学研究进展的试剂。Dojindo实验室的任务是开发用于生命科学研究的创新工具。Dojindo实验室致力于通过科学发现和开发新药物为改善生活质量做出贡献。


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