CAS: 6909-62-2; 2-(Dimethylamino)Ethyl Dihydrogen Phosphate

该化合物是有机磷化合物,其特征为磷酸盐功能组和二甲基氨基替代成分,这种物质一般看起来无色可粉黄黄色液体或固体,其纯度和形态不同,在水和极地有机溶剂中可以溶解,这增强了其在各种应用中的用途,包括作为有机合成的试剂和作为制药生产的潜在中间体的用途;二甲基氨基组的存在有助于其基本性和潜在再活动,使其在化学研究中成为有价值的化合物;此外,它与许多有机磷酸盐一样,可能展示生物活动,由于潜在毒性,需要谨慎处理;其化学结构允许与生物系统互动,这些系统既有益又有害,也取决于其使用情况;在与该化合物合作减少与接触有关的任何风险时,应当注意适当的安全措施.

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MSDS等安全信息

    合成工艺路线路线简述

      📜Dibenzyl 2-(Dimethylamino)Ethyl Phosphate置于氢气,Palladium(II) Hydroxide体系中,用 甲醇 作为反应溶剂,化学反应 1.0H,以87%的收率获得产物2-二甲基氨基乙基磷酸酯
      参考文献:Structurally Diverse Low Molecular Weight Activators Of The Mammalian Pre-Mrna 3' Cleavage Reaction
      标题:Structurally Diverse Low Molecular Weight Activators Of The Mammalian Pre-Mrna 3' Cleavage Reaction
      摘要:The 3' End Formation Of Mammalian Pre-Mrna Contributes To Gene Expression Regulation By Setting The Downstream Boundary Of The 3' Untranslated Region,Which In Many Genes Carries Regulatory Sequences. A Large Number Of Protein Cleavage Factors Participate In This Pre-Mrna Processing Step,But Chemical Tools To Manipulate This Process Are Lacking. Guided By A Hypothesis That A Ppm1 Family Phosphatase Negatively Regulates The 3' Cleavage Reaction,We Have Found A Variety Of New Small Molecule Activators Of The In Vitro Reconstituted Pre-Mrna 3' Cleavage Reaction. New Activators Include A Cyclic Peptide Ppm1D Inhibitor,A Dipeptide With Modifications Common To Histone Tails,Abscisic Acid And An Improved L-Arginine Beta-Naphthylamide Analog. The Minimal Concentration Required For In Vitro Cleavage Has Been Improved From 200 Mu M To The 200 Nm-100 Mu M Range. These Compounds Provide Unexpected Leads In The Search For Small Molecule Tools Able To Affect Pre-Mrna 3' End Formation. (C) 2013 Elsevier Ltd. All Rights Reserved.
      DOI:10.1016/j.Bmc.2013.12.006

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      参考文献:10.2116/analsci.20p226
      摘要:Arendowski A, Ossolinski K, Niziol J, Ruman T. Screening of Urinary Renal Cancer Metabolic Biomarkers with Gold Nanoparticles-assisted Laser Desorption/Ionization Mass Spectrometry. Anal Sci. 2020 Dec 10;36(12):1521–5. doi: 10.2116/analsci.20p226.
      参考文献:10.3389/fbioe.2021.662655
      摘要:He J, Liu C, Du M, Zhou X, Hu Z, Lei A, Wang J. Metabolic Responses of a Model Green Microalga Euglena gracilis to Different Environmental Stresses. Front Bioeng Biotechnol. 2021;9():662655.
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