3-Aminopropylphosphonic Acid
CAS No. 13138-33-5
3-Aminopropylphosphonic Acid ( —— )
产品货号. M28162 CAS No. 13138-33-5
3-aminopropylphosphonic acid (3-APPA) is a phosphonic analog of GABA that acts as a partial agonist of GABAB receptors (IC50 = 1.5 μM in a radioligand binding assay).
纯度: >98% (HPLC)
COA
Datasheet
HNMR
HPLC
MSDS
Handing Instructions
规格 | 价格/人民币 | 库存 | 数量 |
5MG | ¥405 | 有现货 |
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10MG | ¥567 | 有现货 |
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25MG | ¥923 | 有现货 |
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50MG | ¥1353 | 有现货 |
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100MG | ¥2009 | 有现货 |
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200MG | 获取报价 | 有现货 |
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500MG | 获取报价 | 有现货 |
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1G | 获取报价 | 有现货 |
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生物学信息
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产品名称3-Aminopropylphosphonic Acid
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注意事项本公司产品仅用于科研实验,不得用于人体或动物的临床与诊断
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产品简述3-aminopropylphosphonic acid (3-APPA) is a phosphonic analog of GABA that acts as a partial agonist of GABAB receptors (IC50 = 1.5 μM in a radioligand binding assay).
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产品描述3-aminopropylphosphonic acid (3-APPA) is a phosphonic analog of GABA that acts as a partial agonist of GABAB receptors (IC50 = 1.5 μM in a radioligand binding assay). (In Vitro):3-aminopropylphosphonic acid (IC50 1.5 microM) and 4-aminobutyl-phosphonic acid (IC50 3.9 μM) were much more potent than anticipated from their relatively weak GABAB antagonist actions . 3-aminopropylphosphonic acid was a potent inhibitor (IC50 6μM) of the binding of [3H]GABA to rat brain membranes under GABAB conditions, i.e. in the presence of 0.1 mM isoguvacine and displaceable by 0.1 mM (+)-baclofen . (In Vivo):3-aminopropylphosphonic acid induces relaxation in unstimulated isolated guinea pig ileum longitudinal muscle and reverses GABA- and baclofen-induced inhibition of twitch responses in isolated guinea pig ileum longitudinal muscle. 3-APPA (5 mg/kg) completely inhibits GABA- and baclofen-induced inhibition of vagally stimulated bronchospasms in guinea pigs. It also reverses the antitussive effect of baclofen in cats when administered at a dose of 3 mg/kg.
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同义词——
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通路Others
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靶点Other Targets
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受体DNA/RNA Synthesis
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研究领域——
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适应症——
化学信息
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CAS Number13138-33-5
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分子量139.1
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分子式C3H10NO3P
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纯度>98% (HPLC)
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溶解度——
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SMILESNCCCP(O)(O)=O
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化学全称——
运输与储存
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储存条件(-20℃)
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运输条件With Ice Pack
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稳定性≥ 2 years
参考文献
1.Nayun Kim, et al. dUTP incorporation into genomic DNA is linked to transcription in yeast. Nature. 2009 Jun 25;459(7250):1150-3.
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