Synthesis and evaluation of the anti-malarial activity of the quaternary ammonium salt dimer as the new anti-malarial candidate
Synthesis and evaluation of the anti-malarial activity of the quaternary ammonium salt dimer as the new anti-malarial candidate
批准号:
14572092
负责人:
SASAKI Kenji
金额:
$1.92万
依托单位:
依托单位国家:
日本
项目类别:
Grant-in-Aid for Scientific Research (C)
财政年份:
2002
资助国家:
日本
项目状态:
已结题
起止时间:
2002 至 2003
中文摘要
疟疾是全世界人类最致命的疾病之一,每年有250多万人死于疟疾。由于恶性疟原虫氯喹耐药株的出现和持续传播,包括对常规抗疟疾药物的多药耐药株,开发全新的抗疟疾药物成为焦点。近年来,我们发现一种新型抗菌剂季铵盐二聚体具有抗疟疾活性。本研究制备了季铵盐二聚体的多种衍生物,并对其抗疟活性进行了评价。并对其抗疟活性进行了构效关系研究。发现最强的抗疟疾剂是S,S ′-四亚甲基双(1-己基-4-硫代吡啶鎓碘化物),其中连接基部分的亚甲基的碳数为3,其选择毒性为667。 ...更多信息 在S,S ′-四亚甲基双(1-己基-4-碘化硫代吡啶鎓)的这一系列化合物中,<50>当连接基团的亚甲基部分的碳数较小时,具有IC较低的趋势。在N,N '-四亚甲基双(4-氨基甲酰基-1-己基溴化吡啶)系列中,当连接基团亚甲基部分的碳原子数为6,N-烷基链部分的阳离子数为8时,选择性毒性最高,为580。N-烷基链的碳数与疟原虫的IC_<50>(1/2)在该系列中显示出良好的相关性,即<50>当N-烷基链的碳数越小,IC_(1/2)越低。关于连接基团中亚甲基部分的碳数,目前还没有一个最佳值,本研究中的化合物的分子结构与常规抗疟疾药物完全不同。因此,我们的新抗疟药有望成为抗恶性疟原虫敏感株和耐药株的新候选药物。少
英文摘要
Malaria is one of the most deadly diseases for humans worldwide and more than 2.5 million people die from it each year. Due to the emergence and ongoing spread of the chloroquine-resistent strains of Plasmodium falciparum, including multi-drug resistant strains to conventional anti-malarial drugs, development of the entirely new anti-malarial drug is focused. Recently we have found that one of the quaternary ammonium salt dimers that had developed as the new antibacterial agent has the anti-malarial activity. In this research many derivatives of the quaternary ammonium salt dimer were prepared and evaluated for their anti-malarial activity. The structure-activity relationship of these quaternary ammonium salt dimers for their anti-malarial activity was also performed. It was found that the strongest anti-malarial agent was S,S'-tetramethylenebis(1-hexyl-4-thiopyridinium iodide) in which a carbon number of the methylenes of the linker moiety was three and its selective toxicity was 667. … More In this series of the compounds of S,S'-tetramethylenebis(1-hexyl-4-thiopyridinium iodide}, it has the tendency that IC_<50> was lower when the carbon number of the methylene part of the linker moiety is smaller. In the series of N,N'-tetramethylenebis(4-carbamoyl-1-hexylpyridinium bromide) in which alkyl chain is sandwiched in two amide groups, the highest selective toxicity was 580 when the carbon number of the methylene part of the linker moiety is six and the canon number of the N-alkyl chain moiety is eight. A carbon number of the N-alkyl chain and IC_<50> for malarial parasite showed a good correlation in this series, that is, IC_<50> became lower when the carbon number of the N-alkyl chain is smaller. About the carbon number of the methylene part in the linker moiety, an optimal value is not clear at present.The molecular structures of the compounds in this research are completely different from the conventional anti-malarial drugs. Therefore our new anti-malarial agents are expected as the new candidate which is active against drug-sensitive and drug resistant strains of P. falciparum. Less
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I.Yamamoto, A.Tai, Y.Fujinami, K.Sasaki, S.Okazaki: "Synthesis and Characterization of 6-O-Acyl-2-O-α-D-Glucopyranosyl-L-ascoorbic Acids with a Branched-acyl Chain"Chemical and Pharmaceutical Bulletin. 51. 175-180 (2003)
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Y.Takeuchi, K.Azuma, M Oshige, H.Abe, K.Sasaki, T.Harayama: "Synthesis of Febrifugine Derivatives and a Solution to the Puzzle of the Structural Determination of Febrifugine"Tetrahedron. 59. 1639-1646 (2002)
Y.Takeuchi、K.Azuma、M Oshige、H.Abe、K.Sasaki、T.Harayama:“Ferifugine 衍生物的合成以及 Febrifugine 结构测定之谜的解决方案”四面体。
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N.Masuoka, J.Zhang, L.Partoo, J.Ohta, K.Sasaki, H.Ebinuma, H.Kodama: "A New Dipeptide, O-Phosphoserylethanolamine isolated from Agkistroden Blomhoffi (Mamushi)"Archives of Biochemistry and Biophysics. 407. 184-188 (2002)
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Y.Takeuchi, K.Azuma, M.Oshige, H.Abe, H.Nishioka, K.Sasaki, T.Harayama: "Synthesis of Febrifugine Derivatives and a Solution to the Puzzle of the Structural Determination of Febrifugine"Journal of Heterocyclic Chemistry. 39. 571-591 (2002)
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共 15 条
Evaluation of Continuity of Pore Structure of Concrete and its Application to Accurate Prediction Method of Mass Transport
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批准号:19K04557
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项目类别:Grant-in-Aid for Scientific Research (C)
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资助金额:$2.75万
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财政年份:2019
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负责人:SASAKI Kenji
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依托单位:
Lambda-Lambda potential from Lattice QCD simulations
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负责人:SASAKI Kenji
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依托单位:
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项目类别:Grant-in-Aid for Scientific Research (C)
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负责人:SASAKI Kenji
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依托单位:
Erection of a reconstructed penis by increased blood flow due to arteriovenous fistula peripheral to the free tube flap
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批准号:14571722
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项目类别:Grant-in-Aid for Scientific Research (C)
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资助金额:$2.37万
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财政年份:2002
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负责人:SASAKI Kenji
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依托单位:
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