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1
The isolation, identification and synthesis of two metabolites of guanethidine formed in pig and rabbit liver homogenates.在猪和兔肝脏匀浆中形成的胍乙啶两种代谢物的分离、鉴定及合成。
Biochem J. 1969 Jun;113(1):143-56. doi: 10.1042/bj1130143.
2
The separation and detection of metabolites of guanethidine.胍乙啶代谢物的分离与检测。
Biochem Pharmacol. 1969 Jan;18(1):238-43. doi: 10.1016/0006-2952(69)90030-6.
3
Studies on the distribution and excretion of a metabolite of guanethidine in the rat.胍乙啶代谢物在大鼠体内的分布与排泄研究。
Br J Pharmacol Chemother. 1968 Jan;32(1):57-64. doi: 10.1111/j.1476-5381.1968.tb00429.x.
4
Studies on the metabolism of guanethidine in hypertensive patients.高血压患者中胍乙啶代谢的研究。
Biochem Pharmacol. 1969 Aug;18(8):1809-16. doi: 10.1016/0006-2952(69)90275-5.
5
Antihypertensive and noradrenaline-depleting effects of guanethidine metabolites.胍乙啶代谢产物的降压及去甲肾上腺素耗竭作用。
J Pharm Pharmacol. 1971 May;23(5):327-31. doi: 10.1111/j.2042-7158.1971.tb09922.x.
6
The accumulation of guanethidine by human blood platelets.胍乙啶在人血小板中的蓄积。
Br J Pharmacol. 1969 Jan;35(1):90-102. doi: 10.1111/j.1476-5381.1969.tb07969.x.
7
The release of guanethidine and bethanidine by splenic nerve stimulation: a quantitative evaluation showing dissociation from adrenergic blockade.脾神经刺激对胍乙啶和苄乙胍的释放作用:一项定量评估显示其与肾上腺素能阻滞作用相分离。
J Pharmacol Exp Ther. 1973 Jan;184(1):73-80.
8
The fate of guanethidine in two hypertensive patients.两名高血压患者体内胍乙啶的代谢情况
Clin Pharmacol Ther. 1970 May-Jun;11(3):423-31. doi: 10.1002/cpt1970113423.
9
Uptake of debrisoquin and guanethidine by human blood platelets.人血小板对异喹胍和胍乙啶的摄取
J Pharm Pharmacol. 1968 May;20(5):403-4. doi: 10.1111/j.2042-7158.1968.tb09772.x.
10
Evidence for intra-cellular guanethidine stores in the fat heart revealed after removal of calcium ions.去除钙离子后发现脂肪心内存在细胞内胍乙啶储存的证据。
Br J Pharmacol Chemother. 1968 Jan;32(1):145-55. doi: 10.1111/j.1476-5381.1968.tb00438.x.

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Prognostic significance of cardiac (123)I metaiodobenzylguanidine imaging for mortality and morbidity in patients with chronic heart failure: a prospective study.心脏(123)I-间碘苄胍显像对慢性心力衰竭患者死亡率和发病率的预后意义:一项前瞻性研究。
Heart. 2001 Dec;86(6):656-60. doi: 10.1136/heart.86.6.656.
2
Asymmetry of cardiac [123I] meta-iodobenzyl-guanidine scans in patients with ventricular tachycardia and a "clinically normal" heart.室性心动过速且心脏“临床正常”患者的心脏[123I]间碘苄胍扫描不对称性
Br Heart J. 1993 Jan;69(1):6-13. doi: 10.1136/hrt.69.1.6.
3
Reasons for the occurrence of the twenty coded protein amino acids.二十种编码蛋白质氨基酸出现的原因。
J Mol Evol. 1981;17(5):273-84. doi: 10.1007/BF01795749.

本文引用的文献

1
The specificity of arginase: action upon argininic acid.精氨酸酶的特异性:对精氨酸的作用。
Biochem J. 1941 Dec;35(12):1298-306. doi: 10.1042/bj0351298.
2
Enzymatic pathway for the formation of cotinine, a major metabolite of nicotine in rabbit liver.兔肝脏中尼古丁主要代谢产物可替宁的形成酶促途径。
J Pharmacol Exp Ther. 1960 May;129:94-100.
3
Enzymatic dealkylation of aminopyrine (pyramidon) and other alkylamines.氨基比林(匹拉米洞)及其他烷基胺的酶促脱烷基作用。
J Biol Chem. 1955 Jun;214(2):741-5.
4
Detoxication of drugs and other foreign compounds by liver microsomes.肝脏微粒体对药物及其他外来化合物的解毒作用。
Science. 1955 Apr 22;121(3147):603-4. doi: 10.1126/science.121.3147.603.
5
PHYSIOLOGICAL DISPOSITION OF GUANETHIDINE IN THE RAT AND ITS UPTAKE BY HEART SLICES.胍乙啶在大鼠体内的生理分布及其被心脏切片摄取的情况
Int J Neuropharmacol. 1965 Feb;4:27-39. doi: 10.1016/0028-3908(65)90044-4.
6
INTERACTION OF GUANETHIDINE WITH ADRENERGIC NEURONS.胍乙啶与肾上腺素能神经元的相互作用。
J Pharmacol Exp Ther. 1965 Mar;147:303-12.
7
[The relation between the guanethidine concentration in the rat heart and its noradrenalin content].[大鼠心脏中胍乙啶浓度与其去甲肾上腺素含量之间的关系]
Naunyn Schmiedebergs Arch Exp Pathol Pharmakol. 1962;244:185-95.
8
Relationship between the lipid solubility of drugs and their oxidation by liver microsomes.药物的脂溶性与其被肝微粒体氧化之间的关系。
Biochem Pharmacol. 1959 Aug;2:89-96. doi: 10.1016/0006-2952(59)90075-9.
9
Clinical and pharmacological studies with guanethidine in the treatment of hypertension.胍乙啶治疗高血压的临床与药理学研究。
Lancet. 1960 Aug 20;2(7147):381-7. doi: 10.1016/s0140-6736(60)92836-1.
10
Determination of creatine, creatinine, arginine, guanidinoacetic acid, guanidine, and methylguanidine in biological fluids.生物体液中肌酸、肌酐、精氨酸、胍基乙酸、胍和甲基胍的测定。
J Biol Chem. 1956 Sep;222(1):225-35.

在猪和兔肝脏匀浆中形成的胍乙啶两种代谢物的分离、鉴定及合成。

The isolation, identification and synthesis of two metabolites of guanethidine formed in pig and rabbit liver homogenates.

作者信息

Abramson F B, Furst C I, McMartin C, Wade R

出版信息

Biochem J. 1969 Jun;113(1):143-56. doi: 10.1042/bj1130143.

DOI:10.1042/bj1130143
PMID:5806387
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC1184614/
Abstract
  1. Two metabolites of radioactively labelled guanethidine were isolated from rabbit and pig liver homogenates by ion-exchange chromatography on a sulphonic acid resin. 2. One of the metabolites was eluted from the column with ammonia and identified as 2-(6-carboxyhexylamino)ethylguanidine on the basis of the elemental analysis, i.r. spectrum and pH titration curve of the pure compound, and the observed partial loss of tritium for ring-labelled guanethidine during the formation of this metabolite. 3. This identification was confirmed by synthesis. 4. 2-(6-Carboxyhexylamino)ethylguanidine underwent ring-closure in hot alkaline solution to 1-(6-carboxyhexyl)-2-iminoimidazolidine. 5. The other metabolite of guanethidine was eluted from the ion-exchange column with 6m-hydrochloric acid along with the unchanged drug. It was purified by countercurrent distribution and shown to be identical with synthetic guanethidine N-oxide. 6. The two metabolites and the product of ring-closure had less than one-tenth of the antihypertensive activity of guanethidine in the renal-hypertensive rat and are unlikely to contribute to the pharmacological properties of the drug.
摘要
  1. 通过在磺酸树脂上进行离子交换色谱法,从兔和猪肝匀浆中分离出放射性标记胍乙啶的两种代谢物。2. 其中一种代谢物用氨从柱上洗脱下来,并根据纯化合物的元素分析、红外光谱和pH滴定曲线,以及在该代谢物形成过程中观察到的环标记胍乙啶的氚部分损失,鉴定为2-(6-羧基己基氨基)乙基胍。3. 这一鉴定通过合成得到证实。4. 2-(6-羧基己基氨基)乙基胍在热碱性溶液中环化生成1-(6-羧基己基)-2-亚氨基咪唑烷。5. 胍乙啶的另一种代谢物与未变化的药物一起用6M盐酸从离子交换柱上洗脱下来。它通过逆流分配法纯化,并显示与合成的胍乙啶N-氧化物相同。6. 这两种代谢物和环化产物在肾性高血压大鼠中的降压活性不到胍乙啶的十分之一,不太可能对该药物的药理特性有贡献。