从无细胞毒性羊皮蜡酯水解物中分离的α、β -二氢长链脂肪醇对肿瘤的细胞毒性:依赖于N-或异烷基部分的体积和两个羟基的分子疏水性平衡。

Cancer biochemistry biophysics Pub Date : 1997-06-01
N Miwa, S Nakamura, N Nagao, S Naruse, Y Sato, K Kageyama
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引用次数: 0

摘要

羊毛脂肪醇(WF-Alc;从羊皮脂腺分泌的羊毛脂中分离得到的C10-C33)对小鼠埃利希腹水癌(EAC)细胞的生长有抑制作用,而未酯解羊毛脂对EAC细胞的生长无抑制作用。通过分子蒸馏法和ODS凝胶液相色谱法对WF-Alc进行分离,结果表明,WF-Alc在沸点最低(MW 200-300;经GC-MS和13C-/1H-NMR鉴定为α - β -二氢饱和脂肪醇,分别为1,2-十六烷二醇(n-C16(OH)2)和16-甲基-1,2-十七烷二醇(iso-C18(OH)2)。具有细胞分解能力的n-C16(OH)2对EAC细胞有明显的抑制作用,iso-C18(OH)2对EAC细胞有轻微的抑制作用,而WF-Alc中含有的其他烷基- α, β -二醇(C12-C24)对EAC细胞几乎没有抑制作用。因此,WF-Alc的抗肿瘤活性仅在非细胞毒性羊毛油脂皂化后才表现出来,这表明未酯化的羟基是必要的,并且依赖于WF-Alc中含有的不同种类的脂肪醇中羟基和n-或异烷基部分的体积所导致的分子疏水性平衡。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Cytotoxicity to tumors by alpha, beta-dihydric long-chain fatty alcohols isolated from esterolysates of uncytotoxic sheep cutaneous wax: the dependence on the molecular hydrophobicity balance of N- or iso-alkyl moiety bulkiness and two hydroxyl groups.

Wool fatty alcohols (WF-Alc; C10-C33), separated by esterolysis of wool grease secreted from sheep sebaceous gland, inhibited growth of mouse Ehrlich ascites carcinoma (EAC) cells in contrast to no inhibition by unesterolysed wool grease. WF-Alc was fractionated by molecular distillation and subsequent octadecylsilica (ODS) gel liquid chromatography, showing that most of the growth-inhibitory activity was found in the most hydrophilic fraction with the lowest boiling-point (MW 200-300; C12-C20), ODS-HPLC of the fraction showed that most of the activity resided in two homogeneous fractions identified by GC-MS and 13C-/1H-NMR as alpha, beta-dihydric saturated fatty alcohols such as 1,2-hexadecanediol (n-C16(OH)2) and 16-methyl-1,2-heptadecanediol (iso-C18(OH)2), respectively. EAC cells implanted into mice were inhibited markedly by n-C16(OH)2 possessing a cytolysing ability and slightly by iso-C18(OH)2, but hardly by other alkyl-alpha, beta-diols (C12-C24) contained in WF-Alc. Thus, the antitumor activity of WF-Alc was exhibited only after saponification of uncytotoxic wool grease, showing necessity of unesterified hydroxyl groups, and was dependent upon the molecular hydrophobicity balance attributed to both hydroxyl groups and n- or iso-alkyl moiety bulkiness specified out of diverse species of fatty alcohols contained in WF-Alc.

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