12-羟基二十碳四烯酸的omega-三氟类似物的制备、代谢稳定性和生物学特性。

Eicosanoids Pub Date : 1991-01-01
Y Tanaka, K K Bush, T Taguchi, Y Kobayashi, R G Briggs, E Gross, T Ruzicka
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引用次数: 0

摘要

12-羟基二糖四烯酸(HETE)与多种炎症有关。对于12-HETE的病理生理功能的研究,代谢更稳定的类似物将是有用的。通过对映选择性合成的20,20,20-三氟花生四烯酸与人血小板孵育,生物合成了20,20,20-三氟-12- hete (20- f3 -12- hete)。用紫外吸收分光光度法和气相色谱-质谱法对产物进行了鉴定。当1微克20-F3-12-HETE与5 × 10(6)人中性粒细胞孵育45分钟时,在相同的孵育条件下,只有5%的类似物被代谢,而66%的12-HETE被代谢。在2 × 10(7)中性粒细胞的孵育条件下,37%的类似物被代谢,87%的12-HETE被代谢。因此,通过氟原子阻断12-HETE的ω -氧化,大大提高了12-HETE的稳定性。这一结果表明omega-氧化是12-HETE代谢的主要途径。该类似物对人中性粒细胞的趋化活性与12-HETE相当,在人表皮细胞中对12-HETE受体的结合亲和力与12-HETE相当。在不改变中性粒细胞趋化活性和结合亲和力的情况下,具有扩展代谢稳定性的12-HETE类似物将为研究12-HETE在炎症条件下的病理生理作用提供有用的工具。
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Preparation, metabolic stability and biological properties of omega-trifluorinated analog of 12-hydroxyeicosatetraenoic acid.

12-Hydroxyeicosatetraenoic acid (HETE) is associated with a variety of inflammatory conditions. For studies on pathophysiological function of 12-HETE, metabolically more stable analogs of 12-HETE would be useful. We biologically synthesized 20,20,20-trifluoro-12-HETE (20-F3-12-HETE) by incubating enantioselectively synthesized 20,20,20-trifluoro-arachidonic acid with human platelets. The product was identified by UV absorption spectrophotometry and gas chromatography-mass spectrometry. When 1 microgram 20-F3-12-HETE was incubated with 5 X 10(6) human neutrophils for 45 min, only 5% of the analog was metabolized while 66% of 12-HETE was metabolized in the same incubation condition. With 2 X 10(7) neutrophils, 37% of the analog was metabolized at the same incubation condition while 87% of 12-HETE was metabolized. Thus, by blocking omega-oxidation of 12-HETE with fluorine atoms, the stability of 12-HETE was greatly increased. This result indicates that the omega-oxidation is a major pathway for 12-HETE metabolism. The analog demonstrated as much chemotactic activity on human neutrophils as 12-HETE, and binding affinity of the analog for 12-HETE receptor in human epidermal cell was equal to that of 12-HETE. An analog of 12-HETE, which has extended metabolic stability without alteration of neutrophil chemotactic activity and binding affinity, would be a useful tool for studies on pathophysiological role of 12-HETE in inflammatory conditions.

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