Pawlosky R J, Hibbeln J R, Novotny J A, Salem N
Food Composition Laboratory, Beltsville, MD 20705, USA.
J Lipid Res. 2001 Aug;42(8):1257-65.
A physiological compartmental model of alpha-linolenic acid metabolism was derived from the plasma concentration-time curves for d5-18:3n-3, d5-20:5n-3, d5-22:5n-3, and d5-22:6n-3 in eight healthy subjects. Subjects received a 1-g oral dose of an isotope tracer of alpha-linolenate (d5-18:3n-3 ethyl ester) while subsisting on a rigorously controlled beef-based diet. By utilizing the Windows Simulation and Analysis Modeling program, kinetic parameters were determined for each subject. Half-lives and mean transit times of the n-3 fatty acids in the plasma were also determined. The model predicted plasma values for the n-3 fatty acids in good accordance with the measured steady state concentrations and also predicted dietary linolenic acid intake for each subject in accordance with values determined by lipid analysis of the diet. Only about 0.2% of the plasma 18:3n-3 was destined for synthesis of 20:5n-3, approximately 63% of the plasma 20:5n-3 was accessible for production of 22:5n-3, and 37% of 22:5n-3 was available for synthesis of 22:6n-3. The inefficiency of the conversion of 18:3n-3 to 20:5n-3 indicates that the biosynthesis of long-chain n-3 PUFA from alpha-linolenic acid is limited in healthy individuals. In contrast, the much greater rate of transfer of mass from the plasma 20:5n-3 compartment to 22:5n-3 suggests that dietary eicosapentaenoic acid may be well utilized in the biosynthesis of 22:6n-3 in humans.
通过对8名健康受试者血浆中d5-18:3n-3、d5-20:5n-3、d5-22:5n-3和d5-22:6n-3的浓度-时间曲线进行分析,建立了α-亚麻酸代谢的生理房室模型。受试者在严格控制的以牛肉为主的饮食条件下,口服1克α-亚麻酸酯(d5-18:3n-3乙酯)同位素示踪剂。利用Windows模拟与分析建模程序,确定了每名受试者的动力学参数。同时还测定了血浆中n-3脂肪酸的半衰期和平均转运时间。该模型预测的n-3脂肪酸血浆值与实测稳态浓度高度吻合,并且根据饮食脂质分析确定的值,预测了每名受试者的膳食亚麻酸摄入量。血浆中仅约0.2%的18:3n-3用于合成20:5n-3,约63%的血浆20:5n-3可用于生成22:5n-3,37%的22:5n-3可用于合成22:6n-3。18:3n-3向20:5n-3转化效率低下,表明在健康个体中,由α-亚麻酸生物合成长链n-3多不饱和脂肪酸(PUFA)受到限制。相比之下,从血浆20:5n-3房室向22:5n-3的质量转移速率要高得多,这表明膳食二十碳五烯酸在人体22:6n-3的生物合成中可能得到很好的利用。