Staggers J E, Hernell O, Stafford R J, Carey M C
Department of Medicine, Harvard Medical School, Brigham and Women's Hospital, Boston, Massachusetts 02115.
Biochemistry. 1990 Feb 27;29(8):2028-40. doi: 10.1021/bi00460a011.
We developed equilibrium phase diagrams corresponding to aqueous lipid compositions of upper small intestinal contents during lipid digestion and absorption in adult human beings. Ternary lipid systems were composed of a physiological mixture of bile salts (BS), mixed intestinal lipids (MIL), principally partially ionized fatty (oleic) acid (FA) plus racemic monooleylglycerol (MG), and cholesterol (Ch), all at fixed aqueous-electrolyte concentrations, pH, temperature, and pressure. The condensed phase diagram for typical physiological conditions (1 g/dL total lipids, FA:MG molar ratio of 5:1, pH 6.5, 0.15 M Na+ at 37 degrees C) was similar to that of a dilute model bile [BS/lecithin (PL)/Ch] system [Carey, M. C., & Small, D. M. (1978) J. Clin. Invest. 61, 998-1026]. We identified two one-phase zones composed of mixed micelles and lamellar liquid crystals, respectively, and two two-phase zones, one composed of Ch monohydrate crystals and Ch-saturated micelles and the other of physiologic relevance composed of Ch- and MIL-saturated mixed micelles and unilamellar vesicles. A single large three-phase zone in the system was composed of Ch-saturated micelles, Ch monohydrate crystals, and liquid crystals. Micellar phase boundaries for otherwise typical physiological conditions were expanded by increases in total lipid concentration (0.25-5 g/dL), pH (5.5-7.5), and FA:MG molar ratio (5-20:1), resulting in a reduction of the size of the physiological two-phase zone. Mean particle hydrodynamic radii (Rh), measured by quasielastic light scattering (QLS), demonstrated an abrupt increase from micellar (less than 40 A) to micelle plus vesicle sizes (400-700 A) as this two-phase zone was entered. With relative lipid compositions within this zone, unilamellar vesicles formed spontaneously following coprecipitation, and their sizes changed markedly as functions of time, reaching equilibrium values only after 4 days. Further, vesicle Rh values were influenced appreciably by MIL:mixed bile salt (MBS) ratio, pH, total lipid concentration, and FA:MG ratio, but not by Ch content. In comparison, micellar systems equilibrated rapidly, and their Rh values only slightly influenced by physical-chemical variables of physiological importance. In contrast to the BS-PL-Ch system [Mazer, N. A., & Carey, M. C. (1983) Biochemistry 22, 426-442], no divergence in micellar sizes occurred as the micellar phase boundary was approached. The ionization state of FA at simulated "intestinal" pH values (5.5-7.5) in the micellar and physiologic two-phase zones was principally that of 1:1 sodium hydrogen dioleate, an insoluble swelling "acid soap" compound. By phase separation and analysis, tie-lines for the constituent phase in the two-phase zone demonstrated that the mixed micelles were saturated with MIL and Ch and the coexisting vesicles were saturated with MBS, but not with Ch.(ABSTRACT TRUNCATED AT 400 WORDS)
我们绘制了成年人体内脂质消化和吸收过程中,与上段小肠内容物的水性脂质组成相对应的平衡相图。三元脂质体系由胆汁盐(BS)、混合肠脂质(MIL)、主要是部分离子化的脂肪酸(油酸,FA)加外消旋单油酸甘油酯(MG)以及胆固醇(Ch)的生理混合物组成,所有这些都处于固定的水性电解质浓度、pH值、温度和压力条件下。典型生理条件(总脂质1 g/dL、FA:MG摩尔比5:1、pH 6.5、37℃下0.15 M Na⁺)下的凝聚相图与稀模型胆汁[BS/卵磷脂(PL)/Ch]体系的相图相似[凯里,M.C.,& 斯莫尔,D.M.(1978年)《临床研究杂志》61卷,998 - 1026页]。我们确定了两个单相区,分别由混合微团和层状液晶组成;还有两个两相区,一个由一水合胆固醇晶体和胆固醇饱和微团组成,另一个具有生理相关性,由胆固醇和混合肠脂质饱和的混合微团及单层囊泡组成。体系中的一个单一的大三相区由胆固醇饱和微团、一水合胆固醇晶体和液晶组成。在其他典型生理条件下,随着总脂质浓度(0.25 - 5 g/dL)、pH值(5.5 - 7.5)和FA:MG摩尔比(5 - 20:1)的增加,微团相边界扩大,导致生理两相区尺寸减小。通过准弹性光散射(QLS)测量的平均颗粒流体动力学半径(Rh)表明,当进入这个两相区时,其从微团尺寸(小于40 Å)急剧增加到微团加囊泡尺寸(400 - 700 Å)。在这个区域内的相对脂质组成条件下,单层囊泡在共沉淀后自发形成,其尺寸随时间显著变化,仅在4天后达到平衡值。此外,囊泡的Rh值受MIL:混合胆汁盐(MBS)比例、pH值、总脂质浓度和FA:MG比例的显著影响,但不受胆固醇含量影响。相比之下,微团体系平衡迅速,其Rh值仅受具有生理重要性的物理化学变量的轻微影响。与BS - PL - Ch体系[马泽尔,N.A.,& 凯里,M.C.(1983年)《生物化学》22卷,426 - 442页]不同,当接近微团相边界时,微团尺寸没有出现差异。在微团和生理两相区模拟 “肠道” pH值(5.5 - 7.5)下,脂肪酸的离子化状态主要是1:1的二油酸钠氢钠,一种不溶性膨胀 “酸性肥皂” 化合物。通过相分离和分析,两相区中各组成相的连接线表明,混合微团被混合肠脂质和胆固醇饱和,共存的囊泡被混合胆汁盐饱和,但未被胆固醇饱和。(摘要截取自400字)