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首页> 外文期刊>Colloids and Surfaces, B. Biointerfaces >Study on interaction of bile salts with curcumin and curcumin embedded in dipalmitoyl-sn-glycero-3-phosphocholine liposome
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Study on interaction of bile salts with curcumin and curcumin embedded in dipalmitoyl-sn-glycero-3-phosphocholine liposome

机译:胆盐与姜黄素和姜黄素在二棕榈酰-sn-甘油-3-磷酸胆碱脂质体中的相互作用的研究

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Curcumin, often used as a food spice, is a natural polyphenol that has various medicinal benefits such as anti-cancer, anti-amyloid, anti-oxidant, and anti-inflammatory properties, among others. The interaction between bile salts having physiological significance and curcumin suggests the aggregation of bile salts dramatically alters the absorption and fluorescence parameters of curcumin. The fluorescence emission maximum as well as the intensity can easily detect critical micellar concentration of sodium cholate and sodium deoxycholate respectively to be 16 and 6. mM at room temperature. The mechanism of interaction of curcumin with bile salts has been presented at low, intermediate and high bile salt concentrations and depends on temperature. In the presence of bile salts the DPPH scavenging activity was preserved, though less than in the presence of curcumin alone. The effect of submicellar concentration, 5-50. μM, of bile salt with 1,2-dipalmitoyl-sn-glycero-3-phosphocholine (DPPC) liposomes in solid gel and liquid crystalline phases has been investigated using curcumin as an embedded probe in the membrane. The curcumin based fluorescence probing method indicates even at very low concentration, ~5. μM, incorporation of monomeric bile salt molecules disorders the membrane properties. Expulsion of curcumin from the membrane in the presence of bile salt is ruled out, suggesting wetting of membrane. Alteration of membrane fluidity by bile salts is found to have an opposing effect in the liquid crystalline phase compared to in the solid gel phase, and is sensitive to the nature of bile salt. The permeability in the liquid crystalline phase decreases in the presence of bile salt. The phase transition temperature of the membrane is influenced by bile salt.
机译:姜黄素通常被用作食品香料,是一种天然的多酚,具有多种医学功效,例如抗癌,抗淀粉样蛋白,抗氧化剂和抗炎特性。具有生理意义的胆盐与姜黄素之间的相互作用表明胆盐的聚集极大地改变了姜黄素的吸收和荧光参数。在室温下,最大的荧光发射强度和强度可以轻松检测到胆酸钠和脱氧胆酸钠的临界胶束浓度分别为16和6 mM。姜黄素与胆汁盐相互作用的机理已在低,中和高胆汁盐浓度下提出,并取决于温度。在胆汁盐存在下,DPPH清除活性得以保留,尽管比仅在姜黄素存在下要少。亚胶束浓度的影响为5-50。使用姜黄素作为膜中的嵌入式探针,研究了在固态凝胶和液晶相中具有1,M二苯甲酰基-sn-甘油-3-磷酸胆碱(DPPC)脂质体的μM胆盐。基于姜黄素的荧光探测方法表明即使在非常低的浓度下(〜5)。 μM,单体胆汁盐分子的掺入会破坏膜性能。排除了胆汁盐存在下从膜中排出姜黄素的可能性,这表明膜被润湿了。发现与固体凝胶相相比,胆汁盐对膜流动性的改变在液晶相中具有相反的作用,并且对胆汁盐的性质敏感。在胆汁盐的存在下,液晶相的渗透性降低。膜的相变温度受胆汁盐的影响。

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