Dorota Dulko, Ilona E Kłosowska-Chomiczewska, Teresa Del Castillo-Santaella, Miguel A Cabrerizo-Vílchez, Justyna Łuczak, Robert Staroń, Łukasz Krupa, Julia Maldonado-Valderrama, Adam Macierzanka
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However, individual BSs without PC yielded significantly different IFT results (P < 0.01) compared to HB, highlighting the importance of phospholipids. Dilatation rheology further emphasised the need for accurate phospholipid representation in bile models. Our results suggest that phospholipids in HB and in BS/PC systems enhance resistance to desorption, potentially affecting lipolysis. This is important, as current in vitro digestion models often replicate only intestinal BS concentrations to mimic the behaviour of HB in the intestinal lumen. Furthermore, the specific composition of BSs in HB appears less critical than the overall BS and phospholipid contents, suggesting that the kinetics of triglyceride digestion is influenced by the combined luminal concentrations of these components. 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引用次数: 0
摘要
本研究考察了单个胆汁盐(BSs)及其与磷脂酰胆碱(BS/PC)混合物的界面演变,以模拟人类胆汁(HB)在甘油三酯/水界面溶脂过程中的复杂行为。通过模拟暴露于小肠液中的吸附和解吸循环,我们证明使用简单的 BS 和 PC 混合物就能复制真实胆汁的界面行为。脂肪分解和解吸后的界面张力(IFT)测量结果表明,在所分析的 BS 总浓度(2.23-7.81 mM)范围内,HB 样品和 BS/PC 混合物之间没有明显差异(P > 0.05)。然而,不含 PC 的单个 BS 产生的 IFT 结果差异很大(P
Interfacial behaviour of human bile and its substitution for in vitro lipolysis studies.
This study examined the interfacial evolution of individual bile salts (BSs) and their blends with phosphatidylcholine (BS/PC) to simulate the complex behaviour of human bile (HB) during lipolysis at the triglyceride/water interface. Using adsorption and desorption cycles, mimicking exposure to small intestinal fluids, we demonstrate that the interfacial behaviour of real HB can be replicated using simple mixtures of BSs and PC. Interfacial tension (IFT) measurements after lipolysis and desorption showed no significant differences (P > 0.05) between HB samples and BS/PC mixtures across the total BS concentrations analysed (2.23-7.81 mM). However, individual BSs without PC yielded significantly different IFT results (P < 0.01) compared to HB, highlighting the importance of phospholipids. Dilatation rheology further emphasised the need for accurate phospholipid representation in bile models. Our results suggest that phospholipids in HB and in BS/PC systems enhance resistance to desorption, potentially affecting lipolysis. This is important, as current in vitro digestion models often replicate only intestinal BS concentrations to mimic the behaviour of HB in the intestinal lumen. Furthermore, the specific composition of BSs in HB appears less critical than the overall BS and phospholipid contents, suggesting that the kinetics of triglyceride digestion is influenced by the combined luminal concentrations of these components. These findings have significant implications for understanding the role of bile in digestion and offer insights for designing more accurate in vitro models to study the gastrointestinal behaviour of food emulsions and lipid-based delivery systems.