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Biomimetic transport of simple olive biophenol and analogues through modelbiological membranes by differential scanning calorimetry

机译:差示扫描量热法通过模型生物膜仿生运输简单的橄榄生物酚及其类似物

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The different interactions of p-hydroxybenzoic acid (1), a simple biophenol (BP) found in olives and their food products, and its substitute analogues, benzoic (2), anisic (3), and toluic (4) acids, with a model membrane represented by dimyristoylphosphatidylcholine (DMPC) multilamellar vesicles (MLV) was studied by differential scanning calorimetry (DSC). The influence of their different lipophilic character on transfer and absorption processes through an aqueous medium into a lipid bilayer was also investigated. DSC experiments allowed monitoring of the interaction of BP with biomembranes by considering the effects exerted on the thermotropic behavior of DMPC multilamellar and unilamellar vesicles at different pHs (4 and 7.4). The examined compounds affect the transition temperature (T-m) of phospholipid vesicles, causing a shift toward lower values, which is modulated by the molecular fraction entering into the lipid bilayer, as well as by their molecular interaction with the lipids. Kinetic calorimetric measurements were performed on suspensions of blank liposomes immediately after being added to fixed weighed amounts of powdered compounds and after increasing incubation periods at 37 degreesC. T-m shifts, due to molecular dissolution and transfer of the compounds into the membrane surface occurring during the incubation time, were compared with those determined by a fixed molar fraction of free compounds directly dispersed in the membrane. The results show that the kinetic process, involved in molecular release, transfer through aqueous medium, and uptake by the model membrane surface, is influenced by lipophilicity as well as by pH, acting on the acid solubility and membrane disorder, allowing us to gather useful information on the BP intake process of olive derived foodstuffs.
机译:对羟基苯甲酸(1)(一种简单的生物酚(BP))在橄榄及其食品中发现的不同相互作用及其替代类似物苯甲酸(2),茴香酸(3)和甲苯甲酸(4)与通过差示扫描量热法(DSC)研究了以二肉豆蔻酰磷脂酰胆碱(DMPC)多层囊泡(MLV)为代表的模型膜。还研究了它们不同的亲脂性对通过水性介质进入脂质双层的转移和吸收过程的影响。 DSC实验通过考虑在不同pH(4和7.4)下对DMPC多层和单层囊泡的热致行为的影响,可以监测BP与生物膜的相互作用。所检查的化合物影响磷脂囊泡的转变温度(T-m),导致向更低值的转变,这由进入脂质双层的分子级分及其与脂质的分子相互作用所调节。加入空白称量的粉末状化合物后,立即增加空白脂质体的悬浮液的动力学量度,并在37℃下增加孵育时间后,立即进行动力学量热法测量。将由于在孵育期间发生的分子溶解和化合物向膜表面的转移而导致的T-m位移与由固定在膜中的游离化合物的固定摩尔分数确定的T-m位移进行了比较。结果表明,涉及分子释放,通过水性介质转移和模型膜表面吸收的动力学过程受亲脂性和pH的影响,并影响酸的溶解度和膜紊乱,使我们能够收集有用的信息。有关橄榄衍生食品的BP摄入过程的信息。

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