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Infrared Spectroscopic Studies on the Dipalmitoyl Phosphatidylcholine Bilayer Interactions with Calcium Phosphate: Effect of Vitamin D2

机译:二棕榈酰磷脂酰胆碱双层与磷酸钙相互作用的红外光谱研究:维生素D2的作用

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In the present work, the interaction of calcium-phosphate with DPPC (dipalmitoyl phosphatidylcholine) model membranes has been studied in the presence and absence of vitamin D2by using Fourier Transform Infrared (FTIR) spectroscopy. Calcium and phosphorus are the most abundant elements in the body. They combine in the form of calcium phosphate salt, called hydroxyapatite. Hydroxyapatite is the major structural component of the bone. Calcium phosphate assists with the digestion and absorption of food and is vitally important for the building of sturdy bone and body structures and a robust constitution. Phosphorus is extracted from foods and its use is controlled by vitamin D and calcium. FTIR spectral analysis results suggested that, calcium–phosphate complex, which is the major component of the bones, decreases the phase transition temperature to lower values, causes a loss in cooperativity of the acyl chains, decreases the order of the membrane in both phases and decreases the dynamics of the membrane in the liquid crystalline phase, increases the flexibility of the chains in the center of the bilayer in both phases, and increases the mobility of the head group of DPPC in the gel phase. The effect of calcium-phosphate on DPPC liposomes diminishes with the addition of vitamin D2into the liposomes. Our results suggest how calcium-phosphate and/or vitamin D2, which have indispensable role for the functioning of the bone tissue, affect the thermal behaviour of DPPC liposomes at molecular level.
机译:在当前的工作中,已经通过使用傅立叶变换红外(FTIR)光谱研究了在存在和不存在维生素D2的情况下磷酸钙与DPPC(二棕榈酰磷脂酰胆碱)模型膜的相互作用。钙和磷是人体中最丰富的元素。它们以称为羟磷灰石的磷酸钙盐的形式结合。羟基磷灰石是骨骼的主要结构成分。磷酸钙有助于食物的消化和吸收,对于构建坚固的骨骼和身体结构以及坚固的身体至关重要。磷是从食品中提取的,其使用受维生素D和钙的控制。 FTIR光谱分析结果表明,作为骨骼主要成分的磷酸钙复合物可将相变温度降低至更低的值,导致酰基链的协同性损失,并降低两相膜的顺序。降低了液晶相中膜​​的动力学,增加了两相中双层中心的链的柔韧性,并增加了凝胶相中DPPC头基的迁移率。通过向脂质体中添加维生素D2,磷酸钙对DPPC脂质体的作用减弱。我们的结果表明,磷酸钙和/或维生素D2对骨骼组织的功能具有不可或缺的作用,如何在分子水平上影响DPPC脂质体的热行为。

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