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Hematin crystallization from aqueous and organic solvents

机译:血红素在水性和有机溶剂中的结晶

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Hematin crystallization is the main mechanism of detoxification of heme that is released in malaria-infected erythrocytes as a byproduct of the hemoglobin catabolism by the parasite. A controversy exists over whether hematin crystals grow from the aqueous medium of the parasite's digestive vacuole or in the lipid bodies present in the vacuole. To this end, we compare the basic thermodynamic and structural features of hematin crystallization in an aqueous buffer at pH 4.8, as in the digestive vacuole, and in water-saturated octanol that mimics the environment of the lipid nanospheres. We show that in aqueous solutions, hematin aggregation into mesoscopic disordered clusters is insignificant. We determine the solubility of the β-hematin crystals in the pH range 4.8-7.6. We image by atomic force microscopy crystals grown at pH 4.8 and show that their macroscopic and mesoscopic morphology features are incompatible with those reported for biological hemozoin. In contrast, crystals grown in the presence of octanol are very similar to those extracted from parasites. We determine the hematin solubility in water-saturated octanol at three temperatures. These solubilities are four orders of magnitude higher than that at pH 4.8, providing for faster crystallization from organic than from aqueous solvents. These observations further suggest that the lipid bodies play a role in mediating biological hemozoin crystal growth to ensure faster heme detoxification.
机译:血红素结晶是血红素解毒的主要机理,血红素是由疟原虫通过血红蛋白分解代谢的副产物而释放在疟疾感染的红细胞中的。关于血红素晶体是从寄生虫的消化液的水介质中生长还是在液泡中的脂质体中生长存在争议。为此,我们比较了染色质在pH 4.8的水性缓冲液中的基本热力学和结构特征,如在消化液泡中以及在模拟脂质纳米球环境的水饱和辛醇中。我们表明在水溶液中,血红素聚集到介观无序簇中是微不足道的。我们确定β-血红素晶体在pH范围4.8-7.6中的溶解度。我们通过在4.8的pH值下生长的原子力显微镜晶体成像,并显示它们的宏观和介观形态特征与报道的生物溶血素不兼容。相反,在辛醇存在下生长的晶体与从寄生虫中提取的晶体非常相似。我们确定在三个温度下血红素在水饱和辛醇中的溶解度。这些溶解度比pH 4.8的溶解度高四个数量级,从而使从有机溶剂中结晶比从水性溶剂中结晶更快。这些观察结果进一步表明,脂质体在介导生物学的血红蛋白晶体生长中起作用,以确保更快的血红素排毒。

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