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Encapsulation of Aspartic Protease in Nonlamellar Lipid Liquid Crystalline Phases

机译:在非混凝土脂质液晶相中的天冬氨酸蛋白酶封装

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摘要

Encapsulation of proteins within lipid inverse bicontinuous cubic phases (Q2) has been widely studied for many applications, such as protein crystallization or drug delivery of proteins for food and pharmaceutical purposes. However, the use of the lipid sponge (L3) phase for encapsulation of proteins has not yet been well explored. Here, we have employed a lipid system that forms highly swollen sponge phases to entrap aspartic protease (34 kDa), an enzyme used for food processing, e.g., to control the cheese-ripening process. Small-angle x-ray scattering showed that although the L3 phase was maintained at low enzyme concentrations (≤15 mg/mL), higher concentration induces a transition to more curved structures, i.e., transition from L3 to inverse bicontinuous cubic (Q2) phase. The Raman spectroscopy data showed minor conformational changes assigned to the lipid molecules that confirm the lipid-protein interactions. However, the peaks assigned to the protein showed that the structure was not significantly affected. This was consistent with the higher activity presented by the encapsulated aspartic protease compared to the free enzyme stored at the same temperature. Finally, the encapsulation efficiency of aspartic protease in lipid sponge-like nanoparticles was 81% as examined by size-exclusion chromatography. Based on these results, we discuss the large potential of lipid sponge phases as carriers for proteins.
机译:对于许多应用,脂质逆两连续立方相(Q2)中的蛋白质的封装已被广泛研究了许多应用,例如蛋白质结晶或蛋白质的药物,用于食品和药物目的。然而,尚未充分探讨使用脂质海绵(L3)蛋白封装的相。在这里,我们使用了一种脂质体系,其形成高溶胀的海绵阶段,以捕获天冬氨酸蛋白酶(34kDa),一种用于食品加工的酶,例如,用于控制奶酪熟练的过程。小角X射线散射显示,尽管L3相以低酶浓度(≤15mg/ ml)保持,但较高的浓度会导致过渡到更多曲线结构,即从L3转变为逆双周末立方(Q2)相位。拉曼光谱数据显示出分配给确认脂质蛋白质相互作用的脂质分子的次要构象变化。然而,分配给蛋白质的峰表明该结构没有受到显着影响。与在相同温度下储存的游离酶相比,将其与包封的天冬氨酸蛋白酶相比的更高活性一致。最后,通过尺寸排阻色谱法检测,脂质海绵状纳米颗粒中天冬氨酸蛋白酶的封装效率为81%。基于这些结果,我们讨论了脂质海绵阶段的大潜力作为蛋白质的载体。

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