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pH 响应自组装隔室作为可调模型原细胞膜系统。

pH-Responsive Self-Assembled Compartments as Tuneable Model Protocellular Membrane Systems.

机构信息

Department of Biology, Indian Institute of Science Education and Research, Pune, 411008, India.

出版信息

Chembiochem. 2022 Dec 16;23(24):e202200371. doi: 10.1002/cbic.202200371. Epub 2022 Sep 13.

Abstract

Prebiotically plausible single-chain amphiphiles are enticing as model protocellular compartments to study the emergence of cellular life, owing to their self-assembling properties. Here, we investigated the self-assembly behaviour of mono-N-dodecyl phosphate (DDP) and mixed systems of DDP with 1-dodecanol (DDOH) at varying pH conditions. Membranes composed of DDP showed pH-responsive vesicle formation in a wide range of pH with a low critical bilayer concentration (CBC). Further, the addition of DDOH to DDP membrane system enhanced vesicle formation and stability in alkaline pH regimes. We also compared the high-temperature behaviour of DDP and DDP:DDOH membranes with conventional fatty acid membranes. Both, DDP and DDP:DDOH mixed membranes possess packing that is similar to decanoic acid membrane. However, the micropolarity of these systems is similar to phospholipid membranes. Finally, the pH-dependent modulation of different phospholipid membranes doped with DDP was also demonstrated to engineer tuneable membranes with potential translational implications.

摘要

具有前生物合理性的单链两亲物由于其自组装特性,作为研究细胞生命起源的模型原细胞隔室很有吸引力。在这里,我们研究了单-N-十二烷基磷酸酯 (DDP) 及其与 1-十二醇 (DDOH) 的混合体系在不同 pH 条件下的自组装行为。由 DDP 组成的膜在很宽的 pH 范围内显示出对 pH 响应的囊泡形成,并且具有低临界双层浓度 (CBC)。此外,将 DDOH 添加到 DDP 膜系统中可以增强碱性 pH 条件下囊泡的形成和稳定性。我们还比较了 DDP 和 DDP:DDOH 膜与常规脂肪酸膜的高温行为。DDP 和 DDP:DDOH 混合膜都具有类似于癸酸膜的堆积方式。然而,这些系统的微极性类似于磷脂膜。最后,还证明了 DDP 掺杂的不同磷脂膜的 pH 依赖性调制可以工程设计出具有潜在转化意义的可调谐膜。

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