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阐明竹盐如何与负载脂质膜相互作用:碱度对膜流动性的影响。

Elucidating how bamboo salt interacts with supported lipid membranes: influence of alkalinity on membrane fluidity.

作者信息

Jeong Jong Hee, Choi Jae-Hyeok, Kim Min Chul, Park Jae Hyeon, Herrin Jason Scott, Kim Seung Hyun, Lee Haiwon, Cho Nam-Joon

机构信息

Department of Convergence Nanoscience, College of Natural Science, Hanyang University, Seoul, 133070, Korea.

出版信息

Eur Biophys J. 2015 Jul;44(5):383-91. doi: 10.1007/s00249-015-1043-8. Epub 2015 May 24.

Abstract

Bamboo salt is a traditional medicine produced from sea salt. It is widely used in Oriental medicine and is an alkalizing agent with reported antiinflammatory, antimicrobial and chemotherapeutic properties. Notwithstanding, linking specific molecular mechanisms with these properties has been challenging to establish in biological systems. In part, this issue may be related to bamboo salt eliciting nonspecific effects on components found within these systems. Herein, we investigated the effects of bamboo salt solution on supported lipid bilayers as a model system to characterize the interaction between lipid membranes and bamboo salt. The atomic composition of unprocessed and processed bamboo salts was first analyzed by mass spectrometry, and we identified several elements that have not been previously reported in other bamboo salt preparations. The alkalinity of hydrated samples was also measured and determined to be between pH 10 and 11 for bamboo salts. The effect of processed bamboo salt solutions on the fluidic properties of a supported lipid bilayer on glass was next investigated by fluorescence recovery after photobleaching (FRAP) analysis. It was demonstrated that, with increasing ionic strength of the bamboo salt solution, the fluidity of a lipid bilayer increased. On the contrary, increasing the ionic strength of near-neutral buffer solutions with sodium chloride salt diminished fluidity. To reconcile these two observations, we identified that solution alkalinity is critical for the effects of bamboo salt on membrane fluidity, as confirmed using three additional commercial bamboo salt preparations. Extended-DLVO model calculations support that the effects of bamboo salt on lipid membranes are due to the alkalinity imparting a stronger hydration force. Collectively, the results of this work demonstrate that processing of bamboo salt strongly affects its atomic composition and that the alkalinity of bamboo salt solutions contributes to its effect on membrane fluidity.

摘要

竹盐是一种由海盐制成的传统药物。它在东方医学中广泛应用,是一种具有抗炎、抗菌和化疗特性的碱化剂。尽管如此,在生物系统中确定这些特性与特定分子机制之间的联系一直具有挑战性。部分原因可能是竹盐对这些系统中的成分产生了非特异性影响。在此,我们研究了竹盐溶液对支撑脂质双层的影响,以此作为表征脂质膜与竹盐之间相互作用的模型系统。首先通过质谱分析了未加工和加工后的竹盐的原子组成,我们鉴定出了一些在其他竹盐制剂中未曾报道过的元素。还测量了水合样品的碱度,确定竹盐的碱度在pH 10至11之间。接下来通过光漂白后荧光恢复(FRAP)分析研究了加工后的竹盐溶液对玻璃上支撑脂质双层流体性质的影响。结果表明,随着竹盐溶液离子强度的增加,脂质双层的流动性增加。相反,用氯化钠盐增加近中性缓冲溶液的离子强度会降低流动性。为了调和这两个观察结果,我们确定溶液碱度对于竹盐对膜流动性的影响至关重要,这一点通过另外三种市售竹盐制剂得到了证实。扩展的DLVO模型计算支持竹盐对脂质膜的影响是由于碱度赋予了更强的水化力。总的来说,这项工作的结果表明竹盐的加工强烈影响其原子组成,并且竹盐溶液的碱度有助于其对膜流动性的影响。

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