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Solubility and Permeation of Hydrogen Sulfide in Lipid Membranes

机译:硫化氢在脂质膜中的溶解度和渗透性

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摘要

Hydrogen sulfide (H2S) is mainly known for its toxicity but has recently been shown to be produced endogenously in mammalian tissues and to be associated with physiological regulatory functions. To better understand the role of biomembranes in modulating its biological distribution and effects; we measured the partition coefficient of H2S in models of biological membranes. The partition coefficients were found to be 2.1±0.2, 1.9±0.5 and 2.0±0.6 in n-octanol, hexane and dilauroylphosphatidylcholine liposome membranes relative to water, respectively (25°C). This two-fold higher concentration of H2S in the membrane translates into a rapid membrane permeability, Pm = 3 cm s−1. We used a mathematical model in three dimensions to gain insight into the diffusion of total sulfide in tissues. This model shows that the sphere of action of sulfide produced by a single cell expands to involve more than 200 neighboring cells, and that the resistance imposed by lipid membranes has a significant effect on the diffusional spread of sulfide at pH 7.4, increasing local concentrations. These results support the role of hydrogen sulfide as a paracrine signaling molecule and reveal advantageous pharmacokinetic properties for its therapeutic applications.
机译:硫化氢(H2S)主要以其毒性而著称,但最近已证明是在哺乳动物组织中内生产生的,并且与生理调节功能有关。更好地了解生物膜在调节其生物分布和作用中的作用;我们在生物膜模型中测量了H2S的分配系数。发现在正辛醇,己烷和二月桂酰磷脂酰胆碱脂质体膜中,相对于水(25℃)的分配系数分别为2.1±0.2、1.9±0.5和2.0±0.6。膜中H2S浓度高出两倍,转化为快速的膜渗透性,Pm = 3 cm s -1 。我们在三个维度上使用了数学模型,以了解组织中总硫化物的扩散。该模型表明,单个细胞产生的硫化物的作用范围扩展到涉及200多个相邻细胞,并且脂质膜施加的阻力对pH 7.4时硫化物的扩散扩散具有显着影响,从而增加了局部浓度。这些结果支持了硫化氢作为旁分泌信号分子的作用,并揭示了其治疗应用的有利药代动力学特性。

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