Salter G J, Kell D B
Institute of Biological Sciences, University of Wales, Aberystwyth, Dyfed, U.K.
Crit Rev Biotechnol. 1995;15(2):139-77. doi: 10.3109/07388559509147404.
Although they were used historically as antimicrobial agents, there is a modern requirement to devise organic solvent systems for exploitation in the biotransformation by intact cells of substrates that are poorly soluble in water. Water-immiscible solvents are normally less cytotoxic than are water-miscible ones. While a unitary mechanism is excluded, damage to the membrane remains the likeliest major mechanism of cytotoxicity, and may be conveniently assessed using an electronic biomass probe. Studies designed to account for the mechanisms of action of general anesthetics and of uncouplers parallel those designed to account for the cytotoxicity of organic solvents. Although there are hundreds of potential physical descriptors of solvent properties, many are broadly similar to each other, such that the intrinsic dimensionality of solvent space is relatively small (< 10). This opens up the possibility of providing a rational biophysical basis for the optimization of the solvents used for biotransformations. The widely used descriptor of solvent behavior, log P (the octanol:water partition coefficient), is a composite of more fundamental molecular descriptors; this explains why there are rarely good correlations between cytotoxicity and log P when a wide variety of solvents is studied. Although the intrinsic dimensionality of solvent space is relatively small, pure solvents still populate it rather sparsely. Thus, mixtures of solvents can and do provide the opportunity of obtaining a solvent optimal for a biotransformation of interest.
尽管它们在历史上被用作抗菌剂,但现代有需求设计有机溶剂体系,用于由水溶解度低的底物的完整细胞进行生物转化。与水混溶的溶剂相比,与水不混溶的溶剂通常细胞毒性较小。虽然单一机制被排除,但膜损伤仍然是最可能的主要细胞毒性机制,并且可以使用电子生物量探头方便地进行评估。旨在解释全身麻醉剂和解偶联剂作用机制的研究与旨在解释有机溶剂细胞毒性的研究相似。尽管有数百种潜在的溶剂性质物理描述符,但许多彼此大致相似,因此溶剂空间的内在维度相对较小(<10)。这为优化用于生物转化的溶剂提供合理的生物物理基础开辟了可能性。广泛使用的溶剂行为描述符log P(辛醇:水分配系数)是更基本的分子描述符的组合;这解释了为什么在研究多种溶剂时,细胞毒性与log P之间很少有良好的相关性。尽管溶剂空间的内在维度相对较小,但纯溶剂在其中的分布仍然相当稀疏。因此,溶剂混合物能够且确实提供了获得适合感兴趣的生物转化的最佳溶剂的机会。