Department of Chemistry, Faculty of Science, Masaryk University, Kamenice 5, 625 00 Brno, Czech Republic.
Department of Chemistry, Faculty of Science, Masaryk University, Kamenice 5, 625 00 Brno, Czech Republic.
Int J Pharm. 2021 Jan 25;593:120128. doi: 10.1016/j.ijpharm.2020.120128. Epub 2020 Nov 30.
Solutions of three Good's buffers (HEPES, MOPS, and MES), both pure and mixed with sodium phosphate buffers (Na-P), are investigated in terms of the freezing-induced acidity changes in their operational pH ranges. The Good's buffers have the tendency to basify upon freezing and, more intensively, at lower pHs. The acidity varies most prominently in MES, where the change may reach the value of two. Importantly, the Good's buffers are shown to mitigate the strong acidification in the Na-P buffer. Diverse concentrations of the Good's buffers are added to cancel out the strong, freezing-induced acidity drop in 50 mM Na-P that markedly contributes to the solution's acidity; the relevant values are 3 mM HEPES, 10 mM MOPS, and 80 mM MES. These buffer blends are therefore proposed to be applied in maintaining approximately the acidity of solutions even after the freezing process and, as such, should limit the stresses for frozen chemicals and biochemicals.
研究了三种 Good's 缓冲液(HEPES、MOPS 和 MES)的溶液,包括纯溶液和与磷酸钠缓冲液(Na-P)混合的溶液,考察了它们在操作 pH 范围内冷冻诱导酸度变化的情况。Good's 缓冲液在冷冻时倾向于碱化,在较低的 pH 值下更明显。酸度变化最显著的是 MES,其变化值可能达到 2。重要的是,Good's 缓冲液被证明可以减轻 Na-P 缓冲液中的强酸化。加入不同浓度的 Good's 缓冲液可以抵消 50 mM Na-P 中强烈的、冷冻诱导的酸度下降,这显著增加了溶液的酸度;相关值为 3 mM HEPES、10 mM MOPS 和 80 mM MES。因此,这些缓冲液混合物被提议用于在冷冻过程后维持溶液的酸度,从而限制冷冻化学品和生物化学物质的应激。