Department of Nutritional Sciences, King's College London, Franklin Wilkins Building, 150 Stamford Street, London SE1 9NH, United Kingdom.
Systemic Physiological and Ecotoxicological Research (SPHERE), Department of Biology, Universiteit Antwerpen, Groenenborgerlaan 171, Antwerpen 2020, Belgium.
Environ Sci Technol. 2021 May 18;55(10):6848-6856. doi: 10.1021/acs.est.0c06803. Epub 2021 Mar 16.
Water pH is predicted to affect the uptake of ionizable pharmaceuticals in fish. The current study used an in vitro primary fish gill cell culture system to assess the effect of pH values in the range of 4.5-8.75 on the uptake rates of the base propranolol (pKa 9.42) and the acid ibuprofen (pKa 4.59). The rate-limiting step in the uptake was the diffusive supply flux of the unionized form from the water to the apical membrane, with subsequent rapid transfer across the epithelium. Computed uptake rate based on the unionized fraction best described the uptake of propranolol and ibuprofen over the range of pH values 5-8 and 6-8.75, respectively. For ibuprofen, the computed uptake rate overestimated the uptake below pH 6 where the unionized fraction increased from 4% at pH 6 to 55% at pH 4.5. As the unionized fraction increased, the uptake rate plateaued suggesting a saturation of the transport process. For both drugs, large variations in the uptake occur with only small fluctuations in pH values. This occurs between pH values 6 and 8, which is the pH range acceptable in regulatory test guidelines and seen in most of our freshwaters.
水的 pH 值预计会影响鱼类对可电离药物的吸收。本研究采用体外原代鱼类鳃细胞培养系统,评估了 pH 值在 4.5-8.75 范围内对碱性普萘洛尔(pKa9.42)和酸性布洛芬(pKa4.59)吸收速率的影响。吸收的限速步骤是未离解形式从水中扩散到顶膜的供应通量,随后迅速穿过上皮细胞。基于未离解分数计算得出的摄取速率,分别在 pH5-8 和 6-8.75 的范围内较好地描述了普萘洛尔和布洛芬的摄取情况。对于布洛芬,在 pH6 以下,计算得出的摄取速率会高估摄取情况,因为此时未离解分数从 pH6 的 4%增加到 pH4.5 的 55%。随着未离解分数的增加,摄取速率趋于平稳,表明运输过程达到饱和。对于这两种药物,吸收速率的大幅波动仅伴随着 pH 值的微小波动。这种情况发生在 pH6 到 8 之间,这是监管测试指南中可接受的 pH 值范围,也是我们大部分淡水环境中的 pH 值。