Research Department for Limnology, University of Innsbruck, Mondseestrasse 9, 5310 Mondsee, Austria.
Department of Biological Sciences, Egerton University, P.O. Box 536, Egerton 20115, Kenya.
Toxins (Basel). 2018 Jul 3;10(7):275. doi: 10.3390/toxins10070275.
The human health risks posed by exposure to cyanobacterial toxins such as microcystin (MC) through water and fish consumption remain poorly described. During the last two decades, coastal regions of Lake Victoria such as Nyanza Gulf (Kisumu Bay) have shown severe signs of eutrophication with blooms formed by producing MC. In this study, the spatial variability in MC concentration in Kisumu Bay was investigated which was mostly caused by buoyancy and wind drifting. Small fish (<6 cm) mainly composed of were examined for MC content by means of biological methods such as ELISA and protein phosphatase inhibition assay (PPIA) and partly by chemical-analytical methods such as LC-MS/MS. Overall, the MC content in small fish was related to the MC content observed in the seston. When comparing the MC content in the seston in relation to dry weight with the MC content in small fish the latter was found three orders of magnitude decreased. On average, the ELISA-determined MC contents exceeded the PPIA-determined MC contents by a factor of 8.2 ± 0.5 (SE) while the MC contents as determined by LC-MS/MS were close to the detection limit. Using PPIA, the MC content varied from 25⁻109 (mean 62 ± 7) ng/g fish dry weight in Kisumu Bay vs. 14 ± 0.8 ng MC/g in the more open water of L. Victoria at Rusinga channel. Drying the fish under the sun showed little effect on MC content, although increased humidity might indirectly favor photocatalyzed MC degradation.
人类通过水和鱼类消费暴露于蓝藻毒素(如微囊藻毒素 [MC])而面临的健康风险描述得还很不完善。在过去的二十年中,维多利亚湖的沿海地区,如尼安扎湾(基苏木湾),已经出现了严重的富营养化迹象,蓝藻大量繁殖并产生 MC。本研究调查了基苏木湾 MC 浓度的空间变异性,这主要是由浮力和风力漂移造成的。通过生物方法(如 ELISA 和蛋白磷酸酶抑制测定法 [PPIA])和部分化学分析方法(如 LC-MS/MS),对体长小于 6 厘米的小鱼进行 MC 含量检测。总体而言,小鱼中的 MC 含量与悬浮物中的 MC 含量有关。当将悬浮物中的 MC 含量与干重进行比较,并与小鱼中的 MC 含量进行比较时,后者的 MC 含量下降了三个数量级。平均而言,ELISA 测定的 MC 含量比 PPIA 测定的 MC 含量高出 8.2 ± 0.5(SE)倍,而 LC-MS/MS 测定的 MC 含量接近检测限。使用 PPIA,在基苏木湾,小鱼中的 MC 含量从 25⁻109(平均 62 ± 7)ng/g 鱼干重不等,而在更开阔的维多利亚湖鲁辛加海峡的水域中,MC 含量为 14 ± 0.8 ng MC/g。将鱼在阳光下晾干对 MC 含量影响不大,尽管湿度增加可能间接有利于光催化 MC 降解。