Laboratory for Environmental and Life Sciences, University of Nova Gorica, Slovenia.
Istituto Nazionale di Oceanografia e di Geofisica Sperimentale (OGS), Trieste, Italy.
Harmful Algae. 2019 Feb;82:44-51. doi: 10.1016/j.hal.2019.01.002. Epub 2019 Jan 9.
At the present, the identification of planktonic species in coastal water is still a time intensive process performed by highly trained personnel that relies either on qPCR or on light microscopy observation and in vitro culturing. Furthermore, the increasing danger represented by Harmful Algal Blooms (HABs) inside phytoplankton community and the recent implementation of the legislation on ballast water management to prevent the introduction of HABs and NIS (Non Indigenous Species) urge the development of faster and reliable diagnostic methods. Immuno-based approaches could fulfil this need provided that the costs for antibody selection and production will be reduced. In this work it is demonstrated for the first time the feasibility to recover nanobodies (VHHs) selective for native surface epitopes of Alexandrium minutum by direct whole cell bio-panning using a pre-immune phage display library. The recombinant nature of VHHs enabled their rapid engineering into eGFP fluorescent reagents (fluobodies) that were produced recombinantly in bacteria and are directly suitable for fluorescence microscopy and flow cytometry. Immune-detection identified also cysts and anti-Alexandrium fluobodies showed no cross-reactivity with indigenous not-toxic phytoplankton microalgae belonging to different geni. The fluobodies were able to bind selectively to the target cells in both fixed and fresh samples with minimal processing.
目前,鉴定沿海浮游生物物种仍然是一个需要高度训练有素的人员进行的费时过程,该过程依赖于 qPCR 或光学显微镜观察和体外培养。此外,浮游植物群落中有害藻类(HABs)的日益增加的危险以及最近实施的压载水管理立法,以防止 HABs 和非本地物种(NIS)的引入,都迫切需要开发更快、更可靠的诊断方法。免疫方法可以满足这一需求,前提是抗体选择和生产的成本将降低。在这项工作中,首次证明了通过直接使用预免疫噬菌体展示文库对原生表面表位进行全细胞生物淘选,从天然状态下回收对微小亚历山大藻具有选择性的纳米抗体(VHHs)是可行的。VHHs 的重组性质使其能够快速工程化为 GFP 荧光试剂(fluobodies),这些试剂可以在细菌中重组产生,并且直接适用于荧光显微镜和流式细胞术。免疫检测还识别了休眠孢囊,并且抗亚历山大藻的 fluobodies 与不同属的土著无毒微藻没有交叉反应性。这些 fluobodies 在最小的处理条件下,能够在固定和新鲜样品中选择性地与靶细胞结合。