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  1. Article ; Online: Potentialities of a mesoporous activated carbon as virus detection probe in aquatic systems

    Delafosse, Doriane / Reinert, Laurence / Azaïs, Philippe / Fontvieille, Dominique / Soneda, Yasushi / Morand, Patrice / Duclaux, Laurent

    Journal of Virological Methods. 2022 May, v. 303 p.114496-

    2022  

    Abstract: Enteric viruses are widely spread in water environments, some being harmful for human communities. Regular epidemics highlight the usefulness of analysing such viruses in wastewaters as a tool for epidemiologists to monitor the extent of their ... ...

    Abstract Enteric viruses are widely spread in water environments, some being harmful for human communities. Regular epidemics highlight the usefulness of analysing such viruses in wastewaters as a tool for epidemiologists to monitor the extent of their dissemination among populations. In this context, CNovel™ Powdered Activated Carbon (PAC) was chosen for its high porosity and high adsorption capacity to investigate sorbent ability to be used as part of of virus detection probes. Self-supported PAC Foils (PAC-F), PAC coated Brushes (PAC-B) and PAC Sampler (PAC-S) were used to prospect PAC efficacy in virus adsorption and above all, the feasibility of virus retrieval from them, allowing to further analysis such as molecular analysis quantification. Aiming at the development of a field-operational tool, PAC saturation and reusability were also investigated, as well as PAC-polarisation effect on its adsorption capacity. Our results pointed out that sorbent-based probes exhibited a high adsorption efficacy of spiked Murine Norovirus (MNV-1) in bare 0.1 M NaCl solution (>90 % for PAC-B and >86 % for PAC-F at ≈10⁷ genome unit virus concentration), with no saturation within our experimental framework. On the other hand, polarisation assays using PAC-F as electrode, did not demonstrate any adsorption improvement. Experiments on PAC probes reusability suggested that they should be used three times at the most for a maximum efficiency. Values of virus retrieval were low (up to 11 % with PAC-B and up to 14 % with PAC-F in 0.1 M NaCl virus suspensions), illustrating the need for the techniques to be improved. A preliminary field assay using PAC-S, demonstrated that our catch-and-retrieve protocol yielded to the detection of autochthonous human Norovirus Genogroup I (NoV GI) and Adenovirus (AdV), in wastewaters suggesting its promising application as virus detection tool in such high loaded and complex waters.
    Keywords Adenoviridae ; Norovirus ; activated carbon ; adsorption ; electrodes ; genome ; humans ; mice ; porosity ; porous media ; sorbents ; viruses ; wastewater ; Enteric viruses ; Powdered activated carbon ; Sorbent-based probe ; Virus analysis ; Wastewater analysis
    Language English
    Dates of publication 2022-05
    Publishing place Elsevier B.V.
    Document type Article ; Online
    ZDB-ID 8013-5
    ISSN 1879-0984 ; 0166-0934
    ISSN (online) 1879-0984
    ISSN 0166-0934
    DOI 10.1016/j.jviromet.2022.114496
    Database NAL-Catalogue (AGRICOLA)

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  2. Article ; Online: Potentialities of a mesoporous activated carbon as virus detection probe in aquatic systems.

    Delafosse, Doriane / Reinert, Laurence / Azaïs, Philippe / Fontvieille, Dominique / Soneda, Yasushi / Morand, Patrice / Duclaux, Laurent

    Journal of virological methods

    2022  Volume 303, Page(s) 114496

    Abstract: Enteric viruses are widely spread in water environments, some being harmful for human communities. Regular epidemics highlight the usefulness of analysing such viruses in wastewaters as a tool for epidemiologists to monitor the extent of their ... ...

    Abstract Enteric viruses are widely spread in water environments, some being harmful for human communities. Regular epidemics highlight the usefulness of analysing such viruses in wastewaters as a tool for epidemiologists to monitor the extent of their dissemination among populations. In this context, CNovel™ Powdered Activated Carbon (PAC) was chosen for its high porosity and high adsorption capacity to investigate sorbent ability to be used as part of of virus detection probes. Self-supported PAC Foils (PAC-F), PAC coated Brushes (PAC-B) and PAC Sampler (PAC-S) were used to prospect PAC efficacy in virus adsorption and above all, the feasibility of virus retrieval from them, allowing to further analysis such as molecular analysis quantification. Aiming at the development of a field-operational tool, PAC saturation and reusability were also investigated, as well as PAC-polarisation effect on its adsorption capacity. Our results pointed out that sorbent-based probes exhibited a high adsorption efficacy of spiked Murine Norovirus (MNV-1) in bare 0.1 M NaCl solution (>90 % for PAC-B and >86 % for PAC-F at ≈10
    MeSH term(s) Adsorption ; Animals ; Charcoal ; Humans ; Mice ; Waste Water ; Water Pollutants, Chemical ; Water Purification/methods
    Chemical Substances Waste Water ; Water Pollutants, Chemical ; Charcoal (16291-96-6)
    Language English
    Publishing date 2022-02-15
    Publishing country Netherlands
    Document type Journal Article ; Research Support, Non-U.S. Gov't
    ZDB-ID 8013-5
    ISSN 1879-0984 ; 0166-0934
    ISSN (online) 1879-0984
    ISSN 0166-0934
    DOI 10.1016/j.jviromet.2022.114496
    Database MEDical Literature Analysis and Retrieval System OnLINE

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