Do microRNAs play a role in the activity of plant-based vaccines?
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Introduction: An important trend in vaccinology is the development of oral vaccines based on genetically modified plants. Areas covered: Several studies have suggested that dietary microRNAs from plants and other organisms are bioavailable upon oral ingestion exerting biological events in the host such as the modulation of gene expression in several cell types. Since oral plant-based vaccines rely on whole cells as vaccine delivery vehicles, miRNAs could play a role in the immunogenic activity of this type of vaccine. In the present report, this hypothesis is discussed under the light of recent evidence on the immunomodulatory activity exerted by miRNAs using in vitro and in vivo evaluations. Expert commentary: The ways to generate new knowledge and exploit the potential of miRNAs in the development of oral vaccines are discussed. © 2017 Informa UK Limited, trading as Taylor %26 Francis Group.
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Introduction: An important trend in vaccinology is the development of oral vaccines based on genetically modified plants. Areas covered: Several studies have suggested that dietary microRNAs from plants and other organisms are bioavailable upon oral ingestion exerting biological events in the host such as the modulation of gene expression in several cell types. Since oral plant-based vaccines rely on whole cells as vaccine delivery vehicles, miRNAs could play a role in the immunogenic activity of this type of vaccine. In the present report, this hypothesis is discussed under the light of recent evidence on the immunomodulatory activity exerted by miRNAs using in vitro and in vivo evaluations. Expert commentary: The ways to generate new knowledge and exploit the potential of miRNAs in the development of oral vaccines are discussed. © 2017 Informa UK Limited, trading as Taylor & Francis Group.
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adjuvant; cytokines; dendritic cell; food-grade vaccines; immunomodulation; NFAT; NFκB; Non-coding RNA; oral vaccine interleukin 10; interleukin 12; interleukin 6; microRNA; microRNA 125; microRNA 146; microRNA 155; microRNA 172; microRNA 181; microRNA 200c; microRNA 223; microRNA 29b; nitric oxide; plant based vaccine; transforming growth factor beta; unclassified drug; vaccine; edible vaccine; microRNA; adaptive immunity; antigen presentation; Article; autoimmunity; B lymphocyte; cell maturation; cross presentation; cytokine production; dendritic cell; drug delivery system; exosome; gene expression; human; immune system; immunomodulation; in vitro study; in vivo study; innate immunity; milk; nonhuman; priority journal; rice; soybean; T lymphocyte; transgenic plant; vaccine immunogenicity; animal; immunology; isolation and purification; metabolism; Animals; Humans; MicroRNAs; Plants, Genetically Modified; Vaccines, Edible
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