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1.
Methods Mol Biol ; 2137: 205-212, 2020.
Artigo em Inglês | MEDLINE | ID: mdl-32399931

RESUMO

Liver fluke Fasciola hepatica remains an important agent of foodborne trematode disease producing great economic losses due to its negative effect on productivity of grazing livestock in temperate areas. The prevailing control strategies based on antihelminthic drugs are not long term sustainable due to widespread resistance. Hence, vaccination appears as an attractive option to pursue for parasite eradication.


Assuntos
Fasciola hepatica/imunologia , Fasciolíase/imunologia , Vacinas/imunologia , Animais , Anti-Helmínticos/farmacologia , Antígenos de Helmintos/imunologia , Bovinos , Doenças dos Bovinos/tratamento farmacológico , Doenças dos Bovinos/imunologia , Doenças dos Bovinos/parasitologia , Fasciola hepatica/efeitos dos fármacos , Fasciolíase/tratamento farmacológico , Fasciolíase/parasitologia , Gado/imunologia , Vacinação/métodos
2.
Front Immunol ; 9: 2223, 2018.
Artigo em Inglês | MEDLINE | ID: mdl-30319660

RESUMO

Modern animal and crop production practices are associated with the regular use of antimicrobials, potentially increasing selection pressure on bacteria to become resistant. Alternative approaches are needed in order to satisfy the demands of the growing human population without the indiscriminate use of antimicrobials. Researchers have brought a different perspective to solve this problem and have emphasized the exploitation of animal- and plant-associated microorganisms that are beneficial to their hosts through the modulation of the innate immune system. There is increasing evidence that plants and animals employ microbial perception and defense pathways that closely resemble each other. Formation of pattern recognition receptor (PRR) complexes involving leucine-rich repeat (LRR)-containing proteins, mitogen-activated protein kinase (MAPK)-mediated activation of immune response genes, and subsequent production of antimicrobial products and reactive oxygen species (ROS) and nitric oxide (NO) to improve defenses against pathogens, add to the list of similarities between both systems. Recent pioneering work has identified that animal and plant cells use similar receptors for sensing beneficial commensal microbes that are important for the maintenance of the host's health. Here, we reviewed the current knowledge about the molecular mechanisms involved in the recognition of pathogenic and commensal microbes by the innate immune systems of animal and plants highlighting their differences and similarities. In addition, we discuss the idea of using beneficial microbes to modulate animal and plant immune systems in order to improve the resistance to infections and reduce the use of antimicrobial compounds.


Assuntos
Bactérias/imunologia , Produtos Agrícolas/imunologia , Interações Hospedeiro-Patógeno/imunologia , Gado/imunologia , Simbiose/imunologia , Doenças dos Animais/imunologia , Doenças dos Animais/microbiologia , Doenças dos Animais/prevenção & controle , Ração Animal/efeitos adversos , Criação de Animais Domésticos/métodos , Animais , Anti-Infecciosos/administração & dosagem , Anti-Infecciosos/efeitos adversos , Bactérias/efeitos dos fármacos , Produção Agrícola/métodos , Produtos Agrícolas/microbiologia , Resistência à Doença/imunologia , Farmacorresistência Bacteriana/efeitos dos fármacos , Imunidade Inata , Gado/microbiologia , Doenças das Plantas/imunologia , Doenças das Plantas/microbiologia , Doenças das Plantas/prevenção & controle , Imunidade Vegetal , Proteínas de Plantas/imunologia , Receptores de Reconhecimento de Padrão/imunologia , Transdução de Sinais/imunologia
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