2 resultados para Paradigm Shift

em CORA - Cork Open Research Archive - University College Cork - Ireland


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How should educators respond to the whole phenomenon of ‘digital learning’? This question has been in vogue for the past twenty years or more and there is a need for a regular renewal of this question as societies change. This article will draw on some post-structuralist writing, particularly Deleuze and Guattari, to try to understand better the divide between the optimistic account and the pessimistic account of the effect of ICT on teaching and learning. It argues in particular 1) that ICT in its current form signals a paradigm shift in education—but this thesis is difficult either to prove or disprove; 2) that Deleuze and Guattari’s rhizome provides us with a theoretical tool for understanding the pedagogical nature of this shift; 3) that this change is wider than literacy itself and announces posthuman elements in the socio-cultural environment of learning.

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Faced with the continued emergence of antibiotic resistance to all known classes of antibiotics, a paradigm shift in approaches toward antifungal therapeutics is required. Well characterized in a broad spectrum of bacterial and fungal pathogens, biofilms are a key factor in limiting the effectiveness of conventional antibiotics. Therefore, therapeutics such as small molecules that prevent or disrupt biofilm formation would render pathogens susceptible to clearance by existing drugs. This is the first report describing the effect of the Pseudomonas aeruginosa alkylhydroxyquinolone interkingdom signal molecules 2-heptyl-3-hydroxy-4-quinolone and 2-heptyl-4-quinolone on biofilm formation in the important fungal pathogen Aspergillus fumigatus. Decoration of the anthranilate ring on the quinolone framework resulted in significant changes in the capacity of these chemical messages to suppress biofilm formation. Addition of methoxy or methyl groups at the C5–C7 positions led to retention of anti-biofilm activity, in some cases dependent on the alkyl chain length at position C2. In contrast, halogenation at either the C3 or C6 positions led to loss of activity, with one notable exception. Microscopic staining provided key insights into the structural impact of the parent and modified molecules, identifying lead compounds for further development.