Article
<span class="word">Antimicrobial <span class="word"><span class="changedDisabled">Potential <span class="word">of <span class="word">the <span class="word"><span class="changedDisabled">Marine <span class="word"><span class="changedDisabled">Bacterium <em><span class="word italic">Marinomonas <span class="word italic">mediterranea </em><span class="word"><span class="changedDisabled">Secretome <span class="word"><span class="changedDisabled">Against <span class="word"><span class="changedDisabled">Clinically <span class="word"><span class="changedDisabled">Relevant <span class="word"><span class="changedDisabled">Bacterial <span class="word">and <span class="word"><span class="changedDisabled">Fungi <span class="word"><span class="changedDisabled">Pathogens
2026-04-16
Abstract excerpt
The rise of antimicrobial resistance is reducing the effectiveness of current therapies and highlights the need for new antimicrobial agents. Marine environments, rich in microorganisms adapted to extreme conditions, represent a promising reservoir of bioactive compounds. The marine bacterium Marinomonas mediterranea secretes, among others, lysine oxidase (LodA) and glycine oxidase (GoxA), enzymes that generate hy...
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Identifiers and source
- Literature Corpus work
- ad3bb646-e296-591a-9d17-6756477d1126
- DOI
- 10.20944/preprints202604.1158.v1
