Phage formulations and delivery strategies: Unleashing the potential against antibiotic-resistant bacteria
Bacterial control promoted by bacteriophages (phages) is an attractive tool in the face of the antibiotic crisis triggered by the exacerbated use of these drugs. Despite the growing interest in using these viruses, some gaps still need answers, such as the protection and delivery of phages. Some lim...
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Veröffentlicht in: | Microbiological research 2024-05, Vol.282, p.127662-127662, Article 127662 |
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Sprache: | eng |
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Zusammenfassung: | Bacterial control promoted by bacteriophages (phages) is an attractive tool in the face of the antibiotic crisis triggered by the exacerbated use of these drugs. Despite the growing interest in using these viruses, some gaps still need answers, such as the protection and delivery of phages. Some limitation points involve the degradation of phage proteins by enzymes or inactivation in low-pH environments. In this review, a literature search using keywords related to the field of virus delivery formulations was done to understand the current scenario of using delivery techniques and phage formulations. A total of 2096 raw results were obtained, which resulted in 140 publications after refinement. These studies were analyzed for main application techniques and areas, keywords, and countries. Of the total, 57% of the publications occurred in the last five years, and the encapsulation technique was the most used among the articles analyzed. As excipient agents, lactose, trehalose, mannitol, PEG, and Leucine stand out. The development of phage formulations, protection approaches, their delivery routes, and the knowledge about the best application strategy enables the use of these organisms in several sectors. It can act as a powerful tool against antibiotic-resistant bacteria.
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•Bacteriophages are essential control tools against resistant bacteria.•Formulations and delivery routes are keys in the in vivo application of phage.•The bibliometrics allows mapping gaps that exist in the area of phage application. |
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ISSN: | 0944-5013 1618-0623 |
DOI: | 10.1016/j.micres.2024.127662 |