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BHOWMICK, S. MAZUMDAR, A. MOULICK, A. ADAM, V.
Original Title
Algal Metabolites: An Inevitable Substitute for Antibiotics
Type
journal article in Web of Science
Language
English
Original Abstract
Antibiotic resistance is rising at a pace that is difficult to cope with; circumvention of this issue requires fast and efficient alternatives to conventional antibiotics. Algae inhabit a wide span of ecosystems, which contributes to their ability to synthesize diverse classes of highly active biogenic metabolites. Here, for the first time, we reviewed all possible algal metabolites with broad spectra antibacterial activity against pathogenic bacteria, including antibiotic-resistant strains, and categorized different metabolites of both freshwater and marine algae, linking them on the basis of their target sites and mechanistic actions along with their probable nanoconjugates. Algae can be considered a boon for novel drug discovery in the era of antibiotic resistance, as various algal primary and secondary metabolites possess potential antibacterial properties. The diversity of these metabolites from indigenous sources provides a promising gateway enabling researchers and pharmaceutical companies to develop novel nontoxic, cost-effective and highly efficient antibacterial medicines.
Keywords
Algal metabolites; Antibacterial activity; Freshwater; Marine; Multidrug resistant (MDR)
Authors
BHOWMICK, S.; MAZUMDAR, A.; MOULICK, A.; ADAM, V.
Released
30. 11. 2020
ISBN
0734-9750
Periodical
BIOTECHNOLOGY ADVANCES
Year of study
43
Number
107571
State
United Kingdom of Great Britain and Northern Ireland
Pages from
1
Pages to
18
Pages count
URL
https://doi.org/10.1016/j.biotechadv.2020.107571
BibTex
@article{BUT165522, author="Sukanya {Bhowmick} and Aninda {Mazumdar} and Amitava {Moulick} and Vojtěch {Adam}", title="Algal Metabolites: An Inevitable Substitute for Antibiotics", journal="BIOTECHNOLOGY ADVANCES", year="2020", volume="43", number="107571", pages="1--18", doi="10.1016/j.biotechadv.2020.107571", issn="0734-9750", url="https://doi.org/10.1016/j.biotechadv.2020.107571" }