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Open AccessJournal ArticleDOI

Advances in Development of Antimicrobial Peptidomimetics as Potential Drugs

Natalia Molchanova, +2 more
- 29 Aug 2017 - 
- Vol. 22, Iss: 9, pp 1430
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TLDR
Focus is on the developments reported in the last decade of peptidomimetics with a modular structure of residues connected via amide linkages with respect to their design, synthesis, antimicrobial activity, cytotoxic side effects as well as their potential applications as anti-infective agents.
Abstract
The rapid emergence of multidrug-resistant pathogens has evolved into a global health problem as current treatment options are failing for infections caused by pan-resistant bacteria. Hence, novel antibiotics are in high demand, and for this reason antimicrobial peptides (AMPs) have attracted considerable interest, since they often show broad-spectrum activity, fast killing and high cell selectivity. However, the therapeutic potential of natural AMPs is limited by their short plasma half-life. Antimicrobial peptidomimetics mimic the structure and biological activity of AMPs, but display extended stability in the presence of biological matrices. In the present review, focus is on the developments reported in the last decade with respect to their design, synthesis, antimicrobial activity, cytotoxic side effects as well as their potential applications as anti-infective agents. Specifically, only peptidomimetics with a modular structure of residues connected via amide linkages will be discussed. These comprise the classes of α-peptoids (N-alkylated glycine oligomers), β-peptoids (N-alkylated β-alanine oligomers), β3-peptides, α/β3-peptides, α-peptide/β-peptoid hybrids, α/γ N-acylated N-aminoethylpeptides (AApeptides), and oligoacyllysines (OAKs). Such peptidomimetics are of particular interest due to their potent antimicrobial activity, versatile design, and convenient optimization via assembly by standard solid-phase procedures.

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Citations
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The global preclinical antibacterial pipeline.

TL;DR: The innovative potential of the preclinical pipeline compared with the clinical pipeline is encouraging but fragile and much more work, focus and funding are needed for the novel approaches to result in effective antibacterial therapies to sustainably combat antibacterial resistance.
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Antimicrobial peptides: Promising alternatives in the post feeding antibiotic era.

TL;DR: This review summarizes the recent advances in AMPs development with respect to characteristics, structure‐activity relationships, functions, antimicrobial mechanisms, expression regulation, and applications in food, medicine, and animals.
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Antimicrobial peptides under clinical investigation

TL;DR: This review lists the 36 antimicrobial peptides (AMPs) under clinical investigation and categorized several improvement strategies and highlighted directions for the future design of AMPs.
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DRAMP 2.0, an updated data repository of antimicrobial peptides

TL;DR: Several AMPs in clinical trials are described, including their properties, indications and clinicaltrials.gov identifiers, to provide the applications of DRAMP in the development of AMPs.
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Antimicrobial peptides as therapeutic agents: opportunities and challenges

TL;DR: The efforts to translate AMP-based research findings into pharmaceutical product candidates are expected to accelerate in coming years due to technological advancements in multiple areas, including an improved understanding of the mechanism-of-action of AMPs, smart formulation strategies, and advanced chemical synthesis protocols.
References
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Journal ArticleDOI

Antimicrobial peptides of multicellular organisms

TL;DR: As the need for new antibiotics becomes more pressing, could the design of anti-infective drugs based on the design principles these molecules teach us?
Journal ArticleDOI

Agar and broth dilution methods to determine the minimal inhibitory concentration (MIC) of antimicrobial substances

TL;DR: The aim of broth and agar dilution methods is to determine the lowest concentration of the assayed antimicrobial agent (minimal inhibitory concentration, MIC) that, under defined test conditions, inhibits the visible growth of the bacterium being investigated.
Journal ArticleDOI

Mechanisms of Antimicrobial Peptide Action and Resistance

TL;DR: The intention of this review is to illustrate the contemporary structural and functional themes among mechanisms of antimicrobial peptide action and resistance.
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