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Updated: Jul 28, 2026

Antimicrobial Peptides Produced by Selective Pressure Incorporation of Non-canonical Amino Acids
Published on: May 4, 2018
Antimicrobial peptides versus invasive infections
1Division of Infectious Diseases, David Geffen School of Medicine at UCLA, LAC-Harbor UCLA Medical Center, Torrance 90502, USA. MRYeaman@ucla.edu
Abstract:
It has been estimated that there are more microorganisms within and upon the human body than there are human cells. By necessity, every accessible niche must be defended by innate mechanisms to prevent invasive infection, and ideally that precludes the need for robust inflammatory responses. Yet the potential for pathogens to transcend the integument actively or passively and access the bloodstream emphasizes the need for rapid and potent antimicrobial defense mechanisms within the vascular compartment. Antimicrobial peptides from leukocytes have long been contemplated as being integral to defense against these infections. Recently, platelets are increasingly recognized for their likely multiple roles in antimicrobial host defense. Platelets and leukocytes share many structural and functional archetypes. Once activated, both cell types respond in specific ways that emphasize key roles for their antimicrobial peptides in host defense efficacy: (a) targeted accumulation at sites of tissue injury or infection; (b) direct interaction with pathogens; and (c) deployment of intracellular (leukocyte phagosomes) or extracellular (platelet secretion) antimicrobial peptides. Antimicrobial peptides from these cells exert rapid, potent, and direct antimicrobial effects against organisms that commonly access the bloodstream. Experimental models in vitro and in vivo show that antimicrobial peptides from these cells significantly contribute to prevent or limit infection. Moreover, certain platelet antimicrobial proteins are multifunctional kinocidins (microbicidal chemokines) that recruit leukocytes to sites of infection, and potentiate the antimicrobial mechanisms of these cells. In turn, pathogens pre-decorated by kinocidins may be more efficiently phagocytosed and killed by leukocytes and their antimicrobial peptide arsenal. Hence, multiple and relevant interactions between platelets and leukocytes have immunologic functions yet to be fully understood. A clearer definition of these interactions, and the antimicrobial peptide effectors contributing to these functions, will significantly advance our understanding of antimicrobial host defense against invasive infection. In addition, this knowledge may accelerate development of novel anti-infective agents and strategies against pathogens that have become refractory to conventional antimicrobials.
Insights
Platelets and leukocytes utilize antimicrobial peptides for rapid defense against bloodstream infections. These cells and their peptides are crucial for preventing and limiting invasive microbial infections.
Area of Science:
- Immunology
- Microbiology
- Cell Biology
Background:
- The human body hosts a vast microbiome, necessitating robust innate defense mechanisms.
- Invasive pathogens accessing the bloodstream require rapid and potent antimicrobial strategies.
- Leukocytes have long been recognized for their role in antimicrobial defense via peptides.
Purpose of the Study:
- To investigate the emerging roles of platelets in antimicrobial host defense.
- To elucidate the mechanisms by which platelets and leukocytes cooperate in combating infection.
- To highlight the significance of antimicrobial peptides from both cell types.
Main Methods:
- Review of existing literature on platelet and leukocyte antimicrobial functions.
- Analysis of cellular interactions and peptide deployment mechanisms.
- Examination of in vitro and in vivo experimental models.
Main Results:
- Platelets, like leukocytes, accumulate at infection sites and deploy antimicrobial peptides.
- Antimicrobial peptides from platelets and leukocytes exhibit rapid, potent effects against bloodstream pathogens.
- Platelet antimicrobial proteins (kinocidins) recruit and enhance leukocyte antimicrobial activity.
Conclusions:
- Platelets play a significant, multifaceted role in antimicrobial host defense, complementing leukocyte functions.
- Antimicrobial peptides from platelets and leukocytes are critical effectors in preventing invasive infections.
- Understanding these interactions may lead to novel anti-infective strategies against drug-resistant pathogens.
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