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Updated: Aug 14, 2025

Antimicrobial Peptides Produced by Selective Pressure Incorporation of Non-canonical Amino Acids
Published on: May 4, 2018
Antimicrobial Peptide MPX with Broad-Spectrum Bactericidal Activity Promotes Proper Abscess Formation and Relieves
Chunling Zhu1,2, Yilin Bai3, Xueqin Zhao1
1College of Animal Science and Veterinary Medicine, Henan Institute of Science and Technology, Xinxiang, 453003, China.
Abstract:
Bacteria have developed antibiotic resistance during the large-scale use of antibiotics, and multidrug-resistant strains are common. The development of new antibiotics or antibiotic substitutes has become an important challenge for humankind. MPX is a 14 amino acid peptide belonging to the MP antimicrobial peptide family. In this study, the antibacterial spectrum of the antimicrobial peptide MPX was first tested. The antimicrobial peptide MPX was tested for antimicrobial activity against the gram-positive bacterium S. aureus ATCC 25923, the gram-negative bacteria E. coli ATCC 25922 and Salmonella enterica serovar Typhimurium CVCC541, and the fungus Candida albicans ATCC 90029. The results showed that MPX had good antibacterial activity against the above four strains, especially against E. coli, for which the MIC was as low as 15.625 μg/mL. The study on the bactericidal mechanism of the antimicrobial peptide revealed that MPX can destroy the integrity of the cell membrane, increase membrane permeability, and change the electromotive force of the membrane, thereby allowing the contents to leak out and mediating bacterial death. A mouse acute infection model was used to evaluate the therapeutic effect of MPX after acute infection of subcutaneous tissue by S. aureus. The study showed that MPX could promote tissue repair in S. aureus infection and alleviate lung damage caused by S. aureus. In addition, skin H&E staining showed that MPX treatment facilitated the formation of appropriate abscesses at the subcutaneous infection site and facilitated the clearance of bacteria by the skin immune system. The above results show that MPX has good antibacterial activity and broad-spectrum antibacterial potential and can effectively prevent the invasion of subcutaneous tissue by S. aureus, providing new ideas and directions for the immunotherapy of bacterial infections.
Insights
The antimicrobial peptide MPX shows broad-spectrum antibacterial activity against common bacterial strains and fungi. MPX effectively treats Staphylococcus aureus infections by promoting tissue repair and enhancing immune response.
Area of Science:
- Microbiology
- Immunology
- Biochemistry
Background:
- Antibiotic resistance is a growing global health threat, necessitating the development of novel antimicrobial agents.
- Multidrug-resistant bacterial strains are increasingly prevalent, posing significant challenges to existing treatments.
Purpose of the Study:
- To evaluate the antibacterial spectrum and mechanism of action of the antimicrobial peptide MPX.
- To assess the therapeutic efficacy of MPX in a mouse model of Staphylococcus aureus infection.
Main Methods:
- Antimicrobial activity testing against Gram-positive bacteria (S. aureus), Gram-negative bacteria (E. coli, Salmonella enterica), and fungi (Candida albicans).
- Minimum Inhibitory Concentration (MIC) determination.
- Bactericidal mechanism investigation involving cell membrane integrity and permeability assays.
- In vivo efficacy evaluation using a mouse acute subcutaneous infection model.
Main Results:
- MPX demonstrated broad-spectrum antimicrobial activity, with potent efficacy against E. coli (MIC = 15.625 μg/mL).
- MPX disrupts bacterial cell membranes, leading to leakage of cellular contents and bacterial death.
- In vivo studies showed MPX promoted tissue repair, reduced lung damage in S. aureus infections, and enhanced bacterial clearance via abscess formation.
Conclusions:
- MPX exhibits significant antibacterial activity and broad-spectrum potential.
- MPX effectively combats S. aureus subcutaneous infections and offers a promising avenue for immunotherapy against bacterial infections.
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