Fatty acids from Hermetia illucens larvae disrupt membrane integrity in colistin-resistant Acinetobacter baumannii
Heakal Mohamed1,2, Sergey Leonov3, Elena Marusich4
1Agricultural Research Center (ARC), Plant Protection Research Institute (PPRI), Dokki, Giza, Egypt. heakal2018@gmail.com.
Background:
The overuse and prolonged application of antibiotics have led to the emergence of multidrug-resistant bacterial pathogens, notably Acinetobacter baumannii, a leading cause of nosocomial infections and increased mortality in healthcare settings. In natural conditions, fatty acids possess well-documented antibacterial activity. This research investigates an eco-friendly way to extract fat from Hermetia illucens (HI) larvae to analyze its antimicrobial properties against colistin-resistant A. baumannii ATCC 19606.
Methods:
Larval fat from H. illucens was processed using a sustainable extraction protocol to yield multiple fractions. Antibacterial activity was assessed via disc diffusion and broth microdilution assays. The most potent fraction, acidic water methanol extract 3 (AWME3), was further evaluated for inhibition zone diameter, minimum inhibitory concentration (MIC), MIC50, and minimum bactericidal concentration (MBC). Salt tolerance assays were conducted under 0-10% NaCl conditions to assess robustness. Morphological and intracellular changes were examined using electron microscopy.
Results:
Among the obtained fractions, the third acidic water methanol extract (AWME3) demonstrated the highest activity against A. baumannii ATCC 19606. AWME3 exhibited a clear inhibition zone of 18.1 ± 0.35 mm at 20 mg/mL. The minimum inhibitory concentration (MIC), MIC50, and minimum bactericidal concentration (MBC) were found to be 380 µg/mL, 222 µg/mL, and 380 µg/mL, respectively. Complete inhibition of colony formation was observed at both MIC and 2×MIC levels under NaCl concentrations ranging from 0 to 10%. Electron microscopy revealed that fatty acids severely damaged bacterial cell walls and membranes, increasing permeability and causing leakage of cell contents, leading to cell death.
Conclusions:
Fatty acid-enriched extracts from H. illucens larvae, particularly AWME3, exhibited potent antibacterial activity against colistin-resistant A. baumannii, likely through membrane-disruptive mechanisms. These findings highlight the potential of insect-derived bioactive compounds as sustainable alternatives for managing MDR pathogens.
Insights
Fatty acid extracts from Hermetia illucens larvae show strong antibacterial effects against multidrug-resistant Acinetobacter baumannii. This insect-derived compound offers a potential sustainable alternative for combating challenging bacterial infections.
Area of Science:
- Microbiology
- Natural Product Chemistry
- Insect Biotechnology
Background:
- Multidrug-resistant (MDR) bacterial pathogens, particularly Acinetobacter baumannii, pose a significant threat in healthcare settings.
- Fatty acids exhibit natural antibacterial properties, offering potential for novel antimicrobial strategies.
- Hermetia illucens (HI) larvae present a sustainable source for extracting bioactive compounds.
Purpose of the Study:
- To investigate the antimicrobial activity of eco-friendly extracted fat from HI larvae against colistin-resistant A. baumannii.
- To identify and characterize the most potent antibacterial fraction from HI larvae fat.
- To elucidate the mechanism of action of the active fraction against A. baumannii.
Main Methods:
- Sustainable extraction of fat from H. illucens larvae into multiple fractions.
- Assessment of antibacterial activity using disc diffusion and broth microdilution assays.
- Evaluation of the most potent fraction (AWME3) for MIC, MIC50, MBC, salt tolerance, and morphological changes via electron microscopy.
Main Results:
- The acidic water methanol extract 3 (AWME3) showed significant antibacterial activity against A. baumannii ATCC 19606.
- AWME3 demonstrated a clear inhibition zone (18.1 mm at 20 mg/mL), with MIC and MBC values of 380 µg/mL.
- Electron microscopy revealed that AWME3 damages bacterial cell walls and membranes, leading to cell death.
Conclusions:
- Fatty acid-enriched extracts from H. illucens larvae possess potent antibacterial properties against colistin-resistant A. baumannii.
- The antibacterial mechanism involves disruption of bacterial cell membranes and walls.
- Insect-derived compounds represent a promising sustainable alternative for managing MDR bacterial infections.
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