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Published on: December 11, 2012
Klebsiella pneumoniae pathogenicity in silk moth larvae infection model
Tasnia Tuba1, Farhan R Chowdhury1, Tasnia Hossain1
1Department of Biochemistry and Microbiology, School of Health and Life Sciences, North South University, Bashundhara, Dhaka 1229, Bangladesh.
Abstract:
The emergence of antibiotic resistant bacteria is a major health concern worldwide in recent years. The objective of this study is to establish the larvae of the silk moth (commonly known as silkworm), Bombyx mori as an infection model to study antibacterial effect of antibiotics against Klebsiella pneumoniae. In this study, the pathogenicity of a K. pneumoniae strain isolated from food to silkworm larvae was examined. Within 72 h of bacterial injection, all silkworm larvae were killed in a dose-dependent manner with their body color turning into black due to increased melanization. Bacterial numbers in the larval hemolymph (blood) significantly increased after 9 h of infection with a decrease in viable circulatory hemocytes in hemolymph. When presented with bacteria laden leaves, larvae did not eat but injection of bacteria directly into the midgut killed larvae within 12 h with a higher load required in comparison to that required for the killing by hemolymph injection. Administration of four different antibiotics into larval hemolymph showed therapeutic effect at different doses with varying efficacies against hemolymph-injected K. pneumoniae. These results indicate that the silkworm larvae can be used as an infection model not only to study the pathogenicity of K. pneumoniae but also to perform rapid screening for the identification of antibiotics effective against multidrug-resistant strains of K. pneumoniae.
Insights
Silkworm larvae provide a new infection model for studying antibiotic effectiveness against Klebsiella pneumoniae. This model aids in rapidly screening antibiotics for multidrug-resistant bacterial infections.
Area of Science:
- Microbiology
- Infectious Diseases
- Drug Discovery
Background:
- Antibiotic resistance in bacteria is a growing global health threat.
- Novel models are needed to study bacterial infections and test new treatments.
Purpose of the Study:
- To establish the silkworm (Bombyx mori) larvae as an infection model.
- To evaluate the antibacterial effects of antibiotics against Klebsiella pneumoniae.
Main Methods:
- Examined the pathogenicity of a food-isolated K. pneumoniae strain in silkworm larvae.
- Assessed bacterial load, hemocyte counts, and melanization post-infection.
- Administered antibiotics to infected larvae to determine therapeutic efficacy.
Main Results:
- K. pneumoniae infection killed silkworm larvae in a dose-dependent manner within 72 hours.
- Infection led to increased bacterial numbers and decreased hemocytes in larval hemolymph.
- Antibiotics demonstrated therapeutic effects against K. pneumoniae in the silkworm model.
Conclusions:
- Silkworm larvae serve as a viable infection model for K. pneumoniae pathogenicity studies.
- This model facilitates rapid screening of antibiotics against multidrug-resistant K. pneumoniae strains.

