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Published on: April 1, 2017
Effect of amide protoporphyrin derivatives on immune response in Apis mellifera
Mariusz Trytek1, Katarzyna Buczek2, Agnieszka Zdybicka-Barabas3
1Department of Industrial and Environmental Microbiology, Institute of Biological Sciences, Faculty of Biology and Biotechnology, Maria Curie-Skłodowska University, Akademicka 19, 20-033, Lublin, Poland. mariusz.trytek@mail.umcs.pl.
Abstract:
The intracellular microsporidian parasite Nosema ceranae is known to compromise bee health by induction of energetic stress and downregulation of the immune system. Porphyrins are candidate therapeutic agents for controlling Nosema infection without adverse effects on honeybees. In the present work, the impact of two protoporphyrin IX derivatives, i.e. PP[Asp]2 and PP[Lys]2, on Apis mellifera humoral immune response has been investigated in laboratory conditions in non-infected and N. ceranae-infected honeybees. Fluorescence spectroscopy analysis of hemolymph showed for the first time that porphyrin molecules penetrate into the hemocoel of honeybees. Phenoloxidase (PO) activity and the expression of genes encoding antimicrobial peptides (AMPs: abaecin, defensin, and hymenoptaecin) were assessed. Porphyrins significantly increased the phenoloxidase activity in healthy honeybees but did not increase the expression of AMP genes. Compared with the control bees, the hemolymph of non-infected bees treated with porphyrins had an 11.3- and 6.1-fold higher level of PO activity after the 24- and 48-h porphyrin administration, respectively. Notably, there was a significant inverse correlation between the PO activity and the AMP gene expression level (r = - 0.61696, p = 0.0143). The PO activity profile in the infected bees was completely opposite to that in the healthy bees (r = - 0.5118, p = 0.000), which was related to the changing load of N. ceranae spores in the porphyrin treated-bees. On day 12 post-infection, the spore loads in the infected porphyrin-fed individuals significantly decreased by 74%, compared with the control bees. Our findings show involvement of the honeybee immune system in the porphyrin-based control of Nosema infection. This allows the infected bees to improve their lifespan considerably by choosing an optimal PO activity/AMP expression variant to cope with the varying level of N. ceranae infection.
Insights
Porphyrins, potential therapeutic agents, were found to enter honeybee hemocoel and boost phenoloxidase activity, aiding Nosema ceranae infection control. This immune response modulation significantly reduced parasite loads and improved honeybee health.
Area of Science:
- Veterinary Entomology
- Immunology
- Biochemistry
Background:
- Nosema ceranae infection compromises honeybee health by inducing energetic stress and suppressing immune responses.
- Porphyrins are being investigated as potential therapeutic agents for Nosema infection due to their safety profile in honeybees.
Purpose of the Study:
- To investigate the impact of two protoporphyrin IX derivatives (PP[Asp]2 and PP[Lys]2) on the humoral immune response of honeybees (Apis mellifera).
- To determine if porphyrins can modulate immune parameters in both healthy and N. ceranae-infected honeybees.
- To assess the efficacy of porphyrins in controlling N. ceranae infection by examining parasite load and immune gene expression.
Main Methods:
- Honeybees were treated with porphyrin derivatives under laboratory conditions, both in the presence and absence of N. ceranae infection.
- Fluorescence spectroscopy was used to confirm porphyrin penetration into the honeybee hemocoel.
- Phenoloxidase (PO) activity and the expression of antimicrobial peptide (AMP) genes (abaecin, defensin, hymenoptaecin) were measured.
Main Results:
- Porphyrins successfully penetrated the honeybee hemocoel.
- Phenoloxidase activity was significantly increased in healthy honeybees treated with porphyrins, but AMP gene expression was not affected.
- A significant inverse correlation was observed between PO activity and AMP gene expression in healthy bees.
- In infected bees, PO activity showed an inverse correlation with N. ceranae spore load, and porphyrin treatment led to a 74% reduction in spore load by day 12 post-infection.
Conclusions:
- Porphyrins modulate the honeybee immune system, primarily by enhancing phenoloxidase activity.
- The observed immune response modulation contributes to the control of Nosema ceranae infection.
- Porphyrins show promise as a therapeutic strategy for improving honeybee health and longevity against Nosema infections.
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