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Macrophage activation by bacterial cell walls and related synthetic compounds
Abstract:
Activation of peritoneal macrophages from guinea pigs by various bacterial cell walls, M-1 endo-N-acetylmuramidase enzymatically digested bacterial cell walls and synthetic muramyl dipeptides was studied in terms of stimulation of [14C] glucosamine incorporation. All test bacterial cell wall preparations significantly increased a [14C]glucosamine uptake by the macrophages. Some of the water-soluble M-1 enzyme digests also exerted stimulating effects on macrophages, although the activity of the digests was found to be weaker than those of original cell walls. Furthermore, an adjuvant-active synthetic MurNAc-L-Ala-D-isoGln (MDP) showed a weak but significant activity, whereas an adjuvant-inactive analog, MurNAc-L-Ala-L-iso-Gln, did not show a significant activity, at least with the dose of 100 microgram. Additional studies with 6-O-acyl derivatives of MDP revealed that 6-O-(2-tetradecylhexadecanoyl)-MDP and 6-O-(3-hydroxy-2-tetradecyl-octadecanoyl)-MDP exhibit stronger macrophage-stimulating effects than MDP. It can be concluded from the above findings that MDP is the essential structure responsible for stimulating the activity of cell walls on guinea pig peritoneal macrophages, but it requires a particle state, which results from an additive character of lipophilicity, to exert the activity fully and effectively.
Insights
Bacterial cell walls and synthetic muramyl peptides activate guinea pig macrophages. The essential structure, muramyl dipeptide (MDP), requires lipophilicity for full macrophage-stimulating activity.
Area of Science:
- Immunology
- Microbiology
Background:
- Bacterial cell walls are known immunomodulators.
- Muramyl dipeptide (MDP) is a key component of bacterial cell walls with adjuvant properties.
Purpose of the Study:
- To investigate the macrophage-activating properties of bacterial cell walls and synthetic muramyl dipeptides.
- To identify the essential structural features of MDP responsible for macrophage stimulation.
Main Methods:
- Peritoneal macrophages from guinea pigs were incubated with bacterial cell wall preparations, enzymatically digested cell walls, and synthetic muramyl dipeptides.
- Macrophage activation was assessed by measuring [14C]glucosamine incorporation.
Main Results:
- Bacterial cell walls significantly enhanced [14C]glucosamine uptake by macrophages.
- Synthetic muramyl dipeptide (MDP) showed significant, albeit weaker, macrophage-stimulating activity compared to intact cell walls.
- Adjuvant-inactive MDP analog lacked significant activity.
- 6-O-acyl derivatives of MDP exhibited enhanced macrophage-stimulating effects.
Conclusions:
- MDP is the core structure responsible for the macrophage-stimulating activity of bacterial cell walls.
- Lipophilicity, contributing to a particle state, is crucial for MDP to fully exert its macrophage-activating potential.