Related Experiment Videos
Inhibition of mitogen-activated proliferation of human peripheral lymphocytes in vitro by propionic acid
M Wajner1, K D Santos, J L Schlottfeldt
1Medical Genetics Unit, Hospital de Cl approximately ínicas de Porto Alegre, Rua Ramiro Barcelos 2600, CEP 90035-003, UFRGS Porto Alegre, RS, Brazil.
Abstract:
Recurrent infections are common features in patients affected by propionic acidaemia (McKusick 232000) and methylmalonic acidaemia (McKusick 251000). Since these disorders are biochemically characterized by tissue accumulation of propionic acid and methylmalonic acid respectively, it is possible that these compounds may act as immunosuppressants. We therefore investigated the effect of propionate and methylmalonate on cellular growth of human peripheral lymphocytes stimulated in vitro by phytohaemagglutinin, concanavalin A and pokeweed mitogen, a recognized test of cellular immunocompetence. Lymphocytes were cultured in flat-bottomed 96-well microplates at 37 degrees C for 96 h (phytohaemagglutinin and concanavalin A) or 144 h (pokeweed mitogen) in the presence of one mitogen at different concentrations and of one acid added at doses of 1.0, 2.5 or 5.0 mM. Cell blastogenesis was measured by the incorporation of tritiated thymidine into cellular DNA and compared with that of identical cultures with no acid added (controls). A consistent and progressive inhibitory effect of propionic acid with increasing concentrations in culture was identified with all mitogens and was more pronounced with pokeweed mitogen. Lymphocyte blastogenesis was not altered in the presence of methylmalonic acid. The effect of propionate was observed only when the drug was added at the beginning (phytohaemagglutinin-activated) or until 24 h (concanavalin A- and pokeweed mitogen-activated) of culture. The viability of lymphocytes after treatment with the drug, as assessed by the Trypan Blue exclusion test, revealed no change when compared with the same untreated lymphocytes, indicating no lymphocytotoxic activity. In conclusion, propionic acid, which accumulates in tissues of patients with propionic acidaemia, causes 'in vitro' immunosuppression, which may be related to the recurrent infections characteristic of these patients.
Insights
Propionic acid, accumulating in propionic acidaemia, suppresses human lymphocyte immune cell growth in vitro. This immunosuppression may explain recurrent infections in patients with this metabolic disorder.
Area of Science:
- Biochemistry
- Immunology
- Metabolic Disorders
Background:
- Propionic acidaemia and methylmalonic acidaemia are associated with recurrent infections.
- Accumulation of propionic acid and methylmalonic acid in tissues suggests potential immunosuppressive roles.
Purpose of the Study:
- To investigate the in vitro effect of propionic acid and methylmalonic acid on human lymphocyte immunocompetence.
- To determine if these organic acids contribute to the immunosuppression observed in propionic acidaemia and methylmalonic acidaemia.
Main Methods:
- Human peripheral lymphocytes were stimulated with mitogens (phytohaemagglutinin, concanavalin A, pokeweed mitogen).
- Lymphocytes were cultured with varying concentrations of propionic acid or methylmalonic acid.
- Cellular proliferation (blastogenesis) was measured by tritiated thymidine incorporation.
- Lymphocyte viability was assessed using the Trypan Blue exclusion test.
Main Results:
- Propionic acid demonstrated a consistent, dose-dependent inhibitory effect on lymphocyte blastogenesis across all tested mitogens.
- Methylmalonic acid did not alter lymphocyte blastogenesis.
- The immunosuppressive effect of propionic acid was observed when added early in the culture period.
- Propionic acid did not exhibit lymphocytotoxic activity.
Conclusions:
- Propionic acid exhibits in vitro immunosuppressive properties on human lymphocytes.
- This immunosuppression may be a contributing factor to the recurrent infections seen in patients with propionic acidaemia.
- Methylmalonic acid does not appear to possess similar immunosuppressive effects on lymphocytes.