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Published on: March 16, 2018
In vivo interference of paromomycin with mitochondrial activity of Leishmania
M Maarouf1, Y de Kouchkovsky, S Brown
1Institut de Chimie des Substances Naturelles (UPR 2301), Gif-sur-Yvette, France.
Abstract:
Paromomycin is an aminocyclitol aminoglycoside antibiotic used for the treatment of leishmaniasis. In view of the central role of mitochondria in cellular energetics and metabolism, its effect on in vivo mitochondrial activities of Leishmania donovani promastigotes-the parasite flagellate form-was investigated. The approach used flow cytometry, amperometric measure of O2 consumption, and, as a global estimate of mitochondrial dehydrogenases, thiazolyl blue reduction (MTT test); some in vitro controls were also made. When added to promastigote cultures for 24-72 h at 150-200 microM (= LC50), paromomycin doubled the generation time, inhibited respiration, and lowered its associated electric potential difference across mitochondrial membranes, as measured by rhodamine 123 fluorescence. The chemical analogue neomycin was ineffective. Furthermore, the in vivo mitochondrial dehydrogenase activities were lower, seemingly because of the shortage of respiratory substrates. Indeed, succinate addition to paromomycin-treated cultures partly restored mitochondrial membrane potential. However, no immediate effect of paromomycin on respiration was observed, neither inhibition of redox chain nor increase of membrane permeability (uncoupling). It is proposed that paromomycin acts at a metabolic level upstream of the respiratory chain itself. This would have the observed delayed consequence because the cell energy supply would progressively decline since it depends upon the proton gradient-viz., membrane potential-generated by respiration. In conclusion, paromomycin is an antibiotic affecting the cell's energetic metabolism; the respiratory dysfunction it induces may be a crucial aspect of its action against Leishmania and possibly other cells.
Insights
Paromomycin, an antibiotic for leishmaniasis, disrupts mitochondrial energy production in Leishmania donovani parasites. This leads to slower growth and impaired respiration, suggesting a metabolic target for its antiparasitic action.
Area of Science:
- Molecular Biology
- Parasitology
- Biochemistry
Background:
- Mitochondria are crucial for cellular energy and metabolism.
- Paromomycin is an antibiotic used to treat leishmaniasis.
- Understanding paromomycin's mechanism against Leishmania parasites is important.
Purpose of the Study:
- To investigate the effects of paromomycin on the in vivo mitochondrial activities of Leishmania donovani promastigotes.
- To determine if paromomycin affects parasite respiration and energy metabolism.
Main Methods:
- Flow cytometry was used to analyze mitochondrial activity.
- Amperometric measurement assessed oxygen consumption.
- Thiazolyl blue reduction (MTT assay) estimated mitochondrial dehydrogenase activity.
- Rhodamine 123 fluorescence measured mitochondrial membrane potential.
Main Results:
- Paromomycin (150-200 microM) doubled parasite generation time and inhibited respiration.
- Mitochondrial membrane potential decreased, while neomycin had no effect.
- In vivo mitochondrial dehydrogenase activity was reduced, potentially due to substrate shortage; succinate addition partially restored membrane potential.
Conclusions:
- Paromomycin affects the energetic metabolism of Leishmania parasites.
- The antibiotic induces delayed respiratory dysfunction, likely by acting upstream of the respiratory chain.
- This disruption of cellular energy supply may be key to paromomycin's antiparasitic action.
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