Stage-selective inhibition of rodent malaria by cyclosporine

Author:

Murphy J R1,Baqar S1,Baker R H1,Roberts E1,Nickell S P1,Cole G A1

Affiliation:

1. International Health Program, University of Maryland School of Medicine, Baltimore 21201.

Abstract

The relative susceptibility of different developmental stages of Plasmodium berghei to cyclosporine was investigated in vivo. Within 12 h of receiving a single 25-mg/kg (body weight) dose of cyclosporine, mice with patent P. berghei infections uniformly exhibited a rapid fall in asexual parasite stages. Initially, ring forms and mature schizonts disappeared. Subsequently, trophozoites disappeared between 21 and 24 h, whereas gametocytes persisted for 36 h. In contrast, when cyclosporine was administered to mice 1 day before inoculation (100 mg/kg) with P. berghei sporozoites and for 2 consecutive days after inoculation (25 mg/kg), infections developed normally. When mice with patent infections were placed on prolonged cyclosporine therapy (25 mg/kg per day), parasitemia initially disappeared but often recrudesced. Recrudescent parasites were frequently resistant to cyclosporine (Csr). The Csr phenotype remained stable after serial passage of parasites in mice and after transmission through Anopheles stephensi mosquitoes, in which the capacity to produce oocysts was reduced. When infections of untreated mice were initiated with equal numbers of Csr and cyclosporine-susceptible (Css) parasites and then carried through two serial cycles of mosquito-to-mouse transmission without cyclosporine treatment, the Csr phenotype was lost. The results indicate that cyclosporine selectively inhibits asexual blood stages of P. berghei and favors the emergence of Csr parasites with diminished infectivity for mosquitoes.

Publisher

American Society for Microbiology

Subject

Infectious Diseases,Pharmacology (medical),Pharmacology

Reference10 articles.

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3. Effects of cyclosporine on experimental infections;Cole G. A.;Transplant. Proc.,1983

4. Inheritance of the sex linked mutant Rosy, an allel of white, in the malaria mosquito Anopheles stephensi;Khan M. A.;Pak. J. Sci.,1979

5. Inhibition by cyclosporin A of rodent malaria in vivo and human malaria in vitro;Nickeil S. P.;Infect. Immun.,1982

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