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Published on: April 28, 2014
Effect of a bis-benzyl polyamine analogue on Pneumocystis carinii
1Department of Medical and Molecular Parasitology, New York University School of Medicine, New York, New York 10010, USA.
Abstract:
Pneumocystis carinii is the causative agent of P. carinii pneumonia (PCP), an opportunistic infection associated with AIDS and other immunosuppressed conditions. Although polyamine metabolism of this fungus has been shown to be a chemotherapeutic target, this metabolism has not been thoroughly investigated. Reported here is the effect of one polyamine analogue, N, N'-bis[3-[(phenylmethyl)amino]propyl]-1,7-diaminoheptane (BBS), on P. carinii. BBS inhibits the growth of P. carinii in culture, but at concentrations higher than those required to inhibit the growth of other pathogens. However, BBS is at least as active in an animal model of PCP as in other models of diseases studied. BBS causes some reduction in P. carinii polyamine content and polyamine biosynthetic enzyme activities, but the effect is less than that observed with other pathogens and very much less than the effect of the polyamine biosynthesis inhibitor DL-alpha-difluoromethylornithine. BBS enters P. carinii cells via a polyamine transporter, unlike all other cells that have been studied. P. carinii cells do not remove the benzyl groups of BBS, as is reported for mammalian cells. The most likely mode of action is displacement of natural polyamines. Overall, the activity of BBS provides further evidence that polyamines and polyamine metabolism are rational targets for the development of drugs to treat PCP. Because the details of BBS-P. carinii interaction differ from those of other cells studied, polyamine analogues may provide a highly specific treatment for PCP.
Insights
Polyamines and their metabolism are viable targets for treating Pneumocystis pneumonia (PCP). A polyamine analogue, BBS, shows effectiveness against P. carinii, suggesting potential for specific PCP therapies.
Area of Science:
- Medical Mycology
- Pharmacology
- Infectious Diseases
Background:
- Pneumocystis carinii causes Pneumocystis pneumonia (PCP), a significant opportunistic infection in immunocompromised individuals.
- Polyamine metabolism is a known chemotherapeutic target, but its role in P. carinii remains underexplored.
Purpose of the Study:
- To investigate the effects of the polyamine analogue N, N'-bis[3-[(phenylmethyl)amino]propyl]-1,7-diaminoheptane (BBS) on P. carinii.
- To explore the potential of polyamine analogues as specific therapeutic agents for PCP.
Main Methods:
- Culturing P. carinii and assessing the inhibitory effects of BBS on fungal growth.
- Evaluating BBS activity in an animal model of PCP.
- Measuring changes in P. carinii polyamine content and biosynthetic enzyme activities.
- Investigating the mechanism of BBS uptake and action in P. carinii cells.
Main Results:
- BBS inhibits P. carinii growth in vitro and demonstrates efficacy in an animal model of PCP.
- BBS causes moderate reductions in P. carinii polyamine levels and enzyme activities.
- BBS uptake occurs via a polyamine transporter, and its mechanism of action likely involves displacing natural polyamines.
Conclusions:
- Polyamines and their metabolism represent promising targets for novel PCP drug development.
- The unique interaction of BBS with P. carinii suggests that polyamine analogues could offer highly specific treatments for PCP.
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