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L A Pittarelli

Publications and source records attributed to L A Pittarelli.

6 recordsLinked to original sources

Mouse model for Pneumocystis carinii pneumonia that uses natural transmission to initiate infection.

Animal models for Pneumocystis carinii, for the most part, have been limited to immunosuppressed rats and ferrets, while a dependable mouse model has been more difficult to develop. A P. carinii mouse model has now been established with several strains of mice, including C3Heb/FeJ, C3HeN, BALB/c, DBA/2N, and BALB/c nu/nu (athymic). In lieu of using invasive methods for initiating P. carinii infections, mice harboring P. carinii transmitted the disease to mice without latent infection via short-term cohabitation. After the exposure period, the seed mice were sacrificed to confirm the presence of acute P. carinii pneumonia. Acute infections in recipient mice developed at approximately 7 to 8 weeks, while control unseeded littermates remained uninfected. All recipient mice and their littermates were maintained in isolation hoods to eliminate the possibility of exposure to other sources of P. carinii. This approach allows investigators to consistently transmit P. carinii to mice and to select the strain of mouse desired for use in a particular study. The results presented here suggest that more attention should be given to the potential for patient-to-patient transmission of P. carinii in immunocompromised patients such as those with AIDS.

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Comparative study of antipneumocystis agents in rats by using a Pneumocystis carinii-specific DNA probe to quantitate infection.

A repetitive genomic DNA clone (B12-2) that specifically hybridizes to Pneumocystis carinii DNA has been identified. No cross-hybridization to genomic DNA prepared from bacteria, other fungi, protozoa, or mammals was observed. Clone B12-2 is multiply represented in the P. carinii genome. By direct hybridization to DNA prepared from the lungs of immunosuppressed rats, the probe can detect the equivalent of fewer than 1,000 P. carinii organisms. A hybridization assay employing clone B12-2 has been developed to quantitate organism load in the rat model for P. carinii. Application of the assay to track the accumulation of organisms during the immunosuppression regimen as well as to monitor the efficacy of two drug therapies used clinically for the treatment of P. carinii pneumonia is described here. The clone B12-2 hybridization assay for the determination of P. carinii organism load possesses several advantageous features and thus should serve to complement conventional staining and immunohistochemical methods.

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Treatment of Pneumocystis carinii pneumonia with 1,3-beta-glucan synthesis inhibitors.

Pneumocystis carinii pneumonia is a major cause of death in AIDS patients in the United States. The presently available treatments have limited use due to a high incidence of adverse reactions. Therefore, there is an urgent need for a safer method for treatment and prevention of this disease. Recent evidence has suggested that P. carinii is related to fungi and that the wall of the cyst form contains 1,3-beta-glucan as a major constituent. Based on this, several proposed 1,3-beta-glucan synthesis inhibitors were evaluated for their ability to control P. carinii pneumonia in vivo. Compounds from two classes of 1,3-beta-glucan synthesis inhibitors, the echinocandins and papulacandins, were found to be effective against P. carinii.

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Establishment of Pneumocystis carinii in various mouse strains using natural transmission to initiate infection.

A mouse model for Pneumocystis carinii has now been established in several strains of mice: C3Heb/FeJ, C3HeN, Balb/c, DBA/2N and athymic. In lieu of using invasive methods for initiating P. carinii infections, mice infected with P. carinii (seed mice) transmitted the disease to mice without latent infection via short term co-habitation. Acute infections in recipient mice developed approximately 5-6 wk after C3Heb/FeJ seeds were removed, while control unseeded litter-mates remained uninfected. This approach allows investigators to consistently transmit P. carinii to mice and to select the strain of mouse desired for use in a particular study.

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Treatment and prevention of Pneumocystis carinii pneumonia and further elucidation of the P. carinii life cycle with 1,3-beta-glucan synthesis inhibitor L-671,329.

Two different classes of 1,3-beta-glucan synthesis inhibitors, the echinocandins and papulacandins, have anti-Pneumocystis activity in an immunosuppressed rat model for acute P. carinii pneumonia (PCP). This activity combined with potent anti-Candida activity makes the echinocandins attractive agents for treating both Pneumocystis and candidiasis in the immunocompromised patient. Natural product echinocandin L-671,329 rapidly eliminates greater than 99% of the P. carinii cysts after 4 days of treatment at a dose of 1 mg/kg twice daily while 2-3 weeks of therapy with trimethoprimsulfamethoxazole (TMP-SMZ) or pentamidine was required to achieve the same degree of cyst clearance. Effects of L-671,329, TMP-SMZ and pentamidine on the trophozoite stage of P. carinii were also explored using a P. carinii-specific DNA probe to quantitate organism load. Although L-671,329 was not as effective as the known agents against the trophozoite stage, prophylactic use of L-671,329 at a daily dose of 1 mg/kg prevented the development of cysts and trophozoites in the rat model. The foamy exudate commonly seen in lungs of animals with PCP is also absent in rats receiving L-671,329 prophylaxis. In addition to demonstrating the potential of L-671,329 as a prophylactic agent these studies also help in elucidating the life cycle of P. carinii. The observation that L-671,329 prophylaxis prevents the appearance of trophozoites, while acute therapy does not directly affect trophozoites, provides the first evidence that the cyst stage is required for trophozoite proliferation. The rapid elimination of cysts by L-671,329 in animals with acute PCP also indicates that all cysts are turning over within 4 days since it is the development of new cysts which is prevented with this compound.

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