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Biomedical subjects

M H Ivey

Publications and source records attributed to M H Ivey.

8 recordsLinked to original sources

Pneumocystis carinii antigen detection in rat serum and lung lavage.

We developed a modified double-antibody sandwich enzyme-linked immunosorbent assay (ELISA) that detected relatively low concentrations of known Pneumocystis carinii antigen added to buffer or rat sera. Artificial immunization-derived polyclonal rabbit anti-P. carinii antibody was used on the solid phase to capture the antigen. Infection-derived (after P. carinii pneumonia) polyclonal rat anti-P. carinii antibody or a mixture of five murine monoclonal antibodies was used as the antigen detector antibody. Rabbit anti-rat immunoglobulin G antibody or goat anti-mouse immunoglobulin G antibody conjugated to alkaline phosphatase was used as the final antibody. After standardization and optimization of the various reactants in this ELISA system, approximately 53 ng of known P. carinii antigen per ml suspended in phosphate-buffered saline-Tween 20 buffer or 210 ng of antigen per ml suspended in normal rat serum diluted 1:4 could be detected. In addition, an indirect ELISA for P. carinii antibody measurement was developed, using as the antigen a soluble supernatant from a sonicated preparation of Percoll-purified whole cysts and trophozoites to coat the solid phase. Limited studies with sera from a small number of caesarian-obtained, barrier-sustained rats from Charles River Breeding Laboratories, Inc., and the National Institutes of Health and sera from normal and heavily infected rats indicated that the caesarian-obtained, barrier-sustained rats had negligible levels of antibody. The normal and heavily infected rats had variable antibody titers. A significantly high level of P. carinii antigenemia was detected in only 2 (11%) of 18 heavily infected rats. Extensive studies of the P. carinii pneumonia rat model with the ELISA did not reveal significant serum P. carinii antigenemia during the acute stage of infection. However, soluble P. carinii antigen was detected by the ELISA and Western blot assays in the supernatant of lavage fluid after centrifugation to sediment intact organisms. As expected, P. carinii antigens were detected by these assays in the lavage pellet recovered after centrifugation. In conclusion, the antigen assay used in this study detected P. carinii antigen in lung lavage but failed to detect P. carinii antigen in rat serum during the acute phase of infection.

Animals

Cryptococcus neoformans: pseudohyphal forms surviving culture with Acanthamoeba polyphaga.

During experiments on the gastrointestinal tract as a possible portal of entry for Cryptococcus neoformans, we occasionally observed the free-living amoeba, Acanthamoeba polyphaga, growing in the presence of C. neoformans cultured from mouse feces. Examination of the amoebic trophozoites revealed that they were engorged with yeast cells. Over a period of 2 to 3 weeks of incubation, the amoebae apparently killed most of the yeast cells. Some of the surviving C. neoformans cells formed atypical colonies which contained pseudohyphae. Seven other strains have since been cultured with this amoeba. Pseudohyphal forms were found among the surviving colonies in all strains tested. Virulence studies were performed on one randomly selected pseudohyphal isolate from each of the eight strains of C. neoformans. Pseudohyphal isolates from seven of the eight strains failed to kill mice 30 days after intracranial inoculation. The potential role of soil amoebae in the control of C. neoformans in nature is discussed.

Amoeba

Proteinase activity in Ascaris suum eggs, hatching fluid, and excretions-secretions.

Hatching fluid and the excretions and secretions (E.S.) of hatched larvae of Ascaris suum revealed proteinase activity when assayed by 2 different procedures employing collagen or casein as substrates. Both assays apparently detected similar levels of proteinase activity in hatching fluid and E.S. of hatched larvae. The Anson (casein substrate) assay worked best in 0.05 M phosphate buffer, pH 8.0. The Azocoll (collagen substrate) assay worked best in 0.05 M borate buffer at pH 8.8. Azocoll assays done at temperatures ranging from 25 to 65 C revealed maximal proteinase activity at 55 C. Analysis of hatching fluid from 18-, 21-, and 28-day-old embryos and of extracts from sonicated 0- to 28-day-old developmental stages showed that proteinase activity increased markedly 18 days after embryonation had begun. Prior to the 18th day of embryonation proteinase levels were relatively low.

Animals

Specificity and sensitivity of skin test reactions to extracts of Toxocara canis and Ascaris suum. I. Skin tests done on infected guinea pigs.

The specificity and sensitivity of adult and larval somatic antigens, and perienteric fluid of Toxocara canis and Ascaris suum were investigated by using intradermal skin tests in guinea pigs. These animals were infected with low doses (0.01, 0.1 or 1.0 egg/g) of these helminths. Toxocara larval antigen (TL) induced larger reactions in Toxocara-infected animals than did the other antigens, suggesting a superior sensitivity for this antigen. In addition, Ascaris perienteric fluid (AP) provoked skin responses in these animals of a magnitude similar to those induced by TL. The reciprocal relationship, i.e., comparable reactivity of AP and TL in Ascaris-infected animals, was not apparent. In general, Ascaris larval antigen and AP elicited larger intradermal reactions than other antigens in Ascaris-infected animals. The results of this study indicated no superiority of adult antigens in differentiating Ascaris and Toxocara infections.

Animals

Specificity and sensitivity of skin test reactions to extracts of Toxocara canis and Ascaris suum II. Homologous 48-hour passive cutaneous anaphylaxis tests with sera from infected guinea pigs.

The specificity and sensitivity of adult and larval somatic antigens and perienteric fluid of Toxocara canis and Ascaris suum were investigated by using a modified passive cutaneous anaphylaxis procedure in guinea pigs. Pooled sera from animals infected with low doses (0.01, 0.1, or 1.0 egg/g) were most reactive with the homologous larval antigen preparation. However, the Toxocara antisera were highly reactive with this antigen only, whereas the Ascaris antisera reactions could not be interpreted as being clearly positive with any of the antigen preparations. Sera from hyperinfected animals were also reactive with the homologous larval antigen. In addition, Ascaris larval antigen was reactive with Toxocara antiserum. The reciprocal relationship, i.e., reactivity of Toxocara larval antigen with Ascaris antiserum, was no apparent. In no instance did adult antigens induce reactions that could be interpreted as specific or sensitive indicators of antibody.

Animals

Characterization and cloning of Pneumocystis carinii nucleic acid.

Large numbers of Pneumocystis carinii (2 X 10(10) nuclei) were isolated and separated from the lungs of immunosuppressed rats by an enzymatic (collagenase, hyaluronidase and DNase) digestion procedure. The nucleic acid isolated from this P. carinii-enriched preparation was characterized by melting point analysis and RNA-sizing gels. The GC content of P. carinii DNA was approximately 33% while the rat DNA was 41.4%. In addition, RNA isolated from the P. carinii-enriched preparation showed unique ribosomal RNA bands of 3.4 kb and 1.8 kb as compared with uninfected rat lung ribosomal RNA which banded at 4.8 and 1.9 kb. Following isolation and fragmentation by sonication, the P. carinii DNA fragments were inserted into the vector, lambda gt-11. The resultant library contained 1.1 X 10(5) phage, of which 40-45% hybridized to P. carinii DNA but not to rat DNA.

Animals

Pneumocystis antigen appearance during immunosuppression.

The sequential appearance of Pneumocystis carinii (Pc) antigens during the progression of immunosuppression in rats was studied using the immunoblotting technique and specific immunologic probes. Putative Pc soluble antigens, with molecular weights of approximately 70 and 90 kd, were detected as early as 2 wk after initiation of immunosuppression in rats using a pool of monoclonal antibodies produced to Pc isolated from lungs using enzymatic digestion. Monoclonal antibodies produced to Pc isolated by massaging the lung tissue using a Stomacher apparatus and infection-derived sera did not detect soluble antigens until at least the 6th wk of immunosuppression. Analysis of Pc pellets obtained from Stomacher- and lavage-processed lungs revealed that the lower molecular weight antigens (less than or equal to 40, 45 and possibly 55-60 kd) were recognized early during the immunosuppression process.

Animals