Search PubMed⌕ Search

Biomedical subjects

F Staib

Publications and source records attributed to F Staib.

142 records · Page 8Linked to original sources

Co-infection by Cryptococcus neoformans and Mycobacterium avium intracellulare in AIDS.

In the observation of various opportunistic pathogens in HIV-positive persons, co-infection by Cryptococcus neoformans together with Mycobacterium avium intracellulare was found if there was a CD4 lymphocyte count as low as 3-20 microl. In 1540 HIV-positive patients under treatment at a Berlin hospital (Auguste-Viktoria-Krankenhaus) during 1985-1994, all AIDS-relevant diseases were examined in a multivariate analysis as variables of influence on the manifestation of a systemic Mycobacterium avium complex (MAC) infection. The analysis involved data on 36 cases of cryptococcosis and 202 cases with a typical clinical course in whom MAC had been detected at sterile body sites. As significant and independent factors of influence, the following were identified: C. neoformans infection, wasting syndrome, lower age, low CD4 lymphocyte count and preceding Pneumocystis carinii pneumonia (PcP) prophylaxis. Cryptococcosis ranged first with an odds ratio of 2.75. The concomitant manifestation of cryptococcosis and systemic MAC infection in six patients is shown. Because both opportunists, C. neoformans and avian mycobacteria, may have their common habitat in droppings of defined species of pet birds, a common source of infection deserves further clinical and epidemiological attention.

Journal Article↗

Extracellular proteolysis by Mucoraceae in serum-albumin agar tested by the agar block method.

In a preliminary study, three strains of Absidia corymbifera (two strains from autopsy material of the lungs and one from the soil of a potted indoor plant in a hospital) and one strain of Rhizopus oryzae (from the soil of a potted plant in a hospital) were tested for secretory proteolytic activity in serum-albumin agar (SAA) with initial pH values of 5.0 and 7.0 by the agar block method and subsequent protein staining. Within an incubation period of 5 d/37 degrees C, complete proteolysis took place in all the SAA blocks with an initial pH value of 7.0. The three strains of Absidia corymbifera and the one strain of Rhizopus oryzae did not fully proteolyse the SAA blocks with an initial pH value of 5.0. On the basis of these observations, it is assumed that there are secretory proteases in the causative agents of mucormycosis (zygomycosis) whose optimal pH is not in the acid but in the neutral, perhaps in the alkaline range.

Agar↗

Fungal infections following heart transplantation.

Following heart transplantation (HTx), patients often suffer from mycoses due to the necessary immunosuppressive treatment to prevent rejection episodes. Oropharyngeal Candida infections which mostly occur after HTx under high-dose immunosuppressive therapy can be avoided and treated successfully by prophylactic medication to be started immediately after transplantation, either by using azoles (e.g. fluconazole) or amphotericin B suspension. Contrary to this, invasive aspergillosis, beginning in the upper respiratory tract and the lung and mostly followed by hematogenous dissemination into various organs, is always a serious disease with high mortality. To avoid this infection, specimens from the respiratory tract, serum and urine should be examined mycologically prior to HTx. After HTx, apart from prophylactic avoidance of exposure to airborne fungal spores, close mycological control is mandatory to detect colonizations by aspergilli early. Timely administration of amphotericin B and 5-flucytosine, i.e. as soon as invasive growth is suspected, enables curative treatment of the often lethal course of this disease, even under immunosuppressive therapy.

Aspergillosis↗

Pathogenic fungi in human dwellings.

Airborne invasive fungal infections in various risk groups of people suffering from immunodeficiencies are an increasing problem for modern medicine. Because of the acute and rapid course of invasive infections, prevention is of principal significance. Such prevention mainly concerns the control of fungal spores in indoor air. In this connection the immediate environment offering ecological niches for growth and morphogenesis of infective particles of Aspergillus spp., Mucoraceae, Cryptococcus neoformans and some other yeast-like fungi is of main interest. The current problems of indoor air mycology, i.e. the epidemiology and ecology of pathogenic fungi in indoor air, can only be recognized and interpreted by centres routinely performing mycological diagnosis for all the various risk groups of patients. Models of specific surveillance of the most important fungal pathogens (e.g. Aspergillus spp. and Cryptococcus neoformans) in indoor air will be outlined and discussed.

Air Microbiology↗

Cerebrospinal fluid indices in cryptococcal and tuberculous meningitis: the spider web coagulum and its diagnostic significance.

The differentiation between a chronic cryptococcal meningitis and a chronic tuberculous meningitis may cause problems for the clinician only if standard microbiological methods are not applied to the diagnosis of both infections. In a male non-AIDS patient (50 y), 11 years after a suggested diagnosis of "tuberculous meningitis", meningoencephalitis with hydrocephalus was diagnosed and treated accordingly without success. Mycobacterium tuberculosis was never found. Because fibrin fibres of a spider web coagulum in the CSF resembled Aspergillus mycelium, the patient was then treated with amphotericin B + flucytosine. Finally, a mycological examination led to the true diagnosis: (1) In the CSF, resembling Aspergillus hyphae were found to be spider web coagulum fibres. (2) Cryptococcal meningoencephalitis based on the detection of Cryptococcus neoformans in CSF and its antigen in serum and CSF. - At post-mortem, cryptococcal meningoencephalitis was established as cause of death. Residual signs of tuberculosis could not be detected in the brain and the meninges. Common clinical similarities of cryptococcal and tuberculous meningitis and the possibility of a double infection are discussed. A comparison of the presence of Cr. neoformans in the meninges of non-AIDS and AIDS patients is made. The formation of spider web coagulum in the CSF is discussed. Proposals for the diagnosis, therapy and prophylaxis of cryptococcal meningitis are made.

Cryptococcosis↗

Persistence of Cryptococcus neoformans in seminal fluid and urine under itraconazole treatment. The urogenital tract (prostate) as a niche for Cryptococcus neoformans.

The open questions of the persistence of Cryptococcus neoformans in the urogenital tract under antimycotic treatment can be examined under optimal mycological-diagnostic conditions only. The example of a case of cryptococcosis in an AIDS patient diagnosed and treated with itraconazole in the early secondary stage of cryptococcosis is used to discuss the problems of the persistence of Cr. neoformans involvement in the urogenital tract (prostate). Data from a ten-week follow-up study are presented and discussed. The observations made have shown that itraconazole is effective in all regions of the body, with the exception of the urogenital tract. In addition to clinical examinations, cases treated with itraconazole should be finally subjected to cultural examination of prostatic secretion and/or seminal fluid, to exclude the possible presence of a symptom-free involvement of the prostate by Cr. neoformans.

Acquired Immunodeficiency Syndrome↗

Co-infection by Cryptococcus neoformans and Mycobacterium avium intracellulare in AIDS. Clinical and epidemiological aspects.

In the observation of various opportunistic pathogens in HIV-positive persons, co-infection by Cryptococcus neoformans together with Mycobacterium avium intracellulare was found if there was a CD4 lymphocyte count as low as 3-20/microliters. In 1540 HIV-positive patients under treatment at a Berlin hospital (Auguste-Viktoria-Krankenhaus) during 1985-1994, all AIDS-relevant diseases were examined in a multivariate analysis as variables of influence on the manifestation of a systemic Mycobacterium avium complex (MAC) infection. The analysis involved data on 36 cases of cryptococcosis and 202 cases with a typical clinical course in whom MAC had been detected at sterile body sites. As significant and independent factors of influence, the following were identified: C. neoformans infection, wasting syndrome, lower age, low CD4 lymphocyte count and preceding Pneumocystis carinii pneumonia (PcP) prophylaxis. Cryptococcosis ranged first with an ods ratio of 2.75. The concomitant manifestation of cryptococcosis and systemic MAC infection in six patients is shown. Because both opportunists, C. neoformans and avian mycobacteria, may have their common habitat in droppings of defined species of pet birds, a common source of infection deserves further clinical and epidemiological attention.

AIDS-Related Opportunistic Infections↗