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Biomedical subjects

J Patsch

Publications and source records attributed to J Patsch.

At least 19 recordsLinked to original sources

High-dose interferon-alpha2b treatment prevents chronicity in acute hepatitis C: a pilot study.

Acute hepatitis C takes a chronic course in 50-80% of cases. Results with interferon treatment are conflicting. To evaluate the efficacy of high-dose interferon treatment, we initiated a pilot study in 1992 using 10 MU interferon-alpha2b administered subcutaneously daily until normalization of serum transaminase concentrations. Treatment was begun when a diagnosis of acute hepatitis C was established. HCV-RNA was tested using PCR prior to treatment, three times weekly during the first two weeks of treatment, and then once weekly until the end of therapy. During the 15-month follow-up, HCV-RNA tests were performed monthly up to month 6 and every two to three months thereafter. Twenty-four patients were enrolled at the time of writing; age ranged from 18 to 76 years (mean = 32), and nine patients were men. All patients presented with cholestatic hepatitis; 19 were actively abusing intravenous drugs, four had no known parenteral exposure, and one was a medical laboratory technician. All patients were anti-HCV positive, HCV-RNA positive, and HIV negative. Five patients were infected with genotype 3, five with genotype 1a, five with genotype 1b, three with genotypes 3 and 2, and one with genotypes 1 and 2. All patients exhibited normalized serum transaminase concentrations within 18-43 days; HCV-RNA became negative in all patients within 4-12 days. Toxicity did not exceed grade 1 and disappeared within three days of treatment. In the follow-up period, which ranged from six to 29 months (mean = 19.5 +/- 10.4), serum ALT concentrations remained normal and HCV-RNA remained negative in all patients except two dropouts and two patients who developed relapsing disease after having been HCV-RNA negative for three and eight months, respectively. In both patients, the same HCV genotype 3 reemerged. Serum ALT concentrations ranged from 531 to 1940 IU/liter (mean = 1055; normal < 22). Concentrations of HCV-RNA (Quantiplex; Chiron, Emeryville, California) were < 3.5 x 10(5) eq/ml in nine of 14 PCR-positive patients. In the other five patients, concentrations ranged from 10.4 x 10(5) eq/ml to 131.6 x 10(5) eq/ml (mean = 69.6 x 10(5)). No correlation was observed between HCV-RNA concentrations and serum ALT concentrations at presentation (r = 0.331; P = 0.67) and total dose of interferon-alpha2b administered until normalization of ALT (r = -0.088; P = 0.74). Twenty-two of 24 patients completed treatment (two were noncompliant). Of these, 20 achieved a complete response (HCV-RNA negative for at least six months). Two of these patients relapsed, and 18 (90%) remained HCV-RNA negative for 18.65 (+/-9.7) months. These findings suggest that high-dose interferon-alpha2b is well tolerated and effective in preventing a chronic course of hepatitis C infection.

Acute Disease

Stimulation of human early and late erythropoietic progenitor cells by insulin: evidence for different mechanisms.

In order to investigate cellular mechanisms involved in insulin stimulation of erythropoiesis, we have studied the response of early (BFU-e) and late (CFU-e) erythroid progenitor cells in a serum-free agar culture system. In this assay system, CFU-e proliferation occurred in media containing low-density lipoproteins, bovine serum albumin, transferrin and recombinant erythropoietin (rEPO). Insulin in physiological concentrations as low as 10(-12)M, added directly to cultures, augmented CFU-e colony formation. This stimulatory effect was also seen when monocyte- and T lymphocyte-depleted cells from normal donors were cultured. In contrast, BFU-e was not stimulated by media devoid of insulin. Occurrence of BFU-e colonies required the presence of insulin in concentrations higher than 10(-8)M. This insulin effect was not dependent on the presence of monocytes and T lymphocytes. Delayed addition studies of rEPO to insulin containing cultures revealed a slight but significant survival rate of CFU-e. A similar survival rate was found for BFU-e. From this, we conclude that insulin stimulates CFU-e by an EPO-like activity. For BFU-e, however, the decline in the number of bursts caused by EPO deprivation implies that insulin does not act directly as a burst-promoting activity but that it probably induces the release of this activity from non-adherent and T lymphocyte-depleted bone marrow cells.

Animals

Proliferation and differentiation of human erythropoiesis in vitro: effect of different human lipoprotein species.

In order to permit erythroid proliferation in agar, a serum-free system was developed based on McCoy's 5A medium at pH 8.0, containing deionized and delipidated bovine serum albumin, iron-saturated transferrin, and crude erythropoietin (step III). Addition of the entire complement of serum lipoproteins, termed lipoprotein fraction I (density, less than 1.21 g/ml), increased the number of erythroid colony-forming units and erythroid burst-forming units to numbers indistinguishable from those observed with media containing serum. Moreover, terminal differentiation occurred to fully hemoglobinized normoblasts and even mature erythrocytes. Under these conditions, the erythropoietin dose-response curve obtained when not using serum was comparable to that with serum. Colony formation also displayed a linear relationship to seeding densities down to limiting dilutions. For differential analysis of the main density lipoprotein fractions, sequential ultracentrifugation was performed to isolate very low-density lipoproteins, low-density lipoproteins (LDL), high-density lipoproteins2 (HDL2), and HDL3, which were then added individually to serum-free cultures. Of the main lipoprotein classes, LDL exhibited the most proliferative capacity, followed by HDL2 and HDL3. Our findings indicate that when serum is substituted by well defined compounds including highly purified lipoprotein fractions, a serum-like proliferation and differentiation of human erythropoietic progenitor cells in agar can be obtained.

Bone Marrow

[Measurement of global diffusion capacity for CO, membrane diffusion capacity for CO and capillary blood volume in patients with bronchial emphysema after fominoben HCl. Short- and long-time trials (author's transl)].

The effect of 3'-chloro-2'-(N-methyl-N-[(morpholino-carbonyl)methyl]-aminomethyl)-benzanilide hydrochloride (fominoben HCl, P-B 89 Cl, Noleptan) on the global and membrane diffusion capacities and on the capillary blood volume in patients with emphysematous bronchitis is described. All 3 parameters, independent of the severity of the emphysema and the resulting respiratory insufficiency, are increased. It can thus be concluded that fominoben by improving the ventilation-perfusion ratio leads to an enlargement of the active diffusion surface (capillary surface), from which the increase in the global diffusion capacity results. The site of action of fominoben for its positive effect on respiration is thus established as being in the alveoli.

Adult