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S Bachmann

Publications and source records attributed to S Bachmann.

At least 37 records · Page 2Linked to original sources

Serum antibodies reactive with non-human primate retroviruses identified in acute onset schizophrenia.

Schizophrenia is a pervasive neuropsychiatric disease of uncertain etiology. Previous studies have postulated that retroviruses may contribute to the etiology of some cases of schizophrenia. We examined the possible relationship between retroviral infection and schizophrenia by measuring antibodies to a number of different primate retroviruses in the sera of individuals undergoing their first hospitalization for this disease. Sera from patients with first onset schizophrenia and matched healthy controls were analyzed by immunoblot and enzyme linked immunosorbent assays using purified retrovirus antigens to identify and quantify antibodies reactive with retrovirus proteins. A significantly increased incidence of antibodies reactive to gag encoded proteins of Mason-Pfizer monkey virus (MPMV), baboon endogenous virus (BaEV) and simian retrovirus type 5 (SRV-5) was observed in the sera of schizophrenia patients compared to controls. The reactivity of the cases and controls displayed the greatest differences in terms of antibodies to the proteins of Mason-Pfizer monkey virus. Employing an algorithm of enzyme linked immunosorbent assay reactivity followed by immunoblot confirmation, we found that MPMV antibodies in 28.9% of the individuals with first episode schizophrenia patients as compared to 3.7% of the unaffected controls (P<0.009, Fisher's Exact Test). These studies are consistent with the occurrence of retrovirus replication in some individuals who are undergoing their first episode of schizophrenia.

Acute Disease↗

Sodium transport-related proteins in the mammalian distal nephron - distribution, ontogeny and functional aspects.

The mammalian distal nephron plays a pivotal role in adjusting urinary sodium excretion. Successive portions of the renal tubule are formed to adapt to this function, and an axial heterogeneity of the distal segments has been defined. The specific transport properties of these epithelia are accomplished by the expression of proteins (cotransporters, exchangers, channels) governing the movement of ions on either cell side. Molecular cloning of these proteins has had a marked impact on the study of their localization and function in the healthy and diseased kidney. Electroneutral cation-chloride cotransporters [Na(K)CC] have been localized to the thick ascending limb and the distal convoluted tubule using specific probes. Proteins implicated in the function of aldosterone target cells, such as the epithelial Na(+) channel (ENaC), the mineralocorticoid receptor (MR) and 11beta-hydroxysteroid dehydrogenase type 2 (11HSD2), an enzyme that confers mineralocorticoid specificity, have been found in the terminal portion of the nephron and the collecting duct. A mineralocorticoid-sensitive component of thiazide-sensitive NaCl transport has been identified in the distal convoluted tubule. Analysis of the ontogeny of these proteins in the maturing kidney has provided a detailed picture of epithelial differentiation and morphological specialization of the renal tubule. The study of mutations of the proteins related with NaCl transport has led to the identification of the molecular causes of inherited human diseases associated with hypo- or hypertension, and the respective sites of an impaired ion transport could be mapped to the renal tubule.

Animals↗

Cell localization and ontogeny of sodium transport pathways in the distal nephron: perspectives in function and failure.

The expression and function of ion co-transporters/exchangers/channels in the distal nephron have recently been defined. The role of cation-chloride co-transporters and proteins implicated in aldosterone target cell function are reported in the adult and during ontogeny. Volume disorders can currently be related to identified gene products acting in defined nephron sites.

Adult↗

Developmental expression of sodium entry pathways in rat nephron.

During the past several years, sites of expression of ion transport proteins in tubules from adult kidneys have been described and correlated with functional properties. Less information is available concerning sites of expression during tubule morphogenesis, although such expression patterns may be crucial to renal development. In the current studies, patterns of renal axial differentiation were defined by mapping the expression of sodium transport pathways during nephrogenesis in the rat. Combined in situ hybridization and immunohistochemistry were used to localize the Na-Pi cotransporter type 2 (NaPi2), the bumetanide-sensitive Na-K-2Cl cotransporter (NKCC2), the thiazide-sensitive Na-Cl cotransporter (NCC), the Na/Ca exchanger (NaCa), the epithelial sodium channel (rENaC), and 11beta-hydroxysteroid dehydrogenase (11HSD). The onset of expression of these proteins began in post-S-shape stages. NKCC2 was initially expressed at the macula densa region and later extended into the nascent ascending limb of the loop of Henle (TAL), whereas differentiation of the proximal tubular part of the loop of Henle showed a comparatively retarded onset when probed for NaPi2. The NCC was initially found at the distal end of the nascent distal convoluted tubule (DCT) and later extended toward the junction with the TAL. After a period of changing proportions, subsegmentation of the DCT into a proximal part expressing NCC alone and a distal part expressing NCC together with NaCa was evident. Strong coexpression of rENaC and 11HSD was observed in early nascent connecting tubule (CNT) and collecting ducts and later also in the distal portion of the DCT. Ontogeny of the expression of NCC, NaCa, 11HSD, and rENaC in the late distal convolutions indicates a heterogenous origin of the CNT. These data present a detailed analysis of the relations between the anatomic differentiation of the developing renal tubule and the expression of tubular transport proteins.

11-beta-Hydroxysteroid Dehydrogenases↗

Temporal adjustment of the juxtaglomerular apparatus during sustained inhibition of proximal reabsorption.

Tubuloglomerular feedback (TGF) stabilizes nephron function by causing changes in single-nephron GFR (SNGFR) to compensate for changes in late proximal flow (VLP). TGF responds within seconds and reacts over a narrow range of VLP that surrounds normal VLP. To accommodate sustained increases in VLP, TGF must reset around the new flow. We studied TGF resetting by inhibiting proximal reabsorption with benzolamide (BNZ; administered repeatedly over a 24-hour period) in Wistar-Froemter rats. BNZ acutely activates TGF, thereby reducing SNGFR. Micropuncture was performed 6-10 hours after the fourth BNZ dose, when diuresis had subsided. BNZ caused glomerular hyperfiltration, which was prevented with inhibitors of macula densa nitric oxide synthase (NOS). Because of hyperfiltration, BNZ increased VLP and distal flow, but did not affect the basal TGF stimulus (early distal salt concentration). BNZ slightly blunted normalized maximum TGF response and the basal state of TGF activation. BNZ sensitized SNGFR to reduction by S-methyl-thiocitrulline (SMTC) and caused the maximum TGF response to be strengthened by SMTC. Sensitization to type I NOS (NOS-I) blockers correlated with increased macula densa NOS-I immunoreactivity. Tubular transport measurements confirmed that BNZ affected TGF within the juxtaglomerular apparatus. During reduced proximal reabsorption, TGF resets to accommodate increased flow and SNGFR through a mechanism involving macula densa NOS.

Absorption↗

Molecular cloning of NHE3 from LLC-PK1 cells and localization in pig kidney.

LLC-PK1 cells, an established line from pig kidney, express basolateral and apical Na+/H+ exchangers that can be distinguished by their differing sensitivities to the amiloride analog N-ethyl-N-isopropylamiloride (EIPA). It has been shown previously that the basolateral exchanger is encoded by NHE1. In the present study, a combination of reverse transcription-PCR, 5' RACE, and genomic library screening was used to clone the coding region of the porcine NHE3 gene. There was significant homology between the LLC-PK1 sequence and the previously reported rabbit and rat NHE3 genes, with nucleotide and deduced amino acid identities of 87 and 85% in rabbit, and 85 and 87% in rat, respectively. To study expression patterns, Northern analysis was carried out using an NHE3 cDNA to probe poly(A)+ RNA isolated from LLC-PK1 cells, and from pig kidney cortex. In all three cases, a major transcript of 6.1 kb was detected along with two minor transcripts of 4.7 and 3.8 kb. In situ hybridization with two different NHE3 probes gave intense labeling of the distal convoluted tubule in pig kidney but (unexpectedly) no detectable labeling of the proximal tubule. These studies suggest that there are marked species differences in NHE3 expression in the distal nephron.

Amino Acid Sequence↗

Lack of association between Borna disease virus infection and neurological disorders among HIV-infected individuals.

Viruses have been proposed as etiologic cofactors in the pathogenesis of HIV-related neurological disease. To investigate the etiologic potential of Borna disease virus (BDV) in these disorders, two populations were studied: (1) 27 prospectively identified patients with various neurological disorders were evaluated with BDV RT-PCR (CSF, PBMC), and BDV serology, and (2) a separate group of 25 retrospectively studied patients with AIDS dementia complex was evaluated using BDV serology only. A novel, BDV p40 gene RT-PCR assay was developed: conserved primers were used in a non-nested amplification, detecting less than 100 BDV RNA copies and all of nine wild-type, confirmed animal BDV infections. BDV seroprevalences were 12.5% and 8.0%, respectively, which are similar to the general HIV-infected population. None of the prospectively studied patients had detectable BDV RNA in their CSF or PBMC. Our findings do not support the hypothesis that BDV infections are responsible for HIV-related neurological disorders.

AIDS Dementia Complex↗

Normalizing the expression of nitric oxide synthase by low-dose AT1 receptor antagonism parallels improved vascular morphology in hypertensive rats.

In essential hypertension, stroke and kidney damage may result from an impaired interaction of vasoregulatory systems. Stroke-prone spontaneously hypertensive rats (SHRSP) were studied to analyze the effects of a low-dose treatment of the angiotensin II type 1 receptor (AT1) blocker candesartan cilexetil on the expression of nitric oxide synthases (NOS) and on vascular structure. Both treated and untreated SHRSP were kept on a stroke-promoting dietary regimen, and compared with Wistar Kyoto rats (WKY). Early mortality of untreated SHRSP was prevented by the treatment. In untreated SHRSP, cerebral intraparenchymal vessels of the parietal lobe showed lesions of the vascular wall and its periphery, such as proteinaceous deposits, perivascular dilated spaces, increase in phagocytic cells, and decreased actin immunostaining. Renal lesions were more pronounced comprising arteriolar occlusion, extensive loss of actin, increased alpha1(IV) collagen expression, and glomerular sclerotic as well as tubulointerstitial lesions. Beneficial effects of the AT1 blockade were more pronounced in brain than in kidney. Activity profile of NOS showed increased NADPH diaphorase staining in media and endothelium of SHRSP; endothelial NOS3 immunoreactivity was decreased, but instead, inducible NOS2 increased in untreated SHRSP. These changes were largely prevented in the treated group. NOS activity in macula densa cells was unchanged, whereas afferent arteriolar renin levels were increased in untreated SHRSP. Results demonstrate an effective reduction of hypertensive vascular changes with a nonpressor dose of candesartan. A "role switch" of vascular NOS in hypertension from physiologic NOS3 toward deleterious NOS2 is suggested, and its prevention by the AT1 blocker points to an angiotensin II-dependent, nitric oxide-mediated pathway that may impair endothelial function and aggravate defects of the blood-brain barrier and kidney structures.

Angiotensin Receptor Antagonists↗

Structural and molecular dissection of the juxtaglomerular apparatus: new aspects for the role of nitric oxide.

The juxtaglomerular apparatus (JGA) is composed of the macula densa (MD), the extraglomerular mesangium, and the juxtaglomerular arterioles. The JGA functions to adapt glomerular filtration rate (GFR) to distal tubular [NaCl] and to adjust the synthesis and release of renin. The type 1 isoform of nitric oxide synthase (NOS1) is present in MD cells, and release of NO toward the glomerular vasculature is thought to modulate signaling at the JGA. Chronic alterations in GFR and/or tubular [NaCl] are paralleled by adjustments of NOS1. Molecular characterization of NOS1 mRNA reveals several renal variants suggesting cell type-specific regulation at the level of transcription and translation.

Animals↗

Severe akathisia during olanzapine treatment of acute schizophrenia.

Olanzapine is a newly developed atypical neuroleptic with a marked affinity to the 5-HT2, D2 and D4 dopamine receptors. Like other atypical neuroleptics olanzapine is considered to show a reduced prevalence of extrapyramidal side effects when compared to classical neuroleptic drugs. We report on three patients with acute schizophrenia, who developed severe akathisia during treatment with olanzapine (20-25 mg/d). In two of these cases akathisia resolved after withdrawal of olanzapine and substitution by a classical or an atypical neuroleptic agent, respectively. In one of these patients olanzapine was well tolerated when reintroduced in combination with lorazepam after complete remission of akathisia. In the third patient akathisia was sufficiently controlled by dose reduction. Akathisia is generally considered to result from D2 dopamine receptor antagonism. In the case of atypical neuroleptics such as olanzapine a low but still considerable D2 dopamine receptor occupancy may be compensated by the 5-HT2 antagonism. However, this mechanism may fail under certain circumstances, in particular if D2 dopamine antagonism exceeds a certain threshold. One should therefore be aware of possible extrapyramidal side effects with olanzapine that are reduced compared to classical neuroleptic drugs but not completely eliminated.

Adult↗

Multiple sclerosis and infectious childhood diseases.

To examine a possible relationship between infectious diseases and multiple sclerosis (MS) an enquiry was carried out among 606 MS patients in Switzerland. The data concerning their infectious childhood diseases were compared with epidemiological data for the normal Swiss population obtained from the Swiss Federal Health Office and from the Institute of Medical Statistics. The mean age of the MS patients was 50.7 years and the mean age at onset of multiple sclerosis was 33.8 years, significantly earlier in women (33.2 years) than in men (35.4 years, p < 0.05). In 18.8% multiple members of the family were affected. In comparison with persons of the control population, MS patients had measles infection at a later age (6.4 vs. 7.5 years). The curve of the age at which several infectious childhood diseases occurred was shifted to higher ages for MS patients (p < 0.005) compared to normal controls for mumps (80.2% for MS vs. 64.1% for controls in the age group 5-14 years), rubella (64.3% for MS vs. 48.4% for controls in the age group 5-14 years) and varicella (81.9% for MS vs. 39.0% for controls in the age group 5-19 years). For pertussis, however, there were more cases among those who later developed MS in the age group 1-9 years, which was earlier than in controls (86.0 vs. 56.7%). These results are compatible with the hypothesis that the risk of developing multiple sclerosis may be associated with acquiring certain infectious childhood diseases at a later stage in comparison to normal controls.

Adolescent↗

Increased epithelial cell proliferation and abnormal extracellular matrix in rat polycystic kidney disease.

Proliferation of renal tubular epithelial cells is considered a major factor leading to cyst formation in human polycystic kidney disease (PKD). The Han:SPRD rat model for inherited PKD permits a close scrutiny, especially for early stages of the disease, and shows numerous similarities to human autosomal dominant PKD (ADPKD). In this study, the exact in vivo proliferation rate in Han:SPRD rat kidneys was evaluated in a cell type-specific manner, using immunohistochemistry with antibody to proliferating cell nuclear antigen (PCNA). The proliferation index (PI; percentage of PCNA-positive cell nuclei) was determined in normal and cystically altered tissue, and a relationship between proliferative activity and alterations in extracellular matrix expression was established using in situ hybridization for collagen I and IV mRNA. Heterozygously affected rats (cy/+) showed strong increases of PI values in cystically altered nephron portions that were mostly derived from proximal tubule. Cell proliferation obviously preceded cyst formation, because early in the progression of the disease, the normal-appearing tubules from PKD kidneys had markedly increased PI values compared with healthy controls (14.1-fold in 3-mo-old rats and 11.9-fold in 12-mo-old rats; P < 0.05), whereas later stages revealed a more generalized cystic degeneration of the nephron, with increases in PI between 14- and 82-fold, depending on the respective category of cystic epithelia. In cysts with a distal phenotype, changes were less pronounced. No significant differences were encountered between the two age groups. Proliferation was also present in interstitial cells, whereas glomeruli were unchanged. Increases in epithelial and interstitial proliferation coincided with an overexpression of matrix compounds. For comparison, changes in homozygously affected rats (cy/cy) showed up to several hundred-fold elevated PI values. These results indicate that in the Han:SPRD model for ADPKD, cystic malformation of the nephron is preceded by and coincides with enhanced epithelial and interstitial cell proliferation. Altered cell-matrix interactions seem to be directly involved in the disruption of epithelial differentiation.

Aging↗

11Beta-hydroxysteroid dehydrogenase, mineralocorticoid receptor, and thiazide-sensitive Na-Cl cotransporter expression by distal tubules.

Mineralocorticoid hormones regulate salt transport along the distal nephron by binding to intracellular receptors and activating gene transcription. Previous experiments showed that systemic aldosterone infusions stimulate thiazide-sensitive Na and Cl transport by distal convoluted tubule (DCT) cells; this effect could have been direct or secondary to systemic hormonal effects. Aldosterone target tissues express both mineralocorticoid receptors and the metabolic enzyme 11beta-hydroxysteroid dehydrogenase type 2. Mineralocorticoid receptors have been localized to the DCT in some experiments, but not in others. Expression of 11beta-hydroxysteroid dehydrogenase type 2 by DCT cells has not been investigated. The present experiments were designed to test the hypothesis that rat DCT cells are targets of aldosterone action. Patterns of mineralocorticoid receptor, 11beta-hydroxysteroid dehydrogenase, thiazide-sensitive Na-Cl cotransporter, and Na/Ca exchanger expression along the distal tubule were examined. A polyclonal antibody was generated to localize the thiazide-sensitive Na-Cl cotransporter. Thiazide-sensitive Na-Cl cotransporter and 11beta-hydroxysteroid dehydrogenase expression were examined using both in situ hybridization and immunocytochemistry; Na/Ca exchanger and mineralocorticoid receptor expression were examined by immunocytochemistry. The results indicate that 11beta-hydroxysteroid dehydrogenase is expressed by DCT cells, as well as connecting tubule cells and principal cells of the collecting duct; expression levels are low near the junction with the thick ascending limb and rise near the transition to the connecting tubule. Mineralocorticoid receptors are expressed by DCT cells, as well as along the thick ascending limb, connecting tubule, and collecting duct. The results indicate that components of the mineralocorticoid receptor system are expressed by DCT cells, suggesting that these cells are targets of aldosterone action.

11-beta-Hydroxysteroid Dehydrogenases↗

Uterotrophic assay of two concentrations of migrates from each of 23 polystyrenes administered orally (by gavage) to immature female Wistar rats.

The Styrene Steering Committee (SSC) of the European Chemical Industry Council (CEFIC) sponsored this work to address any concern that styrene dimers and trimers that might migrate from polystyrene containers into food could possess some estrogenic activity and thus possibly affect human health. All phases of the study were conducted in conformance with GLP regulations and without knowledge of the oligomer migrates tested. All activities were managed and audited under a third-party contract between the SSC and Argus International. Low and high doses of the styrene oligomer migrates of 23 polystyrene samples [i.e. 9 general purpose polystyrenes (GPPS), 8 high impact polystyrenes (HIPS) and 6 expandable polystyrenes (EPS)] were tested for estrogenicity in an in vivo uterotrophic assay (immature female rat model). This model is considered to be the "gold standard" for use in screening for estrogenic effects because it evaluates both direct and indirect potential effects. The two concentrations of migrates of each of the 23 polystyrenes tested were selected to simulate daily human consumption of a low and high amount of food. Representative dimer and trimer concentrations were obtained in conformance with EEC Council Directives and calculated to be at levels simulating human consumption of 0.5 or 5 kg of food for the GPPS and the HIPS samples and of 0.5 or 3.15 kg of food for the EPS samples, respectively. The study was conducted in a series of three blocks. Each block included concurrent untreated control (negative control), vehicle control (25% ethanol, 20 ml/kg/day) and positive control (diethylstilbestrol-dipropionate, DES-DP, 5 micrograms/kg/day) groups, and low and high doses of each of 7 (1 block) or 8 (2 blocks) polystyrene oligomer migrates. Each group in each block consisted of 10 immature Wistar (Chbb: THOM-SPF) female rats. Beginning when the rats were 22 +/- 1 days of age, each rat was appropriately handled (untreated control group) or administered twice daily oral (gavage) dosages of the vehicle, positive control agent or one of the two doses of the migrates of each polystyrene for 4 consecutive days and then sacrificed at 26 +/- 1 days of age. The uterus of each rat was weighed, and the uterine weight was compared with the terminal body weight. The positive control agent (DES-DP, 5 micrograms/kg/day) significantly increased both absolute and relative (to terminal body weight) uterine weights, as compared to the untreated and vehicle control group values in each block, demonstrating sensitivity and response of the animals to an estrogenic agent. None of the 23 polystyrene oligomer migrates tested at low and high doses demonstrated biologically important or statistically significant differences from the untreated or vehicle control group values for absolute or relative (to body weight) uterine weights. Based on these data, it is concluded that low and high doses of the 23 polystyrene oligomer migrates tested did not induce an estrogenic response.

Animals↗

Variability in the uterotrophic response assay (an in vivo estrogenic response assay) in untreated control and positive control (DES-DP, 2.5 microG/kg, bid) Wistar and Sprague-Dawley rats.

Inclusion of biological outlier values was found to bias the results of rat uterotrophic assays towards false negatives, i.e., not identify uterotrophic effects in treated populations. The present investigation was conducted to identify the background variability in the rat uterotrophic assay and to evaluate the need to exclude biological outlier values in untreated control groups. The Styrene Steering Committee (SSC) of the European Chemical Industry Council (CEFIC) co-sponsored this work with Argus Research Laboratories (Argus). The rat uterotrophic response assay originally was used as a pharmacology screen to identify estrogenic agents. Classically, 5 to 10 immature female rats (18 to 22 days of age) are administered an agent for three or four days. At sacrifice on the following day (21 to 26 days of age), the uterus is removed, weighed and a uterine weight/terminal body weight ratio calculated. This in vivo assay has been adapted for use in identifying the potential estrogenicity of chemicals, generally using 10 immature female rats per group, more closely controlling the ages, and adding one or more positive control groups to demonstrate sensitivity and response of the test system. Statistically significant increases in the positive control group means for absolute and relative uterine weights, as compared with the untreated (or vehicle-treated) means, is generally interpreted as identifying a sensitive test system. The untreated (and/or vehicle-treated) control group is then compared with the various test groups, and statistically significant increases in the mean absolute and relative uterine weights are identified as evidence of estrogenicity of the agent. Although not fully described previously, the inherent biological variability existing in both untreated and treated animals, can confound interpretation of the data, especially when numbers are relatively small. Our laboratories have identified that under controlled GLP-compliant conditions, some Wistar rats [randomly assigned (weight-ordered) to groups of ten at 22 +/- 1 days of age, and sacrificed when 26 +/- 1 days of age] in untreated control groups have high relative uterine weights that skew data distributions such that statistically significant differences are not present between untreated control and positive control groups. Based on these observations, further evaluations of untreated control and positive control (DES-DP, 2.5 micrograms/kg, b.i.d.) populations of three rat strains [Wistar--Chbb:THOM-SPF, Wistar--Crl:(WI)BR and Sprague-Dawley--Crl:CD(SD)IBS BR VAF/Plus "International Genetic Standard"] were made to define when such normal findings should be considered biological outliers, and whether outlier values should be excluded from analyses. Our data indicate that body weight is not always predictive of uterine weight, that relative uterine weight outlier values occur in each of these rat strains, and that statistically significant differences exist between groups of untreated control animals when outlier values are included in analyses. Of 98, 60 and 60 untreated control rats in the three respective strains, 11 (11.2%), 16 (26.7%) and 15 (25.0%) had relative uterine weights > or = 0.150%, and 5 (5.1%), 4 (6.7%) and 9 (15.0%) of these rats had relative uterine weights > or = 0.200%, values within the positive control range. All positive control rats attained relative uterine weights > or = 0.100%. Of 50, 60 and 60 positive control rats in the three respective rat strains, 27 (54%), 47 (78.3%) and 36 (60%) had relative uterine weights > or = 0.200%, 9 (18%), 2 (3.3%) and 7 (11.7%) had relative uterine weights > or = 0.300% and 5 (10%), 1 (1.7%) and 3 (5%) had relative uterine weights > or = 0.400%. The incidences of relative uterine weights > or = 0.300% in the positive control group may indicate the presence of high responders. Histological evaluations of uteri of positive control rats and untreated control rats with relative uterine weights > or = 0.

Animals↗

Nitric oxide synthase 1 mRNA: tissue-specific variants from rat with alternative first exons.

We cloned a novel alternative first exon for nitric oxide synthase 1 (NOS1) that is specific for kidney and two novel alternative second exons which can be inserted between the kidney-specific first exon and the exon currently numbered exon 2. The novel exons were localized within 17 kb upstream of exon 2, and their flanking regions and the boundaries of exon 2 were sequenced. NOS1 mRNAs starting with four additional alternative first exons were characterized with respect to tissue distribution and alternative splicing. Altogether, at least 11 different splice variants were found. Those present in kidney were mainly lacking exon 2.

Alternative Splicing↗