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Biomedical subjects

E Baumann

Publications and source records attributed to E Baumann.

At least 19 recordsLinked to original sources

Determination of autofluorescence of red blood cells (RbCs) in uremic patients as a marker of oxidative damage.

AIM: It is suggested that the red blood cells (RBCs) of uremic patients have increased oxidative damage. The activities of different antioxidant enzymes and the levels of several antioxidants or lipid peroxidation products in RBCs are usually determined to estimate the oxidative stress in uremia. The autofluorescence of RBCs as measured by flow cytometry is caused by the formation of conjugated Schiff base compounds from aldehydes derived from lipid peroxidation and amino groups of phospholipids or cell proteins, and has been proposed as a marker of oxidative stress. The aim of this study was to evaluate if this method is suitable for estimation of oxidative stress in the RBCs of patients with different degrees of renal insufficiency. PATIENTS AND METHODS: To determine the oxidative damage in RBCs in uremia, the autofluorescence of RBCs was measured by flow cytometry in the following 3 groups of patients: group A: 16 patients with chronic renal failure (CRF); group B: 16 hemodialysis (HD) patients; group C: 16 patients with a well-functioning renal allograft. Twenty-four healthy volunteers served as controls. The basal value of RBC autofluorescence and the autofluorescence of RBCs after oxidative damage by treatment with 0.1 mM hydrogen peroxide (H2O2)/0.7 mM sodium azide were determined. RESULTS: In basal RBC autofluorescence values, no differences were found between the 3 groups and the controls. However, there was a significant correlation between the increase of serum creatinine and RBC autofluorescence in the group of patients with CRF (r = 0.521; p = 0.038). After H2O2 treatment, the RBC autofluorescence rose markedly in all individuals. This increase in RBC autofluorescence was significantly higher in the patients with CRF (p = 0.003) and in the HD patients (p = 0.001) compared to the controls. In contrast, there was no difference in RBC autofluorescence between the patients with renal allograft and the controls after H2O2 treatment. CONCLUSIONS: In conclusion, flow cytometry is a useful tool for determining oxidative damage in RBCs. The RBCs of uremic patients are more susceptible to oxidative damage induced by H2O2, likely caused by diminished antioxidant defense in the RBC membrane. Successful renal transplantation leads to a normal autofluorescence response in the RBCs after H2O2 treatment.

Aged↗

Zymography with caseogram prints: quantification of pepsinogen.

In caseogram prints, a type of zymogram which is designed for the detection of acid proteases, enzyme activity is detected in an overlay gel of agarose containing skim milk. The use of this technique for protease quantification was investigated in this study using pepsinogen as an example protease. The area of caseogram bands was found to be logarithmically related to protease activity whereas the intensity of the bands was no reliable measure for activity. A reproducible quantification procedure was described. Accuracy and variation were acceptable over a 128-fold range whose lower border was the detection limit (35 pg pepsinogen).

Chemistry Techniques, Analytical↗

APC I1307K increases risk of transition from polyp to colorectal carcinoma in Ashkenazi Jews.

BACKGROUND & AIMS: The I1307K allele of the APC gene has been shown to confer a modestly elevated risk of colorectal cancer in the Ashkenazi Jewish population (relative risk, 1.5-1.7). However, it is unclear whether the alteration predisposes to adenomas and whether the genetic information can be used in clinical practice. To further address the pathogenic significance of I1307K, we offered both a genetic test and a screening program to individuals considered to be at increased risk for colorectal cancer. We compared the prevalence of polyps and their characteristics between carriers and noncarriers. METHODS: Invitations to participate in a DNA and colonoscopy screening program were mailed, together with a family questionnaire, to 3540 households forming the Jewish Community in Ottawa. The I1307K variant was analyzed in 242 eligible respondents who were selected because they had a personal or family history of colon cancer. Nearly 80% of these respondents (n = 189; age range, 32-83 years) consented to undergo a single colonoscopic examination. RESULTS: The overall carrier frequency of I1307K in the study group was 10.3%. A higher proportion of heterozygous gene carriers was found in the subgroup of colon cancer survivors (27%) than among asymptomatic individuals (8%, P < 0.02). A total of 59 polyps were identified in 44 subjects. Histologically confirmed adenomatous polyps were diagnosed in 11.8% of carriers and 12.8% of noncarriers (P > 0.5). No significant differences in polyp size, multiplicity, location, degree of villosity, or age-dependent prevalence were found between the 2 groups of participants. CONCLUSIONS: The high frequency of I1307K colorectal cancer patients found in the Ashkenazi Jewish community of Ottawa and the equivalent proportion of carriers and noncarriers who developed adenomatous polyps suggest that in this community, I1307K is associated with a significant predisposition to carcinoma but not adenoma.

Adenomatous Polyps↗

B and C floral organ identity functions require SEPALLATA MADS-box genes.

Abnormal flowers have been recognized for thousands of years, but only in the past decade have the mysteries of flower development begun to unfold. Among these mysteries is the differentiation of four distinct organ types (sepals, petals, stamens and carpels), each of which may be a modified leaf. A landmark accomplishment in plant developmental biology is the ABC model of flower organ identity. This simple model provides a conceptual framework for explaining how the individual and combined activities of the ABC genes produce the four organ types of the typical eudicot flower. Here we show that the activities of the B and C organ-identity genes require the activities of three closely related and functionally redundant MADS-box genes, SEPALLATA1/2/3 (SEP1/2/3). Triple mutant Arabidopsis plants lacking the activity of all three SEP genes produce flowers in which all organs develop as sepals. Thus SEP1/2/3 are a class of organ-identity genes that is required for development of petals, stamens and carpels.

Arabidopsis↗

Hemolysis of human erythrocytes with saponin affects the membrane structure.

Incubation of cells and tissues with saponin makes the lipid bilayer permeable to macromolecules. Ghosts (membrane preparations) of saponin-lysed erythrocytes do not reseal, thus indicating an irreversible damage of the lipid bilayer. We investigated the influence of disturbance of the lipid bilayer on membrane proteins by comparing ghosts of saponin-lysed erythrocytes with ghosts of cells lysed in hypotonic buffer. Transmission electron microscopy revealed destruction of the lipid bilayer and emergence of multilamellar buds in saponin-lysed ghosts. Freeze-fracture electron microscopy showed regions with crystalline lipids and an increase in particle-free areas on fracture faces. The number of protein sulfhydryl groups and the binding of hemoglobin were diminished in saponin-lysed ghosts. A Scatchard plot of hemoglobin binding revealed the decrease of high affinity binding sites. All these results indicate an aggregation of band 3 protein also demonstrated by laser scanning microscopy after incubation of cells labelled with eosin-5-maleimide with sublytic concentration of saponin. Hemolysis with saponin also affected the interaction between transmembrane proteins and the cytoskeleton. Dissociation of peripheral membrane proteins by incubation of ghosts in low salt buffer or by blocking sulfhydryl groups was increased and the association of spectrin with spectrin-depleted vesicles was decreased. The increased incorporation of the fluorescent probe Merocyanine 540 into saponin-lysed ghosts and the increased relative fluorescence quantum yield confirmed the perturbation of the lipid bilayer and the changed interaction between membrane lipids and intrinsic membrane proteins. Our results suggest that permeabilization of the lipid bilayer with saponin to admit the access of antibodies to the cytoplasmic surface of cells can aggregate transmembrane proteins and affect the immunocytochemical localization of associated proteins of the cytoskeleton.

Anion Exchange Protein 1, Erythrocyte↗

Function search in a large transcription factor gene family in Arabidopsis: assessing the potential of reverse genetics to identify insertional mutations in R2R3 MYB genes.

More than 92 genes encoding MYB transcription factors of the R2R3 class have been described in Arabidopsis. The functions of a few members of this large gene family have been described, indicating important roles for R2R3 MYB transcription factors in the regulation of secondary metabolism, cell shape, and disease resistance, and in responses to growth regulators and stresses. For the majority of the genes in this family, however, little functional information is available. As the first step to characterizing these genes functionally, the sequences of >90 family members, and the map positions and expression profiles of >60 members, have been determined previously. An important second step in the functional analysis of the MYB family, through a process of reverse genetics that entails the isolation of insertion mutants, is described here. For this purpose, a variety of gene disruption resources has been used, including T-DNA-insertion populations and three distinct populations that harbor transposon insertions. We report the isolation of 47 insertions into 36 distinct MYB genes by screening a total of 73 genes. These defined insertion lines will provide the foundation for subsequent detailed functional analyses for the assignment of specific functions to individual members of the R2R3 MYB gene family.

Arabidopsis↗

Knock-out mutants from an En-1 mutagenized Arabidopsis thaliana population generate phenylpropanoid biosynthesis phenotypes.

A collection of 8,000 Arabidopsis thaliana plants carrying 48,000 insertions of the maize transposable element En-1 has been generated. This population was used for reverse genetic analyses to identify insertions in individual gene loci. By using a PCR-based screening protocol, insertions were found in 55 genes. En-1 showed no preference for transcribed or untranscribed regions nor for a particular orientation relative to the gene of interest. In several cases, En-1 was inserted within a few kilobases upstream or downstream of the gene. En-1 was mobilized from such positions into the respective gene to cause gene disruption. Knock-out alleles of genes involved in flavonoid biosynthesis were generated. One mutant line contained an En-1 insertion in the flavonol synthase gene (FLS) and showed drastically reduced levels of kaempferol. Allelism tests with other lines containing En-1 insertions in the flavanone 3-hydroxylase gene (F3H) demonstrated that TRANSPARENT TESTA 6 (TT6) encodes flavanone 3-hydroxylase. The f3h and fls null mutants complete the set of A. thaliana lines defective in early steps of the flavonoid pathway. These experiments demonstrate the efficiency of the screening method and gene disruption strategy used for assigning functions to genes defined only by sequence.

Arabidopsis↗

Expression and immune response to islet antigens following treatment with low doses of streptozotocin in H-2d mice.

Insulin dependent diabetes mellitus (IDDM) is likely to be due to the immunologic destruction of the islets of Langerhans. However, the relative importance of expression of a unique set of islet antigens or of differences in immune responses to those antigens in determining susceptibility to auto-immune diabetes is unknown. To a large extent, the reason for this uncertainty is the difficulty in directly identifying islet antigens expressed in vivo. We have studied the relationship between islet antigen expression, immune responsiveness to islet antigens, and the development of diabetes in diabetes induced by multiple low-doses of streptozotocin (STZ) in mice of the H-2d haplotype. We identified the expression of relevant islet antigens by testing the ability of STZ treated islets to induce tolerance to diabetes in C57BL/KsJ mice after intrathymic transplantation. C57BL/KsJ but not BALB/cByJ mice developed hyperglycaemia and insulitis following STZ treatment. Interferon-gamma transcription was detected in intrapancreatic lymphocytes from C57BL/KsJ mice but at lower levels in cell from BALB/cByJ. IL-4 levels were higher in BALB/cByJ than C57BL/KsJ. Intrathymic STZ-treated islets from syngeneic mice induced tolerance to diabetes in C57BL/KsJ mice following transient depletion of mature peripheral T cells, but islets from resistant BALB/cByJ mice did not induce tolerance to disease in C57BL/KsJ mice even though they did cause tolerance to the alloantigens. (C57BL/KsJ x BALB/cByJ)F1 mice developed hyperglycaemia like the susceptible parent following STZ treatment, and islets from these mice induced tolerance to MDSDM when treated with STZ and transplanted intrathymically into C57BL/KsJ. We conclude the expression of islet antigens and the intrapancreatic responses to STZ treated islets differs between mice that are susceptible and resistant to multi-dose streptozotocin induced diabetes mellitus.

Animals↗

Flow cytometric analysis of band 3 protein of human erythrocytes.

Flow cytometry was used to quantify the transmembrane anion exchanger (band 3 protein) of human erythrocytes by covalently bound eosin-5-maleimide. In vitro and in vivo vesiculated red blood cells were investigated. The fluorescence and light scatter signals of cells after heat induced vesiculation, in vivo ageing, and in patients with hereditary spherocytosis were decreased. These results reflect a deficiency of band 3 protein which is presumably caused by membrane surface area loss. It was possible to distinguish control erythrocytes, erythrocytes from patients with hereditary spherocytosis, and from other forms of haemolytic anaemias on the basis of their light scatter and fluorescence signals characteristics.

Anion Exchange Protein 1, Erythrocyte↗

pH-induced denaturation of spectrin changes the interaction of membrane proteins in erythrocyte ghosts. Biochemical and electron microscopic evidence.

The influence of different buffer pH values on the properties of spectrin in erythrocyte ghosts and on isolated spectrin was investigated. Ultrastructural findings and the results of biochemical studies show that denaturation and aggregation of spectrin molecules rather than disulfide crosslinking are responsible for the precipitation of spectrin in acidic buffer. Since hemolysis in hypotonic buffer at pH 6.0 yields ghosts with spicules and microvesicles, the structure of spectrin in intact cells might also be changed and lead to the clustering of transmembrane proteins and the aggregation of components of the cytoplasmic network.

4-Chloromercuribenzenesulfonate↗

Dysmorphic red cell formation in glomerulonephritis. 2. In vitro generation of dysmorphic erythrocytes.

In the present study influences leading to in vitro formation of dysmorphic erythrocytes were studied. Fresh and surface altered erythrocytes pretreated with several proteases were passed through different solutions representing distinct nephronís fluids. After passage of intact erythrocytes only 12-15% dysmorphic cells were observed. In case of protease treated cells the number of dysmorphic cells rose to 35-80%. The hemoglobin content was decreased. PAGE and electron microscopical findings demonstrated substantial losses of transmembrane and membrane skeleton proteins. It is assumed that surface protein degradation, loss of membrane skeleton proteins and hemolysis seem to be closely associated with dysmorphic malformation of urinary erythrocytes characteristical for glomerulonephritis.

Anisotropy↗

Structure-function studies on neurohormone D: activity of naturally-occurring hormone analogues.

The relative potencies of 11 naturally-occurring peptides of the adipokinetic hormone/red pigment-concentrating hormone family (AKH/RPCH-family) have been assessed with respect to increase in heart rate in adult, female American cockroaches, Periplaneta americana, in in vitro and in vivo bioassays. In addition, analogues that lacked the N-terminal pyroglutamate residue or had a free threonine acid at the C-terminus were also investigated. In both bioassays the N- or C-terminal-modified analogues give no or little response suggesting that blocked termini are essential for receptor-binding. In both bioassays the naturally-occurring peptide from the cockroach corpus cardiacum Pea-CAH-I (neurohormone D) is more potent than the second endogenous peptide, Pea-CAH-II. On the basis of this result and previous data it is proposed that neurohormone D is the only physiologically important "true" cardioactive peptide. The dose-response curves of the other peptides indicate that in octapeptides, amino acid residues at positions 2, 6, and 7 are important for receptor-recognition, and that decapeptides are not as effective as octapeptides (exception: the peptide Rom-CC-I isolated from the grasshopper Romalea microptera).

Amino Acid Sequence↗

Dermal cylindromas (turban tumour) and eccrine spiradenomas in a patient with membranous basal cell adenoma of the parotid gland.

A patient with coexisting dermal cylindromas (Turban tumour), eccrine spiradenomas and a variant of basal cell adenoma of the parotid gland characterized by prominent focal deposition of hyaline (membranous basal cell adenoma of parotid gland) is reported. The microscopic appearance of the cutaneous and parotid gland tumours was very similar. This rare association of analogous tumours of sweat and parotid glands has been described only in 5 previous cases. It is hypothesized that the occurrence of the 3 different tumours found in this individual may be explained by the multipotential reserve cell concept and these tumours perhaps could be considered as different expressions of a single genetic disorder.

Adenoma↗

Development and clinical use of an oral heat-inactivated whole cell pertussis vaccine.

An orally administered, killed whole cell pertussis vaccine was developed which proved to be safe and potent in animal experiments. This vaccine was studied in limited field trials in Austria. In these field trials 1 X 10(12) bacterial cells were given orally on days 2, 3, 4, and 5 after birth with an oral booster of 1 X 10(12) cells given at six weeks. This vaccine was tolerated without side effects in more than 20,000 newborns, did induce a specific immune response including anti-pertussis IgG in serum, anti-pertussis IgA in saliva and specific pertussis mitogen stimulation. This immune response occurred significantly earlier in the orally but not in the parenterally vaccinated group. In addition, anti-pertussis antibodies in saliva were not induced in the parenterally vaccinated group. Pertussis morbidity in 11,192 orally vaccinated infants was compared to 3496 infants who did not receive oral vaccination and was found to be significantly lower for up to one year. There was no overall difference between orally and non-orally vaccinated infants as far as pertussis hospitalization and verified pertussis infection after one year was concerned.

Administration, Oral↗