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Biomedical subjects

H Vogel

Publications and source records attributed to H Vogel.

At least 109 records · Page 6Linked to original sources

Study of ligand-receptor interactions by fluorescence correlation spectroscopy with different fluorophores: evidence that the homopentameric 5-hydroxytryptamine type 3As receptor binds only one ligand.

The 5-hydroxytryptamine receptor of type 3 was investigated by fluorescence correlation spectroscopy (FCS). Binding constants of fluorescently labeled ligands, the stoichiometry, and the mass of the receptor are readily accessible by this technique, while the duration of measurement is on the order of seconds to minutes. The receptor antagonist 1,2,3, 9-tetrahydro-3-[(5-methyl-1H-imidazol-4-yl)methyl]-9-(3-aminopropyl)- 4H-carbazol-4-one (GR-H) was labeled with the fluorophores rhodamine 6G, fluorescein, N-[7-nitrobenz-2-oxa-1,3-diazol-4-yl], and the cyanine dye Cy5. These labels cover a large part of the visible electromagnetic spectrum. It is shown that the photophysical and chemical properties have a direct influence on the measurement quality (duration of measurement, signal-to-noise ratio) and the ligand-receptor interactions (dissociation constants), respectively. This makes it necessary to choose a suitable label or a combination of labels for receptor studies. The affinities of the fluorescently labeled ligands determined by FCS were virtually identical to the values obtained by radioligand binding experiments. Moreover, the dissociation constant of a nonfluorescent receptor ligand was determined successfully by an FCS competition assay. The experimental results showed that only one antagonist binds to the receptor, in agreement with measurements previously published [Tairi et al. (1998) Biochemistry 37, 15850-15864].

4-Chloro-7-nitrobenzofurazan↗

p63 is a p53 homologue required for limb and epidermal morphogenesis.

The p53 tumour suppressor is a transcription factor that regulates the progression of the cell through its cycle and cell death (apoptosis) in response to environmental stimuli such as DNA damage and hypoxia. Even though p53 modulates these critical cellular processes, mice that lack p53 are developmentally normal, suggesting that p53-related proteins might compensate for the functions of p53 during embryogenesis. Two p53 homologues, p63 and p73, are known and here we describe the function of p63 in vivo. Mice lacking p63 are born alive but have striking developmental defects. Their limbs are absent or truncated, defects that are caused by a failure of the apical ectodermal ridge to differentiate. The skin of p63-deficient mice does not progress past an early developmental stage: it lacks stratification and does not express differentiation markers. Structures dependent upon epidermal-mesenchymal interactions during embryonic development, such as hair follicles, teeth and mammary glands, are absent in p63-deficient mice. Thus, in contrast to p53, p63 is essential for several aspects of ectodermal differentiation during embryogenesis.

Animals↗

X-ray diagnostic without medical indication and bodily harm: decision of the Supreme Court of Germany 3/12/97--2StR 397/97.

An orthopedic surgeon had been condemned for different offences to 2 years and 6 months imprisonment by the superior court in Frankfurt/Main. One point of the ruling had been the use of X-rays without medical indication, which the superior court of Frankfurt/Main finally did not assess as bodily harm. The supreme court of Germany overruled this interpretation and referred the case back for a new trial and ruling.

Diagnostic Imaging↗

Resolution of fluorescence correlation measurements.

The resolution limit of fluorescence correlation spectroscopy for two-component solutions is investigated theoretically and experimentally. The autocorrelation function for two different particles in solution were computed, statistical noise was added, and the resulting curve was fitted with a least squares fit. These simulations show that the ability to distinguish between two different molecular species in solution depends strongly on the number of photons detected from each particle, their difference in size, and the concentration of each component in solution. To distinguish two components, their diffusion times must differ by at least a factor of 1.6 for comparable quantum yields and a high fluorescence signal. Experiments were conducted with Rhodamine 6G and Rhodamine-labeled bovine serum albumin. The experimental results support the simulations. In addition, they show that even with a high fluorescence signal but significantly different quantum yields, the diffusion times must differ by a factor much bigger than 1.6 to distinguish the two components. Depending on the quantum yields and the difference in size, there exists a concentration threshold for the less abundant component below which it is not possible to determine with statistical means alone that two particles are in solution.

Animals↗

Polarization-modulated FTIR spectroscopy of lipid/gramicidin monolayers at the air/water interface.

Monolayers of gramicidin A, pure and in mixtures with dimyristoylphosphatidylcholine (DMPC), were studied in situ at the air/H2O and air/D2O interfaces by polarization-modulated infrared reflection absorption spectroscopy (PM-IRRAS). Simulations of the entire set of amide I absorption modes were also performed, using complete parameter sets for different conformations based on published normal mode calculations. The structure of gramicidin A in the DMPC monolayer could clearly be assigned to a beta6.3 helix. Quantitative analysis of the amide I bands revealed that film pressures of up to 25-30 mN/m the helix tilt angle from the vertical in the pure gramicidin A layer exceeded 60 degrees. A marked dependence of the peptide orientation on the applied surface pressure was observed for the mixed lipid-peptide monolayers. At low pressure the helix lay flat on the surface, whereas at high pressures the helix was oriented almost parallel to the surface normal.

Air↗

Immobilization of histidine-tagged proteins on gold surfaces using chelator thioalkanes.

The reversible, oriented immobilization of proteins on solid surfaces is a prerequisite for the investigation of molecular interactions and the controlled formation of supramolecular assemblies. This paper describes a generally applicable method using a synthetic chelator thioalkane that can be self-assembled on gold surfaces. The reversible binding of an anti-lysozyme F(ab) fragment modified with a C-terminal hexahistidine extension was monitored and the apparent dissociation constants determined using surface plasmon resonance. Infra-red spectroscopy demonstrated that the secondary structure of the protein was unaffected by the immobilization process. The retention of functionality of the immobilized protein was also successfully demonstrated. Given the mild reaction conditions and reversibility, this method of oriented immobilization of proteins opens possibilities for the development of biosensors.

Alkanes↗

Structural evidence of injury or malformation in the brains of children with congenital heart disease.

Neurological and developmental deficits are common in children with congenital heart disease (CHD). These are due to multiple factors that include the etiology of the CHD, the effects of abnormal cardiovascular function, and the possible sequelae of open heart surgery. CHD is frequently part of a multiple malformation syndrome that includes the brain. The causes of these syndromes include known or putative genetic defects. Abnormal cardiovascular function may be associated with poor brain growth, embolic infarction, cerebrovascular thrombosis, and abscess formation. Perioperative neurological complications include diffuse hypoxic-ischemic injury (particularly in neonates who undergo more than 45 to 60 minutes of hypothermic circulatory arrest), cerebral macro- and micro-emboli, dural sinus thrombosis, and cerebral hemorrhage. Neuroimaging, especially magnetic resonance imaging, is a useful prognostic instrument, can easily display gross congenital and acquired lesions, and should be performed preoperatively in addition to genetic studies. In some instances poor brain function may not be predicted unless slow head growth or microcephaly is present and thorough preoperative neurodevelopmental evaluation is encouraged.

Abnormalities, Multiple↗

Micropatterned immobilization of a G protein-coupled receptor and direct detection of G protein activation.

G protein-coupled receptors (GPCRs) constitute an abundant family of membrane receptors of high pharmacological interest. Cell-based assays are the predominant means of assessing GPCR activation, but are limited by their inherent complexity. Functional molecular assays that directly and specifically report G protein activation by receptors could offer substantial advantages. We present an approach to immobilize receptors stably and with defined orientation to substrates. By surface plasmon resonance (SPR), we were able to follow ligand binding, G protein activation, and receptor deactivation of a representative GPCR, bovine rhodopsin. Microcontact printing was used to produce micrometer-sized patterns with high contrast in receptor activity. These patterns can be used for local referencing to enhance the sensitivity of chip-based assays. The immobilized receptor was stable both for hours and during several activation cycles. A ligand dose-response curve with the photoactivatable agonist 11-cis-retinal showed a half-maximal signal at 120 nM. Our findings may be useful to develop novel assay formats for GPCRs based on receptor immobilization to solid supports, particularly to sensor surfaces.

Animals↗

The KID Study V: the natural history of type 2 diabetes in younger patients still practising a profession. Heterogeneity of basal and reactive C-peptide levels in relation to BMI, duration of disease, age and HbA1.

In a detailed evaluation of the data accumulated for 493 type 2 diabetics who participated in the KID Study, pre- and postprandial C-peptide was correlated with blood glucose level, HbA1, body mass index (BMI), duration of disease and age. As described earlier the KID-Study examined a younger cohort of type 2 diabetics predominately practising a profession. Our investigations demonstrate a significant increase of pre- as well as postprandial C-peptide levels with increasing obesity. However, delta C-peptide, as an indicator at the reaction capacity of pancreatic secretion, decreases significantly and continuously. Pre- as well as postprandial C-peptide levels decrease significantly with up to 15-20 years duration of disease. The preprandial pancreatic secretion is usually even at a high normal level at such a late stage whereas the secretory reserve of normal or mildly overweight as well as of obese type 2 diabetics is more impaired. In contrast to patients with a BMI < 30, obese patients with a BMI > 30 will also develop impairment of basal insulin secretion over decades. The patient's age did not influence the pre- or postprandial insulin secretion. The quality of metabolic control as measured by the HbA1 has nearly exclusive impact on the secretory reserve capacity. Correlation with increasing HbA1 concentrations, the postprandial but not the preprandial C-peptide levels decreased significantly and continuously. Predictive factors for a deterioration in pancreatic function are in order of importance: the extent of obesity, the quality of metabolic control and only last the duration of diabetes. Fortunately, consistent diabetic care can have an impact on the first two.

Age of Onset↗

The KID Study VI: diabetic complications and associated diseases in younger type 2 diabetics still performing a profession. Prevalence and correlation with duration of diabetic state, BMI and C-peptide.

A sub-study evaluated 698 younger (54.5 +/- 6.9 years) type 2 diabetics of the KID Study participants to establish the prevalence of diabetic complications and associated diseases and their correlation with body mass index (BMI), duration of disease and to C-peptide levels. Only 19.8% of the type 2 diabetics had a normal weight. In all weight subgroups, the average age of diabetes manifestation were around age 45. In 46.6% of all type 2 diabetics we could already demonstrate microangiopathic complications. Strikingly, 15.9% of the patients already had proliferative retinopathies and 12.6% had albuminuria of more than 1000 mg/dl. 74.7% of our type 2 diabetics presented with the well-known risk cluster of the metabolic syndrome: In every other patient, we found hypertension and/or hyperlipoproteinaemia. Accordingly, the prevalence of the macroangiopathic diabetic complications, coronary artery disease and peripheral vascular disease was 17.8%, which is high for a relatively young population with a mean age of 53.9 years and goes conform with recent literature (Lowel et al., 1999). An increase in BMI correlated significantly with deterioration of HbA1, a decrease in HDL cholesterol, an increase in triglycerides and with a higher prevalence of hypertension. The frequency of nephropathy increase significantly up to a BMI of 30-35 kg/m2. Retinopathies and polyneuropathies were associated with BMI but increased significantly with the duration of the diabetic state. In contrast to microangiopathic diabetic complications, there was already a high prevalence of nephropathy after a comparatively short duration of disease. The prevalence of hyperlipoproteinaemia and hypertension did not depend from the duration of diabetes. These concomitant diseases already were frequent early in the disease and did not increase with the duration of disease. However, there was a strong correlation between increasing hyperlipoproteinaemia and hypertension and higher C-peptide levels. We found no coincidence between C-peptide levels and microangiopathic diabetic complications.

Adult↗

Early region 1 transforming functions are dispensable for mammary tumorigenesis by human adenovirus type 9.

Some human adenoviruses are tumorigenic in rodents. Subgroup A and B human adenoviruses generally induce sarcomas in both male and female animals, and the gene products encoded within viral early region 1 (E1 region) are both necessary and sufficient for this tumorigenicity. In contrast, subgroup D human adenovirus type 9 (Ad9) induces estrogen-dependent mammary tumors in female rats and requires the E4 region-encoded ORF1 oncoprotein for its tumorigenicity. Considering the established importance of the viral E1 region for tumorigenesis by adenoviruses, we investigated whether this viral transcription unit is also necessary for Ad9 to generate mammary tumors. The nucleotide sequence of the Ad9 E1 region indicated that the gene organization and predicted E1A and E1B polypeptides of Ad9 are closely related to those of other human adenovirus E1 regions. In addition, an Ad9 E1 region plasmid demonstrated focus-forming activity in both low-passage-number and established rat embryo fibroblasts, whereas a large deletion within either the E1A or E1B gene of this plasmid diminished transforming activity. Surprisingly, we found that introducing the same transformation-inactivating E1A and E1B deletions into Ad9 results in mutant viruses that retain the ability to elicit mammary tumors in rats. These results are novel in showing that Ad9 represents a unique oncogenic adenovirus in which the E4 region, rather than the E1 region, encodes the major oncogenic determinant in the rat.

Adenovirus E1 Proteins↗

[The diagnostic report as an aid for determination of referral to inpatient rehabilitation].

The investigation analyzes some 206 standardized diagnostic reports submitted by office-practice physicians, demonstrating the role of diagnostic reports in determining access to medical rehabilitation. It is found that the practitioners added no further information about their patients' health status in half of the diagnostic reports given, and no further medical documents in one third. On the other hand, diagnostic reports that included details about the patients' ability to work as well as information about previous treatments resulted to a greater degree in direct award of a medical rehabilitation measure.

Decision Support Techniques↗

Overexpression of Mdm2 in mice reveals a p53-independent role for Mdm2 in tumorigenesis.

The Mdm2 proto-oncogene is amplified to high copy numbers in human sarcomas and is overexpressed in a wide variety of other human cancers. Because Mdm2 protein forms a complex with the p53 tumor suppressor protein and down-regulates p53 function, the oncogenic potential of Mdm2 is presumed to be p53-dependent. To model these conditions in mice, we have used the entire Mdm2 gene, under transcriptional control of its native promoter region, as a transgene to create mice that overexpress Mdm2. The transgenic mice are predisposed to spontaneous tumor formation, and the incidence of sarcomas observed in the Mdm2-transgenic mice in the presence or absence of functional p53 demonstrates that, in addition to Mdm2-mediated inactivation of p53, there exists a p53-independent role for Mdm2 in tumorigenesis.

Animals↗

Psilocybin induces schizophrenia-like psychosis in humans via a serotonin-2 agonist action.

Psilocybin, an indoleamine hallucinogen, produces a psychosis-like syndrome in humans that resembles first episodes of schizophrenia. In healthy human volunteers, the psychotomimetic effects of psilocybin were blocked dose-dependently by the serotonin-2A antagonist ketanserin or the atypical antipsychotic risperidone, but were increased by the dopamine antagonist and typical antipsychotic haloperidol. These data are consistent with animal studies and provide the first evidence in humans that psilocybin-induced psychosis is due to serotonin-2A receptor activation, independently of dopamine stimulation. Thus, serotonin-2A overactivity may be involved in the pathophysiology of schizophrenia and serotonin-2A antagonism may contribute to therapeutic effects of antipsychotics.

Adult↗

Ligand binding to the serotonin 5HT3 receptor studied with a novel fluorescent ligand.

The thermodynamics and kinetics of ligand binding to the purified serotonin 5HT3 receptor and the local environment of the bound ligand were studied by fluorescence spectroscopy using a novel fluorescein-labeled ligand GR-flu [1,2,3, 9-tetrahydro-3-[(5-methyl-1H-imidazol-4-yl)methyl]-9-(3-amino-(N-fluo rescien-thiocarbamoyl)-propyl)-4H-carbazol-4-one]. Electrophysiological investigations demonstrated GR-flu to be an antagonist, and radioligand competition assays delivered a dissociation constant of 0.32 nM. Changes in the fluorescence intensity and anisotropy upon specific binding to the receptor yielded dissociation constants of approximately 0.2 nM. Fluorescence measurements showed that selective 5HT3 receptor ligands competed for GR-flu binding with a rank order of potency identical to that established with the radioligand [3H]-GR65630. The kinetics of GR-flu binding to the 5HT3 receptor revealed a bimolecular association process with an on-rate constant of 1.17 x 10(6) s-1 M-1 and a biphasic dissociation reaction with off-rate constants of 275 x 10(-)6 and 43 x 10(-)6 s-1. The temperature dependence of the dissociation constant yielded an enthalpic term of -26 kJ mol-1 and an entropic term of 94 J K-1 mol-1 for the binding of GR-flu to the receptor, indicating that both quantities contribute equally to the reaction. An activation enthalpy DeltaH#on and entropy DeltaS#on of binding of 50 kJ mol-1 and 43 J mol-1 K-1 were obtained, indicating that the entropy facilitates the initial steps of GR-flu binding to the 5HT3 receptor. The fluorescence anisotropy of receptor-bound GR-flu and the environmental sensitivity of the fluorescent probe suggest that the binding site has a wide entrance and that it is 0.8 pH unit more acidic than the bulk solution.

Animals↗