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Biomedical subjects

H Geerts

Publications and source records attributed to H Geerts.

45 records · Page 3Linked to original sources

Experimental realization and optimalization of a fluorescence correlation spectroscopy apparatus.

Fluorescence Correlation Spectroscopy is an elegant technique for measuring lateral diffusion on cell membranes. It is based on the extraction of kinetic information from spontaneous fluctuations in number density of fluorescent molecules. As with most methods of noise analysis, one has to be very careful about possible (instrumental) distortion. Conversely, the intrinsic stochastic character of this technique permits some improvements on the S/N ratio. We describe some experiments on the optimalization of this S/N ratio, and on the measurement of the instrumental distortion.

Chemical Phenomena↗

Photon and fluorescence correlation spectroscopy and light scattering of eye-lens proteins at moderate concentrations.

The bovine eye-lens protein, alpha L-crystallin, has been studied with photon correlation spectroscopy to obtain the mutual diffusion coefficient, Dm, with fluorescence correlation spectroscopy to determine the tracer diffusion coefficient, DT, and with light scattering to get the isothermal osmotic compressibility (delta pi/delta c) P,T. The concentration dependence of Dm, DT, and (delta pi/delta c) P,T up to a volume fraction phi of the protein of 2.5 x 10(-2) has been interpreted on the basis of four different interaction potentials: (a) an extended hard-sphere potential; (b) a shielded Coulomb potential; (c) a shielded Coulomb interaction where the effect of counterions is included; (d) a simple mixed potential. The three parameters Dm, DT, and (delta pi/delta c) P,T have also been combined in the generalized Stokes-Einstein equation, Dm = [(delta pi/delta c)P,T . (1--phi) . (DT)]/(kappa B . T). Our results indicate that, in the case that photon correlation spectroscopy gives the mutual diffusion coefficient Dm, the applicability of the Stokes-Einstein equation can be questioned; or that, when one assumes the Stokes-Einstein equation to be valid, there is significant discrepancy between the result of photon correlation spectroscopy and Dm.

Animals↗

Detection of gold probes with video-enhanced contrast microscopy: nanovid microscopy.

This contribution describes a new microscopic technique aimed at visualizing colloidal gold particles of 20-40 nm diameter as dynamic markers at the light microscopic level. The technique, called nanovid microscopy, is based on the use of contrast enhancement by video techniques and digital image processing. Two applications on living cells are discussed. The first is the receptor-mediated endocytosis of the transferrin receptor, which for the first time can be followed in real time. A second application documents the motion of cell-surface glycoproteins on PTK2-cells. In addition, nanovid microscopy allows the number of gold particles in immunogold staining to be quantified easily. With this tool, the translocation of specific molecules in living cells becomes one of the most enjoyable activities to observe.

Biological Transport↗

Neuronal kinase stimulation leads to aberrant tau phosphorylation and neurotoxicity.

Neurofibrillary tangles in Alzheimer's disease brain consist mainly of abnormally phosphorylated tau proteins organised in paired helical filaments. Induction of tau phosphorylation in living neurons by hyperstimulation is monitored by specific monoclonal antibodies, such as AT-8 and PHF-1. By quantitative immunocytochemistry, we show that aberrant phosphorylation at the Ser199/Ser202 epitope (AT-8) and at the Ser 396 epitope (PHF-1) are moderately induced, proportionally to the degree of kinase stimulation. Whereas AT8 expression is prominent after 48 h, cell death becomes significant at 72 h and is related to the degree of stimulation and the expression level of aberrant tau phosphorylation. Time-lapse videomicroscopy of individual neuroblastoma cells suggest that hyperstimulation leads to a form of morphological over-differentiation. Immediately before cell death, some cells tend to display some features of mitosis. The data suggest a strong correlation between the expression of specific PHF-epitopes and subsequent cell death. The extended time scale of toxicity in this model may be appropriate to study in more detail the steps leading to aberrant phosphorylation associated neurotoxicity.

Animals↗

Sabeluzole stabilizes the neuronal cytoskeleton.

There is growing evidence that cytoskeletal instability of neuronal cells is an important step towards tangle formation and subsequent functional disconnection in the AD brain. Sabeluzole, a new drug in clinical trials for Alzheimer's disease (AD), has been shown to slow down the clinical progression of the disease. In a search for the mechanism of action of this compound, the effect of sabeluzole on the neuronal cytoskeleton was investigated. Previous studies have shown that in human TR14 neuroblastoma cells and in rat hippocampal neurons a hyperstimulating medium of kinase activators leads to induction of aberrant tau phosphorylation followed by neurotoxicity. This report documents the attenuation of this neurotoxicity by sabeluzole. By selective permeabilization procedures and quantitative immunocytochemistry we show that the compound is found to preferentially increase the fraction of polymerized tubulin. Evidence is presented that the compound differentially modulates a nocodazole-induced depolymerization in contrast to a cold-induced depolymerization. In the mouse, N4 neuroblastoma cells sabeluzole decreases the spontaneous retraction frequency of neurites and lowers the lateral mobility of the cells. We, therefore, propose that sabeluzole exerts its neuroprotective effect by a stabilization of the neuronal cytoskeleton and that this mechanism provides a completely new approach for treatment in Alzheimer's disease.

Animals↗

APOE genotype: no influence on galantamine treatment efficacy nor on rate of decline in Alzheimer's disease.

Apolipoprotein E (APOE) has been extensively demonstrated to be a genetic risk factor for Alzheimer's disease (AD). Associations of APOE genotype have been reported with age at AD onset, rate of decline, and responsiveness to therapy. This study aimed to test these hypotheses in a large study population of AD patients. APOE genotype was determined from 1,528 Caucasian subjects, diagnosed by NINCDS/ADRDA criteria as probable AD patients, enrolled in four international placebo-controlled clinical trials of 3--12 months duration, designed to evaluate efficacy of treatment with galantamine or sabeluzole. In addition to patient demographics and baseline scores for Mini Mental State Examination, scores on the Disability Assessment for Dementia (DAD) and the cognitive subscale of the Alzheimer's Disease Assessment Scale (ADAS-cog) were recorded at the start, during, and at the end of the study. APOE epsilon 4 homozygotes had a significantly lower age at disease onset compared to patients with other APOE genotypes. The epsilon 4 allele was significantly over-represented in females compared to males, and in the group of subjects with an AD family history. Based on longitudinal data of 504 placebo-treated AD patients, the linear annual rate of change in score was 5 points on the ADAS-cog scale and 11 on the DAD scale. The epsilon 4 allele copy number did not influence these rates of decline. Sabeluzole treatment was not effective in the overall group compared to the placebo-treated group, nor in any subgroup stratified by epsilon 4 allele count. Galantamine produced cognitive and functional improvement that were not affected by epsilon 4 allele count. In conclusion, our data confirm a strong association between epsilon 4 homozygotes and age at onset of AD but do not support an effect of epsilon 4 allele copy number on rate of cognitive and functional decline nor on the efficacy of galantamine in patients with AD.

Aged↗

Cyclosporine increases the intracellular free calcium concentration in electrically paced isolated rat cardiomyocytes.

The effect of cyclosporine on the mean cytoplasmic free calcium concentration in electrically paced single cardiomyocytes from adult rats was studied. Cardiac myocytes were paced by electrical field stimulation with either 2 or 3 Hz in the presence of 5 micrograms/ml cyclosporine or the solvent cremophor. Exposure to cyclosporine during 40 minutes of electrical pacing caused irreversible hypercontracture in most cells, only 22.1% +/- 1.2% (mean +/- SEM) remained rod-shaped versus 64.1% +/- 3.2% in the solvent (p = 0.01). The cytoplasmic free calcium concentration was measured by means of digital image processing of fura-2 fluorescence. Electrical field stimulation increased the cytoplasmic free calcium from 69.7 +/- 5.4 to 124.9 +/- 24.5 nmol/L Ca2+ in the presence of the solvent and from 84.2 +/- 25.4 to 250.1 +/- 55.9 nmol/L in the presence of cyclosporine (p = 0.036 versus solvent). The data provide direct evidence that cyclosporine enhances the cytoplasmic free calcium concentration in single paced rat cardiomyocytes. These findings may be of importance in the consideration of a possible cardiotoxicity of cyclosporine.

Animals↗