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Biomedical subjects

C Humbert

Publications and source records attributed to C Humbert.

15 recordsLinked to original sources

Influence of DNA condensation state on transfection efficiency in DNA/polymer complexes: an AFM and DLS comparative study.

Atomic force microscopy (AFM) is used to describe the formation process of polymer/DNA complexes. Two main objectives of this research are presented. The first one is to apply AFM as an effective tool to analyse DNA molecules and different polycation/DNA complexes in order to evaluate their degree of condensation (size and shape). The other one is to search for a relationship between the condensation state of DNA and its transfection efficiency. In this study, linear methacrylate based polymers and globular SuperFect polymers are used in order to induce DNA condensation. Ternary complexes, composed of methacrylate based polymers and polyethylene glycol (PEG)-based copolymers, are also investigated. AFM allows us to confirm good condensation conditions and relate them (or not) to transfection efficiencies. These AFM results (obtained after drying in air) are compared with measurements deduced from Dynamic Light Scattering (DLS) experiments performed in water. This comparison allowed us to identify the structural modifications resulting from deposition on the mica surface.

Animals↗

Electronic and molecular properties of an adsorbed protein monolayer probed by two-color sum-frequency generation spectroscopy.

Two-color sum-frequency generation spectroscopy (2C-SFG) is used to probe the molecular and electronic properties of an adsorbed layer of the green fluorescent protein mutant 2 (GFPmut2) on a platinum (111) substrate. First, the spectroscopic measurements, performed under different polarization combinations, and atomic force microscopy (AFM) show that the GFPmut2 proteins form a fairly ordered monolayer on the platinum surface. Next, the nonlinear spectroscopic data provide evidence of particular coupling phenomena between the GFPmut2 vibrational and electronic properties. This is revealed by the occurrence of two doubly resonant sum-frequency generation processes for molecules having both their Raman and infrared transition moments in a direction perpendicular to the sample plane. Finally, our 2C-SFG analysis reveals two electronic transitions corresponding to the absorption and fluorescence energy levels which are related to two different GFPmut2 conformations: the B (anionic) and I forms, respectively. Their observation and wavelength positions attest the keeping of the GFPmut2 electronic properties upon adsorption on the metallic surface.

Adsorption↗

Disruption of microtubular cytoskeleton induced by cryptogein, an elicitor of hypersensitive response in tobacco cells.

The dynamics of microtubular cytoskeleton were studied in tobacco (Nicotiana tabacum cv Xanthi) cells in response to two different plant defense elicitors: cryptogein, a protein secreted by Phytophthora cryptogea and oligogalacturonides (OGs), derived from the plant cell wall. In tobacco plants cryptogein triggers a hypersensitive-like response and induces systemic resistance against a broad spectrum of pathogens, whereas OGs induce defense responses, but fail to trigger cell death. The comparison of the microtubule (MT) dynamics in response to cryptogein and OGs in tobacco cells indicates that MTs appear unaffected in OG-treated cells, whereas cryptogein treatment caused a rapid and severe disruption of microtubular network. When hyperstabilized by the MT depolymerization inhibitor, taxol, the MT network was still disrupted by cryptogein treatment. On the other hand, the MT-depolymerizing agent oryzalin and cryptogein had different and complementary effects. In addition to MT destabilization, cryptogein induced the death of tobacco cells, whereas OG-treated cells did not die. We demonstrated that MT destabilization and cell death induced by cryptogein depend on calcium influx and that MT destabilization occurs independently of active oxygen species production. The molecular basis of cryptogein-induced MT disruption and its potential significance with respect to cell death are discussed.

Algal Proteins↗

Effects of 12 beticolins, Cercospora beticola toxins, on proliferation of ras-transformed adrenocortical cell.

AIM: To explore different effects of 12 beticolins, Cercospora beticola toxins, on ras-transformed adrenocortical cell growth inhibition and their functional mechanism. METHODS: Beticolin-induced inhibition was measured with survival cell number determined by an automated photocolorimetric method. The penetration of beticolin was examined by confocal microscopy. Ras protein determined by Lowry method were separated by 14 % SDS-PAGE and electroblotted to Immobilon-P transfer membrane and detected with pan-Ras (Ab-3) monoclonal antibody. The Ca2+ chelation by beticolin was investigated using a calcium ionophore. RESULTS: Cell growth inhibition was found dose- and time-dependently at submicromolar level for beticolin-1, -2, and -13 (IC50 </= 250 nmol/L) and for beticolin-0, 6, and -11 (400 nmol/L < IC50 </= 500 nmol/L). The inhibition by beticolin-1 was immediate, independent of cell culture step and not reversible for 3-day treatment. Beticolin-3 and -4 were slightly active (1 micromol/L < IC50 </= 2 micromol/L) and beticolin-7, -9, -12, and -5 were inactive at micromolar level. The beticolin-induced cell growth inhibition was correlated with the hydrophobicity of these compounds. Beticolin-1 fluorescence in RTAC cells was detected by confocal microscopy whereas beticolin-3 and -12 were not even after a 24 h incubation period. Beticolin-1-induced cell growth inhibition was partially reverted by calcium ionophore suggesting a role of intracellular Ca2+ chelation by beticolin-1 on cell growth inhibition. Furthermore, beticolin-1 blocked up Ras p21 translocation to membrane and induced accumulation of Ras in the cytosol as an inactive form by different ways. CONCLUSION: Beticolins with high hydrophobicity inhibit tumorigenic cell proliferation by different ways.

Adrenal Cortex↗

Inhibition of cellular growth and steroid 11 beta-hydroxylation in ras-transformed adrenocortical cells by the fungal toxins beticolins.

The proliferation of GM16 and 4CDT ras-transformed newborn rat adrenocortical (RTAC) cells and Y1 mouse adrenal tumor cells was inhibited by beticolins, the fungal toxins extracted from Cercospora beticola, at submicromolar concentrations in a dose-dependent manner. Inhibitory concentrations for half the maximum inhibition were 150, 75 and 25 nM for beticolin-1 and 230, 150 and 50 nM for beticolin-2 in GM16, 4CDT and Y1 cells respectively. Beticolins strongly inhibited the production of 11 beta-hydroxysteroids on the second and third days of treatment in a dose-dependent manner between 0.1 and 1 microM. Beticolins were shown by confocal microscopy to be localized in cytoplasmic organelles about 30-40 min after treatment. This finding favors a direct action of beticolins on mitochondrial steroid 11 beta-hydroxylase albeit another less direct mechanism involving a cytoplasmic signaling pathway cannot be excluded.

Adrenal Cortex↗

[Corticotropic macroadenoma: clinical, hormonal, radiological and immunocytochemical study of 6 cases].

We report 6 cases of corticotroph macroadenomas which show heterogeneity of clinical and biological features (from Cushing's syndrome to silent adenoma) and heterogeneity of immunocytochemical staining. One patient reported on had skin hyperpigmentation and ACTH hypersecretion without clear abnormal adrenocortical function; we believe that this patient's plasma contained ACTH with very low bioactivity.

Adenoma↗

[Holter and sudden death: value in a case of arrhythmogenic right ventricular dysplasia].

The authors report the first case of arrhythmogenic right ventricular dysplasia presenting with a sudden death due to primary ventricular fibrillation (ventricular fibrillation not preceded by ventricular tachycardia) recorded by the Holter method. The patient was a 56 year old man whose only complaint was near syncopal case is the fact that it is the first documented case of ventricular fibrillation revealing arrhythmogenic right ventricular dysplasia, the diagnosis of which was made at autopsy. In addition, the Holter recording showed the factors which triggered the arrhythmia: the "trigger" of 4 monomorphic ventricular extrasystoles during the minute preceding the ventricular fibrillation; the arrhythmogenic substrate giving rise to late ventricular potentials and, finally, the analysis of the R-R intervals suggesting a role of the sympathetic and parasympathetic nervous systems. Holter recordings could help identify subjects at high risk of severe ventricular arrhythmias.

Adipose Tissue↗

Methods for topographical analysis of intra-nuclear BrdUrd-tagged fluorescence.

The observation of BrdUrd staining in the nuclei of cells from exponentially growing populations reveals different typical replicating patterns. We propose a methodological approach to order and characterize BrdUrd intranuclear distributions. First, visual ordering of the patterns is assessed using a spectral analysis coupled to a k-nearest neighbors clustering technique. Subsequently, nine topographical features are introduced to characterize the spatial distribution of BrdUrd-tagged fluorescence in the nuclei of proliferating cells. These topographical features are based on a structural approach. The localization of fluorescence spots is expressed in terms of the normalized distance from the nuclear border and its standard deviation. These topographical features are simple to calculate and easy to relate to visual experience.

Algorithms↗

Eukaryotic DNA replication is a topographically ordered process.

This paper describes the relationship between the BrdUrd replicating pattern of a cell and its localization within the S phase by means of topographical features and DNA content measurement. The present study follows an objective ranking of the BrdUrd patterns obtained from a spectral analysis of the BrdUrd images. The pattern ranking was consistent with the DNA content increase throughout the S phase. Five texture groups were arbitrarily set up for the purpose of multivariate analysis. Nine topographical parameters were computed for each BrdUrd-labelled nucleus. The descriptive quality of these parameters was assessed by means of factorial discriminant analysis. These parameters made it possible to characterize objectively the known pattern distributions of replication sites qualitatively described in the literature.

Bromodeoxyuridine↗

Intranuclear co-location of newly replicated DNA and PCNA by simultaneous immunofluorescent labelling and confocal microscopy in MCF-7 cells.

The intranuclear distribution of newly replicated DNA and of the proliferating cell nuclear antigen (PCNA) was mapped by confocal laser scanning microscopy after simultaneous immunofluorescent labelling of incorporated bromodeoxyuridine (BrdUrd) and PCNA. A mild hydrolysis with HCl followed by an enzymic digestion of DNA was used to produce single-stranded DNA required for BrdUrd immunorevelation, since this procedure preserves PCNA antigenicity. Optical sections obtained with a laser scanning microscope clearly showed a similar distribution of PCNA and BrdUrd within the nuclei, thus confirming previous observations on parallel labelled synchronized cultures. The intranuclear distribution of PCNA and BrdUrd varies concomitantly during the S phase of MCF-7 cells.

Autoantigens↗

Detection of S cells and evaluation of DNA denaturation protocols by image cytometry of fluorescent BrdUrd labelling.

This paper addresses the problem of detecting weak incorporation of BrdUrd and the related efficiency of the denaturation protocols used to unmask this thymidine analog. Evidence is presented that measuring the distribution of BrdUrd-tagged fluorescence intensities by image cytometry generates a standard deviation threshold that discriminates between positive and negative MRC5 cells in vitro. A comparison of the thresholding by standard deviation (SDT) with the usual thresholding by the nuclear total fluorescence intensity (FIT) demonstrated that SDT has a significantly higher sensitivity (99.4-100%, depending on the denaturation protocols) than FIT (94.7 and 74.3%, respectively), although both tests have a high specificity (93% and 100%, respectively) for detecting S cells. Since detecting the S cells is not only dependent on the test used, but also on the denaturation protocols, a quality index (QI) was derived from the standard deviation and the mean value of the non-specific fluorescence of negative cell population versus BrdUrd fluorescence of positive cell population. The following DNA denaturation protocols have been assessed according to QI: acidic denaturation, thermal denaturation in formamide, and thermal denaturation in distilled water. Each denaturation procedure was preceded or not by incubation in either proteinase K or Triton X-100. The results showed that thermal denaturation in formamide, especially when preceded by proteinase K incubation, revealed the largest difference between negative and positive cells. This work also demonstrated that image cytometry of BrdUrd-labelled cells can be suitable for clinical application because of the high sensitivity provided and the small samples needed.

Bromodeoxyuridine↗

Method for 3D volumetric analysis of intranuclear fluorescence distribution in confocal microscopy.

The introduction of the confocal laser scanning microscope makes it possible to acquire fluorescent specimens in 3D. We present basic image processing tools to enhance the data and to quantitate the morphology and topography of the intravolume elements. The tools were applied to the description of the spatial distribution of DNA replication sites in mammalian cell nuclei as an example.

Algorithms↗