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Biomedical subjects

A Perrin

Publications and source records attributed to A Perrin.

At least 19 recordsLinked to original sources

Metabolism of [1-13C] glucose in extracts and in immobilized rat glioma C6 cell cultures: effects of hypoxia.

The metabolism of [1-13C] glucose was followed in C6 rat glioma cells immobilized on a gel thread and in perchloric extracts of the same cells in culture. The results showed that the main metabolite of [1-13C] glucose is [3-13C] lactate. The effects of hypoxia were followed in the perchloric acid extracts of C6 cells. In normoxic conditions, the main metabolites produced by the cells were [3-'3C] lactate, [3-13C] alanine, [2-13C], [3-13C] and [4-13C] glutamate. Lactate newly synthesized from glucose appeared to be exported in the perfusion medium when living cells were immobilized in gel threads made of extracellular matrix. After 5 h of hypoxia, the lactate labelling measured in PCA cell extracts was increased that of glutamate decreased and the appearance of a spectral line at 66.01 ppm, identified as [1-13C] glycerol-3-phosphate, was observed. The data suggest that the synthesis of glycerol-3-phosphate in these cells might represent a sign of hypoxia.

Animals↗

Effect on mood of subthalamic DBS for Parkinson's disease: a consecutive series of 24 patients.

A series of 24 consecutive PD patients were prospectively studied prior to and within 6 months postoperatively for mood, motor, and cognitive status to investigate the effects on mood of subthalamic deep brain stimulation (DBS) in PD. In six patients (25%), mood state worsened significantly, and three were transiently suicidal despite clear motor improvement. Caregivers and patients should be educated about the potential impact of this neurosurgical procedure on mood.

Adult↗

Leaching of diethylhexyl phthalate from polyvinyl chloride bags into intravenous etoposide solution.

OBJECTIVE: To compare the release of diethylhexyl phthalate (DEHP) from polyvinyl chloride (PVC) bags from four different manufacturers into intravenous etoposide solutions. METHOD: Etoposide solutions, 0.4 mg/mL, containing the vehicle polysorbate 80 were prepared in 5% dextrose or 0.9% sodium chloride injection PVC bags and stored at room temperature for 24 h. DEHP content was analysed by high-performance liquid chromatography. RESULTS: Substantial amounts of DEHP (up to 20 microg/mL at room temperature) leached into the etoposide solutions. However, no significant differences were found in the amounts of DEHP leached into the etoposide infusion solutions prepared using either 5% dextrose or 0.9% sodium chloride injection and stored in the four different containers. CONCLUSION: To minimize patient exposure o DEHP, etoposide solutions should ideally be stored in a glass or polyolefin container.

Antineoplastic Agents, Phytogenic↗

Expression of a single betaalpha chain protein of equine LH/CG in milk of transgenic rabbits and its biological activity.

Equine chorionic gonadotropin (eCG) is a heavily glycosylated glycoprotein composed of non-covalently linked alpha- and beta-subunits. eCG possesses the particularity to bind to both LH and FSH receptors in species other than horses and to have a prolonged plasma half-life. All these properties make it of utmost interest for livestock fertilization program. Up to now, the only source of eCG is the serum of pregnant mare. Rabbit mammary gland is considered as a system able to produce recombinant glycoproteins in sufficient quantity for pharmaceutical use. Here we described the production of a recombinant single betaalpha chain of eLH/CG in the milk of transgenic rabbit. The construction of a single-chain permits to by-pass the problem of association-dissociation of the subunits. This recombinant hormone is greatly expressed (21.7 mg/l) and presents similar in vitro LH and FSH bioactivities. However, betaalphaeLH/CG shows an extremely rapid clearance (approximately 10 min), which could explain the absence of in vivo biological activity. So the rabbit mammary gland is not appropriate for the production of a recombinant active eLH/CG.

Animals↗

The development of a more equitable approach to resource allocation and manpower planning for undergraduate teaching in a UK medical school.

CONTEXT: Resource allocation and manpower planning in the clinical faculty of a UK medical school. PURPOSE: To design a model, which is perceived to be fair, to determine indicative undergraduate teaching budgets to departments within the school from university resources and to specialty care groups of the main university hospital from service increment for teaching (SIFT) resources, and to aid manpower planning. METHOD: The student load for each department is measured in full-time-equivalent student numbers (FTEs) for each specialty and compared with the total load for the whole curriculum to derive each department's percentage share of available undergraduate teaching resources. Data on staff numbers available for teaching, both from the school and NHS, are also included. Student load and teaching capacity are then compared. RESULT: Undergraduate teaching resources relate to student load in the resource allocation process, and changes to the course are automatically reflected. Staff data, when compared with student load, facilitate rational planning of establishment levels to meet the teaching needs of the undergraduate curriculum. Of the respondents to a survey of heads of departments and the faculty's management board, 88% agreed that it was a better approach to resource allocation than the previous historical basis. PRESENT LIMITATIONS AND SCOPE FOR DEVELOPMENT: Data are currently entered manually but will be transmitted electronically in the future via the Web. Further consideration will be given to the possible inclusion in the model of weighting factors for different types of teaching and to how appropriate measures of quality may be incorporated into the resource allocation process. CONCLUSION: The model, despite some limitations, is a cost-effective and pragmatic management tool.

Cost-Benefit Analysis↗

Genomic exploration of the hemiascomycetous yeasts: 4. The genome of Saccharomyces cerevisiae revisited.

Since its completion more than 4 years ago, the sequence of Saccharomyces cerevisiae has been extensively used and studied. The original sequence has received a few corrections, and the identification of genes has been completed, thanks in particular to transcriptome analyses and to specialized studies on introns, tRNA genes, transposons or multigene families. In order to undertake the extensive comparative sequence analysis of this program, we have entirely revisited the S. cerevisiae sequence using the same criteria for all 16 chromosomes and taking into account publicly available annotations for genes and elements that cannot be predicted. Comparison with the other yeast species of this program indicates the existence of 50 novel genes in segments previously considered as 'intergenic' and suggests extensions for 26 of the previously annotated genes.

Ascomycota↗

The nu(1) and nu(3) Bands of the (17)O(16)O(17)O Isotopomer of Ozone.

Using 0.002 cm(-1) resolution Fourier transform absorption spectra of an (17)O-enriched ozone sample, an extensive analysis of the nu(3) band together with a partial identification of the nu(1) band of the (17)O(16)O(17)O isotopomer of ozone has been performed for the first time. As for other C(2v)-type ozone isotopomers [J.-M. Flaud and R. Bacis, Spectrochim. Acta, Part A 54, 3-16 (1998)], the (001) rotational levels are involved in a Coriolis-type resonance with the levels of the (100) vibrational state. The experimental rotational levels of the (001) and (100) vibrational states have been satisfactorily reproduced using a Hamiltonian matrix which takes into account the observed rovibrational resonances. In this way precise vibrational energies and rotational and coupling constants were deduced and the following band centers nu(0)(nu(3)) = 1030.0946 cm(-1) and nu(0)(nu(1)) = 1086.7490 cm(-1) were obtained for the nu(3) and nu(1) bands, respectively. Copyright 2000 Academic Press.

Journal Article↗

New High-Resolution Analysis of the 3nu(3) and 2nu(1) + nu(3) Bands of Nitrogen Dioxide (NO(2)) by Fourier Transform Spectroscopy.

Using new high-resolution Fourier transform spectra recorded at the University of Denver in the 2-µm region, a new and more extended analysis of the 2nu(1) + nu(3) and 3nu(3) bands of nitrogen dioxide, located at 4179.9374 and 4754.2039 cm(-1), respectively, has been performed. The spin-rotation energy levels were satisfactorily reproduced using a theoretical model that takes into account both the Coriolis interactions between the spin-rotation energy levels of the (201) vibrational "bright" state with those of the (220) "dark" state. The interactions between the (003) bright state with the (022) dark state were similarly treated. The spin-rotation resonances within each of the NO(2) vibrational states were also taken into account. The precise vibrational energies and the rotational, spin-rotational, and coupling constants were obtained for the two dyads {(220), (201)} and {(022), (003)} of the (14)N(16)O(2) interacting states. From the experimental line intensities of the 2nu(1) + nu(3) and 3nu(3) bands, a determination of their vibrational transition moment constants was performed. A comprehensive list of line positions and line intensities of the {2nu(1) + 2nu(2), 2nu(1) + nu(3)} and the {2nu(2) + 2nu(3), 3nu(3)} interacting bands of (14)N(16)O(2) was generated. In addition, assuming the harmonic approximation and using the Hamiltonian constants derived in this work and in previous studies (A. Perrin, J.-M. Flaud, A. Goldman, C. Camy-Peyret, W. J. Lafferty, Ph. Arcas, and C. P. Rinsland, J. Quant. Spectrosc. Radiat. Transfer 60, 839-850 (1998)), we have generated synthetic spectra for the {(022), (003)}-{(040), (021), (002)} hot bands at 6.3 µm and for the {(220), (201)}-{(100), (020), (001)} hot bands at 3.5 µm, which are in good agreement with the observed spectra. Copyright 2000 Academic Press.

Journal Article↗

Evidence of Vibrational-Induced Rotational Axis Switching for HD(12)C(16)O: New High-Resolution Analysis of the nu(5) and nu(6) Bands and First Analysis of the nu(4) Band (10-µm Region).

Using new high-resolution Fourier transform spectra recorded in Giessen in the 8-12 µm region, a more extended analysis of the nu(5) and nu(6) bands and the first high-resolution study of the nu(4) band of HDCO were performed. As pointed out previously [M. Allegrini, J. W. C. Johns, and A. R. W. McKellar, Can. J. Phys. 56, 859-864 (1978)], the energy levels of the 5(1) and 6(1) states are strongly coupled by A- and B-type Coriolis interactions. On the other hand, it appeared that weaker resonances involving the energy levels of the 4(1) state with those of the 5(1) and 6(1) states also had to be accounted for. Consequently, the calculation of the energy levels was performed taking into account the Coriolis-type resonances linking the energy levels of the {6(1), 5(1), 4(1)} resonating states. Because of the unusually strong Coriolis interaction between nu(5) and nu(6), a nonclassical behavior of the rotational levels of the 5(1) and 6(1) states was observed and it was necessary to use a new Hamiltonian matrix which possesses, as usual, both A- and B-type Coriolis operators in the 5(1) if 6(1) and 6(1) if 4(1) off diagonal blocks but differs from the classical reduced Hamiltonian which is used commonly for planar C(s)-type molecules. More precisely, it proved necessary to include non-orthorhombic terms in the expansion of the rotational Hamiltonian of the 5(1) and 6(1) states. According to the considerations developed by Watson [J. K. G. Watson, in "Vibrational Spectra and Structure," (J. Durig, Ed.), Chap. 1, Elsevier, Amsterdam, 1977], these non-orthorhombic operators which are not symmetry forbidden are usually removed for semirigid C(s)-type molecules by rotational contact transformations. In the present study, the occurrence of terms in {J(x), J(z)} in the expansions of the rotational Hamiltonians for the 5(1) and 6(1) states indicates that the inertial system of HDCO differs for each of the three {6(1), 5(1), 4(1)} resonating states. Therefore, HDCO becomes a good example of vibrational-induced rotational axis switching (VIRAS) which was already suggested as the mechanism responsible for the enhanced densities of coupled states observed in 2-fluoroethanol [H. Li, S. Erza, and L. A. Philips, J. Chem. Phys. 97, 5956-5963 (1992)]. Copyright 2000 Academic Press.

Journal Article↗

New High-Resolution Analysis of the nu(3) Band of the (15)N(16)O(2) Isotopomer of Nitrogen Dioxide by Fourier Transform Spectroscopy.

New high-resolution Fourier transform absorption spectra of an (15)N(16)O(2) isotopic sample of nitrogen dioxide were recorded at the University of Bremen in the 6.3-µm region. Starting from the results of a previous study [Y. Hamada, J. Mol. Struct. 242, 367-377 (1991)], a new and more extended analysis of the nu(3) band located at 1582.1039 cm(-1) has been performed. The spin-rotation energy levels were satisfactorily reproduced using a theoretical model which takes into account both the Coriolis interactions between the spin-rotation energy levels of the (001) vibrational state with those of the (020) and (100) states and the spin-rotation resonances within each of the NO(2) vibrational states. Precise vibrational energies and rotational, spin-rotation, and coupling constants were obtained in this way for the first triad of (15)N(16)O(2) interacting states {(020), (100), (001)}. Finally, a comprehensive list of line positions and line intensities of the {nu(1), 2nu(2), nu(3)} interacting bands of (15)N(16)O(2) was generated, using for the line intensities the transition moment operators which were obtained previously for the main isotopic species. Copyright 2000 Academic Press.

Journal Article↗

Microstructure of Cu(x)Mo6S8 Chevrel phase thin films on R-plane sapphire

Cu(x)Mo6S8 Chevrel phase thin films epitaxially grown on R-plane sapphire substrates have been studied using field emission scanning electron microscopy (FE-SEM) and high-resolution transmission electron microscopy (HREM). For samples grown in optimal conditions, the SEM images evidence oriented grains of about 100 nm average size; the HREM images of cross-section samples allow to deduce the local epitaxial relations between the substrates and films. HREM also evidences two grain families, previously deduced from X-ray and reflection high-energy electron diffraction studies. No defects have been observed in the films; a higher molybdenum content in the films results in Mo-precipitation at the film-substrate interface.

Journal Article↗

13C-NMR spectrum field and temperature dependence of 13CO bound to hemoglobin.

13Carbon monoxide (CO), when bound to hemoglobin, yields (13)C NMR resonances (CO-Fe resonances). 100% CO liganded tetrameric hemoglobin ((13)C-labelled CO) was prepared for (13)C-NMR observation. The information about exchange kinetics between the four subunits (2alpha and 2B), were derived by changing the temperature (in the range 275-313K) and the observation frequency (4.7T, 9.4T and 18.8T). The first results confirmed previous observations of slow exchange between free and bound (2alpha and 2B together) CO. Besides, the exchange between alpha and B subunits were found slow at the NMR timescale, even under 313K and 4.7T conditions. Furthermore, intermediate temperatures (283-303K) allowed the observation of broad unresolved lines at 9.4T, corresponding both to CSA contribution and exchange linebroadening. Finally, low temperatures (less than 277K, at 9.4T) provided four relatively broad - but clearly distinguishable lines - indicating that a slow exchange rate was reached between four Fe-CO geometries on the subunits. This also indicated that two main Fe-CO orientations were different, even between similar chains (alpha1-alpha2 and B1-B2).

Carbon Isotopes↗

Immunomagnetic concentration of antigens and detection based on a scanning force microscopic immunoassay.

Scanning Force Microscopy has already been shown to be a convenient and rapid method for sensitive antigen detection and quantification. Here, we describe different improvement steps brought to a TSH Scanning Force Microscopic ImmunoAssay (SFMIA), each of them aiming to solve a previous limitation of the solid phase test format and leading to a significant sensitivity enhancement. First, superparamagnetic nanoparticles conjugated to monoclonal anti alphaTSH antibodies were used for the specific TSH capture step. Their magnetic properties allowed easy separation of the complexes obtained from relatively large reaction volumes by application of a High Gradient Magnetic Field System. As a consequence, complex formation could proceed in a stirred solution, which greatly enhances binding rates compared to previous 'static' conditions of solid-phase reactions. It was established that, despite their small size, magnetic complexes could be moved over short distances by a NdFeB magnet magnetic field. This property was exploited to overcome diffusion barrier and boundary layer constraints and to drive magnetic complexes through the liquid, towards anti-betaTSH antibodies immobilized on silica wafers. Finally, we significantly increased the complex number/surface area by a stepwise reduction of the biospecific solid phase area. The proposed steps permitted a 3-fold improvement in the TSH SFMIA dynamic range. Moreover, as little as 0.02 pg/ml (0.1 nIU/ml or 0.8 amol/ml) of TSH could be detected using 1 ml sample volumes. This is over 100 times more sensitive than the current performance of commercialized automated systems.

Antigens↗

Analysis of the nu8 + nu9 Band of HNO3, Line Positions and Intensities, and Resonances Involving the v6 = v7 = 1 Dark State.

Using a high-resolution (R = 0.0025 cm-1) Fourier transform spectrum of nitric acid recorded at room temperature in the 1100-1240 cm-1 region, it has been possible to perform a more extended analysis of the nu8 + nu9 band of HNO3 centered at 1205.7075 cm-1. As in a recent analysis of this band [W. F. Wang, P. P. Ong, T. L. Tan, E. C. Looi, and H. H. Teo, J. Mol. Spectrosc. 183, 407-413 (1997)], the Hamiltonian used for the line positions calculation takes into account, for the upper state, the DeltaK = +/-2 anharmonic resonance linking the rotational levels of the v8 = v9 = 1 "bright" vibrational state and those of the "dark" v6 = v7 = 1 vibrational state. More than 4800 lines were assigned in the nu8 + nu9 band, which involve significantly higher rotational quantum numbers than in previous works. On the other hand, and surprisingly as compared to previous studies, the nu8 + nu9 band appears to be a hybrid band. In fact, nonnegligible B-type transitions could be clearly identified among the much stronger A-type lines. Accordingly, a set of individual line intensities were measured for lines of both types and were introduced in a least-squares fit to get the A- and B-type components of the transition moment operator. Finally, a synthetic spectrum of the 8.3-µm region of HNO3 has been generated, using for the line positions and line intensities the Hamiltonian constants and the expansion of the transition moment operator which were determined in this work. In this way, the B-type and the A-type components of the nu8 + nu9 band appear to contribute for about (1/4) and (3/4), respectively, to the total band intensity. Copyright 1999 Academic Press.

Journal Article↗

The NO Dimer.

Spectra of the symmetric nu1 vibration of the NO dimer have been recorded in gas phase at low temperature, with a high-resolution infrared Fourier transform spectrometer. All the lines were least-squares fitted to a Voigt profile convoluted with the well-known apparatus function of the spectrometer. By means of this method, the frequencies of more than 109 new lines were measured. From the intensities of a set of 33 well-fitted and completely isolated lines, the transition moment was extracted. NO-broadening coefficients of the dimer lines were also measured as well as the predissociation time, which was found to be (2.65 +/- 0.53) ns. Copyright 1999 Academic Press.

Journal Article↗

Absolute Line Intensities for the nu6 Band of H2O2.

The purpose of this work was to obtain reliable absolute intensities for the nu6 band of H2O2. It was undertaken because strong discrepancies exist between the different nu6 band intensities which are presently available in the literature (A. Perrin, A. Valentin, J.-M. Flaud, C. Camy-Peyret, L. Schriver, A. Schriver, and P. Arcas, J. Mol. Spectrosc. 1995. 171, 358), (R. May, J. Quant. Radiat. Transfer 1991. 45, 267), and (R. L. Sams, personal communication). The method which was chosen in the present work was to measure simultaneously the far-infrared absorptions and the nu6 absorptions of H2O2. Consequently, Fourier transform spectra of H2O2 were recorded at Giessen in a spectral range (370-1270 cm-1) which covers both the R branch of the torsion-rotation band and the P branch of the nu6 band which appear at low and high wavenumbers, respectively. From the low wavenumber data, the partial pressure of H2O2 present in the cell during the recording of the spectra was determined by calibrating the observed absorptions in the torsion-rotation band with intensities computed using the permanent H2O2 dipole moment measured by Stark effect (A. Perrin, J.-M. Flaud, C. Camy-Peyret, R. Schermaul, M. Winnewisser, J.-Y. Mandin, V. Dana, M. Badaoui, and J. Koput, J. Mol. Spectrosc. 1996. 176, 287-296) and [E. A. Cohen and H. M. Pickett, J. Mol. Spectrosc. 1981. 87, 582-583). In the high frequency range, this value of the partial pressure of H2O2 was used to measure absolute line intensities in the nu6 band. Finally, the line intensities in the nu6 band were fitted using the theoretical methods described in detail in our previous works. Using these new results on line intensities together with the line position parameters that we obtained previously, a new synthetic spectra of the nu6 band was generated, leading to a total band intensity of 0.185 x 10(-16) cm-1/(molecule.cm-2) at 296 K. It has to be pointed out that the new line intensities agree to within the experimental uncertainties with the individual line intensity measurements performed previously by May and by Sams. Copyright 1999 Academic Press.

Journal Article↗

Determination by capillary zone electrophoresis of mercaptopurine and thioguanine concentration in capsules for paediatric patients.

OBJECTIVE: Mercaptopurine monohydrate and thioguanine are two antineoplastic agents that inhibit purine metabolism. They are given by mouth in the treatment of acute leukaemias, usually for the maintenance of remission. In order to quantify these two antimetabolites into capsules for paediatric patients prepared in the pharmacy department, a capillary zone electrophoresis method (CZE) was developed. METHOD: The equipment and reagents used included: a P/ACE 5000 capillary electrophoresis system, a 37 cm x 75 microm silica capillary, a 22.2 mM borate buffer (pH 9.0), 5 s high pressure injections, direct UV detection at 280 nm, run 20 kV. Hypoxanthine was used as an internal standard. RESULTS: All compounds were separated in less than 3 min using a constant voltage of 20 kV. At a theoretical concentration of 100 microg/ml, the accuracy (average percentage of recovery = 98.9%, RSD = 0.45%, n = 6 for mercaptopurine and average percentage of recovery = 101.7%, RSD = 0.20%, n = 6 for thioguanine), the repeatability (RSD = 0.84%, n = 6 for mercaptopurine and RSD = 0.75%, n = 6 for thioguanine), the reproducibility (RSD = 0.58%, n = 18 for mercaptopurine and RSD = 1.55%, n = 18 for thioguanine) and the linearity of detection (range 50-150% of the studied concentration, r > 0.999 for mercaptopurine and r > 0.998 for thioguanine) were satisfactory. The capsule excipients did not interfere with quantification of the mercaptopurine or thioguanine peak. CONCLUSION: The two antineoplastic agents could be assayed rapidly by the same capillary zone electrophoretic method with acceptable accuracy and precision. This method is suitable for routine control of capsules prepared for paediatric patients.

Antimetabolites, Antineoplastic↗