PubMed Health⌕ Search

Biomedical subjects

E Barbier

Publications and source records attributed to E Barbier.

At least 19 recordsLinked to original sources

[Brain perfusion and metabolism imaging techniques].

Due to recent efforts in improving spatial and temporal resolution in imaging techniques, it is now possible to get relevant information about brain perfusion and metabolism in humans. This information can significantly impact on brain pathophysiology, diagnosis assessment and therapy options, particularly in patients having brain ischemia. Among these imaging and metabolism techniques are dynamic perfusion computed tomography, perfusion MRI, positron emission tomography and NMR spectroscopic imaging. The goal of this article is an overview of these four techniques, with their own technical description, advantages and drawbacks. Details are provided about brain parameters given by each technique and their clinical relevance, the accessibility of the technique in the emergency setting and the optimal window to use it during the patient's evolution.

Brain↗

Comparative overview of brain perfusion imaging techniques.

Numerous imaging techniques have been developed and applied to evaluate brain hemodynamics. Among these are: Positron Emission Tomography (PET), Single Photon Emission Computed Tomography (SPECT), Xenon-enhanced Computed Tomography (XeCT), Dynamic Perfusion-computed Tomography (PCT), Magnetic Resonance Imaging Dynamic Susceptibility Contrast (DSC), Arterial Spin-Labeling (ASL), and Doppler Ultrasound. These techniques give similar information about brain hemodynamics in the form of parameters such as cerebral blood flow (CBF) or volume (CBV). All of them are used to characterize the same types of pathological conditions. However, each technique has its own advantages and drawbacks. This article addresses the main imaging techniques dedicated to brain hemodynamics. It represents a comparative overview, established by consensus among specialists of the various techniques. For clinicians, this paper should offers a clearer picture of the pros and cons of currently available brain perfusion imaging techniques, and assist them in choosing the proper method in every specific clinical setting.

Cerebrovascular Circulation↗

A role for CD8 in limiting degeneracy of thymocyte selection.

The introduction of a soluble TCR (sTCR) recognizing class I major histocompatibility complex (MHC) in the fetal thymic microenvironment in vitro produces the selection of thymocytes with enhanced avidity for self class I MHC (8). The sTCR was supposed to impose enhanced avidity for self MHC at an early degenerate phase of TCR-driven selection. This could determine increased reactivity to self at later stages of differentiation when specificity of TCR-ligand interaction augments and the effect of sTCR vanishes. This hypothesis was based on the observed deletion of CD4+8+ thymocytes upon upregulation of TCR and the increase in cell size of some CD8+ cells which are expanded in long-term fetal thymus organ cultures (FTOC) as well as in the periphery of adoptively transferred nude mice. Here we show that the developing alphabeta thymocyte which does not express CD8 at the cell surface has a selective advantage in FTOC with sTCR, thus suggesting that participation of CD8 in self peptide/MHC recognition confers specificity to T-cell selection and results in excessive signaling in thymocytes in spite of the presence of sTCR.

Animals↗

Medium-chain fatty acids affect citrinin production in the filamentous fungus Monascus ruber.

During submerged culture in the presence of glucose and glutamate, the filamentous fungus Monascus ruber produces water-soluble red pigments together with citrinin, a mycotoxin with nephrotoxic and hepatoxic effects on animals. Analysis of the (13)C-pigment molecules from mycelia cultivated with [1-(13)C]-, [2-(13)C]-, or [1, 2-(13)C]acetate by (13)C nuclear magnetic resonance indicated that the biosynthesis of the red pigments used both the polyketide pathway, to generate the chromophore structure, and the fatty acid synthesis pathway, to produce a medium-chain fatty acid (octanoic acid) which was then bound to the chromophore by a trans-esterification reaction. Hence, to enhance pigment production, we tried to short-circuit the de novo synthesis of medium-chain fatty acids by adding them to the culture broth. Of fatty acids with carbon chains ranging from 6 to 18 carbon atoms, only octanoic acid showed a 30 to 50% stimulation of red pigment production, by a mechanism which, in contrast to expectation, did not involve its direct trans-esterification on the chromophore backbone. However, the medium- and long-chain fatty acids tested were readily assimilated by the fungus, and in the case of fatty acids ranging from 8 to 12 carbon atoms, 30 to 40% of their initial amount transiently accumulated in the growth medium in the form of the corresponding methylketone 1 carbon unit shorter. Very interestingly, these fatty acids or their corresponding methylketones caused a strong reduction in, or even a complete inhibition of, citrinin production by M. ruber when they were added to the medium. Several data indicated that this effect could be due to the degradation of the newly synthesized citrinin (or an intermediate in the citrinin pathway) by hydrogen peroxide resulting from peroxisome proliferation induced by medium-chain fatty acids or methylketones.

Acetates↗

Surface expression and functional competence of CD3-independent TCR zeta-chains in immature thymocytes.

In recombinase-deficient (RAG-2-/-) mice, double-negative thymocytes can be stimulated to proliferate and differentiate by anti-CD3 Abs. CD3 molecules are expressed on the surface of these cells in association with calnexin. In this study, we show that zeta-chains can be recovered as phosphorylated proteins in association with phosphorylated ZAP-70 from anti-CD3-stimulated RAG-2-/- thymocytes, even though they are not demonstrably associated with the CD3/calnexin complex. The lack of a physical association of zeta dimers with the CD3 complex in RAG-2-/- thymocytes and also in a pre-TCR-expressing cell line, as well as the efficient association of zeta dimers with ZAP-70 in the RAG-2-/- thymocytes, suggest that these zeta-chain dimers could contribute to pre-TCR signaling. This idea is supported by the finding that in RAG-2-/- zeta-deficient thymocytes, ZAP-70 and p120cbl were only weakly phosphorylated.

Animals↗

Stimulation of Ca2+ influx in rat pituitary cells under exposure to a 50 Hz magnetic field.

The effect of exposure of single rat pituitary cells to 50 Hz sine wave magnetic fields of various strengths on the intracellular free Ca2+ concentration ([Ca2+]i), was studied by using dual-emission microfluorimetry, using indo-1 as probe. A 30 min exposure of the cells to vertical 50 microT peak magnetic field triggered a long-lasting increase in [Ca2+]i from a basal value of about 185 +/- 4 nM to 326 +/- 41 nM (S.E.; n = 150). The vertical and horizontal components of the static magnetic field were 57 and 15 microT, respectively. The 50 Hz ambient magnetic field was always below 0.1 microT rms. The effect was observed both at 25 +/- 2 degrees C and at 37 +/- 2 degrees C. Responsive cells, for which [Ca2+]i rose to values above 309 nM, were identified as lactotrophs and represented 29% of the total pituitaries. [Ca2+]i increase, for the most part, was due to Ca2+ influx through voltage-dependent dihydropiridine-sensitive calcium channels inhibited by PN 200-110. However, neither Ca2+ channel blockers nor removal of Ca2+ from the external medium during exposure completely prevented the field-induced [Ca2+]i increase. Additional experiments using an MTT colorimetric assay showed that alteration of Ca2+ homeostasis of lactotrophs was associated with impairment of some mitochondrial processes.

Animals↗

Early degenerate selection of thymocytes by class I major histocompatibility complex.

Ontogeny of T cells is accomplished in the thymus by a process of positive selection, in which interaction of the T cell receptor (TcR) expressed on CD4+8+ thymocytes with self major histocompatibility complex (MHC), expressed on cortical epithelial cells, determines the progress along the maturation pathway and confers self restriction to T cells. Conversely, cells behaving as self reactive by interaction with bone marrow-derived antigen-presenting cells are negatively selected by apoptosis. We show here that the presence of a class I-restricted soluble TcR (sTcR) in the fetal thymic microenvironment, early in T cell ontogeny, determines an enhanced negative selection of a sizeable number of CD4+8+ thymocytes, which have been previously subjected to a positive-selection event. We hypothesize that the generation of the mature thymic T cell repertoire stems from an interaction of TcR, under a critical affinity threshold, with a self peptide-MHC complex which is common to a great number of TcR specificities using the same restriction element. A shift in this affinity threshold, caused by sTcR, results in the generation of cells acting in a self-reactive manner, which are then deleted. In extended fetal thymus organ culture in the presence of sTcR, we have also observed the appearance of mature CD8+ T cells, which once adoptively transferred to syngeneic nude mice are expanded in the periphery, consistent with an enhanced avidity of these cells for self MHC.

Animals↗

The joining of germ-line V alpha to J alpha genes replaces the preexisting V alpha-J alpha complexes in a T cell receptor alpha, beta positive T cell line.

To determine whether T cell receptor genes follow the same principle of allelic exclusion as B lymphocytes, we have analyzed the rearrangements and expression of TCR alpha and beta genes in the progeny of the CD3+, CD4-/CD8- M14T line. Here, we show that this line can undergo secondary rearrangements that replace the pre-existing V alpha-J alpha rearrangements by joining an upstream V alpha gene to a downstream J alpha segment. Both the productively and nonproductively rearranged alleles in the M14T line can undergo secondary rearrangements while its TCR beta genes are stable. These secondary recombinations are usually productive, and new forms of TCR alpha polypeptides are expressed in these cells in association with the original C beta chain. Developmental control of this V alpha-J alpha replacement phenomenon could play a pivotal role in the thymic selection of the T cell repertoire.

Alleles↗

Rearrangement and expression of T cell receptor and immunoglobulin loci in immortalized CD4-CD8- T cell lines.

Injection of newborn mice with mixtures of wild-type moloney murine leukemia (Mo-MuLV) virus and other recombinant retroviruses harboring the myc oncogene alone or in combination with the H-ras oncogene resulted in a 100% incidence of lymphatic leukemias from which permanent cell lines could be established in vitro. These cells are immunoglobulin (Ig)-, Thy-1+BP- and CD8-CD4- indicating that they are early thymocytes. Such transformed pre-T lines lack retroviral myc and ras genes but occasionally possess proviral insertion near to their endogenous myc and pim genes. We show that both Ig heavy chain (Igh) and T cell receptor (TcR) genes are rearranged in most of these lines. In some cases, a primary recombination was followed by a secondary rearrangement at the same locus. We show that VT gamma genes can rearrange outside of their known cluster suggesting that TcR gamma diversification in such pre-T cells may be different to that in more mature T cells. Ig D-JH recombinations may precede TcR gene recombination in these early T cell lines, and some but not all express sterile Cmu transcripts. Some of these lines express surface heterodimers that appear composed of alpha and beta chains that can be immunoprecipitated with a monoclonal anti-T3 antibody but not with the anti-V beta 8 monoclonal antibody F23.1. This established pre-T cell line represents novel biological material for the dissection of T cell development and function analogous to A-MuLV transformed pre-B cells.

Animals↗

Preliminary crystallographic study of a complex between the Fab fragment of a monoclonal anti-lysozyme antibody (D1.3) and the Fab fragment from an anti-idiotopic antibody against D1.3.

An anti-lysozyme antibody, D1.3, was used as immunogen to obtain syngeneic (Balb/c) monoclonal anti-idiotopic antibodies. The complex between Fab D1.3 and the Fab fragment from the anti-idiotopic antibody E225 has been crystallized. The crystals are monoclinic, space group P2(1), with a = 75.7 A, b = 77.4 A, c = 97.2 A, beta = 111.90 degrees and one molecule of the complex in the asymmetric unit. X-ray photographs show reflections extending to a resolution of about 3 A. Although twinning occurs frequently in the large crystals obtained, this material is suitable for high-resolution X-ray analysis.

Antibodies, Monoclonal↗

Paucity of phosphorylcholine-specific clones in B cells expressing the VHT15 gene product.

The aim of this work was to study the cellular basis of the phenomenon of clonal dominance. To this end we analyzed two collections of BALB/c and C.B20 hybridomas that we selected on the basis of the expression of the VHT15 gene product independently from their antigen specificity. Our study demonstrates that none of the 28 BALB/c and only 2 of the 29 C.B20 hybridomas obtained have variable regions that bind PC. We conclude therefore that the domination of the immune response to PC by particular variable regions cannot be due to the establishment of clonal dominance prior to immunization.

Animals↗

Structural polymorphism of V kappa 21 E and V kappa 21 D gene products in laboratory mice.

The aim of the present work was to study structural polymorphism of V kappa genes products. To this end we isolated immunoglobulins expressing the V kappa 21 D and V kappa 21 E gene products from the normal sera of several inbred strains of mice using a monoclonal antibody that selectively recognizes V kappa 21 D and V kappa 21 E subgroups. Analysis of the isoelectric focusing pattern of the light chain of these immunoglobulins revealed the existence of 3 clearly different phenotypes. The first one is shared by most inbred strains of mice, the second one is expressed by C58/J, AKR and PL/J and the third one defines V kappa 21 D-E light chains of SJL and SJA mice. Genetic analysis revealed that the locus controlling V kappa 21 D-E chain structure is closely linked to the Ly2-3 and to the Ig Kappa-Ef1 loci. Finally, using recombinant mouse strains, we could also order V kappa 21 D-E genes with respect to the known loci affecting V kappa polymorphism. Taken together our data argue against the possibility that the polymorphism observed results from strain-specific expression of V kappa genes common to all mice, but rather suggest that different allelic form of the same V kappa gene subgroup exist in different strains.

Animals↗

Analysis of immunoglobulins expressing the V kappa 21E and V kappa 21D gene products. Evidence for multigenic control of the expression of VH-VL combinations.

The aim of this work was to study the genetic control of VH-VL combined expression. To this end immunoglobulins expressing the V kappa 21E and V kappa 21D gene products were isolated from the normal sera of several inbred strains of mice using a monoclonal antibody that selectively reacts with V kappa 21E and V kappa 21D subgroups. Analysis of the isoelectric focusing (IEF) pattern of the IgG heavy chains of these immunoglobulins obtained from H-2-congeneic mice revealed as expected that Igh-linked loci strongly influence VH-VL combined expression. The IEF pattern of V kappa 21D and V kappa 21E-associated heavy chains isolated from recombinant inbred mouse strains, however, revealed different phenotypes from either parental strains in strains in which both H-2 and Igh loci segregated from the same parent. These data, therefore, strongly suggest that the expression of VH-VL combinations is controlled in part by genetic loci which segregate independently from those linked to H-2 and Igh.

Animals↗

Specificity and idiotypic analysis of monoclonal antibodies directed against the MOPC460 idiotype.

Eight syngeneic anti-idiotypic hybridomas (IDMs) have been obtained against the BALB/c myeloma protein MOPC460 which displays anti-TNP activity. The study of their anti-idiotype specificity allowed us to distinguish them into two groups which define the presence of at least two idiotypic determinants or idiotopes in the MOPC460 idiotype. The biochemical analysis of the monoclonal antibodies is consistent with this dichotomy. This analysis, in fact, showed a striking correlation between anti-idiotypic specificity and biochemical characteristics of the monoclonal antibodies. Consequently, the idiotypic specificities of three of these hybridomas were studied. In accordance with what is expected, our results clearly indicate a strong idiotypic similarity for hybridomas belonging to the same group and a lack of idiotypic cross-reactivity.

Animals↗

A self determinant recognizing T cell hybridoma.

A T cell hybridoma (53(113)) obtained by fusion of BALB/c spleen cells and the BW 5147 lymphoma T cell line is described. This hybridoma recognizes mouse RBC (MRBC) and rat RBC, but not human, rabbit, guinea pig, or SRBC. The culture supernatant possesses hemagglutinating activity for the same indicator RBC. In addition to this, 53(113) cells are able to form protein A plaques in the presence of guinea pig complement and normal mouse serum (NMS) or purified mouse immunoglobulins (Ig). Because mouse Ig as well as sonicates from MRBC are able to inhibit the rosettes between the hybridoma cells and the MRBC, and because the sonicates inhibit protein A plaque formation, it seems likely that the same product can recognize a similar determinant expressed on MRBC and mouse Ig. The hypothesis that a 53(113) structure recognizes identical or cross-reactive carbohydrate determinants shared by murine Ig and C is considered.

Animals↗