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R Barrois

Publications and source records attributed to R Barrois.

8 recordsLinked to original sources

Action of metformin on erythrocyte membrane fluidity in vitro and in vivo.

The lipid domains of the cell membrane are believed to be one of the sites where biguanides exert their antihyperglycemic effect. We have examined the effects of metformin on the membrane fluidity of intact erythrocytes in vivo and in vitro. Membrane fluidity was measured by monitoring changes in the anisotropy of the fluorescent probe 6-antroyloxystearic acid (6-AS). The erythrocyte membranes from patients with non-insulin dependent diabetes mellitus treated with metformin were more fluid than those from non-insulin dependent diabetes mellitus patients treated by diet or healthy controls. There was no correlation between membrane fluidity and the plasma lipids or the parameters of metabolic control, suggesting that the high fluidity is an effect of metformin itself. Incubation of erythrocytes from healthy controls and diabetic patients treated by diet or glibenclamide with metformin in vitro confirmed that metformin increases the fluidity of erythrocyte membranes. In vitro metformin did not alter the fluidity of membranes from diabetic patients treated with metformin, perhaps because the basal high fluidity due to their in vivo interaction with plasma metformin could be increased no further. Since insulin appears to be required for the antihyperglycemic effect of metformin, the effect of insulin on membrane fluidity was also evaluated. Insulin generally had a small fluidizing effect on erythrocytes in vitro. The fluidizing action of both insulin and metformin could represent a membrane event common to the hormone and drug leading to additive or synergistic effects in vivo.

Adult↗

Immunoadsorption procedure as a potential method for the specific beta 2-microglobulin removal from plasma of patients with chronic renal failure.

beta 2-Microglobulin (beta 2-M), which accumulates in the plasma of patients undergoing long-term dialysis, has been identified as the principal precursor protein of amyloid fibrils in dialysis-related amyloidosis. As no specific treatment for this affection has been yet established, an extracorporeal immunoadsorption procedure appears to be an attractive therapeutic approach to remove beta 2-M. Several murine monoclonal antibodies to human beta 2-M were developed and compared as affinity ligands. One of them was selected on the basis of its specificity and adsorption capacity. In order to achieve maximum efficiency in protein removal, different parameters of the procedure were studied and optimized: effect of antibody coupling density, determination of maximum adsorption capacity of the immunoadsorbents and influence of antigen concentration and of flow-rate on antigen capture efficiency. The conditions of regeneration of immunoaffinity sorbents were also investigated to allow their multiple use without loss of adsorption capacity. The results show the validity of the proposed technique in removing beta-M from plasma of patients with chronic renal failure.

Antibodies, Monoclonal↗

Migration of peripheral T and B cells into the thymus of aging (NZB X SJL)F1 female mice.

Aging NZB X SJL (NS) female mice provide a unique model of thymus pathology characterized by the intrathymic accumulation of large numbers of mature T and B cells. The purpose of the present work was to examine the possibility that this phenomenon results from the invasion of the thymus by cells from the periphery. Lymphoid cells labeled with chromium-51 or indium-111 were injected into syngeneic recipients to study their patterns of in vivo migration. Lymph node (LN) or spleen cells were found to localize significantly (1-2% of injected radioactivity) into the thymus of 12-month-old NS females but not into that of young recipients or of old NS males. However, intrathymic localization of injected LN cells was observed in castrated NS males which exhibit the same thymus pathology as NS females. Both radiolabeled T and B cells were found to enter the thymus of aged NS females but the latter cells about three times less efficiently than the former. Moreover, while thymocytes from young NS females were unable to recirculate to LN, those of old NS females showed increased LN-seeking capacity and part (1%) of them did migrate back into the thymus of old but not young NS females. In additional cell transfer experiments, the intrathymic migration of B cells into old NS females was further documented by using the antibody response to sheep erythrocytes as a tracer. Taken together, these observations indicate that the thymus of aging NS female mice is permeable to recirculating lymphocytes, suggesting that at least part of the mature T and B cells detected in this thymus are migrants from the periphery.

Aging↗

Prepubertal orchidectomy induces thymic abnormalities in aging (NZB X SJL)F1 male mice.

Female but not male (NZB X SJL)F1 (NS) mice develop abnormalities of their intrathymic lymphocyte population in the course of aging. To determine the role played by androgens in this sex-related difference, we monitored the evolution of the cellular composition of the thymus in NS males deprived of androgens by prepubertal orchidectomy. Although in young mice this operation resulted in a twofold enlargement of the thymus, there was no histologic alteration or major change in the surface phenotype and mitogenic reactivities of the thymocytes, which suggests that all thymocyte subsets were increased to the same extent. In 12-mo-old control (BALB/c X SJL)F1 mice, prepubertal orchidectomy also produced an equal expansion (1.4-fold increase) of all thymocyte subsets. In contrast, in 12-mo-old orchidectomized NS males, there was a marked depletion of the thymic cortex and a hyperplasia of the medullary lymphoid tissue reflecting the selective expansion of a subset of phenotypically mature T cells (dull Thy-1+, Lyt-1+2+/-, dull PNA+) together with the emergence of intrathymic surface immunoglobulin-bearing cells. These latter cells probably represented B cells because there was a concomitant augmentation of the mitogenic responsiveness in vitro of thymic cell suspensions to lipopolysaccharide. Such thymic abnormalities induced by prepubertal orchidectomy in old NS males resemble those occurring spontaneously in the NS females. This suggests that the absence of thymic disease in intact NS males is primarily due to a suppressive effect of androgens.

Aging↗

Electrokinetic properties and mitogen responsiveness of mouse splenic B and T lymphocytes following hydrocortisone treatment.

CBA mice recieved a single intraperitoneal injection of hydrocortisone acetate (OHC) in a dose of 125 mg/kg body weight. At various times therafter, electrophoretic mobility (EPM), surface immunoglobulin (SIG) and in vitro DNA synthetic reactivity to concanavalin A (ConA), phytohemagglutinin (PHA), lipopolysaccharide (LPS) and tuberculin (PPD) were investigated on splenic lymphocytes. OHC was found to deplete rapidly the spleen to a minimum of 18% of control cellularity by day 4 posttreatment. At this time, the proportions of low mobility (LM) and SIG-bearing lymphocytes (B cells) were reduced respectively to 28% (control 54%) and 20% (control 45%). The proportion of high mobility (HM) lymphocytes (T cells) was increased to 72% (control 45%). While the mean EPM of LM cells (0.71) was only slightly and transiently reduced, that of HM cells was significantly augmented (1.24) over control value (1.16). This latter finding was interpreted as indicating the selective removal by OHC of a T cell subpopulation with a mean EPM around 1.10. Changes in mitogenic responsiveness were consistent with these alterations of B and T cell compartments. Despite a marked drop in spontaneous 3H-thymidine uptake, the absolute response to T cell mitogens ConA and PHA remained relatively unchanged. By contrast, the reactivity to B cell mitogens LPS and PPD was strongly depressed. Starting by day 12, regeneration and normalizaiton of lymphocyte populations proceeded slowly and were not achieved before day 26-34.

Animals↗

Electrokinetic properties of splenic lymphocytes from the low-lipopolysaccharide responder C3H/Hej mice.

Spleen cells from C3H/Hej mice (H-2k) respond poorly to the B-cell mitogen lipopolysaccharide in vitro as compared to the related strains C3H/Tif (H-2k) and CBA/Orl (H-2k). The electrokinetic properties of splenic lymphocytes from these 3 strains were investigated in parallel, in order to both quantitate low-mobility B cell and high-mobility T cell populations and measure their mean electrophoretic mobilities. C3H/Hej mice were found to possess the same proportion (55%) of LM cells as C3H/Tif and CBA/Orl mice. Therefore, the low LPS-responsiveness of C3H/Hej is not due to a numerical deficiency in B cells. Whereas the mean EPM of HM cells was identical in the 3 strains, that of LM cells was slightly (6%) but significantly (Student's t test, P less than 0.01) lower in C3H/Hej than in the high LPS-responder controls. This suggests that the membrane-structure required for activating interaction with LPS might contribute to B-cell electronegative surface-charge.

Animals↗

Effect of treatment with cyclophosphamide on the electrophoretic mobility and mitogen responsiveness of mouse thymus cells.

Two days after a single intraperitoneal injection of cyclophosphamide (CY) in a dose of 300 mg/kg of body weight, the cellularity of the thymus from adult female CBA mice was reduced to 17% of its normal value. The electrophoretic mobility (EPM) analysis of the surviving cells revealed a decrease in the proportion of the slow-moving cells together with a significant diminution of their mean EPM. The proportion of fast-moving cells, which were shown to correspond to the hydrocortisone-resistant and mitogen-responsive pool of mature thymocytes, was correlatively increased by 2-3 fold. Despite this enrichment in cells with a high surface charge, the thymocytes from CY-treated mice exhibited a diminished reactivity "in vitro" to both concanavalin A and phytohemagglutinin. The possible significance of theses results is discussed with reference to the known mitostatic properties of CY.

Animals↗