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Biomedical subjects

A Bernard

Publications and source records attributed to A Bernard.

At least 19 recordsLinked to original sources

Incorporation of [35S]sulfate into glomerular membranes of rats chronically exposed to cadmium and its relation with urinary glycosaminoglycans and proteinuria.

The aim of the present work was to assess the effects of long-term exposure to Cd on the sulfatation of glomerular membranes and their relation with proteinuria and urinary glycosaminoglycans (GAG). For this purpose the in vitro incorporation of [35S]sulfate was investigated in female Sprague-Dawley rats given 100 ppm of Cd in drinking water for 7 months. When compared with their controls, glomeruli from Cd-treated rats showed a 12.8% decrease in the incorporation of the label into glomerular membranes. This effect, which was not explained by differences in viability or in sulfate uptake by the glomeruli, suggests that sulfatation of glomerular membranes is impaired in Cd-treated rats. In support of this, in another independent experiment, a decrease, 17.4% on average, of the sulfate content of glomerular membranes was observed in long-term Cd-treated rats (100 ppm in drinking water for 4 months). This effect was significantly correlated with albuminuria and transferrinuria but not with beta 2-microglobinuria, suggesting that a loss of heparan sulfate of the glomerular capillary wall could be involved in the Cd-induced glomerular proteinuria. On the other hand an enhanced urinary excretion of GAG, negatively correlated with the sulfate content of glomerular membranes, was also observed in Cd-treated rats. Moreover GAG excretion was associated with tubular and glomerular proteinuria, which suggests that GAG might be a useful marker of Cd-induced nephrotoxicity.

Animals

Human urinary protein 1: evidence for identity with the Clara cell protein and occurrence in respiratory tract and urogenital secretions.

Protein 1 (P1), a low mol mass urinary protein of unknown function, has been purified, sequenced and quantified in human biological fluids. The molecular size, subunit composition and partial amino acid sequence of P1 are similar to those of the 10 kDa Clara cell protein (CC10), a lung secretory protein. P1 is found in high concentrations in sputum, bronchoalveolar lavages, urine and semen of healthy individuals and in urine of some pregnant women. Contrary to what is claimed, P1 or CC10 is not a specific and unique product of the lung, but like its homologue in rabbits (uteroglobulin) it is also present in urogenital secretions. P1 or CC10 may act as a natural immunosuppressor protecting the respiratory and urogenital tracts from unwanted inflammatory reactions.

Adolescent

CD58 and CD59 molecules exhibit potentializing effects in T cell adhesion and activation.

We have generated stable Chinese hamster ovary (CHO) cell transfectants expressing either CD58 or CD59 or both molecules to compare their respective parts played in T cell adhesion and activation. Using a rosetting assay, we have shown the following: 1) The CD59 molecule was directly responsible for adhesive interaction between human T cells and CD59+ CHO transfectants. CD59-mediated adhesion induced 12 +/- 2% (mean +/- SEM, n = 25) of rosettes. 2) The CD58 molecule expressed on CD58+ CHO transfectants induced 29 +/- 6% (mean +/- SEM, n = 8) of rosettes. 3) Double transfected CD58+CD59+ CHO cells formed up to 80% of rosettes, largely exceeding the sum of rosettes formed by single transfectants, thus disclosing at least an additive and possibly a synergic action of both molecules in mediating adhesion to T cells. Culturing purified human T cells in the presence of fixed CHO transfectants and submitogenic doses of PHA + rIL-1 alpha showed that: 1) CD59+ CHO transfectants induced sevenfold T cell proliferation enhancement, demonstrating the direct involvement of the CD59 molecule in T cell activation; 2) CD58+ CHO transfectants induced 20-fold T cell proliferation increase; and 3) the enhancement induced by CD58+CD59+ CHO cells was more than 40-fold. These results suggest that CD58 and CD59 molecules present on the surface of accessory cells might exert synergic function in T cell adhesive interactions and in the stimulation of T cell activation.

Animals

CD59 molecule: a second ligand for CD2 in T cell adhesion.

The T cell surface molecule CD2 forms, with its counter-receptor CD58 (LFA-3), a powerful adhesion/activation pathway. There is some evidence that CD2 might bind more than a single ligand. Chinese hamster ovary cells (CHO) expressing human CD59 after cDNA transfection (CD59+CHO) form rosettes with human T cells; these rosettes are inhibited in a dose-dependent fashion by the CD59 monoclonal antibody (mAb) H19 and by the CD2 mAb O275 known to block natural rosettes, but not by the CD2R mAb D66, a poor rosette blocker. CD2+CHO transfectants form rosettes with human erythrocytes; these rosettes are inhibited by the CD59 mAb H19 in addition to CD2 mAb O275 and CD58 mAb; murine thymoma cells expressing human CD2 form rosettes with CD59+CHO cells that again are blocked by CD59 H19 and by CD2 O275 mAb. In a marked contrast with H19, two others CD59 mAb, YTH 53.1 and MEM 43, which react with a different epitope on CD59, led to a 50%-70% increase of the number of cells forming rosettes. In addition to rosette experiments, the binding of 125I-labeled CD59 molecules to CD2+CHO cells was specifically inhibited by unlabeled CD59 molecule and CD2 mAb. Furthermore, the binding of CD59 molecules to resting T cells induced expression of CD2R epitopes. These results directly show that CD2 binds CD59 and that subtle molecular changes occur upon binding.

Animals

Plasma membrane water permeabilities of human oocytes: the temperature dependence of water movement in individual cells.

Membrane water permeability values were measured in individual fresh human pre-ovulatory oocytes using real time microscopy in a microscope diffusion chamber. The cells were exposed to anisosmotic conditions, their volume responses measured, and from these data the Lp values were computed employing the Kedem-Katchalsky analyses of irreversible thermodynamics. Lp values were measured at four temperatures for each oocyte between 37 degrees C and 10 degrees C, and the temperature-related Arrhenius activation energy (Ea) calculated. It was apparent that individual oocytes exhibited a wide range of Lp values; at 37 degrees C Lp values ranged between 0.33 and 1.80 microns/atm/min. However, each oocyte exhibited the expected inverse linear correlation between Lp and temperature, with high linear correlations (R2 values between 0.73 and 0.96). A mean value for Ea of 8.61 +/- 5.11 Kcal/mol was computed. It is apparent that pre-ovulatory human oocytes express a range of biological diversity in terms of membrane water transport, and this fact needs to be considered when attempting to formulate cryopreservation protocols for storage of these oocytes.

Cell Membrane Permeability

Assessment of thyroid, testes, kidney and autonomic nervous system function in lead-exposed workers.

The objective of the study was to assess whether moderate occupational exposure to lead may be associated with early changes in potential target organs (thyroid, testes, kidney, autonomic nervous system). Workers exposed to lead in a lead acid battery factory (n = 98; mean blood lead 51 micrograms/dl, range 40-75 micrograms/dl) and 85 control workers were examined. None of the indicators of kidney function (in urine: retinol-binding protein, beta 2-microglobulin, albumin, N-acetyl-beta-D-glucosaminidase; in serum: creatinine, beta 2-microglobulin), endocrine function (follicle-stimulating hormone, luteinizing hormone, thyroid-stimulating hormone, thyroxine, triiodothyronine) and autonomic nervous system (R-R interval variations on the electrocardiogram) were correlated with lead exposure (blood lead or duration of exposure) or showed significantly different mean values between the exposed group and controls. These results and an assessment of the published data suggest that compliance with the Directive of the Council of the European Communities on lead exposure (health surveillance in workers whose lead in blood exceeds 40 micrograms/dl and removal from exposure when blood lead exceeds 70-80 micrograms/dl) would prevent the occurrence of significant biological changes in the majority of lead-exposed workers.

Adult

Loss of glomerular polyanion correlated with albuminuria in experimental cadmium nephropathy.

The relationship between proteinuria and glomerular polyanion (GPA) charge has been studied in a model of experimental cadmium (Cd) nephropathy. Female Sprague-Dawley rats were administered Cd in drinking water for up to 18 months. From month 2, the animals showed an elevation of albuminuria preceding by about 6 months the rise of urinary beta 2-microglobulin and IgG. The nephrotoxic action of Cd was not readily detectable on the basis of the urinary output of beta-N-acetylglucosaminidase, alanine aminopeptidase and lactate dehydrogenase. These enzymes showed either little variation or were affected late in the intoxication process. Administration of Cd for 12 or 18 months did not impair the GFR. The glomerular origin of the albuminuria induced by Cd was demonstrated by estimating the glomerular filtration of rat or human (injected intravenously) albumin in rats whose tubular reabsorption had been blocked by a saturating dose of cytochrome C. The GPA charge was assessed by measuring the binding of the cationic dye, Alcian blue (AB), to membranes of isolated glomeruli. The sialic and sulfate content of these membranes was also determined. The Cd induced-albuminuria was negatively correlated (r = -0.73; n = 37) with the AB binding to glomerular membranes, their sialic acid content (r = -0.39) but not with their sulfate content (r = -0.15). A negative correlation (r = -0.62; n = 37) was also observed between the albuminuria and red blood cell membrane negative charges largely contributed by sialic acid. All these observations can be interpreted as the evidence that Cd enhances the glomerular filtration of proteins through a GPA depletion involving mainly sialic acid.

Albuminuria

Measurements of the membrane water permeability (Lp) and its temperature dependence (activation energy) in human fresh and failed-to-fertilize oocytes and mouse oocyte.

The volumetric response of oocytes during rapid alterations of the extracellular osmotic environment were recorded using video microscopy. From these observations, the kinetics of water loss for human and mouse oocytes were determined over the temperature range 37 to 10 degrees C, including 37, 30, 20, and 10 degrees C. The changes in diameter of oocytes were measured over a 5-min period and a computer model was used to derive values for membrane water permeability (Lp) and inactive volume (Vb) and to compare the experimental data to the predicted values. The results for the mouse oocyte Lp were comparable to values determined by other methods. However the human data, for both failed-to-fertilize and fresh oocytes, have a wide range of values with large standard deviations. The Lp values at the various temperatures were used to calculate the Arrhenius activation energy (Ea). An Ea value of 9.48 kcal/mol was found for the fresh mouse oocyte, whereas the activation energy for human oocytes was extremely low, 3.73 kcal/mol for fresh oocytes and 1.93 kcal/mol for failed-to-fertilize oocytes.

Animals

Human and experimental studies on renal eicosanoid response to long-term cadmium exposure.

In order to assess the effects of long-term exposure to cadmium (Cd) on the renal metabolism of eicosanoids, the urinary excretion of 6-keto-prostaglandin F1 alpha (6-keto-PGF1 alpha), prostaglandin E2 (PGE2), prostaglandin F2 alpha (PGF2 alpha), and thromboxane B2 (TXB2) was determined in 37 workers exposed to Cd and in female Sprague-Dawley rats given 100 ppm Cd in drinking water for 10 months. Urinary output of sodium and calcium was also determined. The Cd-exposed workers showed an increased urinary concentration of 6-keto-PGF1 alpha, PGE2, sodium, and calcium. The rise of 6-keto-PGF1 alpha was related to Cd levels in blood and weakly correlated with urinary sodium. Calcium in urine was not related to the concentration of the metal in blood and urine. A slight elevation in urinary TXB2 was also observed in workers with blood Cd higher than 5 micrograms/liter. After 10 months of exposure to Cd, female Sprague-Dawley rats presented an enhanced urinary excretion of albumin, transferrin, beta 2-microglobulin, sodium, and PGE2 in urine. The latter was significantly correlated with albuminuria and transferrinuria. In conclusion the results show that chronic exposure to Cd induces changes in the urinary excretion of some eicosanoids. The possible relation of these changes to Cd-induced kidney dysfunction are discussed.

6-Ketoprostaglandin F1 alpha

Diet fatty acid composition, age and rat jejunal microvillus enzyme activities.

1. Lactase, sucrase, maltase, trehalase and alkaline phosphatase activities of rat proximal jejunum were measured in 3, 6, 9, 12, 18 and 24-month-old rats fed with diets differing in their fatty acid composition. 2. A drop of 47-53% of the specific enzyme activity was observed with disaccharidases against a decrease of 71% for alkaline phosphatase in the 24-month-old rats compared to the 3-month-old rats. 3. Changes in dietary fatty acid composition, either in the saturated or monounsaturated ratio, or in the polyunsaturated fatty acid composition, did not significantly interfere with this aging effect.

Aging

Monitoring of early nephrotoxic effects of industrial chemicals.

Long-term exposure to certain industrial chemicals (e.g. heavy metals, some halogenated hydrocarbons) may cause progressive degenerative changes in the kidney, possibly leading to renal insufficiency. The screening tests most widely used to assess the integrity of the kidney (i.e. serum creatinine or BUN and the quantitative or semi-quantitative measurement of total proteinuria) lack sensitivity; they do not permit the detection of renal disturbances at a stage when removal from exposure may prevent progression of the disease process and are not suitable to determine the no-effect levels of potentially nephrotoxic chemicals. During the last decades new markers have been proposed for the early detection of structural and/or functional changes at various sites of the renal parenchyma. Some tests mainly attempt to assess the integrity of the glomerulus (e.g. high Mr proteinuria such as transferrinuria and albuminuria; increased excretion of some components of the glomerular basement membrane or the mesangium matrix, increased plasma concentration of low Mr proteins such as beta 2-microglobulin and free retinol binding protein), the proximal tubule (e.g. urinary excretion of several low Mr plasma proteins, tubular enzymes and antigens), the loop of Henle and distal tubule (e.g. excretion of various prostanoids). Currently, the majority of these tests are of limited value at the individual level because their health significance, even when they are persistently abnormal, has not yet been sufficiently studied. In workers exposed to Cd, however, it has been shown that a persistent low Mr proteinuria is predictive of an exacerbation of the age-related decline of the GFR; this biological change should be considered as an adverse effect. Currently, the principal application of these tests lies in the framework of epidemiologic studies designed to assess permissible exposure levels to nephrotoxic pollutants. The study of dose-effects/response relationships based on a large battery of renal markers has allowed the better determination of the internal dose of Cd, which is not associated with significant renal risk.

Animals

Administration modalities and intestinal lymph absorption of arachidonic acid in rats.

We investigated the effects of the proportion of arachidonic acid on lymph lipoprotein synthesis in rats, when infused in the presence of lipids with varying degrees of saturation. A single dose of 90 mumol of lipid was administered intraduodenally and intestinal lymph was collected. Emulsion lipid constituents were 90 mumol of [14C]arachidonic acid alone, or either 30 mumol of [14C]arachidonic acid or 5 mumol of [14C]arachidonic acid and 25 mumol of linoleic acid, with 30 mumol of a free fatty acid and 30 mumol of a monoglyceride (the more saturated: oleic acid + monopalmitin; the more unsaturated: linoleic acid + monoolein). Radioactive lymph recovery of [14C]arachidonic acid infused alone reached 32.6 +/- 1.3% of the radioactivity administered and the presence of another fatty acid and a monoglyceride increased it from 38.7 +/- 2.6 to 51.9 +/- 1.1%. For 30 mumol of arachidonic acid, integration into lymph phospholipids was higher when arachidonic acid was infused with oleic acid and monopalmitin than with linoleic acid and monoolein (7.3 +/- 2.7 and 2.8 +/- 0.2% at the absorption peaks, respectively), and it was 4.8 +/- 0.5% when arachidonic acid was infused alone. For 5 mumol of arachidonic acid, the degree of unsaturation of the added lipid did not modify phospholipid incorporation, which was maintained at 6.9 to 7.2%. The proportion and size of chylomicrons increased with the degree of lipid emulsion unsaturation. Percentages of [14C]phospholipids and of chylomicrons were highly correlated. The proportion of arachidonic acid and degree of lipid emulsion unsaturation affected lymphatic arachidonic acid absorption modalities.

Animals

Fertilization and embryonic development of human oocytes after cooling.

Injury to living cells resulting from rapid cooling to temperatures at or near 0 degrees C has long been recognized, and the phenomenon, which is termed 'cold shock', has been known to occur in some mammalian gametes. Although human embryos have been successfully stored at low temperatures, cryopreservation of the human oocyte is proving to be more difficult. Whether or not this lack of success is a direct result of cellular injury brought about by 'cold shock' is the purpose of the current investigation. Human oocytes were cooled, in the absence of cryoprotectants, at two different cooling rates (-3 degrees C/min and -1000+ degrees C/min) to a temperature of 0 degrees C and rewarmed prior to insemination. In both cases fertilization after cooling was similar to the rates achieved in a routine in-vitro fertilization and embryo transfer procedure. After cooling at -3 degrees C/min, the rate of fertilization was 19/22 (86%) and after cooling at -1000+ degrees C/min, 9/9 (100%), with non-cooled control rates of 62/87 (71%) and 35/50 (70%) respectively. Fertilized oocytes from both groups were successfully cultured for a further 24 h before termination of the experiment.

Cryopreservation

The distribution of the CDW52 molecule on blood cells and characterization of its involvement in T cell activation.

The O97 mouse mAb was used to define, together with the CAMPATH-1 mAb series, the CDw52 in the course of the Fourth International Workshop on Human Leucocyte Differentiation Antigens. O97 and CAMPATH-1M produce full competitive inhibition and react with an epitope dependent on O-linked sugar residues. The two mAb, however, display significant differences in reactivity with leukocyte populations--in fact the reactivity of O97, which also exerts a powerful cytotoxic effect with human C', is similar to mAb from the CAM-PATH-1 series having the broadest one. Noteworthy, O97 spares PBL, NK, and LAK precursors, permitting an easy purification of these cells; O97 is able to kill long-term colony-forming cells in bone marrow culture and characteristically reacts, in contrast to CAMPATH-1M, with erythrocytes. Western blotting has revealed a strikingly different molecular size on red cells, since CDw52 mAb revealed a broad band ranging from 6-16 kDa, instead of the 21-28 kDa revealed from leukocyte extracts. In agreement with immunofluorescence data, O97 revealed abundant material from red cells in Western blotting, while reactivity of CAMPATH-1M was very faint. Overall, these results show that distinct molecular forms of the CDw52 molecules are present on different blood cells. We have also characterized an activation signal that can be delivered to T cells via the CDw52 molecule by CAMPATH-1M but not by O97. This is an accessory signal that can complement a primary activation signal delivered via the CD2 pathway but not via the CD3-TcR pathway. This is similar to the effects obtained with the CD45R (2H4) mAb, 2H4 and CAMPATH-1M mAb having additive effects on T cell activation via CD2.

Antibodies, Monoclonal

Construction of vaccinia virus recombinants expressing several measles virus proteins and analysis of their efficacy in vaccination of mice.

Measles virus genes encoding the haemagglutinin (HA), fusion protein (F) or nucleoprotein (NP) have been inserted into the vaccinia virus genome either alone or in various combinations. In each case the measles virus genes were expressed from the 7.5K promoter and were incorporated into the thymidine kinase (tk) or K1L loci of the Copenhagen strain of vaccinia virus. Cells infected by the recombinants synthesized measles virus proteins indistinguishable from those induced in measles virus-infected cells. However, in some instances the level of expression in cells infected by recombinants expressing more than one measles virus gene was reduced when compared to those encoding a single gene. The sera from mice immunized with recombinants containing either HA, HA.F, HA.NP or HA.F.NP had similar levels of measles virus neutralizing antibodies which remained constant throughout a 7 month period. Analysis of these sera by immunoprecipitation of radiolabelled measles virus confirmed the presence of specific antibody to each of the antigens where appropriate. The introduction of the measles virus genes into the K1L and the tk sites despite attenuating the virus for mice by 10-fold and 1000-fold respectively did not affect the vaccination efficiency, i.e. ability to induce measles virus antibody and protect mice. Vaccination of BALB/c (H2d) mice with HA and F, but not NP, recombinants completely protected the animals against a lethal measles virus challenge. In contrast, although the HA recombinant protected CBA (H2k) mice, the F recombinant did so poorly. However, by immunizing CBA mice with a recombinant expressing both F and NP, protection was increased to more than 75%. Our findings demonstrate the ability of three measles virus antigens expressed from the vaccinia virus genome alone or in combination to contribute to protective immunity against measles virus infection of mice. They also suggest that the association of measles virus antigens in a single recombinant DNA vaccine could be beneficial to overcome host-related restriction of the immune response to particular antigens.

Animals