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Biomedical subjects

P Gane

Publications and source records attributed to P Gane.

At least 19 recordsLinked to original sources

Molecular basis and expression of the LWa/LWb blood group polymorphism.

The Landsteiner-Wiener (LW) blood group antigens reside on a 42-kD erythrocyte membrane glycoprotein that has recently been cloned. Here, we found that the molecular basis for the LWa/LWb polymorphism is determined by a single base pair mutation (A308G) that correlates with a Pvu II restriction site and results in a Gln70Arg amino acid substitution. COS-7 cells transfected with LWa or LWb cDNAs reacted with human anti-LWa and anti-LWb sera, respectively, as well as with a murine monoclonal anti-LWab antibody, as shown by flow cytometry analysis. Moreover, a 42-kD protein was immunoprecipitated from the transfected cells with the monoclonal anti-LWab antibody. These findings indicate that LWa and LWb are alleles of the LW blood group locus as defined also by a monoclonal anti-LWab of nonhuman origin. In addition, the LW locus has been assigned to chromosome 19p13.3 by in situ hybridization. Study by Southern blot analysis indicated also that the LW locus is composed of a single gene that was not grossly rearranged in rare LW(a-b-) and Rhnull individuals deficient for LW antigens. In addition, Pvu II restriction fragment-length polymorphism analysis indicated that these variants were all homozygous for a phenotypically silent LWa allele.

Alleles

Flow cytometric monitoring of allergen induced basophil activation.

Human basophils express many clustered differentiation antigens (CD), including CD45; however, none are specific for these cells. In a previous study, we described a two-color immunofluorescence procedure, employing antibodies to CD45 and IgE for the cytometric evaluation of basophils. In the present work, we show that when sensitized basophils are stimulated by allergenic preparations, they demonstrate an upregulation of CD45 as well as a decrease in anti-IgE binding. Since CD45 antigen modulation was observed with all aeroallergens tested and the decrease in IgE expression varied with allergenic preparations, the measurement of CD45 upregulation was used to evaluate basophil activation. Using this approach, reproducible results were observed when atopic patients were tested at different time intervals. In addition, we show that the upregulation of CD45 on allergen stimulated basophils is a very rapid phenomenon that is observed after a few minutes and that this rapid flow cytometric method can also be used for investigations on nonallergenic mediators of basophil stimulation such as calcium ionophores.

Adult

Molecular basis and PCR-DNA typing of the Fya/fyb blood group polymorphism.

The Duffy blood group antigens are carried by the erythrocyte membrane glycoprotein gpD, which has a molecular weight of 35-45 kDa and which has been recently cloned. In this report, we have determined, at the nucleic acid level, the molecular basis for the blood group Fya/Fyb polymorphism. The gpD cDNAs isolated by reverse transcription/polymerase chain reaction (RT-PCR) from Fy(a+b-) and Fy(a-b+) donors differed by only one base substitution (G131A) changing Gly to Asp at position 44 of the gpD protein. When expressed in simian Cos-7 cells, the Gy(a+b-) and Fy(a-b+) gpD cDNA produce cell surface proteins that react with the anti-Fya and anti-Fyb antisera, respectively, demonstrating that they represent the FY*A and FY*B alleles of the Duffy blood group locus. The G131A nucleotide substitution has been correlated with a BanI restriction site polymorphism, which has allowed us to develop a method for the DNA typing of the main Duffy blood group antigens, by means of PCR/restriction fragment length polymorphisms.

Alleles

Multiple labeling using two-color immunofluorescence with only one light source, two fluorescence photomultiplier tubes, and two light scatter detectors.

Multiple labeling is necessary for the detailed phenotyping of cells in many biological systems in human and animal species. In a previous report, we described an approach permitting the study of three labels simultaneously by using the two-color immunofluorescence and one light source (Mansour et al., Cytometry 11:636-641, 1990). This approach allowed enumeration of cell subpopulations positive for only one label and negative for many others (X+ A- B- ...). We here present an improvement of the previous approach to allow analysis of double positive phenotypes (X+ Y+ A- B- ...), using only two fluorescence photomultiplier tubes and light scatter detectors. It consists of a two-step analysis that does not require additional material than that used in the former technique. Briefly, all antibodies are conjugated to only two fluorochromes: either FITC or PE. For the analysis of the X+ Y+ A- B- ... phenotype, the Y, A and B labels are all coupled to the same dye (FITC, e.g.) and the X label to the other dye (i.e, PE). In a first step, cells are labeled with X, A, and B, and in a second step, the second positive (Y) label is added. Two examples are supplied: CD56+ CD2+ CD3- CD16- decidua infiltrating cells and CD3+ TCR delta+ CD4- CD8- peripheral blood lymphocytes. This technique is useful for qualitative as well as quantitative analysis, with cytometers that do not have the appropriate hardware to do true three-color immunofluorescence analysis.

Antigens, CD

Effects of bile acids and cholestasis on major histocompatibility complex class I in human and rat hepatocytes.

BACKGROUND/AIMS: Major histocompatibility complex (MHC) class I molecules, which are normally poorly expressed on the surface of hepatocytes, are overexpressed during cholestasis. The mechanisms responsible for this overexpression were examined. METHODS: The expression of class I molecules, assessed by flow cytofluorimetry, and the class I messenger RNA (mRNA) transcripts, assessed by Northern blot analysis, were measured on normal human hepatocytes in primary culture. RESULTS: Chenodeoxycholic acid induced an overexpression of MHC class I molecules, whereas ursodeoxycholic acid did not. The level of class I mRNA closely reflected that of the membrane protein. Moreover, cholestasis, induced in the rat by ligation-section of the common bile duct, increased the MHC class I mRNA level. Actinomycin D inhibited bile acid-induced class I transcription of rat hepatocytes in primary culture, whereas cycloheximide did not. Finally, class I mRNA expression was induced in hepatocytes by phorbol myristate acetate and by forskolin. This hyperexpression, as well as that observed with chenodeoxycholic acid, was suppressed by an inhibitor of protein kinase C and protein kinase A. CONCLUSIONS: Taken together, these results suggest that chenodeoxycholic acid, as interferon, activates protein kinase C and protein kinase A, resulting in the induction of MHC class I expression.

Adult

Flow cytometric evaluation of human basophils.

The expression of CD45 and IgE cell surface antigens on human leucocytes was studied by flow cytometry. More than 80% of sorted cells that expressed low CD45 (CD45dim) and high IgE (IgEbright) antigen site density were identified as basophils. Immunomagnetic depletion of the CD45dim-IgEbright cell subset by a biotin-coupled anti-IgE antibody and streptavidin-coated magnetic beads was greater than 90%, and more than 80% of cells binding significant numbers of beads exhibited the morphological characteristics of basophils. Interestingly, when the cell staining was performed in the presence of calcium and magnesium, we observed a significant increase of CD45 and an equivalent decrease of IgE cell surface expression, as well as an IgE concentration dependent diminution of the number of CD45dim-IgEbright cells.

Antibodies, Anti-Idiotypic

Immunogenicity of rat hepatocytes in vivo: effect of cholestasis-induced changes in major histocompatibility complex expression.

Hepatocytes normally express few major histocompatibility complex (MHC) class I and no MHC class II molecules, a phenomenon which could explain their low immunogenicity. However, in pathological situations, such as allograft rejection and cholestasis, hepatocytes strongly express MHC class I molecules and their immunogenicity could be different. The aim of this study was to assess the role of MHC expression on the immunogenicity of hepatocytes in vivo. Hepatocytes were obtained from normal and cholestatic DA rats by whole-liver perfusion with EDTA. Cholestasis was induced by ligation-section of the common bile duct. MHC expression on hepatocytes was assessed by cytofluorimetry after labelling with monoclonal antibodies against MHC class I and class II antigens. The percentage of hepatocytes expressing MHC class I was 9.8 +/- 2.2% in normal rats and 77.2 +/- 3.3% in cholestatic rats (P = 2 x 10(-4)); MHC class II expression was present on 1 +/- 0.5% of normal hepatocytes and 0.4% +/- 0.1% of cholestatic hepatocytes (P > 0.05). Lewis rats received a DA or Wistar-Furth heart allograft 7 days after intravenous injection of 2 x 10(7) hepatocytes from normal or cholestatic DA rats. The DA heart allograft was rejected in 6.3 +/- 0.4 days in Lewis controls, 8.8 +/- 1.1 days (N.S.) in Lewis recipients that received normal DA hepatocytes and 17.6 +/- 3.0 days (P = 2 x 10(-4)) in Lewis recipients that received hepatocytes from cholestatic DA rats.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals

Iso-immune neonatal neutropenia due to an anti-Fc receptor III (CD16) antibody.

We report a case of transient neonatal neutropenia due to a maternal iso-immunization against a non polymorphic region of the glycosylphosphatidylinositol-linked Fc receptor type III (CD16) on granulocytes. The mother's granulocytes were typed NA1-negative, NA2-negative and CD16-negative with human and monoclonal antibodies whereas her lymphocytes express the CD16 molecule. Expression of other markers were comparable to the controls. Flow cytometric analysis showed that maternal antibody recognized the granulocytes but not the lymphocytes from blood bank donors and that its binding was decreased on normal, phospholipase C-treated, granulocytes. The binding of commercial CD16 monoclonal antibodies was also dramatically decreased on normal granulocytes pre-incubated with maternal serum. The CD16 specificity of the antibody was confirmed by negative reactions with another CD16-deficient granulocytes. This observation leads us to conclude that cell-lineage specific differences of CD16 molecules are recognized by the patient's antibody. Moreover, we confirm that the absence of the FcRIII (CD16) on granulocytes is not associated with any pathology or susceptibility to infections and that, in the children, the blockade of this receptor by the maternal antibody only led to moderate neutropenia.

Adult

Niemann Pick c or storage by excessive blood cell destruction: a case presenting a diagnosis problem.

A case of storage disease followed up during 12 a was studied by morphological, histochemical, immunological, and biochemical techniques. Data were analysed in an attempt to differentiate an acquired storage by excessive cell degradation from a storage of genetic origin. If, as it is our belief, a conclusion of acquired storage can be made, this observation in which the same cholesterol metabolism abnormalities as in Niemann Pick type C were seen, leads to a rediscussion of their diagnostic significance.

Blood Cells

[Target epitopes of monoclonal antibodies against ABH structures].

Comparing the reactivities of murine and human monoclonal antibodies directed against the antigens of A, B, and H blood groups by using different techniques (agglutination, inhibition by synthetic oligosaccharides and salivary antigens, tissue immunofluorescence, the use of an anti-idiotype antibody) enabled us to show a high heterogeneity of anti-A, anti-AB antibodies and, to some extend, anti-B and anti-H antibodies. Despite this diversity, the determination of the antibody specificity thanks to synthetic antigens made it possible to distinguish several groups of anti-A, B, AB, and H antibodies and to establish a classification that takes also their reactivity towards salivary and tissue antigens into account. On the contrary, few correlations were found between these tests and the ability of antibodies to agglutinate red blood cells of the different ABO-system variants.

ABO Blood-Group System

Expression of CD11b (Leu15) antigen on CD3+, CD4+, CD8+, CD16+ peripheral lymphocytes. Estimation of CD3+8+11b+ and CD3+4-8-11b+ T-cell subsets using a single laser flow cytometer.

CD11b (Leu15) epitope is expressed on 20-30% of peripheral blood lymphocytes, including CD16+ large granular lymphocytes and CD8+ cells. This study confirms that 30% of CD8+ lymphocytes and virtually all CD16+ NK cells from healthy subjects express this determinant. In parallel, our data show that various proportions of CD3+4-8-, TCR-delta cytotoxic T lymphocytes and occasionally CD4+ lymphocytes subsets could also express this epitope. The CD8+11b+ phenotype is associated with suppression of T-cell proliferative response and has been extensively used to characterize suppressor T lymphocytes. Since about 25% of CD8 lymphocytes are non-T (CD3-) and express the CD16 NK antigen (CD8+16+3-), the expression of CD11b was also studied on CD8+3+ T-cell and CD8+16+ NK-cell subsets. To this end, we developed three methods using a flow cytometer equipped with a single laser and two fluorescence detectors. Results showed that T CD8+3+11b+ and NK CD8+16+11b+ lymphocytes account for 30% and 70% of CD8+11b+ cells respectively. Consequently, the CD8+3+11b+ phenotype would be more specific for suppressor T lymphocytes than the total CD8+11b+ phenotype which includes high proportions of CD16+ NK cells.

Antigens, Differentiation

Cholestasis induces major histocompatibility complex class I expression in hepatocytes.

The hepatic expression of major histocompatibility complex (MHC) antigens is normally limited. However, aberrant expression occurs in cholestatic diseases such as primary biliary cirrhosis. The aim of this work was to assess the effect of cholestasis itself on hepatocyte MHC expression and to determine if immunosuppressive drugs might modulate this expression. Liver fragments taken from six patients with extrahepatic cholestasis and eight control patients were analyzed for MHC expression by direct immunofluorescence. MHC class I expression by hepatocytes was present in six of six cholestatic patients and zero of eight control subjects. Hepatocytes did not express MHC class II in either group. In further studies, cholestasis was induced in rats by ligation-section of the bile duct. Five groups of rats were studied: control, 3-day cholestasis, 5-day cholestasis, 5-day cholestasis plus cyclosporine, and 5-day cholestasis plus corticosteroids. Hepatocyte MHC class I expression was detected by immunofluorescence in bile duct-ligated rats but not in control animals. Flow-cytofluorimetric analysis of isolated hepatocytes showed that the percentage of hepatocytes expressing MHC class I increased from day 0 (9.9%) to days 3 (50.2%) and 5 (82.9%); this hyperexpression was not modified by cyclosporine (79.7%) or corticosteroids (77.9%). The percentage of hepatocytes spontaneously expressing MHC class II was low (0.05%) and was not significantly modified by cholestasis or immunosuppressive drugs. Thus, a nonimmunological factor such as cholestasis is able to modulate MHC expression. The liver may become more vulnerable to immune destruction in the presence of cholestasis, and immunosuppressive treatment has no effect on this phenomenon.

Aged

Triple labeling with two-color immunofluorescence using one light source: a useful approach for the analysis of cells positive for one label and negative for the other two.

Many laboratories do not have access to a flow cytometer allowing three-color immunofluorescence analysis through the use of multiple light sources. In view of the usefulness of such analyses in the dissection of cell parameters, we describe an approach permitting the study of three labels by using one light source and the two-color immunofluorescence assay. It is useful for the enumeration of cell subpopulations positive for one label and negative for two or more others as well as for qualitative analysis concerning the expression of these labels. This approach is simple and rapid; it does not require additional material and technical steps other than that used in the two-color immunofluorescence assay. Briefly, it consists of the use of a label coupled to a dye (PE or FITC or instance) and two different labels coupled to the other dye. An argon ion laser, operating at 488 nm and 60 mW, excites both fluorescein and phycoerythrin conjugated antibodies. We provided a general example, using three hypothetical labels (X, Y, and Z), and four practical applications: CD3+CD4CD8- and CD8+CD16-CD3- peripheral blood lymphocytes, CD2+CD16-CD3- and CD56+CD16-CD3- peripheral blood, and decidual infiltrating lymphocytes.

Antibodies, Monoclonal

Hepatic expression of class I and class II major histocompatibility complex molecules in primary biliary cirrhosis: effect of ursodeoxycholic acid.

Aberrant hepatic expression of HLA molecules has been shown to be present in primary biliary cirrhosis and may play a determining role in the pathogenesis of the disease. We have studied the effect of the long-term administration of ursodeoxycholic acid on hepatic HLA expression. Nine untreated patients with primary biliary cirrhosis, eight patients treated for at least a year with ursodeoxycholic acid and eight control subjects without hepatobiliary disease were compared. HLA expression was studied on liver biopsy sections using a direct immunofluorescence technique with specific monoclonal antibodies directed against class I or class II HLA molecules. Aberrant biliary HLA class II expression was not modified by chronic administration of ursodeoxycholic acid. In contrast, aberrant hepatocyte HLA class I expression was markedly reduced. Reduction in HLA class I expression may lead to decreased cytotoxic T cell-dependent lobular necrosis, which is thought to contribute to the progression of primary biliary cirrhosis to advanced stages. These findings suggest that the beneficial effect of ursodeoxycholic acid treatment in primary biliary cirrhosis could result not only from a reduction in the intrahepatic accumulation of cytotoxic bile acids but also from a reduction in immunological injury.

Deoxycholic Acid

Specific absorption of lymphocytotoxic alloantibodies by the liver in inbred rats.

It has been suggested that liver allografts are less sensitive to lymphocytotoxic antibodies than other organ allografts. In this experimental study in sensitized inbred rat recipients, we have used extracorporeal liver hemoperfusion to study interactions between the liver and lymphocytotoxic antibodies. Donor-specific liver hemoperfusion can delay hyperacute rejection of heart allografts and reduce the level of lymphocytotoxic antibodies. Immunofluorescence examination of the hemoperfused liver revealed deposits of C3 on Kupffer cells and of IgG on sinusoidal cells. In control rats in which a third-party liver, a donor-specific splenic or renal hemoperfusion was performed, heart allograft survival was less prolonged. The decrease in antibody levels was not significant and the deposit of C3 and IgG was much less evident. Similarly, previous blockade of the Kupffer cells of the donor-specific hemoperfused liver by dextran sulfate suppressed the effect of liver hemoperfusion. These results support the hypothesis that resistance of the liver to hyperacute rejection might be due to a massive and nontoxic absorption of lymphocytotoxic antibodies onto nonparenchymal liver cells.

Animals

Distribution of the MHC antigens after liver transplantation: relationship with biochemical and histological parameters.

The aim of this study was to analyse the change in tissue distribution of HLA class I and class II molecules in patients during the course of liver transplantation. Sixty-one liver biopsies were analysed in 24 patients with or without rejection (acute or chronic) episode. In 93% of cases with chronic rejection and in 48% of cases with acute rejection episodes, HLA class I antigens are expressed in the membrane and/or the cytoplasm of hepatocytes. The expression of these molecules was significantly correlated with the ASP (aspartate amino transferase), AP (alkaline phosphatase), the bile duct damage and the centrolobular lesions. In contrast, the expression of HLA class II molecules is not correlated with either the type of rejection, the biological or histological findings. A strong expression of HLA class I antigen on hepatocytes after day 60 may be one of the best signs of chronic rejection.

Graft Rejection

Developmental modifications of sheep kidney antigens.

We have used monoclonal antibodies to study the changes in the expression of four kidney antigens during organogenesis in the sheep. Two of these antibodies, EE24.6 and EJ30.1, label intensely only the adult kidney, whereas the other two, EK17.1 and EJ15.1, bind to the extracellular matrix of the embryonic kidney. For EJ15.1, the staining of the extracellular matrix decreases temporarily during the second half of intrauterine life, a period during which a light staining appears in the mesangium. For the other, EK17.1, the extracellular matrix staining in the stroma gradually decreases as the embryo grows, while staining of the mesangium and the arterial intima becomes evident. With EK17.1, fibronectin is identified in the extracellular matrix of the embryonic kidney and intracellularly in the mesangial cells after these cells have colonized the glomerulus. The mesonephros staining seems to be the same as that of the metanephros. In the adult, extraglomerular vascular endothelial cells bind EK17.1, whereas intraglomerular endothelial cells do not express fibronectin, which suggests a functional difference between endothelial cells in these two localizations.

Animals