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D Goossens

Publications and source records attributed to D Goossens.

At least 55 records · Page 3Linked to original sources

Characterization of the D, c, E and G antigens of the Rh blood group system with human monoclonal antibodies.

The human MAbs, anti-D, -c, -E and -G of the Rh blood group system, produced by Epstein-Barr virus transformed B-cell lines, were purified by protein A-Sepharose chromatography and used to characterize the Rh antigens of human red cells. Scatchard plot analyses performed with the radiolabelled MABs indicated that each R2R2 red cell carries 0.43, 0.32 and 0.38 x 10(5) D, c and E binding sites, respectively. About half this number of antigen sites are present on erythrocytes from heterozygote individuals using the appropriate antibody. We found, however, that only 0.18 x 10(5)G antigenic sites were present on each R1R1 red cell. The affinity constants of the anti-D, -E and -G were similar varying from 0.6 to 1.5 x 10(8) M-1 whereas that of the anti-c was much lower (0.035 x 10(8) M-1). The blood group specificity and binding properties indicate that the MAbs behave like the polyclonal anti-Rh reagents. Immunoprecipitation experiments carried out with membranes from R2R2 red cells show that a 30-32 kDa component can be identified whatever the antibody used. The immune complexes involving anti-c, -E or -G antibodies could be formed with the detergent lysates from red cell membranes. In contrast, membrane integrity was a prerequisite for the binding of the anti-D antibodies. Finally, from extraction studies of immunocomplexes with non-ionic detergents it was concluded that all the Rh-active components are bound to the membrane skeleton, suggesting that these molecules may have important function for maintaining red cell shape and viability.

Antibodies, Monoclonal↗

Successful 72-hour cold storage of dog kidneys with UW solution.

Effects of three cold-storage solutions on kidney function in dogs were examined with the isolated perfused (IPK) kidney model and the autotransplant model. EuroCollins' (EC) solution, phosphate-buffered sucrose solution, and a new solution developed at the University of Wisconsin (UW) were studied. Kidneys were cold-stored for 48 hr or 72 hr. With the IPK model, cold storage for 48 hr or 72 hr in each of the three solutions caused creatinine clearance to decrease by 80%-90%. More protein was excreted by kidneys stored for 48 hr in PBS solution than by kidneys stored in EC or UW solution; protein excretion after 72 hr of storage was similar for kidneys stored in EC or UW solution. Sodium reabsorption decreased after 48 hr or 72 hr of storage, but was higher in kidneys stored in UW solution (83% and 56%, respectively) than in EC solution (52% and 22%, respectively). With the autotransplant model, 40% of the kidneys were viable after 48-hr storage in PBS solution, but 80% viable when stored in EC solution and 100% were viable when stored in UW solution. All kidneys were viable when stored for 72 hr in UW solution; none were viable when stored for 72 hr in EC solution. These results suggest that UW solution effectively preserves kidneys for 72 hr. We previously reported successful 72-hr pancreas preservation. Recently UW solution was able to preserve canine livers for 30 hr. Thus, this single solution appears to be effective for preserving all intraabdominal organs and may simplify cold storage of organs for transplantation.

Animals↗

Effect of pharmacologic agents on the function of the hypothermically preserved dog kidney during normothermic reperfusion.

We examined how a combination of pharmacologic agents ("rescue" agents) affect the function of hypothermically preserved dog kidneys at the time of reperfusion. Dog kidneys were preserved either by simple cold storage in EuroCollins' solution for 24 or 48 hours or by continuous perfusion at 5 degrees C in Belzer's gluconate-hydroxyethyl starch solution for as long as 5 days. After preservation, renal functions were measured with the isolated perfused kidney model. Kidneys were reperfused at normothermia either with or without the addition of a combination of rescue agents to the reperfusion medium. The rescue agents studied were allopurinol (1 mmol/L); superoxide dismutase (32,000 U/L); catalase (137,500 U/L); dimethylthiourea (3 mmol/L); glutathione (3 mmol/L); desferrioxamine (0.2 gm/L), for protection against O2 free radical injury and lipid peroxidation injury; verapamil (25 mg/L), as a Ca channel blocker; and ATP-MgCl2 (0.3 mmol/L), to stimulate energy metabolism. The renal functions we measured were glomerular filtration rate (GFR) (creatinine clearance), urine production, perfusate flow, urinary protein concentration, Na reabsorptive capacity, and tissue concentrations of ATP, K, and total tissue water. GFR was reduced by 75% to 90% after all periods of preservation, and the rescue agents had no effect on GFR. Sodium reabsorption was reduced from 98% to a range of 40% to 50% after 48 hours of cold storage or 5 days of machine perfusion and was not increased by rescue agents. There was a time-dependent increase in the amount of urine protein that was not affected by rescue agents. The addition of rescue agents did not affect total tissue water or concentrations of ATP or K in kidneys after normothermic reperfusion. These results demonstrate that pharmacologic agents previously suggested to suppress reperfusion damage in kidneys are not effective in this model. Therefore it is likely that kidneys damage occurs primarily during preservation, which suggest that optimal function on reperfusion calls for the development of better methods of preservation.

Allopurinol↗

Biochemical identification and characterization of the G antigen in the human blood group Rh.

The human blood group Rh comprises erythrocyte membrane antigens which include the G antigen. In order to carry out this study, the G antigen was specifically immunofixed with a human monoclonal anti-Rh(G) antibody. After extraction and purification of the antigenic complex, a migration in SDS-PAGE showed the G antigen to be associated with a polypeptide of 28,000 MW.

Antibodies, Monoclonal↗

Human monoclonal antibodies against blood group antigens. Preparation of a series of stable EBV immortalized B clones producing high levels of antibody of different isotypes and specificities.

The EBV immortalization technique was used to produce stable clones, from B lymphocytes, secreting human monoclonal antibodies to Rh(D), Rh(G), Rh(c), Rh(E), Kell, A and A1 blood group antigens. These clones were obtained from peripheral blood lymphocytes of hyperimmunized plasmapheresis donors or from spleen lymphocytes of immunized patients. Mean levels of antibody concentration varied between 4 and 50 micrograms/ml. The antibodies obtained were of IgG1, IgG2, IgM or IgA class. Most of the clones have been stable for growth and antibody production during long periods of continuous culture, extending upto 4 years. Hybridization of two clones was effected with the human lymphoblastoid cell line KR-4 and with the mouse myeloma X63-Ag8.653, but did not result in any marked improvement of clone characteristics. One of the anti-Rh(D)-producing EBV-transformed clones was used to produce an anti-Rh(D) typing reagent which has proved satisfactory for 2 years in routine blood typing in several laboratories.

ABO Blood-Group System↗

Human monoclonal antibody against Rh(D) antigen: partial characterization of the Rh(D) polypeptide from human erythrocytes.

A human monoclonal anti-Rh(D) antibody produced by an Epstein-Barr virus (EBV)-transformed B-cell line (IgG1(lambda), clone H2D5D2) has been purified on protein A-Sepharose column and used for binding studies and immune precipitation of the blood group rhesus (Rh) antigens. Scatchard plot analyses show that the 125I-labeled antibody (iodo-gen procedure), binds to 1.09 X 10(5), 0.43 X 10(5), and 0.32 X 10(5) antigen sites on each D--/D--, R2R2 and R1R1 RBC, respectively, with an association constant of approximately 0.6 X 10(8) mol/L-1. Immune precipitation studies indicate also that the Rh(D) antigen of the Rh(D)-positive RBCs is carried by a 29 kd polypeptide as deduced from sodium dodecyl sulfate-polyacrylamide gel electrophoresis (SDS-PAGE). No material could be precipitated from Rh(D)-negative or Rhnull RBCs. These results indicate that the monoclonal and the polyclonal human anti-Rh(D) behave similarly. A sample (Blo., presumed genotype R2r or R0R2) showing an increased number of antigen sites (0.76 X 10(5)/cell) and a high binding constant (5.7 X 10(8) mol/L-1) was used, as well as D--/D-- RBCs, for further purification of the 29-kd component. Extraction by Triton X-100 (0.1% to 5%) of the immune complexes formed between the membrane-bound Rh(D) antigens and the monoclonal antibody as well as a direct quantitative estimate of the 29-kd component, suggest that the Rh(D) polypeptide is loosely bound to the skeleton, since less than or equal to 80% can be solubilized from the membrane. In similar conditions, glycophorin A showed a slight association with the Triton-insoluble residue, whereas glycophorin B was easily and completely extracted. In contrast, both the minor RBC sialoglycoproteins, glycophorin C and glycoprotein gamma, remained predominantly bound to the membrane skeleton. The purified Rh(D) polypeptide obtained from Blo. and D--/D-- RBCs by immunoprecipitation and preparative gel electrophoresis was homogenous as judged by SDS-PAGE. Amino acid composition indicated that the Rh(D) protein contained sulfhydryl groups which are essential for biological activity.

Amino Acid Sequence↗

[Diagnostic and therapeutic use of human anti-D (Rho) monoclonal antibodies. Evaluation and perspectives].

Human monoclonal antibodies will be essential in medicine. They are valuable tools for biological diagnosis and therapeutics. Our model, human monoclonal antibodies directed against the Rhesus D antigen can be used for the determination of the Rhesus D phenotype and for the suppression of Rh(D) immunisation in women. These new products require new procedures of preparation, new regulations for the quality controls, which will be discussed in this paper.

Animals↗

Distribution of blood group antigens in adult pancreas.

Numerous blood group antigens are present in different human tissues where they appear as immunological markers of certain structures. The Pr antigen is the only antigen present in the islet of Langerhans. The A, B, H and Lewis antigens are present in the centro acinar cells and the Pr and Lewis antigens are found on the membrane of the pancreatic ducts. A, B, H and Pk antigens are expressed in the capillaries. These kinds of studies could be important for the transplantation of the endocrine pancreas.

Blood Group Antigens↗

Molecular characterization of human monoclonal antibodies specific for several HIV proteins: analysis of the VH3 family expression.

We have analyzed the heavy-chain variable (VH) region genes expressed by a panel of human monoclonal antibodies derived from an immunized volunteer, an AIDS patient and seropositive asymptomatic donors, and specific for HIV-1 env, pol and gag gene products. The third complementarity-determining regions show a high complexity with unconventional gene recombination events. Most of the VH genes utilized are also frequently encountered in other immune responses. Their sequences are, in general, typical of an antigen-driven immune response. Molecular mechanisms that generate high-affinity antibodies are then effective during HIV infection. Remarkably, VH3 family, which dominates the human antibody repertoire, is barely encountered among anti-HIV antibodies.

Antibodies, Monoclonal↗

[The diagnostic value of anti-DNA antibodies depends on the technic used for their detection].

Three anti-native DNA antibody detecting assays were compared using sera from 948 patients with clinical symptoms of connective tissue disease and 55 definite systemic lupus erythematosus patients. The Farr assay was more effective than the two other assays in the diagnosis of lupus. Anti-DNA antibody detection by ELISA was as sensitive as the Farr assay; in contrast indirect immunofluorescence on Crithidia luciliae had a significantly lower sensitivity, detecting less than one out of two cases of lupus detected. Particularly ELISA but also indirect immunofluorescence may give positive results in the absence of lupus, so that results obtained by each of these assays must be confirmed by the Farr assay if they are used in the diagnosis of lupus. The significance of antibodies detected by one assay but not by the others is discussed.

Antibodies, Antinuclear↗

Trinucleotide repeat expansions: do they contribute to bipolar disorder?

It has long been known that bipolar disorder has a true but complex genetic background. Reports on genetic anticipation in bipolar disorder opened the way to a new approach for genetic studies. Indeed, anticipation, a decreasing age at onset, and/or increasing disease severity in successive generations, were recently explained by an expansion of trinucleotide repeats in monogenic diseases like Huntington's disease and Fragile X syndrome. The involvement of trinucleotide repeat expansions in bipolar disorder received even more support when studies reported association of large CAG/CTG repeats with bipolar disorder. Even though a large number of studies have been conducted, this association is still unexplained. Here, we review the studies investigating the trinucleotide repeat expansion hypothesis in bipolar disorder. Studies on anticipation, on association of anonymous large CAG/CTG repeats and on specific trinucleotide repeats are critically analysed and discussed, showing a field with precipitate conclusions or inconclusive results. The analysis suggests that there are indications, though disputable, supporting the trinucleotide repeat expansion hypothesis in bipolar disorder, but no conclusive evidence has been hitherto provided.

Bipolar Disorder↗