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Biomedical subjects

L Fainboim

Publications and source records attributed to L Fainboim.

At least 55 records · Page 3Linked to original sources

Expression of ICAM-1 (CD54) on normal and leukaemic B cells: implication for the mixed lymphocyte reaction.

Peripheral blood normal B lymphocytes were found to be poor stimulators in the mixed lymphocyte reaction (MLR), in contrast to normal activated B cells which were strong stimulators. This increased capacity to stimulate a strong MLR correlated with an increased expression of the ICAM-1 (CD54) molecule on the surface of these cells. Similarly, the capacity of leukaemic B cells to induce an allogenic stimulation in the MLR was limited to the ICAM-1 (CD54) positive leukaemic cells. The ability of normal activated or leukaemic B cells to induce an MLR was blocked by antibodies directed against ICAM-1.

Adult↗

Complete nucleotide sequence of a genomic clone encoding HLA-B35 isolated from a Caucasian individual of Hispanic origin. Identification of a new variant of HLA-B35.

The primary structure of an HLA class I genomic clone isolated from a homozygous HLA-B35 Caucasian individual of hispanic origin was determined. The nucleotide sequence of exons 1, 2, 4, 5, 6, and 7 is identical to that of the HLA-B35 allele of Oriental origin reported previously. Exon 3 differs in only three nucleotides present in a stretch of 23 bp. These changes introduce three amino acid substitutions in residues 109 (Leu----Phe), 114 (Asp----Asn), and 116 (Ser----Tyr), two of which (114 and 116) are located in one of the beta sheets at the bottom of the peptide binding site. The nature of these replacements in this HLA-B35 variant is likely to affect peptide binding and recognition by T lymphocytes. Introns 1, 2, 3, 4, 5, and 6 from this genomic clone are identical to those present in HLA-Bw58, further confirming the evolutionary origin of HLA-B35.

Amino Acid Sequence↗

Class I and class II HLA antigens in a homogeneous Argentinian population with Whipple's disease: lack of association with HLA-B 27.

The prevalence of class I and class II HLA antigen was analyzed in 14 patients (12 males, two females) with Whipple's disease, diagnosed an average of 9.7 yr (range 6 months to 25 yr) before the typing. They were compared with 174 healthy control subjects of the same geographic area in Argentina. Class I antigens (locus A, B, C) were studied by lymphocytotoxic test, and class II antigens (locus DR, DQ) were detected by the double immunofluorescence technique. HLA-B27 was positive in one patient (7.7%) and in 4% of the control population. No significant association was found with the antigens tested. We observed no difference in the clinical picture or in the frequency of arthralgias, compared with those reported in the literature. Our data suggest that there is no conclusive proof of an association between HLA-B27 and Whipple's disease.

Aged↗

[T lymphoma of immature phenotype associated with polycythemia vera].

A 20-year old patient is presented with generalized lymphadenopathy, splenomegaly, hyperleukocytosis and a bone marrow biopsy showing panmyelosis with predominance of immature granulocytes. Lymph node biopsy showed a histopathological feature that was diagnosed as a chronic granulocytic leukemia in blast crisis. The cell surface phenotype of these blast cells showed predominance of immature CD1+, CD7+ T lymphocytes. The T cell lineage was confirmed by DNA rearrangement studies. In addition, the patient showed erythrocytosis, arterial O2 saturation of 92% and thrombocytosis, characteristics of polycythemia vera. After chemotherapy, the patient relapsed with similar symptoms and lymph node cells of similar immature T phenotype. With a revised diagnosis of immature T cell lymphoma associated to a myeloproliferative disorder and polyglobulia, the patient received a combined treatment of Cyclophosphamide-Adriamycin-Vincristine-VM26-Prednisone. Two months later, the patient relapsed again. He received the first phase of induction of the BFM protocol, with partial clinical remission. Five months later, the patient returned with fever, polyadenopathy and splenomegaly. Lymph node cells showed again immature T cell phenotype. The patient was next treated with the m-BACOD scheme, with no response and progression of the disease and he died few days later due to massive bleeding and cardiorespiratory failure.

Adult↗

Detection of hepatitis B surface antigen (HBsAg) in peripheral blood mononuclear cells of patients with acute and chronic active hepatitis B.

Seventy five patients with acute and chronic active hepatitis (CAH) were studied by indirect immunofluorescence with monoclonal antibodies for the presence of hepatitis B surface antigen (HBsAg) on peripheral blood mononuclear cells (PBMC). The viral surface antigen was detected in the PBMC of all the patients with hepatitis B virus (HBV)-induced CAH and in acute patients with more than 2 months of evolution. No HBsAg was detected in the samples obtained from 12 normal controls or from 14 non-A, non-B CAH patients. Analysis of PBMC subsets revealed that HBsAg was present in non-T cells; dual fluorescence studies showed HBsAg on surface Ig-positive lymphocytes. The binding of anti-HBs monoclonal antibodies was higher than that of a goat anti-HBs serum, and the highest reactivity was observed with an antibody against the pre-S(2)-region sequence. Both HBsAg and hepatitis B core antigen (HBcAg) were also detected in lysates of PBMC by dot blot analysis.

Acute Disease↗

Expression of CD1 antigens by peripheral blood mononuclear cells from hepatitis B patients.

We have studied the expression of CD1 antigens on peripheral blood mononuclear cells (PBMC) from acute hepatitis B patients in order to analyse a possible role for CD1 antigens in hepatitis B virus (HBV) infection. Using immunofluorescence and the monoclonal antibodies which recognized CD1a, CD1b and CD1c molecules, we have shown that CD1 antigens were expressed on PBMC from acute hepatitis B patients but not from other acute and chronic liver disease. Dot blot analysis on nitrocellulose sheets of the lysates of the cells confirmed these observations. Cell fractionation and double-labelling experiments clearly demonstrated the CD1 antigens were expressed only on non-T cells. Furthermore, CD1 antigens were coexpressed with hepatitis B surface antigen (HBsAg) on the surface of Ig-positive cells. These results could indicate that CD1 expression may be associated with the lymphotropic effect of HBV.

Adolescent↗

Restriction fragment length polymorphism in HLA class II genes of Latin-American Caucasian celiac disease patients.

In the present study Latin-American celiac disease patients were analyzed for the frequency of certain HLA class II restriction fragment length polymorphisms in order to investigate whether they exhibited the normal associated alleles or showed unusual class II variants. A DPB/RsaI 4.0-kb fragment that was shown to be significantly increased among North Americans celiac disease patients of the DR3,DQw2 haplotype was found with similar frequency in Latin-American control and celiac disease individuals. A DPA/BglII 3.7-kb fragment previously shown to be increased among British celiac disease patients was also present with similar frequency among Latin-American control and celiac disease individuals. These results show that the frequency of the HLA-DP region-derived restriction fragment length polymorphisms linked to celiac disease differs between Caucasian populations of different ethnic backgrounds (Anglo-Saxon and Latin-American). On the other hand, DNA samples from 13 patients and 14 controls bearing the DR5/DR7 phenotype (which is significantly associated with celiac disease in Latin populations) were investigated for the presence of particular restriction fragment length polymorphisms disproportionally present in celiac disease individuals. No significant differences were found between controls and patients when the DNA was analyzed with 10 different restriction enzymes and probes for DRB, DQA, DQB, and DPB HLA class II sequences.

Alleles↗

Differential expression of CD25 and HC2 antigens on subtypes of acute myeloid leukemias.

The presence of CD25 and HC2 antigens in 66 different patients with acute myeloid leukemia (AML) was investigated. The expression of both antigens was observed in 32% of AML cells. Dual fluorescence staining experiments performed in 5 AML patient cells showed that CD25 and HC2 antigens were simultaneously expressed in a single cell. The expression of both antigens was mainly observed in the M4 and M5 subtypes of AML. Although immunopurified IL-2 was able to block the binding of anti-CD25 monoclonal antibody to the AML cells, the IL-2 receptor did not appear to be functional.

Antibodies, Monoclonal↗

[HLA and disease in Argentina. Serologic and genomic polymorphism].

In this report we discuss the results of the association of chronic active hepatitis (B virus) and coeliac disease with HLA class I and class II antigens, in patients of Latin American Caucasian origin. Evidence is presented showing that the alleles involved differ from those reported in other Caucasian populations of different ethnic background. Differences were observed both at the serology and at the DNA (RFLP) level. The relevance of these findings regarding the clinical implications as well as the molecular mechanisms involved in the associations are discussed.

Argentina↗

DNA polymorphism of the HLA-B35 gene associated to different HLA-C locus alleles.

Peripheral blood leukocyte DNA from 31 donors, previously typed as HLA-B35, was digested with EcoRV and analyzed by Southern transfer and hybridization to an HLA class I probe. Out of 31 HLA-B35 positive (+) individuals, 24 showed a 4.6-kb band, previously associated with the B35 allele by Cohen et al. (Proc Natl Acad Sci USA 80:6289-6292). The HLA-B35 allele has a strong linkage disequilibrium (70%) with the Cw4 allele. All samples having the 4.6-kb band corresponded to HLA-B35+, Cw4+ cells, whereas those lacking the band came from HLA-B35+, Cw4-negative (-) cells. Five HLA-B35-, Cw4+ samples were also studied and none showed the band. An HLA-B locus-specific probe gave a strong hybridization signal to this fragment, whereas an HLA-C locus-specific probe revealed different bands. The results suggest that the 4.6-kb fragment contains the B35 gene. Digestion with other restriction enzymes, located the polymorphic site to the 3' end of the gene. Analysis of 18 additional individuals with other specificities of the "4c" antigenic cluster (HLA-B18, B51, B52 and B53) showed that the EcoRV/4.6 kb-band was also present in 5/5 B52 cells and 4/4 B53 samples.

Alleles↗

Anti-class II antibodies in AIDS patients and AIDS-risk groups.

The specificity of anti-lymphocyte antibodies was evaluated in AIDS patients and in individuals at risk of AIDS [R-AIDS: male homosexuals (Ho) and haemophiliacs (He)]. Antibodies capable of inducing antibody-dependent cell-mediated cytotoxicity (ADCC) against non-T cells and lymphoblastoid cell lines (P3HR-1K and Raji) were detected in AIDS patients and in R-AIDS with positive or negative human immune deficiency virus (HIV) serology. Anti-class II antigen specificity was revealed by experiments in which class II antigens on target cells were blocked with monoclonal anti-class II antibody (DA6,231) and the cytotoxic reaction induced by patient's sera was abolished. In contrast, ADCC was not impaired by preincubating the target cells with anti-class I monoclonal antibody (W6/32). Prevalence of antibodies to non-T cells was confirmed by standard C-mediated microlymphocytotoxicity. However, with this technique anti-T lymphocyte cytotoxicity was also observed in three AIDS patients with haemophilia. R-AIDS peripheral blood mononuclear cells (PBMC) were also cytotoxic against autologous non-T cells, and lysis was slightly increased by sensitization of the target cells with autologous serum. In addition to ADCC and C-mediated cytotoxicity, the specificity of anti-lymphocyte antibodies was assayed by their ability to interfere the binding of fluorescein-labelled anti-class II (HLA-DR) and anti-class I (W6/32) monoclonal antibodies to PBMC, non-T cells, P3HR-1K and Raji. Anti-class II specificity was confirmed, and antibody titres tended to be higher in Ho than in He R-AIDS, using non-T cells and Raji as targets. Higher titres of anti-class II antibodies in the Ho group could play a role in the different susceptibility of HIV-infected Ho when compared to HIV (+) He to develop AIDS.

Acquired Immunodeficiency Syndrome↗

Differential expression of HLA-DR and DR-linked determinants on human leukemias and lymphoid cells.

Leukemic and normal hemopoietic cells were examined with the monoclonal anti-bodies DA2 and Genox 353 for the presence of HLA-DR and DR-linked (DC/MB) determinants, respectively. Although most non-T acute leukemias and leukemic cell lines expressed the monomorphic DR determinant detected by DA2, fewer than expected expressed the DR-linked polymorphic specificity detected by Genox 353. TdT+ lymphoid precursors from normal bone marrow were also DA2+ but Genox 353-. T cells and thymocytes which were DA2-, Genox 353- became DA2+, Genox 353+ after activation in vitro. Immunoprecipitation using DA2 and Genox 353 gave bands on polyacrylamide gel-electrophoresis which were of different molecular weights. In addition, DA2 could absorb out Genox 353 determinants from a cell lysate whereas Genox 353 could not absorb out DA2 determinants. It is concluded that DA2 and Genox 353 detect HLA-DR and DR-linked (DC1/MB1) determinants, respectively, and that these are differentially expressed on hemopoietic cells during differentiation.

Antibodies, Monoclonal↗

MHC specified lymphocyte activating and suppressor activating determinants in human mixed lymphocyte reactions.

We have shown (1) the presence of HLA-linked Sad/s on a homozygous typing cell (HTC), FPA (8W321). When we used it to type the P family, which included an HLA-B/DR recombinant sibling, its genes mapped towards the HLA-B-A end of the HLA haplotype separate from HLA-D/DR and was found to be associated with HLA-Bw35 homozygosity; (2) this same recombinant maps the C4 complement genes on the HLA-D/DR end of the chromosome away from HLA-B; (3) that the suppressor T cell subpopulation which was activated by the Sad of this consanguineous HTC FPA was left behind after separating the OKT4 positive cells with a monomorphic monoclonal anti-T-cell antibody (OKT4). These OKT4 positive cells reacted normally in MLC to the FPA Lad Fes 6; (4) that at least part of the genetic control of suppressor recognition is outside the HLA complex.

Chromosome Mapping↗

Precursor and effector phenotypes of activated human T lymphocytes.

In mice, thymus-derived lymphocytes are differentiated into functional subclasses by their cell surface antigens. The Ly 1 determinants are present on T cells with a helper function, whereas Ly 2 and Ly 3 antigens are expressed on the surface of lymphocytes with suppressor or cytotoxic functions. In man also, T-cell subsets have been identified using allo- and heteroimmune sera and, more recently, using monoclonal antibodies, which seem to identify helper and suppressor or cytotoxic subpopulations. The major histocompatibility system (MHS)-encoded Ia antigens belong to several polymorphic families of membrane associated glycoproteins originally found on B lymphocytes; however, they have also been shown to be markers for suppressor T cells in mice. Recent studies have shown that in both mouse and man, T cells activated by a mixed lymphocyte reaction or by mitogens become Ia+. Furthermore, some human T lymphoid cells, either freshly isolated from peripheral blood or after in vitro activation by lectins or alloantigens, possess suppressor properties. We report here the phenotype of a T suppressor-cell subpopulation which was induced in long-term culture of lymphoid cells after activation with phytohaemagglutinin (PHA). Our results suggest that a subset of T cells was progressively expanded over a period of 8 days in culture and that, with the expression on the surface of these cells of 'Ia-like' antigens, they acquired the capacity to suppress the proliferative response of syngeneic or allogeneic lymphocytes to alloantigens or mitogens.

Antigens, Surface↗