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Preimplantation genetic diagnosis with HLA matching.

Preimplantation genetic diagnosis (PGD) has recently been offered in combination with HLA typing, which allowed a successful haematopoietic reconstitution in affected siblings with Fanconi anaemia by transplantation of stem cells obtained from the HLA-matched offspring resulting from PGD. This study presents the results of the first PGD practical experience performed in a group of couples at risk for producing children with genetic disorders. These parents also requested preimplantation HLA typing for treating the affected children in the family, who required HLA-matched stem cell transplantation. Using a standard IVF procedure, oocytes or embryos were tested for causative gene mutations simultaneously with HLA alleles, selecting and transferring only those unaffected embryos, which were HLA matched to the affected siblings. The procedure was performed for patients with children affected by Fanconi anaemia (FANC) A and C, different thalassaemia mutations, Wiscott-Aldrich syndrome, X-linked adrenoleukodystrophy, X-linked hyperimmunoglobulin M syndrome and X-linked hypohidrotic ectodermal displasia with immune deficiency. Overall, 46 PGD cycles were performed for 26 couples, resulting in selection and transfer of 50 unaffected HLA-matched embryos in 33 cycles, yielding six HLA-matched clinical pregnancies and the birth of five unaffected HLA-matched children. Despite the controversy of PGD use for HLA typing, the data demonstrate the usefulness of this approach for at-risk couples, not only to avoid the birth of affected children with an inherited disease, but also for having unaffected children who may also be potential HLA-matched donors of stem cells for treatment of affected siblings.

Adrenoleukodystrophy↗

The dynamics of antidonor antibody formation early after clinical kidney transplantation measured by flow cytometry and microcytotoxicity test.

To study the dynamics of antidonor sensitization 92 patients were monitored for antibodies against donor T and B spleen lymphocytes before transplantation, within the first month after transplantation and 3 months after transplantation. Patients were monitored for donorreactive antibodies (DRA) of immunoglobulin G (IgG), IgA, and IgM isotype using flow cytometry (FC) and the standard microcytotoxicity test (CYT). Graft function was followed for at least 2 yrs, 51% of patients for 3 yrs after transplantation. Within the first month after transplantation the percentage of patients with antidonor sensitization detected by FC rose dramatically, so that the overall sensitization rate increased from 28 (30.4%) of 92 patients prior to transplantation to 63 (68.5%) of 92 patients after transplantation. Whereas preoperatively only one isotype (IgM for T lymphocytes, IgG for B lymphocytes) and only one target cell type (either T or B lymphocytes) dominated, the postoperative patterns of positive FC results were more variable regarding target and isotype, whereby FC-DRA of the IgA class substantially contributed. Appearance of donor-directed antibodies early after kidney transplantation is a frequent event. In our cases, sensitization with FC-DRA per se seemed not to be detrimental to the graft outcome (p > 0.05) but CYT-DRA did resulting in a significant poor graft outcome 3 months after transplantation (p < 0.001).

Antibody Formation↗

Human platelet alloantigen (HPA)-5a/b mismatch decreases disease-free survival in unrelated bone marrow transplantation.

Matching of human platelet alloantigen (HPA) systems 2-6 was retrospectively investigated in 715 unrelated bone marrow transplantations. Of the five HPA systems studied, HPA-5 mismatching was found to have a significant effect on the disease-free survival rate of recipients following transplantation in the HLA-A, -B, -C, and -DR allele-matched donor-recipient pairs. The effect of the HPA-5 mismatch was most significant in the recipient group possessing the HLA haplotype A*2402-B*5201, which is a highly frequent haplotype among the Japanese population. However, the probability of development of acute graft-versus-host disease (GVHD) was not increased significantly by the HPA-5 mismatching. These findings suggest that the HPA-5 mismatching decreases the recipient's survival by a mechanism different from that in the case of mismatching of minor antigens found often in transplant recipients developing GVHD.

Antigens, Human Platelet↗

Non-MHC antigens and their relative resistance to immunosuppression after corneal transplantation.

We have used a high responder rat model to examine the role that non-MHC antigens play in corneal graft rejection. Recipients were backcross animals derived from a cross between two inbred strains, which mimicked the human outbred population in that donor and recipient could be matched or mismatched for MHC antigens, while non-MHC mismatches were variable and unknown. All mismatched grafts and 87% of matched grafts were rejected (median survival 11 and 17 days respectively). The high incidence of rejection of matched grafts indicates that several independently segregating non-MHC genes play a role in rejection. Moreover, the immune response to matched grafts appeared resistant to immunosuppression, suggesting that matching does not permit reduced dosage of immunosuppressants. A mechanism is discussed whereby matching at the class II locus may enhance presentation of mismatched histocompatibility antigens or viral peptides derived from infected graft cells, thereby prejudicing graft survival.

Animals↗

Comparison of HL-A typing with NIH trays and the NIH technique with typing by the fluorochromasia cytotoxicity assay.

A comparison of HL-A phenotypes determined with plates containing predispensed typing sera supplied by the NIH Serum Bank with phenotypes determined by the fluorochromasia cytotoxicity assay using local reagents showed that the NIH plates (as dispensed in 1972) had an insufficient number and variety of typing sera. Using NIH trays, it was difficult to detect HL-A9 and W19, both of which specificities are now known to have subtypes. The NIH trays also appeared to detect more HL-A antigens than were consistent with the current theory of two segregant series, each expressing a maximum of two antigens. The excess antigens could not be comparatively evaluated in view of the small number of sera defining each. With the NIH technique, it was impossible to interpret the reactions if the preparation had too many dead cells. A high proportion of dead cells was occasionally noted when lymphocytes had been previously frozen or obtained from lymph nodes. When the NIH and fluorochromasia techniques were compared using the same antisera and fresh lymphocytes, they proved equivalent in sensitivity.

Cytotoxicity Tests, Immunologic↗

Intrathymic alloantigen-mediated, tolerant, completely major histocompatibility complex-mismatched mouse hearts are specifically rejected by adoptively transferred anti-class I L(d+)-specific 2C cells.

BACKGROUND: Tolerance to cardiac allografts can be induced in mice and rats by the injection of donor alloantigen into the thymus in combination with a CD4 T-cell-depleting antibody. CD8(+) cells in these animals are hyporesponsive to graft-specific alloantigens. Most of the CD8(+) T cells in the transgenic 2C mouse express a T-cell receptor specific for the class I major histocompatibility complex L(d+) locus. This study was designed to determine whether the adoptive transfer of these 2C T cells could precipitate rejection of a tolerant, completely major histocompatibility complex-mismatched L(d+) or L(d-) heart. METHODS: C57BL/6 mice (L(d-)) were given 10 x 10(6) cells of BALB/c (L(d+)) or dm2 (BALB/c background lacking L(d) [L(d-)]) splenocytes intrathymically and GK1. 5 (10 mg/kg) intraperitoneally. Twenty-one days later, BALB/c or dm2 hearts were transplanted. On the day of transplantation or after long-term allograft acceptance, recipients received naive 2C cells or 2C cells sensitized by in vitro mixed lymphocyte culture with BALB/c (L(d+)). RESULTS: Mean survival time of BALB/c cardiac allografts in untreated C57BL/6 mice was 7.3 days, although 73% of the mice that were pretreated with BALB/c splenocytes IT plus GK1.5 accepted the donor antigen-specific heart allografts indefinitely. All recipients that were pretreated with the intrathymic plus GK1.5 and that were injected with naive 2C cells at the time of heart transplantation experienced rejection of the BALB/c (L(d+)), but not the dm2 (L(d-)) hearts. In contrast, naive 2C cells could not reject tolerant (>30 days acceptance) BALB/c (L(d+)) hearts. 2C cells sensitized in vitro against L(d) were able to reject established BALB/c hearts but could not reject the L(d-) dm2 hearts. CONCLUSIONS: L(d)-specific 2C T-cell receptor transgenic T cells that are adoptively transferred to recipients will precipitate the rejection of accepted hearts that express class I L(d+) in mice rendered tolerant by an intrathymic injection of alloantigen plus anti-CD4 monoclonal antibodies.

Adoptive Transfer↗

Consequent intrafamilial immunization for DL-A haplotyping in canines.

A procedure of intrafamilial immunization is described for production of antisera recognizing DL-A haplotypes. In a colony consisting of 1 sire, 6 bitches, and 67 offspring all haplotypes could be accurately allocated. In the colony the observed reaction frequencies of the antisera are in agreement with mendelian codominant inheritance. Mixed lymphocyte culture tests confirmed the accuracy of the serologic typing and the presence of homozygous individuals within the colony. Further evidence is presented supporting the presence of two or more subloci within the DL-A system. Colonies of canines such as the one described should provide a sensitive system for evaluating interaction between serologic DL-A typing, MLC reactivity, and immune response genetics in a nonrodent species which is not highly inbred.

Animals↗

One-way nonstimulation of mixed leukocyte culture in dog families.

Fifteen dog families were studied in mixed leukocyte culture. In eight families of seven different breeds, one-way nonstimulation in mixed leukocyte culture was observed. This could be explained by lymphocyte-defined (LD) homozygosity in most instances. In one family, an inclusion phenomenon was postulated, and in another, a deletion. LD homozygotes can serve as reference for LD typing and can also help elucidate the relative role of the LD locus for transplantation of organs.

Animals↗