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Platelets as immunogens.

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A H Waters. 1994. Platelets as immunogens.. https://doi.org/10.1111/j.1423-0410.1994.tb04558.x

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Molecular identification of T cells that respond in a primary bulk culture to a peptide derived from a platelet glycoprotein implicated in neonatal alloimmune thrombocytopenia.

Neonatal alloimmune thrombocytopenia induced by the human platelet alloantigen 1a (HPA1a) is characterized by generation of alloantibodies by a mother who is homozygous for the HPA1b alloantigen and almost always HLA-DRB3*0101. The disease is viewed as B cell mediated but the linkage with HLA is indicative of a role for T cells. The HPA1a and HPA1b allotypes are defined, respectively, by Leu and Pro at amino acid 33 of the beta-chain of the platelet integrin GPIIbIIIa (alpha(IIb)beta3). Under the assumption that the same polymorphism may control both the B cell epitope and constitute the MHC-bound peptide, we restimulated PBMC from a woman with an affected child with a synthetic peptide from this polymorphic region. Molecular analysis of the responding T cell repertoire identified two T cells which predominated in cultures stimulated with the alloantigen peptide and which were absent in cultures with the autoantigen peptide. In spite of the use of different V families, sequence of the CDR3 region of the T cell receptor (TCR) beta-chain revealed the presence of a shared motif, L-P-S/T. Oligonucleotide probes specific for the CDR3 sequence indicated that these T cells were present in the PBMC at the highest levels immediately after delivery of the affected infant and their frequency dropped at later times.

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A rapid genotype assay for Pla haplotypes.

The method described here results in simple visual analysis of 1, 2, or 3 ethidium bromide-stained bands corresponding to the PlA1, PlA2 or PlA1/A2 phenotypes, respectively. The amplification primers, designed to yield a 711bp product which encompasses exon 2 and substantial intronic sequence both 5' and 3' of the exon enable exquisite resolution of the restriction enzyme digestion products which define the alleles. In addition to prediction of fetal risk of neonatal alloimmune thrombocytopenia using this method, an ethnically heterogeneous pool of platelet donors was screened for the platelet antigen PlA (HPA-1) and gave unequivocal results which should be useful for platelet matching.

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Therapy with intravenous immunoglobulin G (ivIgG) during pregnancy for fetal alloimmune (HPA-1a(Zwa)) thrombocytopenic purpura.

We have evaluated the effect of maternal intravenous immunoglobulin G (ivIgG) treatment on platelet counts in fetal alloimmune thrombocytopenia. Seven patients were studied. All of them were multiparous women who had been immunized against the HPA-1a antigen during previous pregnancies and had given birth to at least one severely thrombocytopenic infant. In this study, umbilical blood collection was performed first at the 20th week of gestation and repeated 2-13 times (mean 6 times), depending on the degree of fetal thrombocytopenia. Fetal platelet counting was combined with intrauterine transfusion of 20-30 ml of HPA-1a-negative platelet concentrates to prevent bleeding following umbilical cord puncture. Initial fetal platelet counts ranged from 10,000 to 91,000 per microliters. Maternal treatment with ivIgG (1 g per kg body weight; mean dose 70 g) was given once a week over 7 weeks. In five of seven cases, the basal platelet count did not rise and in two of these cases, it decreased during maternal ivIgG treatment. In one fetus, the baseline platelet count increased from 10,000 to 35,000 per microliters during ivIgG, and in another fetus from 23,000 to 64,000 per microliters. Our observations suggest that ivIgG has no definite benefit for fetal alloimmune thrombocytopenia. Since platelet counts can be very low, careful fetal monitoring by umbilical blood sampling is required. Frequent platelet transfusions in short intervals may be necessary to increase platelet counts in extremely thrombocytopenic fetuses.

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