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A Termijtelen

Publications and source records attributed to A Termijtelen.

64 records · Page 4Linked to original sources

Cellology of HLA. 22. Heterogeneity of cellular reactions in negative HLA-D typing.

We have demonstrated that in more than half of the mixed lymphocyte reactions, proliferative reactions, in which responders were reacted against HLA-D-compatible homozygous typing cells, were significantly greater than zero. These reactions often masked the true HLA-D identity of the cells under test, as was subsequently shown by primed lymphocyte testing.

HLA Antigens↗

HLA restriction of non-HLA--A, --B, --C and --D cell mediated lympholysis (CML).

The aim of our study was to define target determinants other than those coded for by the classical HLA-A, -B, -C or -D loci which were responsible for killing in CML. In one of the families studied, strong evidence was found for the existence of a determinant coded for within the HLA region. CML was restricted to targets carrying the classical HLA-Bw35 and Cw4 determinants but the targets were neither HLA-Bw35 nor Cw4 themselves. We therefore concluded that this new HLA determinant was either the product of a new locus closely associated with HLA-B or that it was a product of the classical HLA-B locus which has not been recognized by serology.

Cytotoxicity Tests, Immunologic↗

B-cell antibodies, Ia-like determinants, and their relation to MLC determinants in man.

The HLA supergene is located in the 6th chromosome. Its position to the centromere and the position of a number of polymorphic isoenzymes has been elucidated. The HLA supergene codes not only for determinants present on all nucleated cells, but also for determinants present on B cells and absent from T cells and platelets. These determinants can be recognized by serology, and evidence is presented that some of them are coded for by a hither to unrecognized locus Ag, which is very closely linked to the MLC determinants of the D locus can be recognized with the help of the MLC test using unprimed cells, homozygous for the MLC determinants, so-called typing cells primed against one MLC determinant in the PLT test. So far, 8 MLC determinants have been recognized. Significant disease-association studies in different racial groups appear to be especially informative. They already indicate that the association found so far must rest on different mechanisms. Whether some of them could be caused by partial deficiency for one or more of the complement factors remains to be proven.

Animals↗

Genetic aspects of canine mixed leukocyte cultures.

Recent data stress the importance of matching donor and recipient of an organ graft for both the serologically defined (SD) and lymphocyte-defined (LD) determinants. To allow experimental evaluation of the effect of these SD and LD structures in a noninbred experimental animal, mixed leukocyte culture tests were performed between SD identical and nonidentical dogs to clarify the LD system in these animals. The results of these experiments can be summarized as follows: (a) In the dog there is a LD locus distinct from the known SD loci, which in all probability is localized outside the first (SD-1) series locus on the chromosome. (b) The crossing-over frequency between the SD and LD loci on the chromosome is low. (c) Studies in SD identical unrelated dogs and random unrelated dogs show an apparent high linkage disequilibrium between SD and LD loci. (d) The LD system in dogs is polymorphic.

Animals↗