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S Jenisch

Publications and source records attributed to S Jenisch.

23 records · Page 2Linked to original sources

Cross-matches on donor cadaver retinal pigment epithelial cells in corneal risk patients.

BACKGROUND: Allografts can be rejected either through the antibody-mediated or cellular pathways. The objective of this study was to look at the extent of antibody formation in patients awaiting re-keratoplasty using cross-matches on cadaver retinal pigment epithelial (RPE) cells. METHODS: Cadaver RPE cells were derived by trypsin digestion from donor eyes (n = 1200). After 3 days of cell cultivation, the cells were adherent and began to lose their pigment. By day 7 most cells were clear and grew as a polygonal monolayer. MHC class I expression by RPE cells was studied by the W6/32 (anti-HLA-A, B, C) monoclonal antibody (MoAb) and that of class II (HLA-DR) by the 136 MoAb. Normal RPE cells express few class I and no detectable class II antigens. For the induction of MHC expression, cells were subsequently stimulated with 250 U/ml of recombinant gamma-interferon for 5 days. Cells were used for tissue typing and also for cross-matches with recipient serum. Cross-matches were subsequently performed and measured by flow cytometry. RESULTS: Both class I and class II antigens were strongly enhanced, as could be shown by immunohistochemical staining. Some 20% of those patients awaiting rekeratoplasty (n = 60) were positive for anti-HLA antibodies. In one case anti-DR3 antibodies were detected in a recipient who had had several rejection episodes after keratoplasty. CONCLUSIONS: RPE cells are not only useful for cadaver post-mortem HLA typing but also for donor-specific cross-matches. The degree of antibody formation after keratoplasty in rejecting patients was, however, low. This may imply that anti-HLA antibodies are not the major cause of corneal graft loss after keratoplasty.

Antibodies, Monoclonal↗

Glass slide smears are a suitable source for RT-PCR-based analysis of chromosomal aberrations in leukaemias.

The polymerase chain reaction (PCR) is a well-established method to detect cytogenetic abnormalities. The handling of fresh specimens is difficult, therefore a method to use smears of blood or bone marrow as a source would be advantageous. Furthermore, such a technique would give the opportunity to investigate retrospectively bone marrow smears in leukaemias without cytogenetic results. The aim of the present study was to investigate the influence of staining procedures and laboratory handling of smears. We chose CML cases as a model. We demonstrated that smears are a suitable source for PCR without loss of information caused by previous routine laboratory handling.

Base Sequence↗

Scanning chromosome 17 for psoriasis susceptibility: lack of evidence for a distal 17q locus.

Evidence for a genetically heterogeneous psoriasis susceptibility locus on distal human chromosome 17q has recently been reported [Science 1994;264:1141]. Making use of an independently ascertained collection of 24 multiplex psoriasis kindreds, we have performed a genotyping scan of chromosome 17 using 12 microsatellite markers and analyzed the data using parametric (lod score) as well as novel nonparametric methods. Pairwise lod scores revealed no evidence for linkage to the previously implicated marker D17S784 under any of eight models varying in mode of inheritance, penetrance, and sporadic cases. Homogeneous linkage to D17S784 could be excluded under all four autosomal dominant models tested (Z < - 5.8 at theta = 0.05), and there was no evidence for genetic heterogeneity. All other chromosome 17 markers tested also failed to detect evidence for linkage in any of the kindreds under either a dominant or a recessive model. Although further analysis using affected sib pair methods provided no statistically significant evidence for linkage to any chromosome 17 marker, a cluster of three distal 17q loci displayed a trend towards greater than expected allele-sharing values (observed/expected = 1.10-1.14). These results do not formally confirm the existence of a psoriasis susceptibility locus on the distal long arm of human chromosome 17, but are suggestive of its possible involvement under a polygenic model, warranting its further investigation in familial psoriasis.

Adult↗