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Biomedical subjects

H von Koskull

Publications and source records attributed to H von Koskull.

At least 19 recordsLinked to original sources

Linkage to Xq28 in a family with nonspecific X-linked mental retardation.

Linkage analysis was performed in a family with nonspecific X-linked mental retardation (MRX). Affected individuals had no clinical characteristics other than mental retardation. Linkage was detected to the marker loci DXS477, DXS465, DXS52, DXS15 and F8C with maximum lod scores of 1.70, 1.32, 2.52, 1.70, and 1.09, respectively (theta = 0.0). The results strongly indicate that the gene for mental retardation in the family studied maps close to DXS52.

Female

Trisomy 12 mosaicism in amniocytes and dysmorphic child despite normal chromosomes in fetal blood sample.

Trisomy 12 mosaicism (44 per cent) was detected prenatally in cultured amniocytes. A cordocentesis was performed to confirm the result. Only normal cells were found in the fetal blood sample. The fetus was estimated to be at a low risk of having a chromosomal abnormality and the pregnancy continued. Eight days after birth, a congenital heart defect was detected in the child. Several dysmorphic features were also evident. Further karyotyping of different tissues revealed normal blood and urinary cells but trisomic cells in the placenta (100 per cent) and in skin fibroblasts (25 per cent). The child died at 5 weeks of age. In this case, the fetal blood sample failed to reveal the real chromosome constitution of the fetus.

Amniocentesis

First trimester diagnosis of Wolman's disease.

Wolman's disease was diagnosed in the first trimester of pregnancy by the direct demonstration of acid lipase deficiency in chorionic villi. The diagnosis was confirmed by studies on cultured chorionic villus cells and fetal skin fibroblasts. Acid lipase activity was assayed with both 4-methylumbelliferyl-palmitate and radiolabelled cholesterol oleate as substrates. The higher specificity of the enzyme for the latter, natural, substrate makes it superior in prenatal diagnosis.

Chorionic Villi Sampling

Induction of cytokeratin expression in human mesenchymal cells.

We studied the phenotypic features of some typical human mesenchymal cells, including decidual stromal cells and adult and fetal fibroblasts under different cell culture conditions by using antibodies to intermediate filament proteins and desmoplakins. In cell culture, the decidual stromal cells rapidly acquired typical fibroblastoid appearance with abundant arrays of vimentin filaments while the cytokeratin-positive epithelial cells, occasionally found in typical epithelioid colonies, lacked vimentin positivity and showed desmoplakin positivity. Within a few days, many of the stromal cells started to present cytokeratin positivity when cultured either in Condimed or in Chang medium. The cytokeratin positivity was first detected in small, scattered cytoplasmic dotted fibrils or in perinuclear dotlike aggregates with fibrillar projections. Later, denser cytokeratin-positive fibrillar arrays could also be seen in stromal cells, which lacked desmoplakin positivity as judged by two monoclonal antibodies. Decidual stromal cells were also cloned and in five out of ten clones some of the cells acquired a similar cytokeratin positivity when transferred into Chang or Condimed medium. Immunoblotting results indicated that cytokeratins 8, 18, and 19 can be found in these cultures. Similar cytokeratin positivity could also be seen in the same culture conditions in cultured fetal fibroblasts from skin, chorionic villi, and lung but not in young or adult skin fibroblast cultures. The present results suggest that decidual stromal cells as well as some embryonal mesenchymal cells can acquire epithelial differentiation in vitro as judged by the emergence of cytokeratin proteins. This ability appears to be lost in the corresponding adult cell. The results furthermore suggest that cytokeratin fibrils can be organized in the cytoplasm without an apparent organization center and that neither the appearance of desmoplakins nor the formation of cell-to-cell contacts are required for cytokeratin filament assembly.

Adult

Prenatal diagnosis of X-linked chronic granulomatous disease using restriction fragment length polymorphism analysis.

Prenatal diagnosis of X-linked chronic granulomatous disease (CGD) was performed with restriction fragment length polymorphism (RFLP) analysis using probes flanking the gene. The male fetus and an affected male displayed the same haplotype for RFLPs belonging to six linked loci extending from DXS164 to DXS7, which encompass the CGD locus, and for which the mother was heterozygous. Diagnosis of an affected fetus was confirmed after termination of the pregnancy by the study of fetal granulocytes using the nitroblue tetrazolium reduction test. In informative families prenatal diagnosis of CGD can be made earlier by RFLP analysis than by fetal blood sampling.

DNA

Localization of insulin-like growth factor-binding protein and endometrial beta-lactoglobulin in cultured decidual and chorionic villus cells.

Immunofluorescence staining was used to localize two 'endometrial' proteins, insulin-like growth factor-binding protein and human beta-lactoglobulin homologue, in cultured cells of chorionic villi and decidua. Both cultured cell types were positive for each protein. These results indicate that immunohistochemical detection of these two proteins cannot be used to distinguish between cultured chorionic villus and decidual cells.

Carrier Proteins

Cytoskeletal markers and specific protein production in cells cultured from human first and third trimester placentae.

In primary, short-term cultures derived from first and third trimester placentae, 60 to 90 and 70 to 95%, respectively, of the total cell population positively stain for cytokeratin intermediate filaments, typical of epithelial, i.e. trophoblastic cells. The rest of the cells express only vimentin intermediate filaments and thus are of mesenchymal origin. Only the cytokeratin-positive cells express human chorionic gonadotropin (hCG), whereas both the epithelial and the mesenchymal cells stain positively for pregnancy-specific beta-1-glycoprotein (SP1). Cytokeratin-negative and vimentin-positive cell overgrowth is observed in cultures derived from first and early third trimester placentae. The cells constituting the monolayer thus formed are of fetal origin as evidenced by the expression of Y-body in over 80% of them. The cultured cells synthesize and secrete hCG and SP1. The activity of these trophoblast-specific functions is inversely proportional to the gestational age of the placenta. Production of specific proteins and expression of intermediate filaments are proposed as criteria for defining the nature and origin of placental cells in primary, short-term cultures.

Chorionic Gonadotropin

Zinc and alpha-fetoprotein in amniotic fluid from early pregnancies with fetal malformations.

Zinc and alpha-fetoprotein concentrations were quantitated in second-trimester amniotic fluid from 111 normal pregnancies and 29 pregnancies with various fetal malformations. The zinc level varied between 0.3 and 4.0 mumol/L (median 1.3) in the normal samples and between 1.8 and 17.9 mumol/L (median 5.0) in cases with malformations. The level was above 2.5 times the normal median in 23 of the 29 (79%) gestations with the malformations. Amniotic fluid zinc and alpha-fetoprotein levels showed a positive correlation (r = 0.78), and the alpha-fetoprotein level was elevated in all gestations with fetal disorders and elevated zinc levels, as well as in five of the six cases with fetal defects but normal zinc concentrations. The elevation of zinc was more marked than that of alpha-fetoprotein in three cases of fetal malformations. Five samples were false positive on alpha-fetoprotein assay but contained normal zinc levels. Removal of alpha-fetoprotein from amniotic fluid had no effect on the zinc concentration, indicating that zinc is not bound to amniotic fluid alpha-fetoprotein.

Adult

Amniotic fluid laminin and type IV collagen in normal and pathological pregnancies.

Specific radioimmunoassays for the fragment P1 of human laminin and the 7-S collagen domain of human type IV collagen were used to quantify these basement membrane proteins in second trimester amniotic fluid samples from 21 normal and 41 pathological pregnancies, the latter group being defined by elevated amniotic fluid alpha-foetoprotein (AFP) or abnormal foetal karyotype, or both. The mean laminin P1 concentration in the normal 15 to 18-wk pregnancies was 36 micrograms/l (range 10-77) and that of the 7-S collagen was 46 micrograms/l (range 7-152). The molecular size of the antigens in amniotic fluid from both normal and pathological pregnancies, when assessed by gel filtration was very large, probably representing intact laminin and type IV collagen. Pathological pregnancies, e.g. cases of Turner syndrome, Meckel syndrome and anencephaly often had elevated amniotic fluid laminin and type IV collagen concentrations. A weak, but nevertheless significant, correlation was found between the amniotic fluid laminin and type IV collagen concentrations and also between type IV collagen and AFP, but none between laminin and AFP. In eight pregnancies with foetuses suffering from the congenital nephrotic syndrome of the Finnish type, a genetic disease assumed primarily to involve some component of the glomerular basement membrane, the amniotic fluid concentrations of both laminin and type IV collagen were within normal limits in spite of an elevated amniotic fluid AFP.

Amniotic Fluid

Improved technique for the expression of fragile-X in cultured amniotic fluid cells.

An improved technique for inducing fra(X) expression in cultured cells was obtained by using diazepam for mitotic arrest and 5-fluorodeoxyuridine (FUdR) for the induction of fra(X) expression. The method was developed using cultured fibroblast and urinary cells from fra(X) patients. Prenatal studies were performed on cultured amniotic fluid cells in five pregnancies at risk for fra(X). In two cases the cultured cells showed a 46,XY, fra(X) karyotype. One of the pregnancies was terminated and the diagnosis was confirmed by chromosome studies on several fetal tissues including chorionic villi and by histopathologic changes in the lymphatic vessels of the fetal testes. The fra(X) was also demonstrated in chorionic villi in a case in which amniotic fluid cells were not studied. Chorionic villi were isolated after a spontaneous abortion, the cultured cells had a 45,X karyotype and in addition 5% of the cells were fra(X) positive.

Adult

Cultured human amniotic fluid cells characterized with antibodies against intermediate filaments in indirect immunofluorescence microscopy.

Cells cultured from second trimester human amniotic fluid were characterized in indirect immunofluorescence (IIF) microscopy using specific antibodies against the subunit proteins of different types of cytoskeletal intermediate filaments. Most of the amniotic fluid cell cultures contained only epithelial cells as indicated by the positive keratin-fluorescence in IIF. Five distinct types of keratin-positive cells could be characterized. A dominating cell type (E-1) in most cultures were rapidly proliferating epithelial cells, previously called amniotic fluid cells (AF-cells). These cells showed a fibrillar cytoplasmic fluorescence both with keratin antibodies and with antibodies against vimentin, the fibroblast type of intermediate filament protein. E-1 cells did not show the typical cell-to-cell arrangement of keratin fibrils between the adjacent cells, a characteristic previously found in most cultured epithelial cells. Most of the cultures also contained large epitheloid cells (E-2), showing a fine fibrillar cytoplasmic organization of both keratin- and vimentin filaments, clearly different from that seen in E-1 cells. Several cultures contained two additional epithelial cells both showing the typical cell-to-cell arrangement of keratin fibrils (E-3 and E-4). These two cell types could be distinguished because of their distinct difference in size. E-4 cells typically grew as small cell islands among other epitheloid cells. Amniotic fluid cell cultures occasionally contained also large multinucleated cells (E-5), which appeared to contain large amount of fibrillar keratin. Fibroblastic cells, identified by their decoration only with antibodies against vimentin, were rarely found in amniotic fluid cell cultures. Interestingly, in such cultures some cells with a fibroblastoid appearance were identified as epithelial cells on the basis of the positive keratin-fluorescence. The results show the suitability of IIF with cytoskeletal antibodies in characterization of heterogenous cell populations and indicate that normal amniotic fluid cell cultures mostly contain epithelial cells.

Amniotic Fluid

Distribution of spontaneous chromosome breaks in human chromosomes.

Localization of chromosome breaks in human chromosomes was analyzed in 264 peripheral lymphocyte cultures. Three hundred and sixty-nine chromosome breaks could be exactly localized to a chromosome band or region of the Paris Conference nomenclature. The distribution of breaks in the chromosome regions was found to be nonrandom. Chromosome 3 alone had 23% of the breaks and region 3p2 had 13% of the total breaks. Some other chromosome regions, such as 5p1, 9q1, 14q2, and 16q2 also displayed clustering of breaks. Sex chromosomes had less breaks than expected. Spontaneous chromosome breaks were almost exclusively located in the lightly stained G bands.

Chromosome Aberrations