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PubMed · 8516125

Looking after Gemma.

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P Illingworth. Looking after Gemma.. https://pubmed.ncbi.nlm.nih.gov/8516125/

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The maternal insulin-like growth factor (IGF) and IGF-binding protein response to trisomic pregnancy during the first trimester: a possible diagnostic tool for trisomy 18 pregnancies.

Many lines of evidence point to an important role for the insulin-like growth factors (IGFs) in embryonic and fetal growth in human pregnancy. The bioavailability of IGFs is modulated by IGF-binding proteins (IGFBP-1 to -6), whose permissive or inhibitory actions are regulated in part by posttranslational modification. In second and third trimester pregnancies, maternal IGFBP-1 is elevated in preeclampsia and intrauterine growth retardation. In the first trimester, trisomic pregnancies result in derangement of maternal serum levels of peptides, including hCG beta and pregnancy-associated plasma protein A. Trisomy 18 is characterized by growth failure in the first trimester, whereas trisomy 21 is not; thus, if maternal serum levels of IGFs and IGFBPs reflect fetal growth, changes specific to trisomy 18 may be expected. We report maternal serum levels of IGF-I, IGF-II, and IGFBP-1,-2, and -3; IGFBP-1 phosphorylation; and IGFBP-3 proteolysis in pregnancies (n = 139) complicated by trisomy 18 or trisomy 21 compared with those in normal controls. Maternal IGF-I, IGF-II, and IGFBP-3 showed no significant difference between fetuses with a normal karyotype and those with trisomy 18 or 21. The mean IGFBP-1 level was significantly higher and the mean IGFBP-2 level was lower in fetuses with trisomy 18 compared with normal fetuses [108.8 +/- 6.1 vs. 36.7 +/- 1.9 micrograms/L (P = 0.0001) and 81.2 +/- 5.5 vs. 206.1 +/- 10.2 micrograms/L (P = 0.0001), respectively]. There was no significant difference between the trisomy 21 and normal groups. The reduction in IGFBP-2 was confirmed by Western ligand and immunoblotting, and there was no evidence of variation in lower mol wt products to suggest differential proteolysis. IGFBP-1 phosphoforms and IGFBP-3 proteolysis were not significantly different between groups. The finding of altered maternal serum levels of IGFBP-1 and IGFBP-2 specific to pregnancies complicated by trisomy 18 suggests that these binding proteins may be important mediators of fetal growth in the first trimester, and the clear differences in the ratio of IGFBP-1 to -2 may serve as an additional diagnostic marker for trisomy 18 pregnancies.

Chromosomes, Human, Pair 18

Pattern of malformations in the axial skeleton in human trisomy 18 fetuses.

We examined and described the development and abnormalities of the axial skeleton in 10 human trisomy 18 fetuses. Whole-body radiographs and radiographs of midsagittal tissue blocks of the cranial base and the spine were studied. In 3 fetuses no spinal radiographs were available. Seven osseous regions or fields along the body axis were analyzed, four in the spine, and three in the cranial base and nasal bones. Malformations occurred in the occipital field in all fetuses. This was a characteristic notching, either unilateral or bilateral, of the basilar part of the occipital bone. Nasal bones were abnormal in 8 cases, either absent or hypoplastic. Malformations were found in the thoracic and/or lumbosacral field in 7 fetuses. A single abnormality was found in the cervical spine in one fetus. The pattern of axial skeletal malformation in trisomy 18 fetuses recorded in the present study has not been described previously. Axial skeletal radiography should be included in autopsies of fetuses when chromosome disorders are present or suspected. The methods applied here are unaffected by autolysis.

Chromosomes, Human, Pair 18

DPC4 gene in various tumor types.

We recently identified a novel tumor-suppressor gene, DPC4, at chromosome 18q21.1 and found that both alleles of DPC4 were inactivated in nearly one-half of the pancreatic carcinomas. Here, we analyzed 338 tumors, originating from 12 distinct anatomic sites, for alterations in the DPC4 gene. Sixty-four specimens were selected for the presence of the allelic loss of 18q and were further analyzed for DPC4 sequence alterations. An alteration of the DPC4 gene sequence was identified in one of eight breast carcinomas and one of eight ovarian carcinomas. These results indicate that whereas DPC4 inactivation is prevalent in pancreatic carcinoma (48%), it is distinctly uncommon (< 10%) in the other tumor types examined. The tissue restriction of alterations in DPC4, as in many other tumor-suppressor genes, emphasizes the complexity of rate-limiting checkpoints in human tumorigenesis.

Chromosomes, Human, Pair 18