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Biomedical subjects

E Raimondi

Publications and source records attributed to E Raimondi.

At least 55 records · Page 3Linked to original sources

Characterization of an X;X translocation by cytological analysis and in situ hybridization.

An X;X chromosomal translocation was ascertained by conventional cytogenetic analysis in a phenotypically normal woman with secondary amenorrhea. In situ hybridization was performed with previously mapped X-specific DNA sequences to study the rearrangement at the molecular level. The results allowed us to demonstrate that the subject is monosomic for the distal region of the short arm of the X and trisomic for the distal region of the long arm.

Adult↗

[Asthenopia and objective ophthalmological findings in a population of 2058 VDT operators in Lombardy].

A large population of 2058 VDT operators from all compartments in Lombardia of a large national company was studied. An "ergophthalmological" questionnaire was administered to all subjects, followed by an ophthalmological-orthoptic examination. Ametropias showed a prevalence of 51.9%; the most common refractive defect was myopia followed by astigmatism and hyperopia. Heterophorias with bad or mediocre compensation had a prevalence of 4.1 and 11% respectively. The study of symptoms showed a frequency of 23.5% of intense asthenopic complaints and 21.1% of less severe and less frequent symptomatology. Asthenopia was significantly correlated (chi square) with sex, VDT exposure, refraction, presbyopia, and decompensated heterophorias.

Adult↗

Isolation and characterization of a family of sequences dispersed on the human X chromosome.

During a systematic search for X-specific sequences we isolated a DNA fragment (called G1.3) that hybridizes to six further homologous X-specific genomic fragments that map to at least four different regions of the human X chromosome. Genomic segments of 11-30 kb (called G1.3 a, b, c, d, and e or DNF22S1 to DNF22S5) have been subsequently cloned for five of the seven repetitions and characterized by restriction mapping. Single-copy sequences have been used to analyze homology between cloned repetitions, to confirm X specificity, and to regionally localize the repetitions. Sequence homology between members of this family seems to be very high (80-90%) and to extend over at least 5 to 12 kb. In situ hybridization and Southern blotting experiments with a panel of human-rodent hybrid cell lines demonstrated that four of the cloned sequences map to three different regions within Xp21.2-pter and the fifth one (G1.3c) maps to Xq28. The family is present with the same complexity and X specificity in macaques (20-30 x 10(6) years divergence with man), whereas no related sequences were detected in the mouse. To our knowledge small families of dispersed chromosome-specific sequences have been described only for the human Y chromosome. The possible functional or evolutionary significance of this family is discussed.

Animals↗

Multipoint genetic mapping of the Xq26-q28 region in families with fragile X mental retardation and in normal families reveals tight linkage of markers in q26-q27.

The q26-q28 region of the human X chromosome contains several important disease loci, including the locus for the fragile X mental retardation syndrome. We have characterized new polymorphic DNA markers useful for the genetic mapping of this region. They include a new Bell restriction fragment length polymorphism (RFLP) detected by the probe St14-1 (DXS52) and which may therefore be of diagnostic use in hemophilia A families. A linkage analysis was performed in fragile X families and in large normal families from the Centre d'Etude du Polymorphisme Humain (CEPH) by using seven polymorphic loci located in Xq26-q28. This multipoint linkage study allowed us to establish the order centromere-DXS100-DXS86-DXS144-DXS51-F9-FRAX+ ++-(DXS52-DXS15). Together with other studies, our results define a cluster of nine loci that are located in Xq26-q27 and map within a 10 to 15 centimorgan region. This contrasts with the paucity of markers (other than the fragile X locus) between the F9 gene in q27 and the G6PD cluster in q28, which are separated by about 30% recombination.

Chromosome Mapping↗

Studies on host-virus genome relationship in Epstein-Barr virus immortalized lymphoblastoid cell lines.

Five human lymphoblastoid cell lines immortalized in vitro with the B95-8 EBV strain, chosen to have a low number of copies of EBV genome, were examined to detect variations in electrophoretic mobility of viral restriction fragments and in the karyotype. Patterns of mobility detected with different viral probes are always the same as those obtained with fragments from purified virus-plasmidic DNA, with one exception. This "non-plasmidic" pattern occurs with a probe containing the termini of the linear virion DNA and consists in an increase of the molecular weight and in the appearance of more than one band. Cytogenetic studies carried on the same cell populations used as source of DNA, early after immortalization, showed a diploid modal chromosome number and no G banding rearrangements.

Cell Line↗

Sister chromatid exchange and proliferation pattern in stimulated lymphocytes of cutaneous malignant melanoma patients.

Sister chromatid exchange (SCE) and the proliferative pattern of phytohemagglutinin-stimulated lymphocytes were examined in 36 nonfamilial cutaneous malignant melanoma (CMM) patients. One close relative of each of 27 CMM patients was also examined. All the patients had undergone surgical treatment for the neoplasm, but had received no chemotherapy or radiotherapy. The SCE rates were found to be higher and more variable in a significant fraction of CMM patients, and in relatively fewer unaffected relatives, which is in contrast to findings in unrelated subjects taken as controls. Also, variable and higher proportions of cells in metaphase of the first cell cycle (M1), after 72-hr culture in the presence of bromodeoxyuridine, were more often found among the CMM patients than in the controls; however, no effect of clinical progression of the neoplastic disease on SCE rates or on the lymphoproliferative pattern was observed. The present study indicates heterogeneity among subjects who develop CMM and suggests that the peculiarities of SCE rates and of the lymphoproliferative patterns observed in some of the CMM patients and in a few of their close relatives may be connected with the mechanism of onset of the neoplasm.

Adult↗

Malignant melanoma: sister chromatid exchange analysis in three families.

Sister chromatid exchange (SCE) was analyzed in stimulated lymphocytes and skin fibroblasts in members of three families with cutaneous malignant melanoma (CMM). Two of these families were characterized by familial CMM; the other family had one patient affected by CMM and two others with other cutaneous melanocytic lesions. All the patients had undergone surgery but no chemotherapy. Higher and differing SCE rates were found in lymphocytes and in fibroblasts of all patients. A wide range of SCE distribution was found in patients with high SCE rate. A few healthy close relatives also showed relatively high SCE rates and wide range distributions. These subjects may be regarded as a subset of family members at high risk for developing cancer. The variability of SCE rates and distribution may reflect genetic heterogeneity of CMM.

Adolescent↗