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Biomedical subjects

D Taruscio

Publications and source records attributed to D Taruscio.

At least 19 recordsLinked to original sources

The possible role of endocrine disrupting chemicals in the aetiology of cryptorchidism and hypospadias: a population-based case-control study in rural Sicily.

Abstract This was an open case-control study of the possible association between parental occupational and domestic exposures to potential endocrine disrupting chemicals (EDC) assessed by questionnaire and cryptorchidism and hypospadias in their offspring in the agricultural area of Ragusa. Cases of infants born between 1998 and 2002 with either of these two malformations (n=90), and controls (n=203), were recruited through the paediatric services (for cases) and a random sample of healthy infants attending the same services born in the same period of time (for controls). Data on occupational and environmental exposures of parents prior to and during the index case (or control), were collected through interviews with both parents. Concerning occupational exposures, we did not find a statistically significant increase in risk among parents directly involved in agricultural work. We did find a non-statistically significant increase in risk for cryptorchidism in mothers employed in agriculture [adjusted odds ratios (OR) 2.97; 95% confidence interval (CI) 0.77-11.47] and with probable exposure to pesticides (adjusted OR 2.74; 95% CI 0.72-10.42). Fathers who had indirect contact with agricultural products (transport and retail) had an increased risk (not statistically significant) for cryptorchidism (adjusted OR 2.45; 95% CI 0.63-9.59) and hypospadias and cryptorchidism combined (adjusted OR 2.24; 95% CI 0.67-7.48). Increases in risk of the two malformations pooled were also observed in relation to the mother's age below 25 (adjusted OR 1.99; 95% CI 0.97-4.09), to the presence of genital disease of the father (adjusted OR 2.41; 95%C I0.94-6.17), and the mother (adjusted OR 3.47;95% CI 1.34-8.99), to low birth weight of the infant (adjusted OR 4.49; 95% CI 1.23-16.31). Increased risk was also observed for mothers consuming alcohol during pregnancy (adjusted OR 3.09; 95% CI 0.98-9.66), and for couples who conceived while using condoms (adjusted OR 2.12; 95% CI 1.02-4.41). The study therefore provides only limited support to the hypothesis of a possible association between the risk of cryptorchidism and hypospadias and the occupational exposure to EDC and agricultural work.

Adult↗

Cryptorchidism and hypospadias in the Sicilian district of Ragusa and the use of pesticides.

The aim of the study was to explore the role of environmental exposures to pesticides in the birth prevalence of hypospadias and cryptorchidism, in the 12 agricultural municipalities of Ragusa Sicily. Data on the birth prevalence of the two birth defects were obtained from the local pediatric services for the period 1998-2002. Municipalities were ranked according to the degree of "pesticide impact" on the basis of three quantitative criteria of intensity of agricultural activities of the population. We found a significantly higher birth prevalence of hypospadias with increasing "pesticide impact" (trend test, P=0.003). The association with cryptorchidism was not statistically significant, but when the two birth defects were pooled together, the linear trend was significant (trend test, P=0.001).

Abnormalities, Multiple↗

Factors regulating endogenous retroviral sequences in human and mouse.

Endogenous retroviruses (ERVs) are stably integrated in the genome of vertebrates and inherited as Mendelian genes. The several human ERV (HERV) families and related elements represent up to 5-8% of the DNA of our species. ERVs may be involved in the regulation of adjacent genomic loci, especially promoting the tissue-specific expression of genes; some HERVs may have functional roles, e.g., coding for the placental fusogenic protein, syncytin. This paper reviews the growing evidence about factors that may modulate ERVs, including: cell and tissue types (with special attention to placenta and germ cells), processes related to differentiation and aging, cytokines, agents that disrupt cell functions (e.g., DNA hypomethylating agents) and steroids. Special attention is given to HERVs, due to their possible involvement in autoimmunity and reproduction, as well as altered expression in some cancer types; moreover, different HERV families may deserve specific attention, due to remarkable differences concerning, e.g., expression in tissues. A comparison with factors interacting with murine ERV-related sequences indicates that the mouse may be a useful model for studying some patterns of HERV regulation. Overall, the available evidence identifies the diverse, potential interactions with endogenous or exogenous factors as a promising field for investigating the roles of ERVs in physiology and disease.

Animals↗

A population-based study on the frequency of additional congenital malformations in infants with congenital hypothyroidism: data from the Italian Registry for Congenital Hypothyroidism (1991-1998).

In the last decade a high frequency of other congenital anomalies has been reported in infants with congenital hypothyroidism (CH) detected by neonatal screening. In the present study the occurrence of additional congenital malformations (CM) in the population of CH infants detected in Italy between 1991 and 1998 (n = 1420) was investigated. In Italy all of the centers in charge of screening, treatment, and follow-up of CH adhere to the Italian National Registry of infants with CH. In this study a high prevalence of additional CM (8.4%), more than 4-fold higher than that reported in the Italian population (1-2%), was found in the population of CH infants. Cardiac anomalies represented the most frequent malformations associated with CH, with a prevalence of 5.5%. However, a significant association between CH and anomalies of nervous system, eyes, and multiple CM was also observed. In conclusion, the significantly higher frequency of extrathyroidal congenital malformations reported in the CH infants than in the general population represents a further argument supporting the role of a genetic component in the etiology of CH. Investigations of the molecular mechanisms underlying developmental events of formation of thyroid and other organs represent critical steps in the knowledge of CH etiology.

Abnormalities, Multiple↗

Alteration of chromosome arm 6p is characteristic of primary mediastinal B-cell lymphoma, as identified by genome-wide allelotyping.

Five cases of primary mediastinal B-cell lymphoma (PMBL) each have been studied with 375 microsatellite markers from all 22 autosomes. Of the 151 genomic alterations among the 1,875 assays, only five were allelic losses. The remainder of the microsatellite alterations consisted of 114 allelic imbalances and 32 instabilities. Microsatellite alterations were found in all cases on chromosomal arms 6p and 9p. These allelic imbalances most likely are indicative of genetic amplification, a finding agreeing well with those of studies using either comparative genomic hybridization or arbitrarily primed polymerase chain reaction, in which amplification of chromosome arm 9p in PMBL has been found. The allelic imbalances on chromosome arm 6p always included marker D6S276 located at 6p21.3-p22.3, where the MHC class I genes reside. These allelic imbalances may be reflective of alterations in the expression of the MHC gene products, characteristic of PMBL. Allelic anomalies close to the MYB gene locus on 6q were detected in two cases and prompted the analysis of MYB rearrangements in a series of 30 lymphomas. One rearrangement was detected in one of 18 cases of PMBL and in none of 10 diffuse, large B-cell lymphomas and two T-cell lymphomas. Our genome-wide microsatellite analysis provides independent confirmation that PMBL is characterized by infrequent chromosomal losses and by frequent genetic alterations involving chromosomal arm 9p. For the first time, chromosomal arm 6p has been identified as a highly frequent target of genetic alterations in this tumor type. Finally, MYB may also be involved occasionally in PMBL pathogenesis.

Alleles↗

Increased c-met expression during ductal beta cell neogenesis in experimental autoimmune diabetes.

C-met immunoreactivity and its co-expression with duct-associated insulin were evaluated in pancreata of non-obese diabetic (NOD) and low-dose streptozotocin (Id-STZ) mice. Diabetic NOD and non-diabetic NOD at the age of 4-8, 15-22 and 30-41 weeks and Balb/c mice at the same age intervals were studied. Ld-STZ mice were studied at day 12 and 24 after STZ administration. A stronger ductal c-met immunoreactivity and a significantly higher number of c-met positive ducts were found in diabetic NOD vs both non-diabetic NOD and Balb/c mice of comparable age. In non-diabetic NOD, the ductal c-met immunoreactivity progressively increased with age and was significantly higher than controls. In 1d-STZ mice a significantly increased ductal c-met immunoreactivity was detected both at day 12 and 24 vs untreated mice. C-met positive ductal cells were also positive for insulin although insulin positive c-met negative ducts were present. This study showed an increased c-met expression and the co-expression of c-met and duct-associated insulin, in both NOD and 1d-STZ mice.

Animals↗

Chromatin fibers organization within the nucleus.

In order to evaluate at the ultrastructural level the three dimensional arrangement of the dispersed chromatin during the intephase, the immunogold detection of Bromodeoxyuridine (BrdU), of the DNA polymerase alpha and of the proliferating cell nuclear antigen (PCNA) was performed on human HL60 leukemia cells and nuclear matrices extracted from the same cellular model. The Field Emission In lens Scanning Electron Microscopy analysis of the ultrathin cryosectioned cells revealed the presence of a chromatin three dimensional network where the different constituents appeared repetitively assembled. Also the nuclear matrix showed a repetitive structure, on which the deprivation of the DNA corresponded to the selective loss of particular class sized fibers. The single or multiple combined immunolocalization of different structures involved in the DNA replication, where BrdU, DNA polymerase alpha and PCNA represent, respectively, the substratum, the polymerizing enzyme and a regulator of the reaction, allowed the understanding of its reciprocal spatial relationship on the dispersed interphasic chromatin and the role of the nuclear matrix in the replicative process.

Bromodeoxyuridine↗

Allelotype of pancreatic acinar cell carcinoma.

Pancreatic acinar cell carcinoma (PAC) is a rare pancreatic tumor for which no information about chromosomal and gene anomalies is available. We performed genome-wide allelotyping of 9 PACs using DNA from 5 frozen and 4 paraffin-embedded samples and 76 PCR-amplified, chromosome-specific microsatellite markers. High degrees of allelic loss were found, with a mean fractional allelic loss of 0.33. Chromosomes 1p, 4q and 17p showed loss of heterozygosity in >70% of cases and chromosomes 11q, 13q, 15q and 16q, in 60% to 70% of cases. Chromosomes 3q, 6q, 8q, 18q and 21q showed loss in 50% to 60% of cases. All of the remaining chromosomes showed no or few allelic losses. The resulting allelotype of PAC is markedly different from that of either ductal or endocrine tumors of the pancreas, and the involvement of chromosomes 4q and 16q appears to be characteristic of this tumor type. High-resolution mapping of the 12 frequently altered chromosomes in 5 cases with 222 markers permitted subchromosomal localization of regions of consensus loss on 5 chromosomes, including 1p36.31, 3p25.2, 4q26-31.1, 15q15-22.1 and 16q21-q22.1. Our findings suggest that PAC tumorigenesis involves molecular pathways different from those occurring in more common pancreatic tumor types.

Adolescent↗

The human per1 gene: genomic organization and promoter analysis of the first human orthologue of the Drosophila period gene.

Per genes encode components of the circadian clocks controlling metabolic and behavioural rhythms. The human Per1 cDNA, RIGUI, was previously isolated and mapped on chromosome 17p12 (Sun, Z.S., Albrecht, U., Zhuchenko, O., Bailey, J., Eichele, G., Lee, C.C., 1997. RIGUI, a putative mammalian orthologue of the Drosophila period gene. Cell 90, 1003-1011). We have now isolated the entire genomic locus containing the human Per1 gene, in a search for genes associated with CpG-rich sequences. The hPer1 gene spans 15kb of human genomic DNA and is composed of 23 exons, flanked by 5' and 3' regulatory regions. Comparison of the hPer1 genomic clone with the dbEST database revealed homologies with putative alternative transcripts. Functional mapping within the 5' CpG-rich regulatory region enabled us to locate the hPer1 promoter core in a 510bp-long sequence centred around a TATA box, which supports high levels of hPer1 transcription. A second regulatory region was formally identified in intron 1, which appears to exert a negative role in transcriptional control of hPer1. These regions may be differentially involved in tissue-specificity, and/or circadian regulation, of the human hPer1 gene transcription.

3T3 Cells↗

Pancreatic acinar carcinoma shows a distinct pattern of chromosomal imbalances by comparative genomic hybridization.

Pancreatic acinar cell carcinoma (PAC) is a rare pancreatic tumor for which no information about chromosomal anomalies is available. We examined six primary PACs by comparative genomic hybridization (CGH). All cases showed chromosomal changes. A total of 106 gains and 48 losses was detected. Consensus regions of gain were identified on chromosomes 1, 12, and X: 1q21 in four cases, 1q42 in three cases, 12p11.2 in four cases, and Xq12-21 in three cases. Recurrent losses were found at 16p13.2-p13.1 in three cases and at 16q23 in three cases. To verify these chromosomal imbalances, microsatellite analysis of matched normal and tumor DNA was performed using PCR-amplified markers for chromosomes 1, 12, and 16 in the regions showing nonrandom gains or losses. This analysis showed allelic imbalances in tumor DNA consistent with the CGH profiles. Our CGH study suggests that PAC shows a characteristic pattern of chromosomal alterations, involving gain at 1q, 12p, and Xq and loss of sequences at 16p and 16q. This pattern appears unique among solid tumors and is markedly different from that detected in pancreatic ductal carcinomas by the same technique. This suggests that PAC tumorigenesis involves different molecular pathways than those involved in the more common pancreatic ductal tumors. Genes Chromosomes Cancer 28:294-299, 2000.

Adult↗

Genomic organization and assignment of VAMP2 to 17p12 by FISH.

We describe the complete sequence, genomic organization, and FISH chromosome mapping of the human VAMP2. We identified a 7-kb clone, pISSHG2b3A, containing the entire structure of VAMP2. Previous studies performed by others identified a 5-kb clone, pVPC5-2, containing the incomplete VAMP2. The pVPC5-2 clone was partially sequenced and mapped to the broad region 17pter-->p12 by somatic cell hybridization. Our clone overlaps the pVPC5-2 clone and extends approximately 2 kb at the 3' end. In this study, we mapped this gene more precisely on 17p12 by FISH and we found a new polymorphic microsatellite, (GT)(7)CC(GT)(5), in exon V. This microsatellite, revealing three alleles with frequencies of 0.778, 0.139, and 0.083, might be useful for future linkage studies. Finally, we localized three previously known markers, stSG12859, TIGR-A002F11, and WIAF-1699 (alias stSG4044), in the 3' untranslated region of the gene.

Base Sequence↗

[Circadian biological clocks: molecular self-generating mechanisms which keep the rhythm].

Biological circadian clocks are endogenous self-sustaining oscillators, where periodically expressed genes control functions at all levels of biological organization. These mechanisms are detectable from prokaryotes to humans, and their basic molecular components are common in most living organisms. This review focuses on the basic properties of biological circadian clocks and their possible involvement in human diseases.

Animals↗

Nonrandom chromosomal imbalances in primary mediastinal B-cell lymphoma detected by arbitrarily primed PCR fingerprinting.

We used arbitrarily primed polymerase chain reaction (AP-PCR) fingerprinting to identify chromosomal imbalances in six primary mediastinal B-cell lymphomas (PMBLs). Seventy-four chromosomal imbalances were detected, consisting of 49 sequence gains and 25 losses. Amplifications on chromosome X were seen in five cases, four of which involved the same chromosomal locus. Nonrandom gains at the same locus were also identified on chromosomes 2 and 7 in four cases and on chromosomes 5, 9, and 12 in three cases. Five PMBLs were also analyzed by comparative genomic hybridization (CGH), which found chromosome arm 9p amplification as the only nonrandom imbalance. Our data demonstrate that chromosomal amplifications outnumber losses in PMBL. These mainly involve chromosomes 9 and X and may reflect more complex phenomena, such as translocations or other chromosomal rearrangements, as AP-PCR found coexistent gains and losses on these chromosomes. Comparison between AP-PCR and CGH suggests that anomalies affecting the same chromosomal regions may occur at much higher frequencies than expected by CGH, suggesting that genomic amplifications are usually confined to DNA segments smaller than the megabase long segments required for detection in CGH. Modest increases in genetic material may be as effective as higher-level amplifications when affecting sites where a proto-oncogene resides.

Chromosome Aberrations↗

[Genetic diseases:recent scientific findings and health and ethical problems].

Genetic diseases are very numerous, even though rare as single conditions: therefore, overall they represent a significant portion of morbidity at population level. The improvement of molecular genetic techniques has brought a great increase in the diagnostic potential toward genetic diseases, concerning either symptomatic or pre-symptomatic individuals and healthy carriers. However, this has frequently unforeseen consequences, such as a discrepancy between diagnostic and therapeutic potentials. Moreover, the development of genetic tests has raised a number of questions regarding ethical, legal e social problems. The Italian guidelines for genetic tests (available on the Internet site of Istituto Superiore di Sanità: http:@www.iss.it) have been elaborated in 1998 to define general principles for performing and managing genetic tests as well as for programming and promoting genetic testing within the public health system. In accordance with recommendations by international bodies (WHO, EU), the Guidelines give emphasis to the appropriate use of both safe and efficacious tests, the performance in laboratories with high quality standards. A further crucial point is the relationship between the health system and individuals: authonomy of decision, psychological and social assistance, as well as adequate attention to ethical and privacy problems should be guaranteed.

Chromosome Aberrations↗

[Rare diseases: general principles, specific problems, and health interventions].

Rare diseases are a large group of about 5000 diseases, 90% of which are genetically determined, which potentially involve all human organs and are characterized by a low prevalence in the population; this is frequently associated to problems in achieving a rapid and correct diagnosis and an adequate treatment. Up to now, a generally accepted definition or classification of rare diseases is not available. The Programme of Community Action 1999-2003 on rare diseases within the framework for action in the field of public health gives the following definition for rare diseases: diseases with a prevalence in the European Union (EU) population of less than 5 per 10,000. Notwithstanding the low prevalence of each disorder, rare diseases are very numerous and, when considered overall, they are a significant public health problem in many countries (e.g. Italy, Europe, USA); in fact rare diseases are often chronic and invalidating or cause early mortality. In this report, we illustrate some general concepts and specific problems regarding rare diseases as well as public health activities being undertaken in the USA, EU and Italy.

Congenital Abnormalities↗

[Genetic basis of endocrine-metabolic diseases].

Endocrine-metabolic diseases are very important because of either the variety of affected organs and the great social impact of at least some conditions, due to their high incidence and morbidity in the general population. A multifactorial origin has been recognized in many endocrine-metabolic diseases; in fact genetic and environmental risk factors contribute to the expression of pathologic phenotype. Recent progresses in molecular genetics allowed development of specific genetic tests which improved diagnosis of monogenic diseases and ascertainment of genetic susceptibility for some multifactorial pathologies. Therefore, management of the most important endocrine-metabolic diseases should take into account the interaction between improvement of the diagnosis and primary prevention actions through modification of environmental and lifestyle-related risk factors.

Diabetes Mellitus↗