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Biomedical subjects

S Bernardini

Publications and source records attributed to S Bernardini.

At least 55 records · Page 3Linked to original sources

[Spermatic cord torsion in adults].

OBJECTIVES: The objective of this retrospective study, conducted between January 1988 and December 1998, was to demonstrate that physical examination is sufficient to manage patients with torsion of the spermatic cord. MATERIAL AND METHODS: 72 patients, admitted with an empirical diagnosis of torsion of the spermatic cord based on physical examination, underwent emergency surgery via a scrotal incision. Orchidopexy was performed when the surgical diagnosis was in favour of torsion. We classified our series into 2 groups according to the presence or absence of torsion and we defined two subgroups in the torsion group: the orchidectomy subgroup and the non-orchidectomy subgroup. RESULTS: The suspicion of torsion of the spermatic cord was confirmed in 70.8% of cases. No mortality or morbidity were observed for wrongly operated patients. The study of the sensitivity (Se) and positive predictive value (PPV) of clinical signs defined a group of men requiring emergency surgical exploration: men presenting with scrotal pain in the absence of any urinary signs (Se = 98%, PPV = 72%), negative urinary dip-stick (Se = 97%, PPV = 71%), with pain described as violent (Se = 80%, PPV = 76%), an ascended testis (Se = 62%, PPV = 86%) and a subacute stage (Se = 68%, PPV = 79%). The only pejorative factor detected in the presence of testicular necrosis was a delay before management greater than 6 hours. The length of hospital stay (p < 0.041) and the complication rate (p < 0.023) were greater in the orchidectomy subgroup compared to the non-orchidectomy subgroup. CONCLUSION: This retrospective study confirms that physical examination is sufficient to ensure good management of torsion of the spermatic cord in adults and that emergency surgical exploration is justified at the slightest doubt.

Adult↗

[Distal urethroplasty by ventral pediculated flap with penile skin: technical aspects].

The authors present a distal urethroplasty technique (or urethromeatoplasty) which consists of reconstruction of the floor of the distal urethral (glandular urethra) by inversion of a pedicled ventral penile skin patch graft raised transversely. This technique allows treatment of recurrent stricture of the glandular urethra in circumcised patients with good aesthetic and functional results.

Humans↗

[Ureteral lesions after surgery of the aortic bifurcation. Report of 6 cases].

OBJECTIVE: The objective of this study was to evaluate the management and current treatment options for ureteric complications after vascular surgery based on a series of 6 cases. PATIENTS AND METHOD: 6 patients were treated between 1990 and 1998 (mean age: 64.7 years) for ureteric complications after aortic bifurcation surgery. The mean interval between vascular surgery and urological management was 11.6 years (+/- 4.04). All patients were assessed by intravenous urography (IVU), and 4 patients were assessed by abdominal computed tomography (CT). These complications consisted of: 2 cases of ureteric stenosis, 1 case of inflammatory peri-ureteritis, 2 cases of chronic peri-ureteritis and 1 case of compression by a false aneurysm. The lesion was situated in the iliac ureter in every case. RESULTS: Treatment consisted of temporary double J stenting (n = 1), ureter release (n = 1), endoscopic dilatation (n = 1), psoas bladder reconstruction (n = 1) and corticosteroid therapy (n = 2), with 4 successes, 1 failure (corticosteroid therapy), and 1 death from another cause. CONCLUSION: Ureteric lesion after vascular surgery is a rare complication, often discovered incidentally. The iliac ureter is predominantly affected. IVU and CT are the reference examinations. Treatment options primarily depend on the patient's general state.

Aged↗

Modulation of glutathione transferase P1-1 activity by retinoic acid in neuroblastoma cells.

The ability of retinoic acid to modulate glutathione S-transferase P1-1 (GSTP1-1) activity has important implications both for cancer prevention and for anticancer therapy. We investigated GSTP1-1 expression and activity in the human neuroblastoma cell line SK-N-BE(2) (genotype A*/B*) under basal conditions and during 48-h incubation with 0.1 microM all-trans-retinoic acid. The steady-state levels of glutathione transferase P1-1 mRNA and protein during 48-h incubation with all-trans-retinoic acid did not increase substantially, but we detected a significant reduction of GSTP1-1 specific activity. This reduction in enzymatic activity could not be ascribed to a differential action of retinoic acid on the gene variants A* and B*; indeed, the two GSTP1-1 isoforms have different affinities toward 1-chloro-2,4-dinitrobenzene (CDNB), while we found a substantial invariance of the K(m) (CDNB) in the cytosol during retinoid treatment. A modulatory effect of retinoic acid on other enzymes involved in glutathione transferase P1-1 metabolism, such as the retinoic acid-induced tissue trans-glutaminase, might be hypothesized, as well as a direct inactivation of GSTP1-1 by the oxidative stress that characterizes the early phases of apoptosis.

Antineoplastic Agents↗

Epoxide hydrolase activity in human blood mononuclear leukocytes: individual differences in native and mitogen-stimulated cells.

Epoxide hydrolase (EH; EC 3.3.2.3) activity was measured in whole-cell sonicates of native and cultured peripheral blood mononuclear cells (PBMCs) from 19 healthy unrelated Caucasian donors (age, 28-55 years). We used 1,2-epoxy-3-(p-nitrophenoxy)propane (0. 34 mM) as the substrate and, for the diol assay, a quantitative HPLC method with spectrophotometric detection. One portion of the PBMCs was frozen immediately, while the other portion was PHA-stimulated and cultivated for 36 h. In native leukocytes, the EH activity varied from 2.2 to 8.2 pmol/min per 10(6) cells (3.8-fold), the mean+/-SD was 5.6+/-1.4 pmol/min per 10(6) cells. In most of the samples from different donors, the specific activity increased in cultivation, varying from 2.4 to 15.4 pmol/min per 10(6) cells (6. 3-fold), the mean+/-SD being 8.5+/-3.8 pmol/min per 10(6) cells. From a methodological point of view, enzyme measurement in native cells is simple to perform and may provide a better index of the specific activity, as the accuracy of electronic cell counting is better for cell samples taken before than after cultivation. The differences in the EH activity of PBMCs indicate that significant interindividual variation may occur in the detoxification of epoxides produced in the human lymphocyte test systems commonly used for genotoxicity screening of chemicals in vitro. Further studies are needed to determine the extent to which the reproducibility and thus also the sensitivity of such assays could be improved by analyses carried out to control the donors for their EH phenotype.

Adult↗

Nerve-independence of limb regeneration in larval Xenopus laevis is related to the presence of mitogenic factors in early limb tissues.

Early limbs of larval Xenopus laevis can form a regeneration blastema in the absence of nerves. The nerve-independence could be due to the synthesis of neurotrophic-like factors by the limb bud cells. To test this hypothesis, two series of experiments were performed. Series A: the right hindlimbs of stage 57 larvae (acc. to Nieuwkoop and Faber. 1956. Normal table of Xenopus laevis [Daudin]. Amsterdam: North-Holland Pub. Co.), which are nerve-dependent for regeneration, were amputated through the tarsalia. The regenerating limbs were submitted to: sham denervation; denervation; denervation and implantation of a fragment of an early limb, or a late limb, or a spinal cord. Series B: froglets were subjected to amputation of both forelimbs. The cone blastemas were transplanted into denervated hindlimbs of stage 57 larvae, together with a fragment of an early or a late limb. The results in series A showed that the implantation of early limb tissue into the denervated blastema maintained cell proliferation at levels similar to those observed after the implantation of a spinal cord fragment or in sham denervated blastemas. However, the implantation of late limb tissues were ineffective. The results of series B showed that the implantation of early limb tissue, but not of late limb tissue prevented the inhibition of cell proliferation and the regression of denervated limb blastemas of juveniles. These results indicate that the nerve-independence is related to the synthesis of diffusible mitogenic neurotrophic-like factors in early limb tissues, and that nerve-dependence is established when differentiated cells of late limb tissues stop producing these factors.

Amputation, Surgical↗

Regulatory regions in the promoter and third intron of the growth hormone gene in rainbow trout, Oncorhynchus mykiss walbaum.

The mechanisms involved in the transcriptional regulation of the rainbow trout (Oncorhynchus mykiss) growth hormone (tGH) gene have been investigated. Transient transfection assays, using deletion mutants of the tGH promoter, demonstrated that the -226/+24 5'-flanking region, bearing three binding sites for the pituitary-specific transcription factor GHF1/Pit1 and a cAMP-response element, is necessary and sufficient to confer strong tissue-specific and cAMP-stimulated expression to a luciferase reporter gene. This region is also upregulated by the synthetic glucocorticoid dexamethasone (DEX), the combined effects of cAMP, and DEX being synergistic. Footprinting and gel shift assays revealed that GHF1 binds to a recognition element in the third intron of the tGH gene, suggesting that GHF1 can affect the expression of this gene by interacting with response elements in the transcription unit. These results may be exploited to design tGH gene constructs for the production of autotransgenic fish, in which the expression of the isospecific transgene driven by a constitutive proximal promoter is specifically targeted to the pituitary and physiologically controlled.

Animals↗

Decreased proliferation and altered differentiation in osteoblasts from genetically and clinically distinct craniosynostotic disorders.

Craniosynostoses are a heterogeneous group of disorders characterized by premature fusion of cranial sutures. Mutations in fibroblast growth factor receptors (FGFRs) have been associated with a number of such conditions. Nevertheless, the cellular mechanism(s) involved remain unknown. We analyzed cell proliferation and differentiation in osteoblasts obtained from patients with three genetically and clinically distinct craniosynostoses: Pfeiffer syndrome carrying the FGFR2 C342R substitution, Apert syndrome with FGFR2 P253R change, and a nonsyndromic craniosynostosis without FGFR canonic mutations, as compared with control osteoblasts. Osteoblasts from craniosynostotic patients exhibited a lower proliferation rate than control osteoblasts. P253R and nonsyndromic craniosynostosis osteoblasts showed a marked differentiated phenotype, characterized by high alkaline phosphatase activity, increased mineralization and expression of noncollagenous matrix proteins, associated with high expression and activation of protein kinase Calpha and protein kinase Cepsilon isoenzymes. By contrast, the low proliferation rate of C342R osteoblasts was not associated with a differentiated phenotype. Although they showed higher alkaline phosphatase activity than control, C342R osteoblasts failed to mineralize and expressed low levels of osteopontin and osteonectin and high protein kinase Czeta levels. Stimulation of proliferation and inhibition of differentiation were observed in all cultures on FGF2 treatment. Our results suggest that an anticipated proliferative/differentiative switch, associated with alterations of the FGFR transduction pathways, could be the causative common feature in craniosynostosis and that mutations in distinct FGFR2 domains are associated with an in vitro heterogeneous differentiative phenotype.

Acrocephalosyndactylia↗

Mechanisms of osteoclast dysfunction in human osteopetrosis: abnormal osteoclastogenesis and lack of osteoclast-specific adhesion structures.

Osteoclasts from a patient affected by osteopetrosis were examined in vivo and in vitro. Iliac crest biopsy revealed an osteosclerotic pattern, with prominent numbers of osteoclasts noted for hypernuclearity and incomplete adherence to the bone surface. A population comprising tartrate-resistant acid phosphatase (TRAP)-positive, multinucleated and mononuclear cells, and alkaline phosphatase-positive stromal fibroblasts was obtained in vitro from bone marrow. Mononuclear TRAP-positive precursors spontaneously fused in culture to form giant osteoclast-like cells. These cells expressed the osteoclast marker MMP-9 and calcitonin receptor, and lacked the macrophage marker, Fc receptor. Expression and distribution of c-src, c-fms, and CD68, and response to steroid hormones relevant to osteoclast differentiation and function were apparently normal, whereas cell retraction in response to calcitonin was impaired. TRAP-positive multinucleated cells did not form osteoclast-specific adhesion structures (clear zone, podosomes, or actin rings). Bone resorption rate was severely reduced in vitro. Focal adhesions and stress fibers were observed en lieu of podosomes and actin rings. Adhesion structures contained low levels of immunoreactive vitronectin receptor, most of this integrin being retained in cytoplasmic vesicles. These data provide the first characterization of abnormal differentiation and function of human osteopetrotic osteoclast-like cells.

Acid Phosphatase↗

Effects of advanced glycation end products on cytosolic Ca2+ signaling of cultured human mesangial cells.

Advanced glycation end product (AGE) accumulation in a high glucose (HG) environment is thought to mediate some of the vascular complications of diabetes. Transmembrane signaling of contractile cells is generally inhibited by HG, with implications for systemic and target organ hemodynamics. In the kidney, glomerular mesangial cells grown in HG media are hyporesponsive to the effects of vasoconstrictor agents, possibly explaining the hyperfiltration and increased capillary pressure that eventually lead to diabetic glomerulopathy. To verify whether AGE binding to specific mesangial receptors could mediate these effects of HG, cultured human mesangial cells (HMC) were exposed to in vitro glycated bovine serum albumin (BSA) for 60 min at 37 degrees C before measurement of cytosolic Ca2+ ([Ca2+]i) by microfluorometric techniques in monolayers or single cells. AGE-BSA (2 mg/ml) reduced Ca2+ release from intracellular stores by 1 microM angiotensin II from peak [Ca2+]i levels of 843+/-117 to 390+/-50 nM in monolayers and from 689+/-68 to 291+/-36 nM in individual cells (P < 0.05). Nonglycated BSA and BSA exposed to 250 mM glucose-6-phosphate for 30 d in the presence of 250 mM aminoguanidine (AMGD), an inhibitor of nonenzymatic glycation, had no effect on the angiotensin II-induced [Ca2+]i spike (peak 766+/-104 and 647+/-87 nM, monolayers/ single cells, respectively, P = NS). AGE also inhibited store-operated Ca2+ influx through plasma membrane channels, assessed by addition of 1 to 10 mM extracellular Ca2+ to cells previously held in Ca2(+)-free media (control 339+/- 46/593 +/- 51, +AGE-BSA 236 +/- 25/390 +/- 56, +AMGD 483+/-55/ 374+/-64 nM [Ca2+]i, monolayers/single cells at 10 mM Ca2+, respectively; +AGE-BSA, P < 0.05 versus control). Contrary to HG, AGE-BSA did not translocate protein kinase C isoforms alpha, zeta, and delta to the plasma membrane. Culture of HMC in HG supplemented with 1 mM AMGD prevented downregulation of [Ca2+]i signaling. These data suggest that glycated macromolecules or matrix components may inhibit transmembrane Ca2+ signaling of glomerular cells through binding to a specific AGE receptor, thus mediating some of the known functional effects of HG on the kidney.

Animals↗

Immunohistochemical detection of p53 protein overexpression versus gene sequencing in urinary bladder carcinomas.

PURPOSE: Mutations of p53 tumor suppressor gene and nuclear accumulation of p53 protein are common in bladder tumors. The prognostic significance of p53 alterations in bladder tumors has not been established. The aim of the present study was to evaluate an immunohistochemical (IHC) method for the routine determination of p53 protein overexpression in human bladder tumors and to determine the relation between nuclear accumulation of p53 with the traditional prognostic indicators and patient survival. MATERIALS AND METHODS: 104 transitional cell carcinomas of the bladder were analyzed simultaneously by immunohistochemistry for p53 protein overexpression and direct DNA sequencing for p53 gene mutations. RESULTS: The overexpression of p53 protein was reported in 30.8% of the cases and mutations of p53 gene in 23.0%. A significant association was observed between p53 alterations established either by IHC or direct DNA sequencing and stage (p<0.0001), grade (p<0.001), vascular invasion (p = 0.0005), DNA ploidy (p = 0.0002) and carcinoma in situ (p<0.0001). The correlation between the p53 gene mutations and p53 nuclear reactivity as detected by IHC was highly significant (p<0.0001). Univariate statistical analysis showed that the expression of p53 was significantly correlated to poor prognosis (p<0.0001). However, in multivariate analysis, only stage was significantly correlated to prognosis (p<0.0001). CONCLUSIONS: The IHC method was highly sensitive and specific and simple to apply for the routine examination of p53 overexpression in bladder tumors. However, overexpression of p53 as determined immunohistochemically, does not appear to have a better predictive prognostic value than stage in bladder tumors.

Aged↗

Hematopoietic support and cytokine expression of murine-stable hepatocyte cell lines (MMH).

It was recently reported that transgenic expression in the liver of truncated human Met renders hepatocytes constitutively resistant to apoptosis and reproducibly permits their immortalization. The derived stable cell lines (MMH from Met murine hepatocyte) are highly differentiated and nontransformed. In this report, the capacity of MMHs to support in vitro hematopoiesis is characterized. By reverse-transcription polymerase chain reaction, the expression by MMHs of cytokines involved in the survival and self-renewal of early progenitor cells (stem cell factor and FLT3 ligand) as well as those acting at different stages of progenitor differentiation (interleukin [IL] 1beta, IL-3, leukemia inhibitory factor, IL-6, granulocyte-macrophage colony-stimulating factor, granulocyte colony-stimulating factor, macrophage colony-stimulating factor, and thrombopoietin) was shown. A ribonuclease protection assay further substantiated the presence of at least six cytokine transcripts in MMH lines. Cocultures between MMH layers and progenitor-enriched fetal liver hematopoietic cells resulted in a 40-fold to 80-fold expansion of total hematopoietic cells and in a 2.5-fold expansion of clonogenic progenitors after 1 to 2 weeks. Hematopoiesis was maintained for up to 6 weeks with formation of typical cobblestone cell areas and continuous differentiation of precursor into cells at various degrees of maturation. At 5 weeks of coculture, clonogenic progenitors were maintained at 20% of the input level in coculture with embryonic-derived hepatocytes, showing the ability of hepatocyte feeder layer to support survival and possibly self-renewal of clonogenic progenitors. Therefore, the data emphasize a direct role of the hepatocyte in sustaining hematopoietic cell proliferation and differentiation.

Animals↗

Common mutation in methylenetetrahydrofolate reductase. Correlation with homocysteine and other risk factors for vascular disease.

A common mutation in the 5,10-methylenetetrahydrofolate reductase (MTHFR) gene results in elevated homocysteine levels and, presumably, in increased atherosclerotic risk. We evaluated serum homocysteine levels, MTHFR genotype, and a panel of variables in a sample of 155 middle-aged Italian subjects (mean age 38.1 years). Biometrical, hematological, and biochemical variables (including serum folate and vitamin B12) and lifestyle characteristics were investigated. MTHFR genotype was studied by polymerase chain reaction. The frequency of the genotype Val/Val (homozygosity for the mutant allele) was 16.13%. The Val/Val genotype was associated with increased levels of homocysteine; no differences among genotypes were seen in individuals with folate or vitamin B12 levels at or above the median values. In multivariate analysis, MTHFR genotype was an independent predictor of homocysteine levels in both biochemical and non biochemical regression models. Sex and diastolic blood pressure emerged as non biochemical variables independently associated with homocysteine. Apart from cofactors, uric acid was the only biochemical variable independently associated with homocysteine, particularly in subjects with Val/Val genotype. The observed parallel increases in homocysteine and uric acid levels in subjects with thermolabile MTHFR warrant further investigation.

Adult↗

Induction of sister chromatid exchange by 1,2-epoxy-3-butene in cultured human lymphocytes: influence of GSTT1 genotype.

The influence of glutathione S-transferase T1 (GSTT1) genotype on the genotoxicity of 1,2-epoxy-3-butene (MEB), a metabolite of 1,3-butadiene, was assessed by the analysis of sister chromatid exchanges (SCEs) in 72-h human whole-blood lymphocyte cultures. The cultures were from 18 donors, representing both GSTT1 'positive' genotype (with at least one undeleted GSTT1 allele; GSTT1 activity present) and GSTT1 'null' genotype (homozygous deletion of the GSTT1 gene; no GSTT1 activity). As we have previously observed that allelism of glutathione S-transferase M1 (GSTM1) affects SCE induction by MEB in cultured lymphocytes, only individuals with the GSTM1 null genotype were included in this study. At 125 and 250 microM MEB (treatment at 24 h for 48 h), the mean frequencies of MEB-induced SCEs per cell (control level subtracted) were 4.5 (SD 1.8) and 8.9 (SD 1.0) for GSTT1 positive cell cultures (n = 13) and 5.3 (SD 1.2) and 12.5 (SD 1.1) for GSTT1 null cell cultures (n = 5) respectively, and the difference between the genotypes was statistically significant (P < 0.001) at the higher dose. All individual mean frequencies of SCEs induced by 250 microM MEB were higher in the GSTT1 null group (range 11.2-13.9) than in the GSTT1 positive group (range 7.2-10.8). The findings suggest that GSTT1, in addition to GSTM1, is involved in the detoxification of MEB in human whole-blood lymphocyte cultures. The deletion of the GSTT1 gene results in reduced erythrocytic detoxification capacity, thereby increasing the genotoxic effects of MEB.

Analysis of Variance↗

Retinoic acid receptors alpha and gamma mediate the induction of "tissue" transglutaminase activity and apoptosis in human neuroblastoma cells.

All-trans retinoic acid (RA) reduces human neuroblastoma growth by inducing either differentiation or apoptosis. The apoptotic program in these cells is regulated by RA and is paralleled by the transcriptional induction of "tissue" transglutaminase (tTG). tTG is a protein cross-linking enzyme, which specifically accumulates in cells undergoing apoptosis in various in vivo and in vitro systems. In neuroblastoma cells, tTG is detected exclusively in the cells expressing the S-type phenotype and showing an increased apoptosis. The present study was undertaken to identify the retinoid receptors which are involved in the regulation of tTG and apoptosis as well as in the in vitro neuronal differentiation of the human SK-N-BE(2) neuroblastoma cell line. We have previously characterized the retinoid acid receptors expressed in this cell line. In the present study, by using synthetic retinoids selectively activating RAR/RXR isoforms, we have identified the RAR/RXR receptors involved in the induction of either apoptosis or differentiation. We have also studied the effect of the selective RA analogs on tTG activity. We observed that while RARalpha- and RARgamma-selective retinoids alone were able to induce tTG activity, only the combined stimulation of both RARalpha and RARgamma induced apoptosis. Conversely, several combinations of RAR/RXR closely mimicked the differentiation effects observed with all-trans retinoic acid. These results indicate that, at variance with differentiation, the induction of apoptosis in human SK-N-BE(2) neuroblastoma cells is under the specific control of RARalpha and RARgamma. These data seem relevant for the reported ability of RARgamma to suppress the clinically malignant tumor phenotype in patients.

Apoptosis↗

Lens regeneration in larval Xenopus laevis: experimental analysis of the decline in the regenerative capacity during development.

In Xenopus laevis, the capacity to regenerate a new lens from the outer cornea gradually decreases between stages 50 and 58, is almost negligible during the metamorphic climax, and disappears after metamorphosis. The factors responsible for lens transdifferentiation of the outer cornea are produced by the neural retina and are located in the vitreous chamber. This decrease in the regenerative capacity may be due to: (1) a reduction of the inductive power of the retina, (2) a reduction of lens-forming competence of the outer cornea, (3) an inhibition of the lens transdifferentiation process, (4) a combination of these causes. In order to test these hypotheses, fragments of outer cornea or of outer and inner corneas joined together were isolated from early larvae, late larvae and froglets, and implanted into the eye of host larvae during the premetamorphosis or the metamorphic climax. Results from implants of outer cornea into the vitreous chamber showed that the drop in lens regeneration capacity during the metamorphic climax is not due to a decrease in the inductive power of the retinal factor and that the gradual decrease in the regenerative capacity observed between stages 50 and 58 is not related to a substantial diminution in the capacity of outer cornea cells to transdifferentiate into lens fibers. Results from implants of outer and inner corneas joined together showed that in these implants the lens transdifferentiation of the outer cornea was partially inhibited. These findings indicate that the decrease in lens regeneration is mainly due to an inhibition of the lens transdifferentiation process of the outer cornea by the inner cornea. However, even implants of cornea (multilayered epithelium and substantia propria) excised from metamorphosed animals were able to form lens fibers, although to a lesser percentage than that obtained after implantation of fragments of larval outer and inner corneas. Thus, the lens-forming competence in the corneal epithelium is still present to a certain degree even when lens regeneration capacity is lost. Several observations suggest that in the lentectomized eye of late larvae and froglets the mechanical inhibition of lens transdifferentiation process exerted by the inner cornea (or the substantia propria), due to the rapid formation of a connective barrier against the spreading of the retinal factor toward the outer cornea, has a decisive role in maintaining the phenotypic stability of the outer cornea.

Animals↗

Expression of co-factors (SMRT and Trip-1) for retinoic acid receptors in human neuroectodermal cell lines.

Retinoic acid (RA) induces growth inhibition, differentiation or cell death in many human neuroblastoma cell lines. Recently, the transactivation activity of nuclear retinoids receptors has been shown to be modulated through physical association with other proteins that act as co-activators or as co-repressors. We investigated the expression of the co-repressor (SMRT) and co-activator (Trip 1) for retinoid and thyroid-hormone receptors in several neuroectodermal tumour cell lines, and its modulation by all-trans-retinoic acid, as well as by synthetic agonists, for RAR alpha, RAR beta, RAR gamma and RXR. We demonstrate that (i) SMRT and Trip-1 mRNAs are expressed in many human neuroblastoma and melanoma cell lines in basal conditions, (ii) SMRT mRNA expression in human neuroblastoma cell line SK-N-BE(2) increases after 48 hours of incubation with 1 microM RA and RARs specific agonists, (iii) Trip-1 mRNA in the same cell line does not change during incubation with RA or selective synthetic agonists for RARs and RXR.

Chromatography, High Pressure Liquid↗

Transgenic expression in the liver of truncated Met blocks apoptosis and permits immortalization of hepatocytes.

Hepatocyte growth factor induces proliferation, motility and differentiation of epithelial cells through the tyrosine kinase receptor encoded by the MET protooncogene. The cytoplasmic portion of Met (referred to as cyto-Met) is activated but only weakly transforming. In order to determine the effect of activated Met on hepatocytes, we have targeted truncated Met expression to the liver by incorporating the cDNA into a vector carrying the entire human alpha-1-antitrypsin transcriptional unit. Transgenic expression in the liver of truncated human Met, containing the regulatory and the catalytic cytoplasmic domains, renders hepatocytes constitutively resistant to apoptosis and reproducibly permits immortalization. The emerging stable cell lines are not transformed and maintain a highly differentiated phenotype judged by the retention of epithelial cell polarity and the expression of hepatocyte-enriched transcription factors as well as hepatic products.

Animals↗