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Biomedical subjects

D Trerè

Publications and source records attributed to D Trerè.

At least 37 records · Page 2Linked to original sources

Conjugation of 5-fluoro-2'-deoxyuridine with lactosaminated poly-l-lysine to reduce extrahepatic toxicity in the treatment of hepatocarcinomas.

BACKGROUND: The hepatocyte receptor for asialoglycoproteins, which binds and internalizes galactosyl-terminating peptides, was found to be expressed also on the cells of well differentiated hepatocarcinomas. AIMS: We explored the possibility of obtaining a delivery of antiblastic drugs to hepatocarcinoma cells through this receptor. METHODS: We conjugated 5-fluoro-2'-deoxyuridine (FUDR) with lactosaminated poly-L-lysine. 5-fluoro-2'-deoxyuridine is an active drug in the treatment of solid tumours, but with toxic effects on intestine and bone marrow. Poly-L-lysine is an galactosyl-terminating carrier which enables preparation of conjugates with very high drug load. We studied the pharmacological activity of poly-L-lysine-5-fluoro-2'-deoxyuridine conjugate on in vitro proliferation of Hep G2 cells, a human hepatocarcinoma cell line. Moreover, we compared the levels of radioactivity in liver, intestine and heart of mice injected with free or conjugated [3H]5-fluoro-2'-deoxyuridine. RESULTS: We found that poly-L-lysine-5-fluoro-2'-deoxyuridine enters into Hep G2 cells through the asialoglycoprotein receptor and, after intracellular penetration, releases the drug in a pharmacologically active form. Administered to mice, the conjugate leads to enhanced accumulation of the drug in liver versus the intestine and the heart. CONCLUSIONS: These data support conjugation with poly-L-lysine as a way to obtain drug targeting to those hepatocellular carcinomas which maintain the asialoglycoprotein receptor.

Amino Sugars↗

N-myc amplification and cell proliferation rate in human neuroblastoma.

In neuroblastoma, N-myc amplification has been found to be strikingly associated with rapid tumour progression and poor prognosis. Recent studies have demonstrated that cell proliferative activity also significantly predicts the clinical outcome in patients with neuroblastoma. In order to define the correlation between N-myc amplification and cell proliferation rate, in the present investigation the two parameters were first assessed in 48 neuroblastoma tumours. N-myc amplification was evaluated in frozen specimens by Southern-blot analysis using the NB 19-21 probe and it was detected in nine patients. Cell proliferative activity was determined by measuring the AgNOR protein area in histological sections selectively stained by silver. The mean AgNOR protein area value of neuroblastomas with N-myc amplification (3.63 +/- 1.62 microns2) was not significantly different from that of neuroblastomas without N-myc amplification (2.46 +/- 1.57 microns2; P = 0.30). On the other hand, both N-myc amplification and AgNOR protein expression were found to be significantly related to the clinical outcome of the disease (P < 0.001 and P = 0.0143, respectively; median follow-up time = 47 months; range 18-106 months). In a second set of experiments, the relationship between N-myc amplification and cell proliferation rate was assessed in seven established human neuroblastoma cell lines. N-myc amplification was found to be completely independent of the population doubling time (DT), which, on the contrary, was strictly related to the quantitative expression of AgNOR protein (r = -0.947; P < 0.001). Altogether, the present results indicate that N-myc amplification and cell proliferation rate are not interrelated in neuroblastoma, each representing an independent biological parameter of cancer cells associated with the clinical behaviour of the disease.

Antigens, Nuclear↗

Immunohistochemical detection of nucleolar protein p120 in paraffin-embedded tissues.

The monoclonal antibody FB-2 recognizes the antigen p120-kDa protein (p120), associated with the nucleolar matrix. p120 has originally been reported as expressed and detectable in malignant and non-neoplastic proliferating cells, but not in most normal resting tissues and benign tumours. In the present study, a reliable immunostaining method was used to detect p120 on formalin-fixed, paraffin wax-embedded tissue, testing it on 148 samples from different neoplastic and non-neoplastic tissues from different organs (breast, colon, lung, prostate, bladder, lymph nodes, skin, tongue and liver). The immunostaining was performed after the application of a specific antigen-unmasking protocol based on six consecutive cycles of microwave oven heating. Under these retrieval conditions, p120 antigen was clearly detectable, not only in hyperplastic and malignant cells, but also in stromal and normal non-proliferating cells of all the tissues evaluated. Our results show that the nucleolar protein p120 can be detected by routine immunohistochemistry in formalin-fixed, paraffin-embedded tissue and is expressed in all nucleated cells under any biological condition.

Antigens, Neoplasm↗

AgNOR protein quantity of cervical smears correlates with that of histological sections in cervical intraepithelial neoplasia.

The quantitative distribution of AgNOR proteins has been determined by image cytometry in 52 cervical smears obtained from normal cervix (n = 20), grade I CIN (cervical intraepithelial neoplasia) (n = 3), grade II CIN (n = 5) and grade III CIN (n = 24). No significant difference was demonstrated in the mean AgNOR protein area values between normal cervix, CIN I and CIN II, while AgNOR protein scores of CIN III were significantly greater than those of normal cervix (p < 0.05). AgNOR protein quantity was also determined in 17 colposcopic directed biopsies of patients with CIN lesions (3 CIN II and 14 CIN III) already studied by cytological analysis. When AgNOR protein values of histological sections and corresponding cytological smears were compared by linear regression analysis, a significant correlation was found (r = 0.74, p < 0.05). Our results demonstrate that AgNOR protein quantity of cervical smears actually reflects that of the cervical epithelium in situ and may therefore be useful for the cytological diagnosis of cervical lesions.

Biopsy↗

Chromosome 1 aneusomy with 1p36 under-representation is related to histologic grade, DNA aneuploidy, high c-erb B-2 and loss of bcl-2 expression in ductal breast carcinoma.

Chromosome 1 abnormalities with loss of 1p36 have been investigated in 95 breast-cancer samples by means of a dual-target fluorescence in-situ hybridization (FISH) technique using the pUC 1.77 and p1-79 probes, specific for the 1q12 and 1p36 regions, respectively. Abnormalities for one or both probes were detected in 83/95 samples. Relative 1p36 under-representation was found in 79/95. The clinical relevance of these alterations was studied by comparing the FISH results with several parameters currently used in breast-cancer pathology. Distinct patterns of chromosome 1 abnormalities were found among the histologic types of breast carcinoma. Lobular or mucinous samples showed few or no alterations, whereas most ductal samples had high chromosome 1 polysomy with under-representation of 1p36. In ductal carcinomas, chromosome 1 alterations increased with histologic grade, DNA aneuploidy, loss of bcl-2 and high c-erb B-2 expression. These associations were found to be statistically significant. No correlation between chromosome 1 alterations and nuclear grade, age, size, lymph-node involvement, hormonal receptor presence, proliferation activity or p53 protein expression was detected. These results indicate the utility of this FISH technique for a better definition of the biological characteristics of ductal carcinomas.

Adult↗

Qualitative and quantitative analysis of AgNOR proteins in chemically induced rat liver carcinogenesis.

A qualitative and quantitative analysis of silver-stained nuclear organizer regions (AgNOR) proteins was performed during hepatocarcinogenesis induced in rats initiated by diethylnitrosamine (DENA) using the resistant-hepatocyte model. Nuclear proteins from control hepatocytes, hyperplastic nodules, and hepatocellular carcinomas (HCC) separated by sodium dodecyl sulfate-polyacrylamide gel electrophoresis were transferred to nitrocellulose membranes and specifically silver-stained for AgNOR proteins. No difference was observed in the distribution pattern of the silver-stained bands among control, hyperplastic, or cancer cells. The same was true if human cirrhosis and HCC were compared. The evaluation of individual AgNOR protein amounts by computerized densitometric analysis showed that 1) the integrated optical density value of the total AgNOR proteins was greatest in cancer cells, lesser in hyperplastic hepatocytes, and lowest in control hepatocytes, and 2) the amount of the two major silver-stained proteins, nucleolin (105 kd) and protein B23 (39 kd), was always a constant percentage of total AgNOR proteins. An experiment using bromodeoxyuridine incorporation showed that, during hepatocarcinogenesis, AgNOR protein quantity progressively increased and was significantly related to the increased hepatocyte labeling index. These results show that AgNOR protein distribution changes during hepatocarcinogenesis are caused neither by the synthesis of new AgNOR proteins nor by an unbalanced synthesis of individual AgNOR proteins, but to an increased synthesis of nucleolin and protein B23, which is associated with a progressive increased hepatocyte proliferation rate.

Animals↗

In hepatocellular carcinoma AgNOR protein expression correlates with tumour mass doubling time.

AIMS/METHODS: The relationship between AgNOR protein expression and doubling time was evaluated in 20 untreated nodules of hepatocellular carcinoma arising in cirrhotic liver. AgNOR protein quantity within the lesion was defined by image cytometry on histological sections from frozen biopsies obtained under ultrasound-guidance, selectively stained for AgNOR proteins. Tumour doubling time was calculated 6 months after diagnosis by measuring the volume variations of the nodules over a fixed period by "real time" ultrasonography. RESULTS: The doubling time of nodules characterized by high AgNOR protein area values (> 5.50 microns2, corresponding to the median AgNOR protein value) was shorter than that of nodules with low AgNOR protein area values (< 5.50 microns2). A highly significant difference in the mean doubling time values between the two groups (6.31 +/- 2.68 (E.S.) versus 15.92 +/- 3.03 (E.S.) months, respectively; p = 0.009) was found. Moreover, when the relationship between AgNOR protein and doubling time values was tested by linear regression analysis, a significant inverse correlation was observed (r = -0.68; p < 0.005). CONCLUSIONS: Our results indicate that AgNOR protein quantity represents a reliable parameter for predicting the tumour growth rate of untreated hepatocellular carcinoma nodules. Among the procedures commonly employed for the assessment of cell proliferation, the evaluation of the AgNOR parameter seems to be particularly suitable for kinetic analysis of ultrasound-guided fine-needle liver biopsies.

Adult↗

AgNOR quantity in needle biopsy specimens of prostatic adenocarcinomas: correlation with proliferation state, Gleason score, clinical stage, and DNA content.

Aims-To define the relation between the quantity of silver stained nucleolar organiser regions (AgNORs) and histological grade, clinical stage, DNA content, and MIB-1 immunostaining in needle biopsy specimens of prostatic adenocarcinomas.Methods-Histological grade was determined according to the Gleason system. AgNOR quantity, DNA content and MIB-1 immunostaining were evaluated by image cytometry on routine histological sections stained with silver, Feulgen reaction and MIB-1 antibody, respectively.Results-The mean AgNOR area increased with increasing Gleason score. A significant difference was found in the AgNOR values between low, intermediate and high grade tumours. Patients with clinically localised tumour (stages A and B) had lower AgNOR values than patients with advanced disease (stages C and D), but the difference in the mean AgNOR values between the two groups was not statistically significant. Non-diploid tumours had a significantly higher mean (SD) AgNOR area than diploid tumours (3.68 (1.04) mum(2)v 2.73 (0.60) mum(2), respectively), while no significant difference was observed in the mean AgNOR values between aneuploid and tetraploid tumours (3.68 (1.04) mum(2)v 3.70 (1.05) mum(2)). When AgNOR and MIB-1-PI values were compared using linear regression analysis, a highly significant correlation was found.Conclusions-These data demonstrate that AgNOR quantity reflects the proliferative potential of prostatic adenocarcinomas, and is significantly related to histological grade and DNA content. The ease of application on routine sections, maintaining the morphological integrity of the tissue, the ability to evaluate selected histological areas of limited size and objective quantification by image cytometry make the AgNOR method particularly suitable for cell kinetic analysis in prostatic needle biopsy specimens.

Journal Article↗

In vivo bromodeoxyuridine labelling index, AgNOR protein expression and DNA content in human tumours.

The correlation between AgNOR (silver stained nucleolar organizer region) protein quantity and the percentage of S-phase cells was determined in 45 human tumours of different origin (28 from endometrium, 8 from cervix, 4 from ovary, 3 from larynx, 1 from rhinopharynx and 1 from tongue). AgNOR protein quantity was evaluated by image analysis on histological sections stained by the one-step silver staining method. S-phase cells were detected in histological sections with anti-bromo-deoxyuridine (BrdU) antibodies after in vivo BrdU infusion. The relationship between AgNOR protein and BrdU labelling index (LI) values was tested by linear regression analysis. A highly significant association of the two parameters was found (r = 0.78; p < 0.001), independent of the tumour type. DNA content of the 45 tumours was also determined by flow cytometry, and the DNA quantity was correlated with the kinetics data. Euploid tumours had a mean AgNOR protein area of 3.33 +/- 1.34 microns2 and a mean BrdU-LI of 10.78 +/- 8.94%, while in aneuploid tumours the mean AgNOR protein area was 4.78 +/- 1.78 microns2 and the mean BrdU-LI 17.37 +/- 8.79%. Both AgNOR protein quantity and BrdU-LI were significantly higher in aneuploid than in euploid tumours (Student-t Test: p < 0.05 and p < 0.02 for AgNOR and BrdU values, respectively). However, despite this significant difference, a relevant overlap of AgNOR protein and BrdU-LI scores was found within both the aneuploid and euploid groups.

Aneuploidy↗

Quantitative changes of the two major AgNOR proteins, nucleolin and protein B23, related to stimulation of rDNA transcription.

The relationship between the amount of the two major AgNOR proteins, nucleolin and protein B23, and the rate of ribosomal RNA (rRNA) synthesis was studied in cortisol-treated and regenerating rat hepatocytes after partial hepatectomy. In both experimental models the synthesis of rRNA was greatly stimulated, but only in regenerating hepatocytes was the increased synthesis associated with cells entering the mitotic cycle. Nucleolin and protein B23 were identified on SDS-polyacrylamide gels of nuclear proteins transferred to nitrocellulose and detected (1) by immunoreaction with specific monoclonal antibodies revealed by second antibodies coupled to peroxidase followed by chemiluminescence or (2) by the silver-staining procedure for AgNOR proteins. Nucleolin and protein B23 were then quantified by computerized densitometric analysis of the immunolabeling signals or the silver-stained bands at 105 kDa (nucleolin) and 39 kDa (protein B23). The synthesis of rRNA was measured by evaluating the amount of radioactivity incorporated into pre-rRNA after [3H]orotic acid injection. Densitometric analysis of silver-stained bands and immunolabeling signals showed no change in nucleolin and protein B23 amounts in cortisol-stimulated hepatocytes, whereas a moderate increase was found in regenerating hepatocytes at 12 h after partial hepatectomy. In both cortisol-stimulated and regenerating hepatocytes the synthesis of rRNA was highly increased (2.6-fold and 4.3-fold above the control level, respectively). To ascertain the relationship between quantitative changes in nucleolin and protein B23 and stimulation of rRNA transcriptional activity in regenerating hepatocytes, the quantitative distribution of these proteins was also investigated in the early times of regeneration using silver-stained nitrocellulose-transblotted nuclear proteins. The quantity of protein B23 was unchanged until 12 h after partial hepatectomy, whereas nucleolin appeared to be slightly increased at 9 h (1.15-fold above the control value) after partial hepatectomy. On the other hand, at just 6 h after partial hepatectomy, a significant increase of rRNA synthesis occurred in regenerating rat hepatocytes (1.8-fold above the control value). These data demonstrated that stimulation of rRNA transcriptional activity occurring in rat hepatocytes after cortisol treatment and in the early times after partial hepatectomy was not associated with quantitative changes in the amounts of nucleolin and protein B23.

Animals↗

Proportionally constant quantitative transmission of nucleolin and protein B23 in cycling cancer cells.

Objective-To investigate whether and to what extent the two major AgNOR proteins, nucleolin and protein B23, are maintained after one cell division in proliferating cells.Design-Using three asynchronously growing human cancer cell lines, TG, SJNKP, and CHP 212 cells, nucleolin and protein B23 were first identified on SDS-polyacrylamide separated nucleolar proteins, transferred to nitrocellulose and silver stained for AgNOR proteins. Measurement of doubling time indicated a period very close to 24h for each of the cell lines. To quantify the percentage of nucleolin and protein B23 maintained in daughter cells after duplication, cells were labelled with [(35)S]-methionine and a 24h cold chase performed. Nucleolin and protein B23 labelling was evaluated by densitometric analysis on nitrocellulose autoradiograms.Results-The radioactivity relative to nucleolin and protein B23 bands maintained in the daughter cells was a constant fraction of that present before cell duplication. In the three cell lines the percentage of residual radioactivity measured in the nucleolin bands was 42.2, 40.6, and 41.2 and in protein B23 bands 48.0, 46.2, and 44.1.Conclusions-After one cell division the nucleolin and protein B23 quantity present in cells may be highly variable, depending on the amount of the two proteins present in the mother cell. This is important in relation to the correct utilisation of AgNOR protein quantity as an index for evaluating cell kinetics.

Journal Article↗

Amount variability of total and individual Ag-NOR proteins in cells stimulated to proliferate.

Ribosomal genes are associated with a subset of acidic proteins called Ag-NOR proteins. The amount of nucleolar Ag-NOR proteins varies, depending on nucleolar activity and/or cell proliferation. To understand the linkage between the amount of Ag-NOR proteins, ribosome biogenesis, and cell proliferation, we investigated the variability of Ag-NOR proteins in rRNA-stimulated cells maintained in G1 and in rRNA-stimulated cells entering the mitotic cycle. Rat hepatocytes were stimulated with cortisol for rRNA synthesis (1, 4, and 8 hr) and the cell cycle was induced by hepatectomy in regenerating hepatocytes (3-21 hr). In non-stimulated hepatocytes, nucleolin and protein B23 were the two major Ag-NOR proteins, corresponding to 70% of total Ag-NOR staining. In hepatocytes stimulated for rRNA synthesis in G1, the amount of Ag-NOR proteins was only slightly increased, whereas in cycle-stimulated cells it was increased 3.04-fold. This is the consequence of a differential increase of the major Ag-NOR proteins that appears earlier and is proportionally more important for nucleolin (3.5-fold) than for protein B23 (twofold) and also for the increase of several minor Ag-NOR proteins. We conclude that, in dividing cells, the mean value of the Ag-NOR proteins measured reflects the percentage of cells in the different phases. This could explain why the amount of Ag-NOR proteins can be used as a marker of cell proliferation.

Animals↗