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Biomedical subjects

M Boiocchi

Publications and source records attributed to M Boiocchi.

At least 19 recordsLinked to original sources

p53 over-expression is an early event in the development of human squamous-cell carcinoma of the larynx: genetic and prognostic implications.

The tumor-suppressor protein p53 is over-expressed in a large fraction of squamous-cell carcinomas of the larynx (LSCCs). p53 overexpression is dependent upon the synthesis of mutated versions of the protein and has been associated with the malignant progression of certain tumor types. In order to examine the prognostic value of p53 immunodetection in LSCCs, we performed a retrospective analysis on a selected series of tumors, using the PAb 1801 and CM1 antibodies. No significant difference in the frequency of p53 over-expression was observed between tumors from patients with early relapse (67%) and those who had been disease-free for more than 5 years (84%). The lack of correlation of p53 immunoreactivity with clinical stage and differentiation grade of LSCCs, together with the coordinated expression of p53 in primary tumors and the corresponding lymph-node metastases, indicate that p53 over-expression is probably unrelated to the biological aggressiveness of these tumors. In addition, the detection of p53 immunostaining in pre-invasive areas as well as in preneoplastic lesions suggests that p53 abnormalities probably constitute a very early event in LSCC development.

Carcinoma in Situ

Pathogenesis of human reactive-appearing "non-monomorphous" malignant lymphoproliferative disorders: a hypothesis.

Human reactive-appearing "non-monomorphous" malignant disorders, such as Hodgkin's disease, T-cell-rich B-cell lymphomas and angioimmunoblastic lymphadenopathy display a peculiar and unifying characteristic, which biologically differentiates them from "monomorphous" non-Hodgkin's lymphomas. It consists in the coexistence within the pathologic tissue of a polyclonal, normal-appearing, presumed reactive cellular component, mainly composed of T-lymphocytes together with a clonal cell component constituting a minority of the pathologic mass. To explain the long-lasting coexistence of such polymorphic cell populations in the pathologic tissue of synchronous and metachronous localizations of the disease, it is hypothesized that they are interconnected by "biological interactions" which determine and sustain the pathologic process. Based on the biological characteristics of an experimental model (the follicular center cell "lymphoma" of the SJL murine strain), it is suggested that these human "non-monomorphous" malignant diseases should be regarded as a continuous spectrum of lymphoproliferative disorders sustained by a biological loop which interconnects different cell populations able to stimulate each other for growth.

Animals

P-glycoprotein but not topoisomerase II and glutathione-S-transferase-pi accounts for enhanced intracellular drug-resistance in LoVo MDR human cell lines.

The biochemical bases of the multidrug-resistant (MDR) phenotype were investigated in drug-resistant sublines derived from LoVo human colon carcinoma cell lines by doxorubicin (DOX) and teniposide (VM26) selection. In addition to P-glycoprotein-mediated drug extrusion through the plasma-membrane, LoVo MDR cells display a further drug-resistance mechanism. That is, to achieve equitoxic effects, LoVo MDR sublines require much higher intracellular drug concentrations than those required by LoVo drug-sensitive parent cell line. Involvement of mdr1, topoisomerase II and glutathione-S-transferase-pi (GST-pi) drug-resistance systems in intracellular drug resistance was investigated. Pharmacologic and biochemical data indicated that intracellular drug resistance in LoVo MDR sublines is uniquely consequent to the drug-transporting property of intracytoplasmic membrane-bound P-glycoprotein molecules which compartment drugs in vacuole-like structures.

ATP Binding Cassette Transporter, Subfamily B, Mem

Expression of the mdr1 gene in human colorectal carcinomas: relationship with multidrug resistance inferred from analysis of human colorectal carcinoma cell lines.

To investigate whether mdr1 gene products are involved in conferring the chemoresistant phenotype to human colorectal carcinomas (HCCs), we determined the mdr1 mRNA expression level (mdr1 EL) in surgical specimens from 29 pharmacologically untreated patients and analyzed the relationship between mdr1 EL and drug resistance in an in vitro experimental model. This consisted of 7 HCC cell lines chosen to cover the range of mdr1 ELs detected in the neoplastic specimens. No relationship was observed between the mdr1 EL of the HCC cell lines and the degree of chemosensitivity found for each drug tested, regardless of whether mdr1 gene products may [doxorubicin (DOX), vincristine (VCR), and actinomycin-D (ACT-D)] or may not affect [cis-diamminedichloroplatinum (CDDP)] drug-transmembrane equilibria. Conversely, a direct relationship was found between the mdr1 EL of HCC cell lines and the number of drug-resistant (DR) colonies arising from each parent cell line treated in continuous culture with high DOX concentrations. In addition, the chemoresistance index and mdr1 EL of the DR cell variants were roughly proportional to the mdr1 EL of the parent cell line. Our findings suggest that primary HCCs derive multidrug resistance from biochemical mechanism(s) other than mdr1 gene products. However, the mdr1 EL might be indicative of a predisposition to develop DR cell variants after chemotherapeutic treatment.

Antineoplastic Agents

Mechanism of multidrug resistance in human tumour cell lines and complete reversion of cellular resistance.

The biochemical basis of the multidrug-resistant (MDR) phenotype has been investigated in drug-resistant sublines derived from LoVo and SW984 human colon carcinoma cell lines by doxorubicin selection. Besides drug extrusion through the plasma membrane, two further observations, both ascribable to the drug transport property of the gp170 glycoprotein, were made. First drug deposition into cytoplasmic membranous structures which allows cells to tolerate a high intracellular drug concentration since it prevents drugs from reaching their cellular target site(s). Secondly drug removal from the complexes formed by interaction of drug with target cellular macromolecules, a phenomenon which extends its an effect that continues after treatment and appears to be the most important resistance mechanism in MDR cells. Treatments based on the gp170 inhibitory property of verapamil were developed that allowed abrogation of resistance in MDR cell lines, a strategy that may be applicable to therapy treatments.

ATP Binding Cassette Transporter, Subfamily B, Mem

Expression of glutathione-S-transferase-pi in human tumours.

Expression of glutathione-S-transferase-pi (GST-pi) gene was quantitatively analysed on various human tumours (renal cell, colorectal, head and neck, ovarian carcinomas, soft tissue sarcomas; non-Hodgkin lymphomas) and on the corresponding normal tissues when available (kidney, colorectum and head and neck). GST-pi mRNA expression level was found to be significantly higher in tumours (P less than 0.01) than in the normal counterparts (mainly 7.3, 3.5- and 3.0-fold in colorectal, head and neck, and renal carcinomas, respectively). Most tumours displayed a significant relationship between higher GST-pi expression level and poor differentiation grade of tumour cells, thus suggesting a relationship between GST-pi activity, neoplastic transformation and cellular differentiation grade. The high requirement of GST-pi activity neoplastic cells displayed was not singularly related to cellular replication rate. Finally, GST-pi gene expression levels were not affected by chemotherapeutic treatments.

Adolescent

Chromosomal localisation of two putative 11p oncosuppressor genes involved in human ovarian tumours.

In this study, 44 primary or metastatic human ovarian tumours were tested for allelic deletions on the short arm of chromosome 11. Analysis of 12 polymorphic loci by Southern blotting evidenced loss of heterozygosity (LOH) in at least one locus in 41% of cases. Moreover, two hot spots of deletions were tentatively mapped on 11p13 and 11p15.5. Our results demonstrated that LOH at 11p is a common event in ovarian carcinomas and were indicative of the possible existence in 11p of two oncosuppressor genes involved in ovarian carcinogenesis. The similarity observed with 11p allelic losses in Wilms tumours, clustered in 11p13 and 11p15.5 too, suggests that deletion and possibly inactivation of the same growth regulatory genes (WT genes) could also contribute to development of the malignant phenotype in ovarian carcinomas. Finally, a statistically significant association (P = 0.005) between 11p deletions and hepatic involvement was suggested by the analysis of distribution of 11p LOH relative to different clinical and pathological parameters of the tumour patients.

Adult

Expression of MDR1 and GST-pi in human soft tissue sarcomas: relation to drug resistance and biological aggressiveness.

Human soft tissue sarcomas (HSTS) in adults are a family of mesenchymal tumors characterized by high biological aggressiveness and general refractoriness to chemotherapy. A series of 36 HSTS, 24 untreated and 12 homogeneously treated with a presurgical chemotherapeutic regimen consisting of doxorubicin (intra-arterial) and iphosphamide (intra-vein), was analyzed for expression of MDR1 and the glutathione-S-transferase-pi (GST-pi) gene in order to identify molecular phenomena which may be implicated in the chemoresistance displayed by these tumors. The MDR1 gene was expressed in a greater percentage of drug-treated tumors and at higher levels than in untreated ones. By contrast, chemotherapeutic treatment has no effect on GST-pi mRNA expression. The GST-pi expression level (EL) was much higher in the HSTS with biologically aggressive features. In fact, significant correlations were observed between GST-pi and histologic grade (p = 0.01); aneuploidy (p less than 0.01); and histone H3 EL (p = 0.01), suggesting a possible causal relationship between GST-pi activity and biological aggressiveness in HSTS.

Adult

Association of Epstein-Barr virus genome with mixed cellularity and cellular phase nodular sclerosis Hodgkin's disease subtypes.

Association of Epstein-Barr virus (EBV) genome with Hodgkin's disease (HD) histological subtypes was investigated using the polymerase chain reaction (PCR). A highly significant association of EBV genome with the mixed cellularity (MC) subtype (10 positive out of 15 cases; 66%) was observed, suggesting a possible etiopathogenetic role of EBV in the induction of this subset. By contrast, a markedly lower frequency of association with EBV genome was found in nodular sclerosis (NS) (12 positive out of 46 cases; 26%) and in nodular lymphocytic predominance (NLP) (0 positive out of 5 cases) HD subtypes. In addition, in the NS series, the presence of EBV genome was mainly restricted to the 'cellular phase' NS subset. This finding strengthens the possibility, suggested by clinico-pathological features and survival rates, that 'cellular phase NS' is a disease more akin to MC than to typical NS HD.

Genome, Viral

Adhesion molecule expression does not influence the leukemic behavior of murine T-cell lymphomas.

Recirculation and homing properties of normal lymphocytes are controlled by interactions with high endothelial venules (HEVs), specialized vessels which mediate the extravasation into lymphoid tissues. The present study was aimed at elucidating whether lymphoma-derived leukemic cell spreading and peripheral lymph node invasion ability are mediated by the recognition mechanisms which physiologically regulate normal lymphocyte trafficking. For this purpose, we tested the HEV-binding ability and the expression of the lymphocyte homing receptor (LHR) for peripheral lymph nodes as well as Pgp-1/CD44, LFA-1 and ICAM-1 adhesion molecules by the highly leukemic cell line NQ22 in comparison with a series of non-leukemic murine T-lymphoma cell lines. Our results indicate that the hematogenous spreading as well as peripheral node invasion of lymphoma-derived leukemic cells may occur independently of LHR expression. In addition, our findings seem to rule out that gross quantitative modifications in LFA-1 or ICAM-1 antigen expression are associated with differential dissemination abilities of transformed lymphoid cells.

Animals

High frequency of p53 gene alterations associated with protein overexpression in human squamous cell carcinoma of the larynx.

A series of 58 primary human squamous cell carcinomas of the larynx (LSCCs) was examined for the expression of the p53 tumor-suppressor gene by a combined immunohistochemical and molecular approach. About 60% of the cases displayed nuclear p53 overexpression as revealed by immunostaining with PAb1801, PAb122 and PAb240 monoclonal antibodies. This phenomenon was associated with the presence of structural and/or transcriptional alterations of the p53 gene. Our results provide evidence that p53 abnormalities constitute the most frequent genetic alteration identified so far in LSCC and indicate that the abnormal accumulation of the protein correlates with the presence of p53-mutated versions. These findings, taken together with the peculiar biochemical properties of p53, support the hypothesis of a possible pathogenetic relationship between smoke carcinogen exposure and p53 inactivation in the development of this tumor type.

Antibodies, Monoclonal

A clinicopathologic study of lymphoid neoplasias associated with human immunodeficiency virus infection in Italy.

The clinicopathologic features of 45 human immunodeficiency virus (HIV)-infected patients (mainly intravenous drug users [IVDU]) with lymphoid neoplasias seen from September 1984 through July 1990 at an Italian cancer center are reviewed. Thirty-five had systemic non-Hodgkin's lymphoma (NHL), and ten had Hodgkin's disease (HD). Histologically, 27 NHL cases were intermediate grade (five cases) or high grade (22 cases, 14 of the small noncleaved cell type), according to the Working Formulation. Eight NHL cases, including four anaplastic large cell (ALC) BerH2 (CD30)-positive lymphomas, were in the miscellaneous group. Immunohistologic and/or gene rearrangement analysis showed the B-cell origin of 20 of the 24 NHL cases studied. At presentation, 71% of NHL patients had advanced stages (Stage III or IV), and 85% had extranodal disease (predominantly gastrointestinal tract and marrow). Of the 23 patients evaluable for treatment, only seven had a complete clinical response after lymphoma therapy; the median survival of 34 evaluable patients was 22 months after the diagnosis of NHL. Fifteen patients died; most deaths were attributable to progressive lymphoma and opportunistic infections. As with NHL, advanced disease, extranodal involvement, aggressive histologic findings, and poor response to therapy were also observed in patients with HD. This study shows that lymphoid neoplasias occurring in Italian IVDU with HIV infection and those previously reported in North American homosexual men with HIV infection share similar clinicopathologic features. However, some features such as the absence of history of Kaposi's sarcoma at diagnosis, the lack of detection of primary brain and rectal NHL, and the occurrence of B-cell ALC BerH2 (CD30)-positive NHL were observed uniquely in this series of patients.

Adult

Frequent occurrence of Ha-rasl allelic deletion in human ovarian adenocarcinomas.

Fourteen human adenocarcinoma specimens were analyzed for somatic abnormalities affecting genes of the ras family. No amplification of the 3 ras genes was detected. Allelic deletion of the Ha-rasl gene (11p15.5) was found to be a very common abnormality in human ovarian adenocarcinomas (4 out of 7 informative cases). However, in these neoplasm deletion of a presumed normal Ha-rasl allele is not a contributory factor in strengthening the tumorigenic effect of a mutated allele. More probably, Ha-rasl allelic losses are markers of larger chromosomal deletions. Analyses at gamma globin loci (11p15.5) and int-2 locus (11q13) provided evidence that the deletions may extend from Ha-rasl locus towards the centromere but never involve loss of the entire chromosome 11. These findings may suggest that a putative tumor suppressor gene closely linked to Ha-rasl in 11p15.5 is involved in ovarian cancerogenesis.

Adenocarcinoma

Proto-oncogene allelic variations in human squamous cell carcinomas of the larynx.

Proto-oncogene restriction fragment length polymorphisms (RFLPs) were investigated in a group of 23 patients with squamous cell carcinomas of the larynx. The frequency of the rare 5 kb c-mos allele was significantly higher than that observed in control groups of patients with colorectal neoplasms or lymphoproliferative disorders. In addition, the 2 patients heterozygous at the c-mos locus (TC-8 and TC-10) were the only 2 of our series of develop multiple malignancies. Also, the 10 kb L-myc allele was remarkably more represented in patients with laryngeal carcinoma when compared to controls. These findings suggest that c-mos and L-myc RFLPs might be helpful in identifying those individuals who are at a higher risk of developing laryngeal carcinomas. Single allele amplification of L-myc, c-myb and c-mos proto-oncogenes, with no concomitant mRNA hyperexpression, were observed in 3 cases. The results obtained seem to rule out a direct pathogenetic role of these proto-oncogenes and suggest that the amplification of other closely linked genes, located on chromosomes 1, 6 and 8, respectively, may be causally associated with the development of these tumors. No allelic deletions at the c-myb locus were observed, whereas a loss of a c-Ha-ras-1 allele was demonstrated in one of the 11 heterozygous patients. Thus, the analysis of polymorphic proto-oncogenes in laryngeal carcinomas allowed us to identify a group of genetic abnormalities (chromosomes 1, 6 and 8 gene amplifications and c-Ha-ras-1 deletions) which may be involved in the development or progression of these tumors.

Aged

Pleiotropic-resistant phenotype is a multifactorial phenomenon in human colon carcinoma cell lines.

The biochemical basis of multidrug-resistant (MDR) phenotype has been investigated in drug-resistant sublines independently obtained in our laboratories by single step doxorubicin (DOX) selection of LoVo, DLD1, and SW948 human colon carcinoma (HCC) cell lines. All the chemoresistant sublines have been found to be cross-resistant to DOX, actinomycin-D (ACT-D) and vincristine (VCR) but not to cis-diamminedichloroplatinum (CDDP), and have exhibited an increased expression level of mdr1 mRNA and gp170 glycoprotein. Comparative analyses in drug-resistant and sensitive cells of resistance index, extracellular and intracellular equitoxic DOX concentrations, and mdr1 gene products expression have indicated that MDR phenotype is a multifactorial phenomenon due to different and possibly independent biochemical mechanisms which cooperate, in varying degrees from cell line to cell line, in conferring cellular chemoresistance.

ATP Binding Cassette Transporter, Subfamily B, Mem

Histopathologic, immunophenotypic, and genotypic analysis of Ki-1 anaplastic large cell lymphomas that express histiocyte-associated antigens.

CD30/Ki-1 antigen expression in 243 cases of malignant lymphomas was examined using Ber-H2 monoclonal antibody. Among them 20 cases were categorized as Ki-1 anaplastic large cell lymphoma. In two of these cases histiocyte-associated markers were also expressed. In these cases histopathologic and extensive in situ immunophenotypic analyses were used with genotypic studies in the determination of cell lineage. A sinusoid histologic pattern of involvement with partial lymph node infiltration by pleomorphic neoplastic cells was noticed in the nodes from both patients. Solid areas of node replacement resembling metastatic carcinoma were seen in Patient 1. Immunohistologically, tumor cells of both cases were positive for CD30, CD25, CD71, LN3 (HLA-DR), EMA, CD45, CD74, vimentin, alpha-1-antichymotrypsin, and CD68. Patient 1 was also CD45RO+, CD43+, whereas Patient 2 was positive for alpha-1-antitrypsin and CD4 tumor cells. Genotypic studies revealed that TCR beta and TCR gamma chain genes were clonally rearranged in Patient 1, whereas no rearrangements were detected in Patient 2. This study supports the view that some Ki-1 anaplastic large cell lymphomas may express multiple histiocyte-associated antigens and confirms that this group of neoplasms have immunophenotypic heterogeneity. The results of genotypic analyses used with immunophenotyping does not exclude that the tumor cells in these cases may be of true histiocytic origin despite the Ki-1-positive phenotype.

Adolescent