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Biomedical subjects

M Prat

Publications and source records attributed to M Prat.

At least 55 records · Page 3Linked to original sources

Expression of the c-Met/HGF receptor in human melanocytic neoplasms: demonstration of the relationship to malignant melanoma tumour progression.

The c-MET proto-oncogene encodes the receptor for the Hepatocyte Growth Factor/Scatter Factor, which is known to mediate mitogenic, motogenic and invasive responses of several cell types. We have analysed by immunohistochemistry and biochemically the expression of c-MET in benign and malignant melanocytic lesions. The Met/HGF receptor which in the melanocytic lineage displays the structural features of the authentic receptor was undetectable in tissue melanocytes and in nevocytic nevi. Only four out of 23 primary melanomas scored positive. Expression was increased to a significant level in 17 out of the 44 metastatic lesions examined. The c-MET expression was homogeneous in multiple metastases from the same patients. Comparative analyses showed both lack of correlation with the expression of the tumour progression associated ICAM-1 adhesion molecule and, in 23% of cases, co-expression with the c-KIT encoded receptor. These findings show that the c-MET gene is expressed at late stages of melanoma progression and suggest that the presence of Met/HGF receptor may contribute to the acquisition of an invasive phenotype.

Antibodies, Monoclonal↗

A novel GPI-anchored glycoprotein shows properties of a COOH-terminus truncated cadherin involved in cell-cell contacts of cultured human epithelial cells.

We report the characterization of a cell-cell adhesion molecule identified by mAb BD31 on human epithelioid cells. This glycoprotein shows cadherin features but appears to be truncated being devoid of the transmembrane and cytoplasmic domains. It is directly membrane-anchored by a GPI moiety. We propose to call this molecule HT-cadherin.

Antibodies, Monoclonal↗

Immunocytodiagnosis of atypical hyperplasia and endometrial carcinoma in post-menopausal women.

In the present study we have evaluated whether monoclonal antibodies (MAbs) B72.3 and AR-3 which display, on histological preparations, a differential reactivity with normal and transformed endometrium, could be a useful adjunct to endometrial cytology in the identification of pre-neoplastic and neoplastic conditions. Immunocytochemical (ICC) tests, using the 2 reagents, were performed on normal cycling endometrium and on hyperplastic and malignant lesions collected by the endocyte technique both from 86 surgically resected specimens and from 62 postmenopausal symptomatic and asymptomatic outpatients. The results obtained showed that the combination of the 2 MAbs can complement conventional morphology in the identification of pre-malignant atypical lesions and endometrial carcinoma of unclear cytological features, thus allowing a selection of those patients who are candidates for fractional curettage.

Adenocarcinoma↗

Circadian phase-dependent protein and tissular binding of three local anesthetics (bupivacaine, etidocaine, and mepivacaine) in mice: a possible mechanism of their chronotoxicokinetics?

The aim of this study was to investigate the possible influence of the time of administration on bupivacaine (B), etidocaine (E), and mepivacaine (M) protein and tissue (brain and heart) binding. For each anesthetic agent, a single dose of B (20 mg/kg), E (40 mg/kg), or M (60 mg/kg) was administered intraperitoneally at 10:00, 16:00, 22:00, and 04:00 h. Blood and tissue samples were collected 15 min after drug administration. This study documents significant circadian variations in protein and tissue binding of the three local anesthetic agents. We did not demonstrate a temporal relationship between the respective free and tissue levels. Thus, the temporal variations of free plasma, brain, and heart levels do not seem to be involved in the temporal changes of induced mortality.

Anesthetics, Local↗

Overexpression of the c-MET/HGF receptor gene in human thyroid carcinomas.

The receptor for Hepatocyte Growth Factor is a transmembrane tyrosine kinase encoded by the c-MET oncogene. We have previously shown that the Met protein is expressed in several human epithelial tissues. The receptor is barely detectable, however, in normal thyroids and in specimens from patients affected by non-neoplastic thyroid diseases. Now we report that the expression of the Met/HGF receptor is increased a hundred fold in 22 out of 41 human carcinomas derived from the thyroid follicular epithelium. A comprehensive analysis of 15 cases showed that the overexpressing carcinomas belong to histotype variants correlated with negative prognosis and in all but one case there were evidences of locally advanced disease and/or distant metastases. The 11 benign adenomas and the 5 medullary carcinomas tested were negative. Western blot analysis with monoclonal antibodies directed against either the intracellular or the extracellular receptor domains failed to reveal major structural alterations. Southern blot analysis also demonstrated that the c-MET gene was not amplified nor rearranged. These data suggest a role for the overexpression of c-MET oncogene in the pathogenesis and progression of thyroid tumors derived from the follicular epithelium.

Adolescent↗

The receptor encoded by the human c-MET oncogene is expressed in hepatocytes, epithelial cells and solid tumors.

The human c-MET oncogene encodes a transmembrane tyrosine kinase (p190c-met) with structural and functional features of a growth-factor receptor. Monoclonal antibodies (MAbs) have been used to investigate the distribution of the c-Met protein in human normal and neoplastic tissues. By immunofluorescence microscopy homogeneous expression was detected in normal hepatocytes as well as in epithelial cells lining the stomach, the small and the large intestine. Positive staining was also found in epithelial cells of the endometrium and ovary, and in basal keratinocytes of esophagus and skin. By Northern blot analysis, high levels of c-met messenger RNA were detected in specimens of liver, gastro-intestinal tract and kidney. c-met-specific mRNA was also found in thyroid, pancreas and placenta, in which organs c-Met protein was barely detectable by immunofluorescence. The antibodies revealed expression of c-MET protein in hepatomas (11/14), carcinomas of colon and rectum (19/21), stomach (11/22), kidney (16/19), ovary (9/17) and skin (7/17). Carcinomas of the lung (13/20), thyroid (11/13) and pancreas (5/7) were also positive. In these last cases (lung, thyroid and pancreas) tumor cells were homogeneously stained by the antibodies, whereas in their normal counterparts staining was barely detectable. These data suggest that the receptor encoded by c-MET plays a physiological role in epithelial cell growth and that its expression is altered in human carcinomas.

Antibodies, Monoclonal↗

Expression of CAR-3 and TAG-72 macromolecules in normal and transformed endometrium: potential diagnostic application in postmenopausal patients.

Mass cytoscreening for the early diagnosis of endometrial carcinoma has thus far been hampered by the low diagnostic accuracy of current cytopathology. In this study we have analyzed the reactivity of the two monoclonal antibodies, AR-3 and B72.3, recognizing two distinct glycosylated high molecular weight carcinoma associated antigens on histological specimens from normal, hyperplastic, and transformed endometrium with the aim of establishing their diagnostic potential. Because women with a high risk of endometrial cancer are frequently postmenopausal, where normal endometrium is characterized by atrophy and cystic glandular hyperplasia, the following findings were of interest. Both antibodies reacted with variable and apical staining patterns with a minority of specimens of normal cycling endometrium from premenopausal women. However, they were constantly negative when tested on normal atrophic postmenopausal endometrium, and only monoclonal antibody AR-3 occasionally stained glandular cystic hyperplasia. By contrast, lesions with atypical hyperplasia, which represent a preneoplastic condition, were stained by both antibodies in 89 or 67% of the cases depending on the monoclonal antibody used (100% if used in combination). Furthermore, 98% of the endometrial carcinomas tested were found to react with the combination of two monoclonal antibodies. If these findings are confirmed in a multicentric study, the use of the two reagents could be a valuable adjunct in the cytodiagnosis of endometrial cancer, especially in providing a guideline to selecting patients for endometrial curettage and additional diagnostic procedures.

Antibodies, Monoclonal↗

C-terminal truncated forms of Met, the hepatocyte growth factor receptor.

The MET proto-oncogene encodes a transmembrane tyrosine kinase of 190 kDa (p190MET), which has recently been identified as the receptor for hepatocyte growth factor/scatter factor. p190MET is a heterodimer composed of two disulfide-linked chains of 50 kDa (p50 alpha) and 145 kDa (p145 beta). We have produced four different monoclonal antibodies that are specific for the extracellular domain of the Met receptor. These antibodies immunoprecipitate with p190MET two additional Met proteins of 140 and 130 kDa. The first protein (p140MET) is membrane bound and is composed of an alpha chain (p50 alpha) and an 85-kDa C-terminal truncated beta chain (p85 beta). The second protein (p130MET) is released in the culture supernatant and consists of an alpha chain (p50 alpha) and a 75-kDa C-terminal truncated beta chain (p75 beta). Both truncated forms lack the tyrosine kinase domain. p140MET and p130MET are consistently detected in vivo, together with p190MET, in different cell lines or their culture supernatants. p140MET is preferentially localized at the cell surface, where it is present in roughly half the amount of p190MET. The two C-terminal truncated forms of the Met receptor are also found in stable transfectants expressing the full-length MET cDNA, thus showing that they originate from posttranslational proteolysis. This process is regulated by protein kinase C activation. Together, these data suggest that the production of the C-terminal truncated Met forms may have a physiological role in modulating the Met receptor function.

3T3 Cells↗

The tyrosine kinase encoded by the MET proto-oncogene is activated by autophosphorylation.

Protein tyrosine kinases are crucially involved in the control of cell proliferation. Therefore, the regulation of their activity in both normal and neoplastic cells has been under intense scrutiny. The product of the MET oncogene is a transmembrane receptorlike tyrosine kinase with a unique disulfide-linked heterodimeric structure. Here we show that the tyrosine kinase activity of the MET-encoded protein is powerfully activated by tyrosine autophosphorylation. The enhancement of activity was quantitated with a phosphorylation assay of exogenous substrates. It involved an increase in the Vmax of the enzyme-catalyzed phosphotransfer reaction. No change was observed in the Km (substrate). A causal relationship between tyrosine autophosphorylation and activation of the kinase activity was proved by (i) the kinetic agreement between autophosphorylation and kinase activation, (ii) the overlapping dose-response relationship for ATP, (iii) the specificity for ATP of the activation process, (iv) the phosphorylation of tyrosine residues only, in the Met protein, in the activation step, (v) the linear dependence of the activation from the input of enzyme assayed, and (vi) the reversal of the active state by phosphatase treatment. Autophosphorylation occurred predominantly on a single tryptic peptide, most likely via an intermolecular reaction. The structural features responsible for this positive modulation of kinase activity were all contained in the 45-kDa intracellular moiety of the Met protein.

Adenosine Triphosphate↗

Temporal variations in transcutaneous passage of drugs: the example of lidocaine in children and in rats.

Because a eutectic mixture of lidocaine and procaine (EMLA cream) is used to treat pain in children who are undergoing venipuncture for screening clinical presurgery laboratory tests, this study was designed to investigate the influence of the time of application of EMLA cream on lidocaine transcutaneous absorption in children. The same phenomenon was also studied in rats. Local application of EMLA (right and left cubital fossae) was performed 1 hour before venipuncture in two groups of children (0.5 g/kg body weight at two sites), at 08:15 or 16.15 h; blood samples were performed 1 h later. Two groups of five rats each received 12 mg/kg lidocaine at 07:30 or 19.30 h by application to the back skin. Blood samples were collected 0.5, 1, 1.5, 2, 3, and 4 h after application. Plasma lidocaine levels were assayed according to an immunoenzymatic method (Abbott). Our data indicate that the lidocaine plasma levels were significantly different: higher in the evening for the children or in the morning for the rats. The plasma level of the local anesthetics (LA) represents an elimination route and thus may be inversely correlated to the skin amount of the LA.

Absorption↗

Phosphotyrosine antibodies as probes for activated oncogene products endowed with tyrosine kinase activity.

The usefulness of phosphotyrosine antibodies for the detection of physiologically regulated or deregulated kinases is shown in this paper. This rather rare enzymatic activity is shared by receptors for some polypeptide growth factors and by the products of class 1 oncogenes. The antibodies are able to detect proteins phosphorylated on tyrosine in fibroblasts stimulated with growth factors, such as EGF and PDGF. The major phosphorylated protein species are the receptors themselves, which undergo phosphorylation only following the addition of the exogenous factor and only transiently. Phosphotyrosine antibodies were able to detect the products of the retroviral class 1 oncogenes, which are endowed of deregulated tyrosine kinase activity. In fact, in these cases a constitutive phosphorylation of the relevant proteins was observed, which occurred continuously and independently of the presence or lack of the growth factor. A tyrosine kinase constitutively activated in human gastric carcinoma cells was detected by P-Tyr antibodies. This molecule has been characterized at molecular level and the mechanisms responsible for its enzymatic activation has been investigated. The question of whether the tyrosine kinase identified is responsible for the induction and the maintenance of the transformed phenotype in gastric carcinomas remains to be answered. It is reasonable to suggest that this might be the case by analogy with other known pathologies, such as class 1 oncogenes activated by transduction by retroviruses, abnormal expression of EGF receptors or deregulated activity of c-abl encoded proteins in CML and ALL. Thus, the search for deregulated kinases by means of phosphotyrosine antibodies seems to be useful for identifying new activated oncogenes in clinical oncology.

Animals↗

Ductal cancers of the pancreas frequently express markers of gastrointestinal epithelial cells.

It has been found by immunohistochemical staining that antigens normally found in gastric and/or intestinal epithelial cells are expressed in most differentiated duct cell carcinomas of the pancreas. Among 88 such tumors, 93% and 92%, respectively, expressed M1 and cathepsin E, markers of gastric surface-foveolar epithelial cells, 51% expressed pepsinogen II, a marker of gastroduodenal mucopeptic cells, 48% expressed CAR-5, a marker of colorectal epithelial cells, and 35% expressed M3SI, a marker of small intestinal goblet cells. Most of the tumors also expressed normal pancreatic duct antigens; 97% expressed DU-PAN-2, and 59% expressed N-terminus gastrin-releasing peptide. In agreement with these findings, electron microscopy revealed malignant cells with fine structural features of gastric foveolar cells, gastric mucopeptic cells, intestinal goblet cells, intestinal columnar cells, pancreatic duct epithelial cells, and cells with features of more than one cell type. Normal pancreatic duct epithelium did not express any marker of gastrointestinal epithelial cells, whereas such benign lesions as mucinous cell hypertrophy and papillary hyperplasia commonly expressed gut-type antigens but rarely expressed pancreatic duct cell markers. By contrast, lesions characterized by atypical papillary hyperplasia commonly expressed both gastric and pancreatic duct cell markers. Metaplastic pyloric-type glands expressed pepsinogen II and, except for their expression of cathepsin E, were indistinguishable from normal pyloric glands. In marked contrast, the immunohistochemical and ultrastructural features of 14 ductuloacinar cell tumors were those of cells lining terminal ductules, centroacinar cells, and/or acinar cells; none expressed any gut-type antigen. The results indicate that gastrointestinal differentiation is common in both benign and malignant lesions of pancreatic duct epithelium and suggest that duct cell carcinomas are histogenetically related to gastric- and intestinal-type metaplastic changes of epithelial cells lining the main and interlobular ducts of the pancreas.

Antibodies, Monoclonal↗

Circadian phase dependent acute toxicity and pharmacokinetics of etidocaine in serum and brain of mice.

The aim of this study was to investigate the possible influence of the time of administration on etidocaine acute toxicity and kinetics in mice. Different groups of adult male NMRI mice maintained under controlled environmental conditions (lights on 06.00-18.00) were injected at one of the following times: 10.00, 16.00, 19.00, 22.00, 01.00 and 04.00 h with four doses of etidocaine at each time point to establish the acute toxicity (LD 50). To assess chronokinetics, a single 40 mg kg-1 i.p. dose of etidocaine was given to adult male NMRI mice at four fixed times: 10.00, 16.00, 22.00 and 04.00 h. Etidocaine serum levels were determined by GLC. The data showed significant 24 h variations of the Cmax only (highest value = 9.64 +/- 1.31 micrograms mL-1 at 10.00 P less than 0.05; amplitude, (maximum-minimum) mean x 100 = 84%) Vd, (amplitude = 59.7%), alpha and beta phase elimination half-lives (amplitude = 52 and 35%, respectively), clearance (amplitude = 23%) and AUC infinity 0 (amplitude = 22%) were not found to be significantly time dependent. Etidocaine kinetics in brain were determined similarly; a significant temporal variation was found for the elimination half life (amplitude, 161.9%) and AUC (amplitude, 133.2%) but not for Cmax. These data demonstrate a temporal pattern of etidocaine kinetics similar to those reported previously for other local anaesthetic agents, bupivacaine and mepivacaine. The temporal changes in etidocaine induced acute toxicity may result in part from its chronokinetic changes.

Acetanilides↗

Tyrosine kinase and control of cell proliferation.

The usefulness of phosphotyrosine antibodies for the detection of physiologically regulated or deregulated tyrosine kinases is discussed in this report. This rather rare enzymatic activity is shared by receptors for some polypeptide growth factors and by the products of Class 1 oncogenes. The antibodies are able to detect proteins phosphorylated on tyrosine in fibroblasts stimulated with growth factors such as EGF and PDGF. The major phosphorylated protein species are the receptors themselves, which undergo phosphorylation only after the addition of the exogenous factor and only transiently. Phosphotyrosine antibodies were able to detect the products of the retroviral Class 1 oncogenes, which are endowed with deregulated tyrosine kinase activity. In fact, in these cases a constitutive phosphorylation of the relevant proteins was observed, which occurred continuously and independently of the presence or lack of exogenous ligands. A tyrosine kinase constitutively activated in human gastric carcinoma cells was detected by P-Tyr antibodies. This molecule has been characterized at the molecular level, and the mechanisms responsible for its enzymatic activation have been investigated. The question of whether the tyrosine kinase identified is responsible for the induction and the maintenance of the transformed phenotype in gastric carcinomas remains to be answered. It is reasonable to suggest that this might be the case by analogy with other situations such as Class 1 oncogenes activated by transduction by retroviruses, abnormal expression of EGF receptors, or deregulated activity of c-abl-encoded proteins in chronic myelogenous leukemia and acute lymphoblastic leukemia. Thus, the search for deregulated kinases by means of phosphotyrosine antibodies seems to be useful for identifying new activated oncogenes in clinical oncology.

Carcinoma↗

Biochemical and immunological properties of the human carcinoma antigen CAR-5 defined by the monoclonal antibody BD-5.

The monoclonal antibody (MAb) BD-5 reacts with an epitope (CAR-5) expressed in 83% of the gastric carcinomas and in 51% of the ductal pancreatic carcinomas. This MAb reacts also with epithelial cells of colorectal mucosa, but does not react at all with normal adult gastric mucosa or normal adult pancreas. We report the biochemical and immunochemical characterization of CAR-5-bearing molecule. The epitope was found to be carried on a mucin of more than 400 kDa with a density of 1.45 g/ml, metabolically labelled with 35S-sulfate, 3H-glucosamine, 3H-mannose and 35S-methionine. Antigenicity survived metaperiodate oxidation and alkalinization, while it was fully destroyed by pronase or papain. Trypsin, although cleaving the molecule, did not affect its antigenic activity. CAR-5 epitope is thus carried on the protein moiety of a sulfo-mucin. On the basis of its biochemical properties, the antigen was purified by a 3-step procedure, consisting of perchloric acid extraction, molecular sieving on Sepharose CL-4B and affinity chromatography on wheat-germ agglutinin coupled to Sepharose 4B. Cross-competition experiments, together with the chemical properties displayed by the different epitopes, clearly indicate that CAR-5 is different from all previously characterized carcinoma-associated determinants. Cross-DDIRMA experiments performed with different "catcher" and "tracer" antibody combinations showed that CAR-5 epitope may be expressed on the same mucin bearing CA 19-9, MOv2, DU-PAN-2, Lewisa and Lewisb epitopes.

Animals↗

Biochemical and immunological properties of the human carcinoma-associated CAR-3 epitope defined by the monoclonal antibody AR-3.

The monoclonal antibody AR-3 reacts with an epitope (CAR-3) carried on a high-molecular-weight glycoprotein associated with carcinomas of the pancreas, stomach, colon, uterus, and ovary. This study reports the partial purification and characterization of CAR-3-bearing molecule. The antigen was quantified by a double determinant immunoradiometric assay. CAR-3 antigen was purified by a three-step procedure, consisting of perchloric acid extraction, molecular sieving on Sepharose CL-4B, and affinity chromatography on AR-3 antibodies coupled to Sepharose 4B. Following this procedure CAR-3 antigen was purified about 400-fold with a 36% yield. Treatment of the CAR-3 antigen with 16 mM metaperiodate or with 1 N NaOH resulted in complete loss of activity. Antigenicity survived enzymatic treatments known to destroy proteins. The epitope was found to be carried on a molecule with a molecular weight of greater than 400,000 with a density of 1.45 g/ml, metabolically labeled with [35S]sulfate, [3H]glucosamine, and [35S]methionine. It is concluded that CAR-3 epitope is expressed on a carbohydrate moiety linked to a sulfo-mucin-like molecule via an O-glycosidic bond. Cross-competition experiments showed that CAR-3 epitope is strictly related or in close topographic proximity to Lewis(a) and Lewis(b) antigens. Cross-double determinant immunoradiometric assay experiments indicated that the same mucin carrying CAR-3 bears also CA 19-9, CA 125, and BW 494 epitopes.

Animals↗