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M Topa

Publications and source records attributed to M Topa.

5 recordsLinked to original sources

Differential diagnosis between hepatocellular carcinoma and cirrhosis through a discriminant function based on results for serum analytes.

We applied a multivariate analysis to a large series of serum biochemical tests in an attempt to identify a function that could efficiently discriminate cirrhosis from hepatocellular carcinoma (HC). We analyzed two successive temporal cohorts (1987-90; 1991-94) of HC and cirrhotic patients, all histologically classified (first cohort: 69 cirrhosis and 39 HC; second cohort: 66 cirrhosis and 38 HC). Using data from the first temporal cohort of patients, we obtained a discriminant function based on seven serum analytes: alpha-fetoprotein, the hepatic isoenzyme of alkaline phosphatase, lactate dehydrogenase isoenzyme 5, total gamma-glutamyltransferase (GGT), GGT isoforms complexed with low-density lipoprotein, aspartate aminotransferase, and copper. The same panel of analytes emerged when the second cohort was tested and also when both cohorts were tested together. In the two successive cohorts (total, 212 patients) with a prevalence of cirrhosis vs HC of approximately 2:1, the discriminant function correctly classified 93% of cases, the highest percentage of correct classification of the two diseases obtained so far by laboratory approaches. Validation with the jackknife reallocation statistical algorithm confirmed these results. In addition, of six patients with liver cirrhosis for whom we had the opportunity of following up and observing the evolution to HC, five were classified as HC at diagnosis by the multivariate discriminant analysis; i.e., discriminant analysis provided a diagnostic lead time of 6-12 months over histology. This discriminant function, based on easy-to-perform serum biochemical tests, may help solve a fundamental problem of differential diagnosis in the evolution of chronic liver diseases from cirrhosis to HC.

Alkaline Phosphatase↗

Discriminant function based on serum analytes differentiates hepatocarcinoma from secondary liver neoplasia.

Hepatocellular carcinoma (HC) is often difficult to distinguish from secondary liver neoplasia (SLN) by physical and imaging diagnostic procedures alone. To this aim we have extended and improved a laboratory approach based on a serum lactate dehydrogenase isoenzyme ratio (LD4:LD5) by adding the carcinoembryonic antigen: alpha-fetoprotein ratio, alkaline phosphatase, and serum iron concentrations to obtain a highly efficient discriminant function. In two successive cohorts, for a total of 102 patients, all histologically diagnosed, with a prevalence of HC vs SLN of 3:1, we correctly classified 96% of cases (100% of SLN cases). Subsequent verification with the jackknife reallocation statistical algorithm confirmed these results. In conclusion, this discriminant function based on simple laboratory assays of a few analytes is an important tool in solving a diagnostic dilemma in cases of liver neoplasia.

Alkaline Phosphatase↗

Total discrimination of peritoneal malignant ascites from cirrhosis- and hepatocarcinoma-associated ascites by assays of ascitic cholesterol and lactate dehydrogenase.

No laboratory test completely distinguishes malignant ascites (MA) from ascites associated with cirrhosis and (or) hepatocellular carcinoma (A/C-HC). Ascitic cytology is highly specific but has a diagnostic sensitivity of only 40-60%. We determined 11 ascitic analytes and cytology in 58 patients with cirrhosis, 15 with hepatocellular carcinoma, and 21 with MA (10 ovarian cancers, 4 mesotheliomas, 6 gastrointestinal neoplasias, 1 leukemia). Ascitic total protein, cholesterol, pseudouridine, and lactate dehydrogenase (LD), and the ascitic:serum ratios of total protein and of LD showed the most significant differences between the two groups of patients. Stepwise multiple linear discriminant analysis (applying the Wilks' lambda criterion) of several variables, corroborated by the "jack-knife" reallocation procedure, showed that the ascitic cholesterol and ascitic LD association correctly identified 100% of MA and A/C-HC; cytology had a diagnostic specificity of 100%, but identified only 48% of MA. This association may represent a primary tool for the discrimination of ascites of unknown origin, particularly in the presence of negative cytology findings.

Ascites↗

Serum lactate dehydrogenase isoenzyme 4/5 ratio discriminates between hepatocarcinoma and secondary liver neoplasia.

Total lactate dehydrogenase (LD; EC 1.1.1.27) and its five isoenzymes were determined in sera from (a) 98 cases of cirrhosis at various stages classified according to Child and Turcotte; (b) 37 cases of hepatocarcinoma (HC) at different stages of the Okuda classification; (c) 17 patients with secondary liver neoplasia (SLN), mainly from an abdominal primary site; and (d) 19 cases of abdominal neoplasia without liver metastasis, in an attempt to contribute to the differential diagnosis between these conditions. LD-4 was enhanced in SLN and LD-5 in HC, thus indicating the LD-4/LD-5 ratio as a potential index with which to differentiate between HC and SLN patients. At a cutoff value of 1.05, 91% of these patients were correctly classified (82% for SLN and 95% for HC). Consequently, this biochemical index appears to be an efficient and rapid indicator to distinguish HC from SLN. On the other hand, the LD isoenzymes are unable to discriminate between HC and cirrhosis or between abdominal neoplasia with and without liver metastases.

Carcinoma, Hepatocellular↗

Evoked potential maps in learning disabled children.

Some childhood learning disabilities are associated with altered synchrony patterns of brain evoked potentials. Scalp recorded electrical synchrony between selected brain regions was measured in response to visual, auditory and somatosensory stimuli and compared between a group of learning disabled children and a group of normal children. Statistically significant inter-group differences revealed stimulus dependent greater inter-regional EP synchrony in the learning disabled group. These findings support the notion that some childhood learning disabilities reflect, in part, altered connections between selected brain regions.

Brain Mapping↗