PubMed Health⌕ Search

Biomedical subjects

R Accinni

Publications and source records attributed to R Accinni.

25 records · Page 2Linked to original sources

Preliminary studies of nonvirion antigens associated with herpes simplex virus 1 and 2 (HSV1 - HSV2).

Biochemical and radioimmunological studies have indicated the presence of a nonvirion antigen associated with herpes virus. Guinea pig kidney cells were grown in culture and infected (I-cells) for 3h with herpes virus. Uninfected cells (N-cells) served as control. The cells were collected and sonicated to obtain, after centrifugation, "soluble extract" (SI, SN). The pellets were extracted with KCl (ISP, NSP). SN, SI were submitted to gel-filtration on Sephadex G-200. Extracts from I and N cells gave similar patterns. After labelling with 125I, greater resolution was obtained in a second gel-filtration with a much smaller load. ISP contained protein species not present in NSP. Polyacrylamide gel electrophoresis of peaks from SN and SI showed that SI contained some radioactive bands not found in SN. Labelled materials from SI and SN were incubated with sera from cancer patients and normal subjects. No differences in binding were seen with SN, but SI showed 14-30% more 125I binding with sera of cancer patients than with sera from normal subjects. No such difference was seen between ISP and NSP.

Animals↗

Serum levels of procollagen type I carboxyterminal extension peptide in cancer patients with bone metastases.

Serum levels of procollagen type I carboxy-terminal extension peptide (PICP) reflect the synthesis of type I collagen. As PICP is produced by osteoblasts and is not incorporated into bone matrix, serum PICP levels have been suggested as a marker of bone formation. In 37 cancer patients (21 men and 16 women; age: 72.4 +/- 8.6 (mean +/- SD) years) with bone metastases and 23 women (age: 77.3 +/- 6.64 years) as controls, the following biochemical variables were measured: serum PICP, calcium (Ca), phosphorus, alkaline phosphatase (AP) and tartrate-resistant acid phosphatase (TRAP), and urinary hydroxyproline and calcium corrected for creatinine excretion. Higher serum levels of PICP were observed in cancer patients than in control (245 +/- 177 micrograms/l vs 121.7 +/- 36 micrograms/l, p < 0.01). Cancer patients also had higher AP levels than controls (704 +/- 755 U/l vs 216.5 +/- 56 U/l, p < 0.01). Abnormal PICP and AP serum concentrations (above the mean + 2SD of controls) were found in 46% and 51% of patients, respectively. Moreover, patients showed significantly lower serum calcium concentrations (p < 0.001), and higher TRAP and hydroxyproline levels although statistical significance was not reached. In the patients, PICP was correlated directly with AP (r = 0.50, p < 0.01) and TRAP (r = 0.34, p < 0.05). In conclusion, patients with bone metastases have increased bone turnover as shown by serum markers. Serum PICP may be used as an adjunctive, non-invasive index to assess bone metabolism. However, the clinical usefulness of PICP in cancer patients needs further evaluations.

Acid Phosphatase↗

Homocysteine, vitamin B12, and serum and erythrocyte folate in peritoneal dialysis and hemodialysis patients.

BACKGROUND: Plasma homocysteine (Hcy) is an independent risk factor for cardiovascular disease. High levels of plasma Hcy have been observed in end-stage renal disease patients. Few studies have compared peritoneal dialysis (PD) and hemodialysis (HD) patients and few data are available on erythrocyte folate (ery-F) levels in dialysis patients. OBJECTIVES: To evaluate plasma Hcy concentrations, vitamin B12 (B12), and folate status in dialysis patients; to analyze the possible causes of high Hcy levels; to follow up changes in folate and B12 concentrations after 6 months. DESIGN: A cross-sectional observational study. SETTING: Nephrology division and laboratory of hematology in a university and clinical research hospital. PATIENTS: The study included 82 patients treated with PD for 37 + 37 months and 70 patients treated with HD for 136 + 95 months. LABORATORY METHODS: Plasma Hcy was measured by the immunoenzymatic IMx Hcy FPIA method (Abbott Laboratories, Diagnostic Division, Abbott Park, IL, U.S.A.), serum folate (s-F) and ery-F by the Stratus folate fluorometric enzyme-linked assay, and B12 by the Stratus vitamin B12 fluorometric enzyme-linked assay (DADE-Behring, Newark, DE, U.S.A.). RESULTS: Ninety-six percent of PD and 97% of HD patients had Hcy levels above the cutoff (13.5 micromol/L). Homocysteine level was higher in HD than in PD patients, while the prevalence of hyperhomocysteinemia was similar with the two techniques. Erythrocyte folate was significantly higher in PD (1333 +/- 519 pmol/L) than in HD (1049 +/-511 pmol/L, p < 0.01). Statistically significant correlations were observed between Hcy and B12, s-F, ery-F, and dialysis duration. Multivariate analysis showed a strong correlation between s-F and Hcy. After 6 months there were no differences in Hcy, B12, s-F, and ery-F levels. CONCLUSIONS: Plasma Hcy levels were high in more than 95% of our dialysis patients, with no relation to the type of dialysis. Vitamin B12 and folate were normal in the majority of our patients. However, serum folate was the major determinant of Hcy levels. Such a relation between Hcy and folate suggests that levels of folate within the reference interval are inadequate for dialysis patients.

Cross-Sectional Studies↗