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Biomedical subjects

R Apweiler

Publications and source records attributed to R Apweiler.

40 records · Page 3Linked to original sources

Effect of the new oral antidiabetic agent (-)-BM 13.0913.Na on insulin resistance in lean and obese Zucker rats.

The new antidiabetic agent (-)-BM 13.0913.Na (BM) was administered to 12-week-old lean and obese Zucker rats, an animal model of insulin resistance, at a daily dose of 50 mg/kg for 14 days. Hyperinsulinemic-euglycemic clamps were performed on treated and untreated lean and obese Zucker rats. Basal hepatic glucose production (HGP) rates were similar in lean and obese untreated animals. Insulin-induced suppression of HGP was significantly less effective in obese animals. In addition, these animals exhibited the characteristic impaired glucose utilization. In obese animals, drug treatment improved insulin suppression of HGP and total glucose utilization (GU) during clamp studies. Furthermore, drug treatment decreased insulin levels during clamp studies, suggesting an acceleration of insulin clearance. Drug treatment also decreased basal plasma insulin levels and serum and liver concentrations of cholesterol in both fasted lean and obese rats. Additionally, blood glucose, plasma nonesterified fatty acids (NEFA), and serum triglyceride levels were reduced in fasted obese rats, but only minor changes in liver triglycerides were observed in lean and obese rats. On the basis of these results, we suggest that BM is an effective antidiabetic agent that may reduce abnormalities of glucose and lipid metabolism.

Administration, Oral↗

In vitro poly-(ADP-ribosyl)ation of chromatin proteins in the rat tapeworm, Hymenolepis diminuta.

1. (ADP-ribose)-transferase activity in crude chromatin of H. diminuta was demonstrated. 2. Chromatin proteins were ADP-ribosylated in vitro and selectively extracted. 60, 12 and 18% of the (ADP-ribose)n of chromatin proteins was associated with total histones, histone H1 and histone H2B, respectively. 3. The extent of oligo-(ADP-ribose) compared to total (ADP-ribose)n in the chromatin fraction, in the histone fraction, the histone H1 fraction and the histone H2B fraction was 45, 60, 26 and 49%, with an average chain length of 2.8, 2.1, 1.8 and 2.6, respectively. 4. Analysis of (ADP-ribosyl)n-ated proteins by acetic acid/urea polyacrylamide gel electrophoresis demonstrated that histone H1, histone H2B and a 35 kDa non-histone protein were major (ADP-ribose)n acceptors.

Adenosine Diphosphate Ribose↗

Development of glucose intolerance in obese (fa/fa) Zucker rats.

Development of glucose intolerance in genetically obese (fa/fa) rats was investigated. Comparisons were made with lean (FA/?) control rats. Oral glucose tolerance tests were performed in 7-8 weeks, 9-10 weeks, 12-13 weeks and 16-17 weeks old rats. Irrespectively of age, the obese rats showed impaired glucose tolerance and insulin sensitivity compared with age-matched lean rats. While in FA/? rats only minor changes of glucose-stimulated insulin secretion and glucose tolerance were observed with progression of age, glucose intolerance in obese animals became more pronounced with aging. Obese rats older than 12-13 weeks showed no further progression of glucose intolerance. Glucose-stimulated insulin secretion increased with aging, but basal insulinemia was unaffected. Hence, we conclude that glucose intolerance and insulin resistance in genetically obese (fa/fa) rats is almost completely developed with approximately 12 weeks.

Animals↗

Identification of ADPR-transferase activity in the rat tapeworm, Hymenolepis diminuta.

1. The nuclear fraction of the rat tapeworm Hymenolepis diminuta (Cestoda) contains the enzyme adenosine diphosphoribosyl transferase (ADPR-transferase). 2. The enzyme catalyzes the postsynthetic modification of some nuclear proteins by the covalent attachment of the (ADP-ribose) moiety of NAD to such proteins. 3. The reaction is dependent on DNA which contains strand-breaks, and chain lengths equivalent to (ADP-ribose) is estimated. 4. The formation of polynucleotide products was competitively inhibited by 3-acetamidobezamide, with a Km of 125 microM. 5. The catalytic properties of ADPR-transferase in Hymenolepis diminuta are similar to those in T. brucei.

Adenosine Diphosphate Ribose↗