There is some experimental evidence to suggest that progression of chronic renal failure (CRF) is slower on diets based on soya protein than on diets based on animal protein. We have compared the effect of a soya-based vegetarian low-protein diet (VPD) and an animal-based low-protein diet (APD) in 15 patients with CRF. 15 patients with CRF (51Cr-EDTA-measured glomerular filtration rate 15–50 ml/min/1.73 m2) were studied. In a randomized crossover trial, the patients were given each diet (each containing 0.75 g protein and 32 kcal per kilogram body weight) for a 6-month period. Nine patients completed the trial, 2 others dropped out because they could not tolerate the VPD, 3 because of unrelated medical complications, and 1 for technical reasons. The caloric intake was higher and the protein, phosphate and essential amino acid intake lower on the VPD than on the APD. The compliance with the suggested caloric intake was better with the VPD than with the APD (97 vs. 88% of recommended intake), as was the compliance with the suggested protein intake (94 vs. 112% of recommended intake) and with the suggested phosphate intake (102 vs. 116%). The mean glomerular filtration rate, as judged by 51Cr-EDTA, was similar after 6 months on each diet and remained unchanged throughout the entire year of the study. The rate of fall of glomerular filtration, as measured by the slope of 1/serum creatinine was slowed by 73% during the 1-year study period as compared with the prestudy period. Nutritional status (as measured by body mass index, midarm circumference, and lean body mass and percent body fat), serum transferrin, cholesterol and albumin, and total lymphocyte count were similar on the two diets. The serum albumin level on both diets, however, was significantly higher on the two diets than during the prediet period. Blood urea nitrogen, urine urea nitrogen, protein catabolic rate, and 24-hour urine creatinine and phosphate were lower on the VPD than on the APD. The 24-hour protein excretion was similar on the two diets. The two low-protein diets resulted in a slowing in the progression of CRF. A VPD is well tolerated in CRF and is associated with lower protein and phosphate intakes and a higher caloric intake than an APD and may, therefore, be used as a safe alternative or partial substitute for the usual APD in CRF.
Heavy use of marijuana is claimed to damage critical skills related to short-term memory, visual scanning and attention. Motor skills and driving safety may be compromised by the acute effects of marijuana. The aim of this study was to investigate the acute effects of 13 mg and 17 mg Delta 9-tetrahydrocannabinol (THC) on skills important for coordinated movement and driving and on subjective and autonomic measures in regular users of marijuana. Fourteen regular users of marijuana were enrolled. Each subject was tested on two separate days. On each test day, subjects smoked two low-nicotine cigarettes, one with and the other without THC. Seventeen mg THC was included in the cigarette on one test day and 13 mg on the other day. The sequence of cigarette types was unknown to the subject. During smoking, heart rate and blood pressure were monitored, and the subjects performed a virtual reality maze task requiring attention and motor coordination, followed by 3 other cognitive tasks (Wisconsin Card Sorting Test (WCST), a "gambling" task and estimation of time and distance from an approaching car). After smoking a cigarette with 17 mg THC, regular marijuana users hit the walls more often on the virtual maze task than after smoking cigarettes without THC; this effect was not seen in patients after they smoked cigarettes with 13 mg THC. Performance in the WCST was affected with 17 mg THC and to a lesser extent with the use of 13 mg THC. Decision making in the gambling task was affected after smoking cigarettes with 17 mg THC, but not with 13 m THC. Smoking cigarettes with 13 and 17 mg THC increased subjective ratings of pleasure and satisfaction, drug "effect" and drug "high". These findings imply that smoking of 17 mg THC results in impairment of cognitive-motor skills that could be important for coordinated movement and driving, whereas the lower dose of 13 mg THC appears to cause less impairment of such skills in regular users of marijuana.
These findings suggest that in regular marijuana users, the immediate effects of marijuana may impact on cognitive-motor skills and brain mechanisms that modulate coordinated movement and driving.
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