Biomedical subjects
J Mustonen
Publications and source records attributed to J Mustonen.
The effect of insulin delivery route on lipoproteins in type I diabetic patients on CAPD.
OBJECTIVE: To evaluate the influence of subcutaneous and intraperitoneal (i.p.) insulin on plasma lipoproteins in type I diabetic (IDDM) patients with end-stage renal failure (ESRD) treated with continuous ambulatory peritoneal dialysis (CAPD). DESIGN: A before-after trial. SETTING: University hospital outpatient care. PARTICIPANTS: Eleven IDDM patients with stabilized peritoneal dialysis, age 42.9 +/- 2.9 (SEM) years and duration of diabetes 31.4 +/- 3.4 years. INTERVENTION: Two treatment periods during stabilized CAPD. All patients were first treated with subcutaneous and then with i.p. insulin. The studies were performed after a median time of 3 months on each treatment. MAIN OUTCOME MEASURES: Plasma lipids; apoproteins (Apo) A-I, A-II, and B; high-density lipoprotein (HDL) subfractions; glycemic status; and uremic status. RESULTS: After changing from subcutaneous insulin to i.p. insulin, plasma HDL cholesterol decreased (from 1.29 +/- 0.13 mmol/L to 0.96 +/- 0.06 mmol/L, p < 0.05), and the low density to high density lipoprotein (LDL/HDL) cholesterol ratio increased (p < 0.05). The HDL cholesterol decreased in both HDL2 and HDL3 fractions, but significantly so only in HDL3 (p < 0.01). ApoA-I (p < 0.05) decreased while the ApoB/ApoA-I ratio (p < 0.01) and the ApoA-I/HDL-cholesterol ratio (p < 0.01) increased during i.p. insulin therapy. Intraperitoneal insulin resulted in significantly better glycemic control than subcutaneous insulin (p < 0.01). CONCLUSIONS: In diabetic patients on CAPD therapy, i.p. insulin, although inducing better glycemic control than subcutaneous insulin, was associated with lowered plasma HDL cholesterol and ApoA-I levels. The atherogenic potential is probably less than expected as the relative particle size of HDL remained unchanged.
Intraperitoneal insulin reduces plasma leptin concentration in diabetic patients on CAPD.
OBJECTIVE: To determine the effects of subcutaneous (SC) and intraperitoneal (IP) insulin on serum leptin concentration in type I diabetic patients with end-stage renal failure treated with continuous ambulatory peritoneal dialysis (CAPD). DESIGN: Prospective, open, before-after study. SETTING: Tertiary-care university hospital. PARTICIPANTS: Twelve type I diabetic patients with stabilized CAPD, age 43.9 +/- 2.8 years, and duration of diabetes 30.4 +/- 3.5 years. INTERVENTION: After stabilized CAPD therapy, all patients were treated first with SC insulin for a median of 3 months, and thereafter with IP insulin for another 3 months. MAIN OUTCOME MEASURES: Plasma leptin, insulin sensitivity with euglycemic clamp, and glycemic and uremic status after both treatment periods. RESULTS: During SC insulin therapy, plasma leptin concentration was significantly higher than during IP insulin (19.8 +/- 5.9 ng/mL and 12.8 +/- 6.2 ng/mL, respectively; p < 0.001). Leptin concentration was higher in CAPD patients and was related to body mass index in both genders. No correlation was detected between plasma leptin and fasting insulin, glycemic control, glucose disposal rate, or serum lipids. CONCLUSION: Plasma leptin concentration is lower during IP insulin therapy compared to SC insulin. Insulin has probably a direct effect on both peritoneal leptin clearance and adipose tissue leptin production. The significance of leptin in regulating appetite and anorexia in uremia remains unclear.
High peritoneal permeability predisposes to hepatic steatosis in diabetic continuous ambulatory peritoneal dialysis patients receiving intraperitoneal insulin.
OBJECTIVE: To evaluate hepatic fat accumulation in diabetic patients taking intraperitoneal or subcutaneous insulin treatment during continuous ambulatory peritoneal dialysis (CAPD). DESIGN: Cross-sectional study. SETTING: Tertiary-care university hospital. PATIENTS: We studied 16 patients with diabetic end-stage renal disease currently treated with CAPD. Median age was 42 years (range: 34-70 years), duration of diabetes was 27.5 years (range: 17-39 years), and duration of CAPD was 16.5 months (range: 2-59 months). OUTCOME MEASURES: Ultrasound measures of liver steatotic area and thickness, peritoneal equilibration test (PET), weekly Kt/V urea, protein catabolic rate (PCR), hemoglobin A1c (HbA1c), lipoproteins, alanine aminotransferase, alkaline phosphatase, insulin dose, and dialysate glucose load. RESULTS: Focal hepatic fat accumulation was found. The location of steatosis was subcapsular; a negligible amount was periportal. Hepatic subcapsular steatosis was present in 7 of 8 patients taking insulin intraperitoneally and in 0 of 8 patients taking insulin subcutaneously. The maximal thickness of subcapsular steatosis correlated directly with peritoneal transport rate (2-hour dialysate-to-plasma creatinine ratio in PET, r = 0.80, p < 0.05) and inversely with PCR (r = -0.82, p < 0.05). The area of the lesions correlated directly with body weight (r = 0.80, p < 0.05) and inversely with weekly Kt/V urea (r = -0.90, p < 0.01). CONCLUSIONS: Intraperitoneal insulin, together with glucose-based peritoneal dialysate, induces hepatic subcapsular steatosis. The amount of hepatic subcapsular steatosis increases when peritoneal transfer rate and body weight are high.
Clinical course and treatment of IgA nephropathy.
Impairment of renal function, severe proteinuria and arterial hypertension are the strongest clinical predictors of an unfavorable outcome in IgA nephropathy (IgAN). Glomerulosclerosis and interstitial fibrosis are the most reliable histologic prognostic markers. Metabolic syndrome and insulin resistance probably affect the clinical course of the disease. Among the known gene polymorphism it seems that there is a link between the ACE gene D allele and the progression of IgAN. Elevated blood pressure should be actively treated. The target blood pressure is 130/80 mmHg or less and the goal should also be to reduce proteinuria. Several large-scale trials are currently testing corticosteroids and other drugs in the treatment of IgAN.