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  • 1
    ISSN: 1432-0428
    Keywords: Non-insulin-dependent diabetes mellitus ; impaired glucose tolerance ; hypertriglyceridaemia ; hyperinsulinaemia ; non-esterified fatty acid
    Source: Springer Online Journal Archives 1860-2000
    Topics: Medicine
    Notes: Summary Although plasma insulin and triglyceride concentrations are positively correlated in many studies, the relationships between insulin resistance, insulin secretion and hypertriglyceridaemia remain unclear. To study these associations, subjects between the ages of 40 and 64 were randomly selected from a general practice register and invited to attend for a standard oral glucose tolerance test for measurement of insulin, triglyceride and non-esterified fatty acid concentrations. The study comprised 1122 subjects who were not previously known to have diabetes and who completed the test. Using the World Health Organisation criteria, 51 subjects were classified to have non-insulin-dependent diabetes mellitus, 188 had impaired glucose tolerance and 883 subjects had normal glucose tolerance. Triglyceride concentrations in subjects with glucose intolerance were elevated compared to those in control subjects, even after adjustment for age, obesity and gender (p〈0.001 for subjects with diabetes and p〈0.01 for those with impaired glucose tolerance compared to normal subjects). In separate multiple regression analyses for males and females, the most important determinants of the plasma triglyceride concentration were the area under the non-esterified fatty acid suppression curve (p〈0.001 in both genders) and the waist-hip ratio (p〈0.001 for men and 〈0.01 for women). The fasting insulin concentration was independently associated with triglyceride concentration in women only (p〈0.01). The most important determinant of the area under the non-esterified fatty acid suppression curve in men was the 30-min insulin increment, a measure of insulin secretion, (p〈0.001) whereas for women age (p〈0.001) and the body mass index (p〈0.01) were the most important.
    Type of Medium: Electronic Resource
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  • 2
    ISSN: 1432-0428
    Keywords: Key words Non-insulin-dependent diabetes mellitus ; impaired glucose tolerance ; hypertriglyceridaemia ; hyperinsulinaemia ; non-esterified fatty acid.
    Source: Springer Online Journal Archives 1860-2000
    Topics: Medicine
    Notes: Summary Although plasma insulin and triglyceride concentrations are positively correlated in many studies, the relationships between insulin resistance, insulin secretion and hypertriglyceridaemia remain unclear. To study these associations, subjects between the ages of 40 and 64 were randomly selected from a general practice register and invited to attend for a standard oral glucose tolerance test for measurement of insulin, triglyceride and non-esterified fatty acid concentrations. The study comprised 1122 subjects who were not previously known to have diabetes and who completed the test. Using the World Health Organisation criteria, 51 subjects were classified to have non-insulin-dependent diabetes mellitus, 188 had impaired glucose tolerance and 883 subjects had normal glucose tolerance. Triglyceride concentrations in subjects with glucose intolerance were elevated compared to those in control subjects, even after adjustment for age, obesity and gender (p 〈 0.001 for subjects with diabetes and p 〈 0.01 for those with impaired glucose tolerance compared to normal subjects). In separate multiple regression analyses for males and females, the most important determinants of the plasma triglyceride concentration were the area under the non-esterified fatty acid suppression curve (p 〈 0.001 in both genders) and the waist-hip ratio (p 〈 0.001 for men and 〈 0.01 for women). The fasting insulin concentration was independently associated with triglyceride concentration in women only (p 〈 0.01). The most important determinant of the area under the non-esterified fatty acid suppression curve in men was the 30-min insulin increment, a measure of insulin secretion, (p 〈 0.001) whereas for women age (p 〈 0.001) and the body mass index (p 〈 0.01) were the most important. [Diabetologia (1994) 37: 889–896]
    Type of Medium: Electronic Resource
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  • 3
    ISSN: 1432-0428
    Keywords: 32–33 splet-proinsulin ; Total cholesterol ; high density lipoprotein cholisterol ; plasminogen activator inhibitor ; Blood pressure
    Source: Springer Online Journal Archives 1860-2000
    Topics: Medicine
    Notes: Summary Standard radioimmunoassay for insulin may substantially overestimate levels of insulin because of cross-reaction with other insulin-like molecules. We have measured concentrations of insulin, intact proinsulin and 32–33 split proinsulin using two-site monoclonal antibody based immunoradiometric assays, and of insulin by a standard radioimmunoassay (“immunoreactive insulin”) in 51 Type 2 (noninsulin-dependent) diabetic subjects in the fasting state. The relationships of these concentrations were sought with those of total cholesterol, high density lipoprotein cholesterol, low density lipoprotein cholesterol, triglyceride, plasminogen activator inhibitor, blood pressure, and indices of body fat distribution. Significant relationships were apparent between concentrations of “immunoreactive insulin” as measured by standard radioimmunoassay and triglyceride (r s=0.42, p〈0.001), total cholesterol (r s=0.25, p=0.038), high density lipoprotein cholesterol (r s=−0.30, p=0.018) and body mass index (r s=0.30, p=0.017), but only the relationships with triglyceride (r s=0.36, p=0.006) and body mass index (r s=0.26, p=0.034) remained significant when concentrations of immunoradiometrically measured insulin were employed. Concentrations of 32—33 split proinsulin, which comprises the major insulin-like molecule in these subjects, correlated positively with triglyceride (r s=0.33, p=0.009), total cholesterol (r s=0.23, p=0.050), and plasminogen activator inhibitor (r s=0.26, p=0.049), and negatively with high density lipoprotein cholesterol (r s=−0.29, p=0.021). Concentrations of “immunoreactive insulin” and immunoradiometric assay insulin showed significant positive correlaion with both systolic (r s=0.24, p=0.044 and r s=0.29, p=0.020 respectively), and diastolic blood pressure (r s=0.48, p〈0.001 and n=0.42, p=0.001 respectively), while those of intact proinsulin and 32–33 split proinsulin correlated only with diastolic blood pressure (r s=0.33, p=0.009 and r s=0.31, p=0.014 respectively). Using multiple regression analysis, and including age, sex, race and body mass index in the analyses, concentrations of intact proinsulin and 32–33 split proinsulin, but not immunoradiometric assay insulin, were significantly related to diastolic blood pressure. When all three molecules were incorporated into a single model, only 32–33 split proinsulin was related to diastolic blood pressure (F-change=6.91, [5,43 degrees of freedom]; p=0.012). Thus, high concentrations of insulin-like molecules are associated with changes in recognised cardiovascular risk factor in patients with Type 2 (non-insulin-dependent) diabetes mellitus.
    Type of Medium: Electronic Resource
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