Literature DB >> 8750763

Intestinally derived lipoprotein particles in non-insulin-dependent diabetic patients with and without hypertriglyceridaemia.

A Curtin1, P Deegan, D Owens, P Collins, A Johnson, G H Tomkin.   

Abstract

We have previously demonstrated alterations in apolipoprotein B-48 metabolism in the post-prandial state in patients with non-insulin-dependent diabetes mellitus. This study investigates the relationship between hypertriglyceridaemia and post-prandial lipoprotein metabolism. Four groups of patients were examined: non-insulin-dependent diabetic patients, with normal serum triglyceride levels (serum triglyceride < 2.1 mmol l-1; haemoglobin HbA1c 5.5% +/- 0.4%); poorly controlled, non-insulin-dependent diabetic patients with hypertriglyceridaemia (serum triglyceride > 2.1 mmol l-1; HbA1c 8.8% +/- 0.9%); non-diabetic subjects with serum triglycerides < 2.1 mmol l-1; and non-diabetic subjects with hypertriglyceridaemia (serum triglyceride > 2.1 mmol l-1). Subjects were studied fasting and following a high-fat meal (1300 kcal). The triglyceride-rich lipoprotein fraction was isolated by ultracentrifugation (d < 1.006 g ml-1). Apoprotein B-48, apoprotein B-100 and apoprotein E were separated on 4%-15% gradient gels and quantified as a percentage of the fasting concentration by densitometric scanning. Triglyceride-rich lipoprotein apolipoprotein B-48 and apolipoprotein B-100 post-prandial profiles demonstrated a maximum increase either at 2 h or rising still further to a peak at 6 h before falling in the diabetic groups and hypertriglyceridaemic non-diabetic subjects when compared with the normotriglyceridaemic control subjects whose levels decreased after 2 h (P < 0.05). A significantly different triglyceride-rich lipoprotein apolipoprotein E profile was also exhibited by the diabetic patients (P < 0.05). Levels of triglyceride-rich lipoprotein, cholesterol, triglyceride, total protein and apoprotein B were elevated in the hypertriglyceridaemic subjects, both diabetic and non-diabetic. These results indicate that hypertriglyceridaemia is associated with altered metabolism and composition of post-prandial triglyceride-rich lipoprotein particles in both poorly controlled diabetic and non-diabetic subjects.

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Year:  1995        PMID: 8750763     DOI: 10.1007/bf00576257

Source DB:  PubMed          Journal:  Acta Diabetol        ISSN: 0940-5429            Impact factor:   4.280


  26 in total

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Authors:  R B Simsolo; J M Ong; B Saffari; P A Kern
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Review 3.  Hyperlipidaemia in diabetes.

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4.  Effects of NIDDM on very-low-density lipoprotein triglyceride and apolipoprotein B metabolism. Studies before and after sulfonylurea therapy.

Authors:  M R Taskinen; W F Beltz; I Harper; R M Fields; G Schonfeld; S M Grundy; B V Howard
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5.  Lipid and apolipoprotein B48 transport in mesenteric lymph and the effect of hyperphagia on the clearance of chylomicron-like emulsions in insulin-deficient rats.

Authors:  I J Martins; A J Sainsbury; J C Mamo; T G Redgrave
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Authors:  W H Sheu; S M Shieh; M M Fuh; D D Shen; C Y Jeng; Y D Chen; G M Reaven
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7.  Cholesterol metabolism in alloxan-induced diabetic rabbits.

Authors:  N M O'Meara; R A Devery; D Owens; P B Collins; A H Johnson; G H Tomkin
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8.  Plasma apolipoprotein changes in the triglyceride-rich lipoprotein fraction of human subjects fed a fat-rich meal.

Authors:  J S Cohn; J R McNamara; S D Cohn; J M Ordovas; E J Schaefer
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9.  Slower removal of intestinal apolipoprotein B-48 than of apolipoprotein B-100 in severely hypertriglyceridemic subjects.

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Journal:  Biochim Biophys Acta       Date:  1983-05-16

10.  Postchallenge plasma lipoprotein retinoids: chylomicron remnants in endogenous hypertriglyceridemia.

Authors:  D E Wilson; I F Chan; K N Buchi; S C Horton
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