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H Orskov

Publications and source records attributed to H Orskov.

At least 145 records · Page 8Linked to original sources

Kidney IGF-I and renal hypertrophy in GH-deficient diabetic dwarf rats.

Insulin-like growth factor I (IGF-I) has been proposed as a renotropic factor in initial diabetic kidney growth. To examine the effects of an isolated growth hormone (GH) and IGF-I deficiency on diabetic renal hypertrophy, dwarf rats were made diabetic and studied over a period of 7 days. Diabetic dwarf rats treated with human GH (hGH) or insulin and diabetic rats with intact pituitary were used as controls. In diabetic control animals kidney weight had increased by day 2 (P less than 0.01), and the increase amounted to 27% after 7 days, whereas untreated diabetic dwarf rats had a slower and lesser degree of kidney weight increase, reaching significance on day 7 only, amounting to 8%. hGH administration in diabetic dwarf rats increased the kidney weight on day 7 when compared with untreated diabetic dwarf rats (P less than 0.05) and was 19% over that of insulin-treated diabetic dwarf rats. The glomerular volume had increased by 43% in untreated diabetic control rats at day 7, compared with a 29% increase in untreated diabetic dwarf rats (P less than 0.05). hGH administration in diabetic dwarf rats increased the glomerular volume by 46%, comparable to the increase seen in diabetic control animals. Kidney IGF-I was increased on day 2 by 51 and 46% in saline- and hGH-injected diabetic dwarf rats, respectively, but a significantly higher increase in kidney IGF-I amounting to 96% was seen in diabetic control rats.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Dose-response characteristics of human proinsulin and insulin in non-insulin-dependent diabetic humans.

We compared the actions of human proinsulin and insulin on glucose turnover and on intermediary carbohydrate and lipid metabolism in non-insulin-dependent diabetes mellitus (NIDDM). Six diet-controlled weight-matched (25.4 +/- 1.0 kg/m2) NIDDM subjects underwent six separate isoglycemic clamps. Glucose turnover was measured using a primed continuous infusion of [6',6'-2H2]glucose. Each subject received three low-dose intravenous infusions of both insulin and proinsulin. Blood glucose was maintained at 6.7 +/- 0.3 mM during proinsulin and insulin infusion. Insulin (I) infusions gave steady-state levels of 0.12 +/- 0.001 (I1), 0.18 +/- 0.01 (I2), and 0.33 +/- 0.01 nM (I3). Steady-state proinsulin (P) levels were 2.5 +/- 0.1 (P1), 4.3 +/- 0.2 (P2), and 8.8 +/- 0.9 nM (P3). Hepatic glucose production was suppressed equally by proinsulin and insulin at all doses. The metabolic clearance rate of glucose was significantly increased during the insulin infusion compared with proinsulin. The use of [6',6'-2H2]glucose resulted in a mean underestimation of the glucose infusion rate of 10.0 +/- 4.0 and 6.0 +/- 2.5% during the two highest insulin and proinsulin doses, respectively. Proinsulin had a significantly weaker effect than insulin, at the lowest infusion dose, in percent suppression of plasma nonesterified fatty acids, blood glycerol, and beta-hydroxybutyrate levels (all P less than 0.05). Blood lactate levels were lower during the P1 (628 +/- 43 microM) and P2 (657 +/- 93 microM) infusions compared with I1 (776 +/- 60 microM) and I2 (878 +/- 44 microM; P less than 0.05, P less than 0.02), respectively.(ABSTRACT TRUNCATED AT 250 WORDS)

Diabetes Mellitus, Type 2↗

Insulin-like growth factor I in initial renal hypertrophy in potassium-depleted rats.

We investigated insulin-like growth factor I (IGF-I) in the kidney during the initial renal enlargement induced by dietary K depletion in rats. Kidney weight increase was significant after 3 days of K depletion and amounted to 29% after 7 days compared with pair-fed controls [839 +/- 34 vs. 648 +/- 17 mg (SE), P less than 0.01]. The kidney growth occurred despite almost complete arrest in body weight gain in K-depleted animals (8 +/- 3 vs. 34 +/- 4 g/7 days in controls, P less than 0.01). Whole kidney protein, RNA, and DNA estimations indicated that cellular hypertrophy during the first 4 days was followed by hyperplasia. Immunoassayable kidney IGF-I concentration increased by 106% (673 +/- 30 vs. 327 +/- 14 ng/g, P less than 0.01) in K-depleted animals 24 h after induction of K depletion, stayed elevated until day 4, and returned to control levels on day 7. After K depletion for 24 h, IGF-I immunostaining was markedly increased in the medullary parts of the collecting ducts from K-depleted animals, whereas kidney IGF-I gene expression (IGF-I mRNA) had decreased by 36%. The increase in total kidney IGF-I concentration and immunostainable IGF-I in collecting ducts in kidneys from K-depleted rats precedes the renal hypertrophy and thereby suggests a renotropic role for IGF-I. The increase in kidney IGF-I concentration is not associated with increased IGF-I mRNA levels, indicating that non-transcriptional mechanisms may be responsible for the renal IGF-I accumulation.

Animals↗

A randomized comparison of intranasal and injectable octreotide administration in patients with acromegaly.

Fifteen acromegalic patients received four single doses of octreotide in random order (500 micrograms, 1000 micrograms, and 2000 micrograms applied intranasally and 100 micrograms given sc). Serum octreotide and GH data were subjected to pharmacokinetic analyses, and local nasal effects were evaluated by acoustic rhinometry. Average areas (+/- SEM) under the serum octreotide curves were: 2000 micrograms: 4597 +/- 536; 1000 micrograms: 1923 +/- 439; 500 micrograms: 957 +/- 168; and 100 micrograms sc: 896 +/- 81 micrograms.L-1.min (n = 13). The calculated relative availability was 27% +/- 0.03; 22% +/- 0.05; 22% +/- 0.03, respectively, for the three nasal doses. The rate of absorption after intranasally administered octreotide was greater than after sc application: t1/2 ka: 7.1 +/- 1.6; 7.9 +/- 1.6; 11.3 +/- 1.9, respectively, vs. 24.1 +/- 2.5 min, whereas the rates of disappearance were similar. GH suppression started immediately after application and reached minimum levels 1-2 h later. The average intervals during which serum GH was below 50% of preadministration values were: 2000 micrograms: 544 +/- 47; 1000 micrograms: 423 +/- 56; 500 micrograms: 289 +/- 52 vs. 351 +/- 34 min after sc injection of 100 micrograms. With 2000 micrograms intranasally all but one of the 15 patients attained constant suppression of serum GH below 5 micrograms/L for 273 to 680 min. Pharmacokinetic analysis demonstrated that 100 micrograms sc and 1000 micrograms intranasally induced the same GH suppressive effect and that 2000 micrograms intranasally approximately doubled the duration of action. Acoustic rhinometry was performed after nasal application of the largest dose of 2000 micrograms and after carrier (n = 9). A highly significant tumescence of the nasal mucosa was maximal after 10 min and gradually receded over the next 2 h. However, this was felt by the patients to be acceptable. The effect was caused by octreotide per se and was probably due to vasodilation.

Acromegaly↗

The effects of human proinsulin on glucose turnover and intermediary metabolism in insulin-dependent-diabetes mellitus.

We have compared the action of human proinsulin and insulin on glucose turnover, intermediary carbohydrate, and lipid metabolism in insulin-dependent-diabetic (IDDM) subjects. Six, young, weight-matched (23 +/- 2 kg-2) IDDM subjects underwent separate hyperinsulinemic euglycemic clamps. Three, low dose, iv infusions of both insulin and proinsulin were used to construct dose response curves. The proinsulin infusions were chosen to give steady state levels approximately or equal to 20-fold higher on a molar basis than insulin, based on previous findings that proinsulin has only 5-10% the biological potency of insulin. Hepatic glucose production, measured using [6'6'2H2]glucose, was suppressed equally by proinsulin and insulin at the three dose levels; (I1) 2.8 +/- 0.7 (P1) 3.3 +/- 0.6, (I2) 2.3 +/- 0.9 (P2) 3.3 +/- 1.1, (I3) -2.0 +/- 1.7 (P3) -1.1 +/- 0.6 mumol/kg min-1. Percentage elevation of glucose disposal was significantly increased during the insulin infusions compared to proinsulin; (I1) 132 +/- 12 (P1) 78 +/- 4 p < 0.01; (I2) 157 +/- 18 (P2) 104 +/- 14; P < 0.05; (I3) 242 +/- 23 (P3) 159 +/- 24 p = 0.02. Dose response curve analysis demonstrated that proinsulin stimulated glucose disposal approximately or equal to 3.7% whereas suppression of HGP was congruent to 5.7% compared to insulin. Proinsulin had a significantly weaker effect than insulin, at the lowest infusion dose, in percent suppression of plasma nonesterified fatty acids (I1 34 +/- 4, P1 14 +/- 15%; P < 0.05), blood glycerol (I1 47 +/- 4, P1 30 +/- 3%; P < 0.01) and 3-hydroxybutyrate levels (I1 81 +/- 7, P1 42 +/- 17%; P < 0.05). Proinsulin caused significant net reductions in blood lactate levels compared to insulin at each infusion dose; (P1) -130 +/- 34, (I1) -32 +/- 30 mumol/L (P < 0.05) (P2) -139 +/- 76 (I2) +8 +/- 65 mumol/L (P < 0.05) (P3) 48 +/- 60 (I3) 230 +/- 64 mumol/L (P < 0.05). We conclude that in IDDM: 1) proinsulin has a preferential effect on the liver compared to muscle, in terms of glucose handling; 2) proinsulin may have a different effect on lactate metabolism compared to insulin; 3) proinsulin at the lowest dose resulted in an inability to suppress lipolysis and ketogenesis; 4) glucose turnover can be underestimated using [6'6'2H2]glucose.

Adult↗

Renal insulin-like growth factor I and growth hormone receptor binding in experimental diabetes and after unilateral nephrectomy in the rat.

We have measured specific binding of insulin-like growth factor I and growth hormone to renal plasma membranes from control, streptozotocin-diabetic, insulin-treated diabetic, uninephrectomised and combined diabetic-uninephrectomised male Wistar rats. Control, insulin-treated and uninephrectomised rats had similar body weights after 7 days (243 +/- 2 g), whereas diabetic and diabetic-uninephrectomised animals were significantly lighter (219 +/- 4 and 203 +/- 4 g, p less than 0.05). Blood glucose concentrations were similar in the diabetic and diabetic-uninephrectomised animals (around 26 mmol/l) but significantly lower in the insulin-treated group. Right kidney weight increased by 14% in the control, insulin-treated and sham-nephrectomised animals, by 33% in the diabetic group, 38% in thenephrectomised animals and 60% in the diabetic-nephrectomised group. The renal content of insulin-like growth factor I was similar and stable in the control, insulin-treated and sham-nephrectomised animals (208 +/- 14 ng/g wet weight) but rose to a peak of 669 +/- 35 ng/g in the diabetic group (p less than 0.001), 871 +/- 34 ng/g in the nephrectomised animals (p less than 0.001) and 1012 +/- 43 ng/g in the diabetic-uninephrectomised group (p less than 0.001). Maximum binding of insulin-like growth factor I fell on day 1 in the diabetic group (8.3 +/- 1.4 vs 5.2 +/- 0.71 x 10(-11) mol/l; p less than 0.01) but thereafter was identical to control animals.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Effect of insulin-like growth factor I infusion on renal hypertrophy in experimental diabetes mellitus in rats.

Initial diabetic renal hypertrophy is preceded by a transient increase in kidney insulin-like growth factor I suggesting that insulin-like growth factor I may be implicated in diabetic kidney growth. The present study was undertaken to examine the effects of exogenous insulin-like growth factor I infusion on diabetic renal hypertrophy at a time when renal insulin-like growth factor I concentration had returned to normal and the initial steep kidney growth rate had diminished to a much slower rate. Groups of rats with diabetes duration of 5 days were infused s.c. for 4 subsequent days with equimolar concentrations of insulin-like growth factor I (36 nmol/day) or insulin (35 nmol/day). Insulin infusion lowered blood glucose to a normal level within 2 days and induced an average body-weight gain of 9.3 +/- 0.6 g/day. Insulin-like growth factor I infused diabetic rats maintained the original diabetic state with blood glucose levels comparable to those of 0.154 mol/l NaCl-infused diabetic rats, but had nevertheless an average body-weight gain of 6.8 +/- 1.0 g/day while untreated diabetic rats had a lower body-weight gain amounting to 3.3 +/- 0.8 g/day (p less than 0.01). The kidney weight at day 9 in untreated diabetic animals was about 25% greater than that of non-diabetic control animals, while in insulin-like growth factor I treated diabetic rats a further increase (p less than 0.05) was seen, amounting to 36% above control level. No increase was seen in the insulin-treated diabetic group.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Reduction in sella turcica volume. An effect of long-term treatment with the somatostatin analogue, SMS 201-995, in acromegalic patients.

Ten patients with acromegaly were treated with the long-acting somatostatin analogue, Sandostatin (SMS 201-995, octreotide) for more than one year. Computerized tomography was performed before and on 4 different occasions during the treatment. Sella turcica volumes were calculated in nine patients and showed a gradual decrease in all, averaging 32% +/- 14.6%, P less than 0.001 at the end of the study, which is probably indicative of a simultaneous reduction in adenoma size.

Acromegaly↗

Evidence that potassium deficiency induces growth retardation through reduced circulating levels of growth hormone and insulin-like growth factor I.

Growth retardation and impaired protein synthesis are major characteristics of potassium (K)-deficiency in animals and man. We have evaluated the effect of K-deficiency on growth, serum growth hormone (s-GH), insulin-like growth factor I (s-IGF-I), and insulin (s-insulin) in young rats. After 10 days on K-deficient fodder, 4 1/2-week-old rats showed a 54% reduction in serum potassium (s-K) and a weight gain that was reduced by 97%, compared with pair-fed controls. In addition, tail length, tibia length, and muscle weight of soleus in K-depleted animals were all significantly reduced compared with pair-fed controls. The growth retardation was accompanied by a 46% reduction in s-IGF-I, while s-insulin showed no decrease. K-repletion in animals depleted for 7 days showed complete normalization of s-K within 24 hours, in addition to a significant increase in both s-IGF-I and weight. In 4-week-old rats maintained on K-deficient fodder with variable K-content (1 to 260 mmol/kg) for 1 week, a strong correlation between the K-content of fodder and s-IGF-I could be established (r = .88, P less than .001), as well as between s-IGF-I and weight gain (r = .90, P less than .001). Furthermore, a stepwise reduction in basal s-GH was seen with the graded reduction of dietary K-content.(ABSTRACT TRUNCATED AT 250 WORDS)

Aging↗

Role of plasma non-esterified fatty acids during and after exercise.

1. The importance of circulating non-esterified fatty acids as a substrate during and after low-grade exercise has been examined by using a nicotinic acid analogue to inhibit lipolysis. Seven healthy men received acipimox or placebo on separate occasions. After 90 min, bicycle exercise was performed for 45 min (40% of pre-determined maximum oxygen uptake), followed by a 60 min recovery period. 2. The plasma concentration of non-esterified fatty acids increased during exercise after placebo (320 +/- 80 to 630 +/- 110 mumol/l) and remained elevated in the post-exercise period. Basal concentrations were lower after acipimox (100 +/- 10 mumol/l; P less than 0.05); they declined to 60 +/- 10 mumol/l during exercise and remained at this level for the rest of the study. 3. Lipid oxidation increased from 0.8 +/- 0.1 to 4.2 +/- 0.5 mg min-1 kg-1 during exercise after placebo (P less than 0.001) and remained elevated in the post-exercise period (1.2 +/- 0.1 mg min-1 kg-1). It was lower after acipimox, but still increased from 0.3 +/- 0.1 to 2.3 +/- 0.2 mg min-1 kg-1 with exercise. Carbohydrate oxidation was increased after acipimox compared with after placebo, but only reached significance during the post-exercise period (P less than 0.05). 4. Although acipimox abolished the rise in the plasma concentration of non-esterified fatty acids during exercise, there was only a 50% decrease in the rate of lipid oxidation. This suggests that an alternative source of non-esterified fatty acids makes an important contribution to the supply of lipid for oxidation during exercise.(ABSTRACT TRUNCATED AT 250 WORDS)

Adult↗

The independent effect of ketone bodies on forearm glucose metabolism in normal man.

Ketone bodies and non-esterified fatty acids (NEFA) inhibit insulin stimulated glucose uptake in muscle in-vitro. In man the infusion of ketone bodies lowers plasma NEFA levels thus confounding the interpretation of individual effects. The aim of this study was to examine the effect of ketone bodies on insulin mediated forearm glucose metabolism independent of the changes in the plasma NEFA levels. Seven healthy men received sodium 3-hydroxybutyrate (15 mumol kg-1 min-1) or sodium bicarbonate (control) for 240 min. Heparin (0.2 U kg-1 min-1) and insulin (0.01 U kg-1 h-1) were infused for 90 min (pre-clamp), followed by insulin alone (0.025 U kg-1 h-1) and euglycaemia was maintained (clamp). Plasma NEFA levels and rates of forearm NEFA uptake (+23 +/- 14 and +49 +/- 21 [mean +/- SEM] nmol 100 ml forearm [FA]-1 min-1) were comparable during the pre-clamp periods, and were suppressed equally during hyperinsulinaemia. Sodium 3-hydroxybutyrate infusion raised the blood ketone body levels from 70 +/- 4 mumol/l to a plateau of 450 +/- 30 mumol/l, while control levels declined from baseline (ketone body vs control; P less than 0.001).(ABSTRACT TRUNCATED AT 250 WORDS)

Adult↗

Effects of antibodies against octreotide in two patients with acromegaly.

Two patients developed specific IgG antibodies against octreotide after 2-3 years' treatment for acromegaly with this long acting somatostatin analogue. The presence of these antibodies reduced the plasma disappearance rate of total extractable octreotide by 60 and 80% respectively. When compared to that of non-immune acromegalic patients, the plasma half-life of octreotide in these two patients was 300 and 450 vs 110 min in those with no detectable octreotide antibodies. The sole observed consequence of the immunization was a marked prolongation of the interval of maximum GH inhibition from a mean of 5 to 8 and 10 h in the two patients described after octreotide injection.

Acromegaly↗

Inhibitory effect of octreotide on growth hormone-induced IGF-I generation and organ growth in hypophysectomized rats.

We investigated the effect of a somatostatin analogue octreotide (SMS) on the stimulatory effect of recombinant human growth hormone (hGH) on insulin-like growth factor I (IGF-I) generation and growth in hypophysectomized rats. Two weeks after hypophysectomy, treatment was given for 11 days with either saline, SMS (100 micrograms/day), hGH (140 micrograms/day), or hGH plus SMS. Compared with saline-injected controls, hGH stimulated body weight gain [1.1 +/- 0.7 vs. 40.9 +/- 0.8 (SE) g, P less than 0.001] and width of epiphysial cartilage (138.0 +/- 4.5 vs. 356 +/- 3.8 microns, P less than 0.001). Combined treatment with hGH and SMS significantly reduced both body weight gain (29.1 +/- 2.5 g, P less than 0.001) and width of epiphysial cartilage (315.3 +/- 5.8 microns, P less than 0.001) compared with the effects of hGH alone. During 11 days of hGH treatment, serum IGF-I increased from 22 +/- 5 to 1,288 +/- 92 micrograms/l (P less than 0.001) but increased only 40% (513 +/- 71 vs. 1,288 +/- 92 micrograms/l, P less than 0.001) when SMS was given in combination with hGH. In gastrocnemius muscle, heart, and lung, but not in liver, kidney, and brain, SMS suppressed organ weight increase when given both with and without hGH substitution. Thymus and gastrointestinal tract weight were significantly reduced in the group receiving SMS alone and tended to be reduced in the hGH-substituted group given SMS as well. Tissue IGF-I was increased in liver, lung, kidney, and heart with hGH treatment (P less than 0.01).(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Effect of glycemia and nonesterified fatty acids on forearm glucose uptake in normal humans.

The purpose of this study was to examine the effect of physiological plasma nonesterified fatty acid (NEFA) levels on insulin-stimulated forearm and whole body glucose uptake and substrate oxidation during euglycemia and hyperglycemia. Seven healthy men received Intralipid and heparin for 210 min in two studies, with saline as control in two further studies. Insulin (0.05 U.kg-1.h-1) was infused from 60 min, and euglycemia was maintained during lipid (EL) and control (EC) studies, and hyperglycemia was maintained in the other studies (HL and HC). Forearm NEFA uptake was comparable in the lipid studies (+61 +/- 10 and +52 +/- 8 nmol.100 ml forearm-1.min-1, EL and HL) and was suppressed in the controls. With Intralipid, forearm glucose uptake decreased during euglycemia but not during hyperglycemia (+3.85 +/- 0.34 vs. +3.34 +/- 0.25 mumol.100 ml forearm-1.min-1, EC vs. EL, P less than 0.02), with comparable changes in whole body glucose uptake. Glucose oxidation and forearm alanine release decreased with Intralipid at both blood glucose levels, with no significant change in the rates of nonoxidative glucose disposal. These observations support the operation of the glucose-fatty acid cycle at physiological plasma NEFA levels at both blood glucose concentrations, but this was associated with a decrease in peripheral insulin sensitivity only during euglycemia.

Adult↗

Insulin-like growth factor 1 and renal growth following ureteral obstruction in the rat.

The role of insulin-like growth factor 1 (IGF-1) in renal growth of obstructed and contralateral kidneys was investigated for 10 days following unilateral ureteric obstruction in male Wistar rats. The weight of the obstructed kidney increased rapidly, rising from 671 +/- 10 to 1,378 +/- 42 mg on day 10, an increase of 105%. IGF-1 content of the obstructed kidney was significantly less than in control kidneys from day 2 onwards, reaching a nadir of 70 ng/mg, a fall of 64%. The protein concentration, expressed as milligrams per gram kidney weight, also fell rapidly from 141 +/- 11 to 88 +/- 3 mg/g on day 6. The weight of the contralateral kidney increased by 32%, from 671 +/- 10 to 887 +/- 48 mg on day 10. The IGF-1 content of this kidney was increased by 48% from baseline on day 1 (268 +/- 23 vs. 191 +/- 13 ng/g) and remained increased compared to sham-operated animals on days 6 and 8. The protein content, expressed as milligrams per gram kidney weight, remained constant throughout the study. We conclude that in the acutely obstructed left kidney increasing kidney weight is associated with falling concentration of IGF-1 and protein and may be due to oedematous and reactive change. Growth of the contralateral kidney is preceded by a rise in the concentration of IGF-1 and may represent true renal compensatory growth.

Animals↗