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Biomedical subjects

K Hoogenberg

Publications and source records attributed to K Hoogenberg.

At least 19 recordsLinked to original sources

The influence of the ACE ( I/D) polymorphism on systemic and renal vascular responses to angiotensins in normotensive, normoalbuminuric Type 1 diabetes mellitus.

AIM/HYPOTHESIS: The renin-angiotensin-aldosterone system is important in diabetic nephropathy, with the angiotensin-converting-enzyme DD-genotype being a renal risk factor. The D-allele is associated with higher ACE concentrations, but functional consequences in diabetes mellitus are not known. To analyse these consequences, we assessed renal and systemic responsiveness to angiotensin I infusion, with the response to angiotensin II as reference. METHODS: Uncomplicated Type 1 (insulin-dependent) diabetic patients with contrasting genotypes (11 II and 11 DD) were studied, during low (50 mmol/24 h) and liberal (200 mmol/24 h) sodium diet, during a euglycaemic clamp. Angiotensin I was infused at 4 and 8 ng.kg(-1).min(-1), 1 h each, followed by infusions of angiotensin II after a 2-h wash-out period. RESULTS: During low sodium, DD-homozygotes showed higher blood pressure sensitivity to angiotensin I ( DD 21+/-5% vs II 15+/-5%, p<0.01). With liberal sodium, no differences in blood pressure were detected, whereas angiotensin I induced a higher response of ERPF ( DD 40+/-5% vs II 35+/-4%, p<0.05) and RVR ( DD 105+/-20% and II 89+/-16% p<0.05) in DD-homozygotes. Differences were not explained by altered angiotensin II sensitivity. Multiple-linear regression analysis showed that angiotensin I induced responses of blood pressure and renal haemodynamics are higher in subjects carrying the DD-genotype. The magnitude of the responses was modulated by sodium intake and long-term glycaemic control. CONCLUSION/INTERPRETATION: This study showed that responses of blood pressure and renal haemodynamics to angiotensin I are increased in diabetic subjects carrying the DD-genotype. Genotype-associated differences in ACE concentrations could, under certain circumstances, have functional consequences in uncomplicated Type 1 diabetes mellitus.

Adolescent↗

Sympathetic mediated vasomotion and skin capillary permeability in diabetic patients with peripheral neuropathy.

AIMS/HYPOTHESIS: A loss of sympathetic function could lead to changes in capillary fluid filtration in diabetic patients. We investigated whether a decreased sympathetically mediated vasomotion in the skin in diabetic patients with peripheral neuropathy is associated with an abnormal capillary leakage. METHODS: Three matched groups were studied: 18 diabetic patients with documented peripheral neuropathy (DN), 18 diabetic patients without peripheral neuropathy (D), and 18 healthy control subjects (C). Sensory and motor nerve function of the distal extremities were assessed by standard neurography, and expressed in a sensory-motor nerve function score. Sympathetic vasomotion of the skin microcirculation was assessed by determining the power of blood flow variability in the low-frequency (0.02-0.14 Hz) band by spectral analysis of laser Doppler flowmetry at the median ankle. Skin capillary leakage was evaluated by sodium fluorescein videodensitometry at the same site of the foot. RESULTS: Sympathetically mediated vasomotion of the foot skin microcirculation was lower in diabetic patients with documented peripheral neuropathy compared with diabetic patients without peripheral neuropathy and control subjects (p<0.001). Capillary sodium fluorescein leakage was larger in 18 diabetic patients with documented peripheral neuropathy than in diabetic patients without peripheral neuropathy (p<0.02) and C (p<0.005). Multiple regression analysis disclosed that a reduced sympathetically mediated vasomotion, together with a lower sensory-motor nerve function score, independently contributed to the variance in sodium fluorescein leakage, for 30% (p<0.001) and 17% (p<0.01), respectively. CONCLUSIONS: A loss of sympathetic tone, apart from sensory-motor nerve dysfunction, seems to be a major determinant of an increased capillary permeability in diabetic patients with neuropathy.

Capillary Permeability↗

Low plasma aldosterone despite normal plasma renin activity in uncomplicated type 1 diabetes mellitus: effects of RAAS stimulation.

BACKGROUND: Data on levels and responsiveness of PRA and aldosterone in type 1 diabetes mellitus are conflicting. Earlier studies were not standardized with respect to the type of diabetes mellitus, the presence of diabetic complications or sodium intake. Therefore, we studied plasma renin activity and plasma aldosterone in uncomplicated type 1 diabetes mellitus by evaluating the effects of endogenous (sodium restriction) and exogenous (angiotensin I infusion) stimulation. DESIGN: Twenty-four type 1 diabetic patients and 24 matched healthy subjects were studied after 1 week of liberal sodium diet (200 mmol 24 h-1) and 1 week of low sodium diet (50 mmol 24 h-1). Angiotensin (Ang)I was infused at 4 and 8 ng kg-1 min-1 during both study days. RESULTS: During liberal and low sodium intake, plasma aldosterone was lower in type 1 diabetic patients compared with healthy subjects both at 08:00 h (P < 0.05) and after a 2-h euglycaemic clamp (P < 0.05), despite similar PRA levels. The correlations between changes in PRA and changes in plasma aldosterone when shifting sodium intake were similar in both groups. During liberal sodium intake, the aldosterone levels after AngI infusion were lower in type 1 diabetic patients, whereas during low sodium they were not different. CONCLUSIONS: Plasma aldosterone was deceased relative to PRA in uncomplicated type 1 diabetic patients, irrespective sodium intake. The responsiveness to sodium restriction was adequate and sodium restriction was able to overcome the decreased plasma aldosterone response to exogenous AngI, which was observed during liberal sodium in diabetic patients. The lower aldosterone is not secondary to diabetic complications and does not depend on the level of sodium intake.

Adult↗

[Misleading advertising claims about the indication of doxazosin (Cardura) for type 2 diabetes mellitus and hypertension].

A number of Dutch medical journals have carried an advertisement promoting doxazosin in the treatment of hypertension in patients with type 2 diabetes mellitus. No long-term randomised clinical trials have examined the cardiovascular outcomes of the alpha-adrenergic blockers to which doxazosin belongs. The drug was removed from the largest study into blood pressure and cholesterol reduction ever performed until now (the antihypertensive and lipid-lowering treatment to prevent heart attack trial), due to an increased incidence of cardiovascular events and in particular congestive heart failure. The clinical significance of its insulin-sensitivity improving and lipid-neutralising effects in small-scale, short-term, small patient-group studies are ambiguous. Accordingly, national and international guidelines omitted the drug in their treatment recommendations. The advertisement claims are therefore misleading.

Adrenergic alpha-Antagonists↗

Short-term moderate sodium restriction induces relative hyperfiltration in normotensive normoalbuminuric Type I diabetes mellitus.

AIMS/HYPOTHESIS: Type I (insulin-dependent) diabetes mellitus is associated with an increased extracellular volume. Sodium restriction might seem a logical form of treatment but data on its renal effects is conflicting. We therefore studied the effects of sodium restriction on renal haemodynamics in uncomplicated Type I diabetes mellitus. METHODS: Uncomplicated Type I diabetic patients ( n = 24) and matched control subjects ( n = 24) were studied twice in random order: after a week of 50 mmol or after 200 mmol sodium intake, respectively. The diabetic patients were studied under normoglycaemic clamp conditions. Glomerular filtration rate and effective renal plasma flow were measured as the clearances of iothalamate and hippuran, respectively. RESULTS: During liberal sodium intake, glomerular filtration, effective renal plasma flow and filtration fraction were similar between the diabetic patients and the control subjects. Sodium restriction decreased the effective renal plasma flow in both groups, whereas glomerular filtration rate only decreased in the control subjects. Consequently, in the diabetic patients, the filtration fraction was increased on low sodium (4.1 +/- 8.4 %, p < 0.05 vs liberal sodium). As a consequence, filtration fraction (24.0 +/- 2.6 vs 22.1 +/- 2.0 %, p < 0.05) and glomerular filtration (119 +/- 14 vs 110 +/- 13 ml/min, p < 0.05) were higher in the diabetic patients than in the control subjects during sodium restriction. CONCLUSION/INTERPRETATION: Short-term moderate sodium restriction induces relative hyperfiltration in uncomplicated Type I diabetes. This could indicate an increased intraglomerular pressure. Sodium restriction could be an unfavourable preventive approach in diabetes mellitus but its long-term effects are not known.

Adult↗

[Elevated hormone levels without endocrinopathy: hypercortisoluria and hypoglycemia as facticious disorders].

A 29-year-old female patient with weight gain and intermittent hypertension was suspected of having Cushing's syndrome due to conspicuous hypercortisoluria. Specific laboratory tests demonstrated that the urine samples contained prednisolone, which had resulted in a false positive elevation of urine-free cortisol measurements. The patient admitted to having taken prednisolone tablets and also to having added them to several urine collections. In a 21-year-old male patient with unexplained hypoglycaemia, hypoglycaemia was recorded during a 72-hour fast together with an elevated level of plasma insulin and a low level of plasma C-peptide. The presence of insulin autoantibodies could be excluded, making a diagnosis of factitious hypoglycaemia highly likely. Both patients were confronted with the factitious disorder and received psychiatric counselling, after which no further problems arose. Where excessive hormone levels occur, the possibility of a factitious disorder needs to be considered. In such cases, specific supplementary laboratory tests may prove helpful.

Adrenocortical Hyperfunction↗

Redistribution of blood volume in type I diabetes.

AIMS/HYPOTHESIS: Impaired activity of endothelium-derived nitric oxide in Type I (insulin-dependent) diabetes mellitus will cause an increased vascular tone. Considering the lower production of nitric oxide in veins than in arteries, an impaired activity would have less vasoconstrictive effect in veins. The reported minimally changed total plasma volume in diabetes might, therefore, indicate a redistribution of blood volumes from the arterial to the venous side of the circulation. This could be more pronounced in patients with microalbuminuria. METHODS: In 16 normoalbuminuric and 16 microalbuminuric Type I diabetic patients and 16 individually matched healthy control subjects, venous and arterial blood volumes, venous myogenic response and arterial distensibilities were assessed in the upper arm using an electrical bio-impedance method. RESULTS: In diabetic patients, the venous blood volume and venous myogenic response were increased (p < 0.02 and p < 0.05, respectively), whereas the arterial blood volume did not change. Moreover, in diabetic patients the distensibility of the large arteries was decreased (p < 0.05) but increased in the total arterial bed (p < 0.05). Therefore, the distensibility of the small arteries must have been increased. No differences were found between normoalbuminuric and microalbuminuric diabetic patients. CONCLUSION/INTERPRETATION: The increase in venous blood volume and myogenic response and the decrease in distensibility of the large arteries in the upper arm are in agreement with the expected shift towards venous blood volume distribution in Type I diabetes with and without microalbuminuria. Furthermore, they support the haemodynamic hypothesis of the pathogenesis of diabetic microangiopathy.

Adult↗

The renal and neurohumoral effects of the addition of low-dose dopamine in septic critically ill patients.

OBJECTIVES: Dopamine exerts a complicated action on the cardiovascular-renal and neurohumoral systems. We evaluated the effects of the addition of different doses of dopamine on top of treatment with norepinephrine on the haemodynamics, renal function and neurohormones of septic shock patients. DESIGN: Open, uncontrolled, dose-finding study. SUBJECTS: Dopamine was administered, after fluid resuscitation, to septic shock patients who were more than 2 h haemodynamically and pulmonary stable with the use of a constant dose norepinephrine. Patients with a serum creatinine above 180 micromol x l were excluded. METHODS: Dopamine doses of 0, 2, 4, 6 and 0 microg x kg(-1) x min(-1) were given consecutively for 1 h each. Neurohormones were measured hourly after baseline levels had been taken. Systemic haemodynamics were measured using a pulmonary artery (PA) catheter every 30 min, whereas urine collections were examined every hour during the study period. RESULTS AND STATISTICAL ANALYSES: Eight patients (mean age 46 +/- 13 years, M/F 3/5) were included. The median norepinephrine dose at the start of the study was 0.29 microg x kg(-1) x min(-1) (range 0.07-0.48 microg x kg(-1) x min(-1)). Cardiac output (CO) rose during the dopamine infusion for all doses from 7.9 +/- 1.74 l/min to a maximum of 10.1 +/- 1.71 l/min, achieved at the 4 microg x kg(-1) x min(-1) dopamine dose, whereas systemic vascular rate (SVR) decreased slightly for all doses. Heart rate remained unchanged during the 2 microg x kg(-1) x min(-1) dose of dopamine but increased for the 4 and 6 microg x kg(-1) x min(-1) doses from 108 +/- 17 to a maximum of 124 +/- 24 beats/min. Filling pressures remained unchanged whereas the mean arterial blood pressure increased (from 83 +/- 7 to 93 +/- 11 mmHg). Plasma renin activity (PRA) was relatively high (but remained unchanged) as were aldosterone levels. Sodium excretion and diuresis increased for all doses, accompanied by an increase of fractional sodium excretion at the 4 and 6 microg x kg(-1) x min(-1) doses of dopamine. Creatinine clearances remained unchanged. All changed values returned to baseline values after cessation of the dopamine administration. CONCLUSION: During norepinephrine infusion, increasing doses of dopamine from 2 to 6 microg x kg(-1) x min(-1) augments CO, diuresis and sodium excretion in patients treated for septic shock, without changes in creatinine clearance. Higher doses of dopamine (4 and 6 microg x kg(-1) x min(-1)) also induce an increase in heart rate. PRA, aldosterone and norepinephrine levels remain unchanged during dopamine infusion.

Cardiotonic Agents↗

Microdialysis measurement of glucose in subcutaneous adipose tissue up to three weeks in type 1 diabetic patients.

BACKGROUND: Microdialysis of subcutaneous adipose tissue may provide an opportunity to monitor glucose continuously, when the device is connected to an extracorporal glucose sensor. We assessed whether our microdialysis probes are capable of measuring adipose tissue glucose over a prolonged period in Type 1 diabetic patients. Furthermore, the relationship between abdominal skinfold thickness and glucose recovery and the effect of spontaneous glucose excursions on its recovery were evaluated. METHODS: Microdialysis probes were pairwise inserted subcutaneously into the abdominal fat and remained in situ for 3 weeks in eight Type 1 diabetic patients. At days 1, 3, 4, 8, 11, 16, and 18 of probe retention, glucose, as measured by microdialysis, was compared to capillary blood glucose concentrations during a 4 h period. The recovery of glucose obtained by microdialysis was expressed as a percentage of the capillary blood glucose concentration. RESULTS: Eleven of the 16 inserted probes (69%) were evaluable during the complete study. Recovery of glucose was lower at day 1 and 3 (51+/-23% and 56+/-18%, respectively, mean+/-S.D.) compared to values found afterwards (67+/-19%, 72+/-13%, 76+/-14%, 71+/-16%, and 76+/-18%, for day 4, 8, 11, 16, and 18, respectively, for all P<0.05 vs. day 1 and 3). Skinfold thickness was inversely related to the overall 3 week glucose recovery (r=-0.76; P<0.03). Recovery was similar over a wide range of capillary blood glucose concentrations. CONCLUSIONS: Prolonged in vivo retention of microdialysis probes improves the recovery and lowers the variability of adipose tissue-sampled glucose in Type 1 diabetic patients. These findings show that microdialysis-based glucose measurements offer an opportunity for prolonged glucose monitoring.

Adipose Tissue↗

Effects of glucose and insulin levels on adipose tissue glucose measurement by microdialysis probes retained for three weeks in Type 1 diabetic patients.

BACKGROUND: To evaluate the effects of acute hyperglycaemia and hyperinsulinaemia on adipose tissue glucose measurements by microdialysis probes inserted for a 3-week period. METHODS: Microdialysis probes were implanted pairwise in abdominal adipose tissue in seven Type 1 diabetic patients and remained in situ during the complete study. Stepped hyperglycaemic hyperinsulinaemic clamps were performed at weekly intervals at which the probes were prepared for microdialysis. Adipose tissue glucose by microdialysis was compared to venous and capillary blood glucose concentrations. RESULTS: The mean time after which the acute rise in blood glucose was first detected was 11.3 min, which corresponds to the system delay of the microdialysis probe. The increase of the glucose concentration in dialysate was completed during the following 16 min. Hyperglycaemia and hyperinsulinaemia did not influence recovery compared to venous blood glucose concentrations, while recovery values compared to capillary blood glucose levels increased slightly under hyperinsulinaemic conditions (P<0.01). CONCLUSIONS: In Type 1 diabetic patients, recovery of glucose in adipose tissue compared to venous and capillary blood does not decrease during acute hyperglycaemia and hyperinsulinaemia. Although there is still a relevant time-delay to monitor a rise in blood glucose, these results show that microdialysis may offer an opportunity for future glucose monitoring over a prolonged time-period.

Adipose Tissue↗

Baroreflex sensitivity is depressed in microalbuminuric Type I diabetic patients at rest and during sympathetic manoeuvres.

AIMS/HYPOTHESIS: To evaluate baroreflex sensitivity (BRS) in microalbuminuric and normoalbuminuric Type I (insulin-dependent) diabetic patients without autonomic neuropathy and in healthy control subjects. METHODS: Microalbuminuric Type I diabetic patients (n = 15) were matched for age, sex, body mass index (BMI) and smoking habits with 15 normoalbuminuric patients and with 15 healthy control subjects. All subjects had a blood pressure less than 160/95 mmHg, a BMI less than 30 kg/m(2) and normal autonomic function on standard tests. Blood pressure and heart rate were measured non-invasively (Finapres) at rest and during sympathetic activation (handgrip, mental stress, standing). The baroreflex sensitivity was defined as the mean gain between blood pressure variability and heart rate variability in the 0.07-0.15 Hz frequency band. RESULTS: Resting baroreflex sensitivity was decreased in the microalbuminuric patients (3.5 +/- 0.4 ms/mmHg) compared with the normoalbuminuric patients and the healthy subjects (7.6 +/- 1.6 and 9.5 +/- 1.1 ms/mmHg, respectively, p < 0.001). The sympathetic tests reduced baroreflex sensitivity similarly in the groups without changing the between group differences. CONCLUSION/INTERPRETATION: Baroreflex sensitivity is reduced in Type I diabetic patients with microalbuminuria but without autonomic neuropathy. A prospective study should indicate whether this early abnormality in cardiovascular reflex function is a risk factor of cardiovascular mortality in these patients. [Diabetologia (1999) 42: 1345-1349]

Albuminuria↗

Dopamine receptors--physiological understanding to therapeutic intervention potential.

There are two families of dopamine (DA) receptors, called D1 and D2, respectively. The D1 family consists of D1- and D5-receptor subtypes and the D2 family consists of D2-, D3-, and D4-receptor subtypes. The amino acid sequences of these receptors show that they all belong to a large superfamily of receptors with seven transmembrane domains, which are coupled to their intracellular signal transduction systems by G-proteins. The implications of DA receptors in neuropsychiatry and cardiovascular and renal diseases are discussed. Neuropsychiatry indications include Parkinson's disease, schizophrenia, migraine, drug dependence, mania and depression, and Gilles de la Tourette syndrome. The underlying dysfunction of dopaminergic systems and the potential benefits of dopaminergic therapy in these different indications are critically examined. With respect to the pharmacological treatment of Parkinson's disease, a range of DA agonists are in various stages of preclinical and clinical development. D2-receptor agonist activity is predominant in most effective antiparkinsonian DA agonists. However, in practice, it is difficult to treat patients for several years with DA agonists alone; therapeutic benefit is not sustained. Rather, the use of a combination of DA agonists and levodopa is considered preferable. Reports of the efficacy of DA partial agonists await confirmation, and recent clinical investigations also suggest the potential of D1 receptor agonists as antiparkinson drugs. Regarding migraine pathogenesis, clinical and pharmacological evidence suggests that DA is involved in this disorder. Most prodromal and accompanying symptoms may be related to dopaminergic activation. Several drugs acting on DA receptors are effective in migraine treatment. Furthermore, migraine patients show a higher incidence of dopaminergic symptoms following acute DA agonist administration, when compared with normal controls. In cardiology, the therapeutic benefits of DA agonists are noted in the treatment of heart failure. Low doses of DA are widely used for its specific dopaminergic effects on renal function, which are suggested to be beneficial, and for its alpha- and beta-adrenergic-mediated responses that occur with higher doses. However, studies have been unable to demonstrate that DA can prevent acute renal failure or reduce mortality. It appears that the significant progress that is being made in the molecular understanding of DA receptors will continue to have a tremendous impact in the pharmacological treatment of neuropsychiatric, cardiovascular, and renal diseases.

Animals↗

Capillary permeability is increased in normo- and microalbuminuric type 1 diabetic patients: amelioration by ACE-inhibition.

BACKGROUND: Capillary leakage of sodium-fluorescein (NaF) in the skin reflects capillary permeability and may be a marker of diabetes-associated microcirculatory abnormalities. DESIGN: We evaluated transcapillary skin NaF leakage by fluorescence videodensitometry in 10 normoalbuminuric, 10 microalbuminuric Type 1 diabetic men (diabetes duration > 10 years) and 10 healthy subjects. The microalbuminuric patients were restudied after 6 weeks treatment with the ACE-inhibitor enalapril, 10 mg once daily. All measurements were performed at a blood glucose level of 5 mmol L-1. RESULTS: Transcapillary NaF leakage was strongly increased in normoalbuminuric Type 1 diabetic patients compared to healthy subjects (P < 0.001) and was still further increased in microalbuminuric Type 1 diabetic patients (P < 0.01 compared to normoalbuminuric patients). Enalapril reduced NaF leakage (P < 0.05), mean arterial blood pressure (P < 0.05) and microalbuminuria (P < 0. 05). After treatment, NaF leakage was not different from that in normoalbuminuric patients. CONCLUSIONS: Capillary permeability, as determined by NaF leakage, is elevated in normoalbuminuric Type 1 diabetic patients with long-standing disease, and the excess elevation in microalbuminuric Type 1 diabetic patients is ameliorated by ACE-inhibition. Skin NaF videodensitometry seems a useful tool to document capillary permeability in intervention studies.

Albuminuria↗