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Troels Krarup Hansen

Publications and source records attributed to Troels Krarup Hansen.

At least 19 recordsLinked to original sources

Mannose-binding lectin and mortality in type 2 diabetes.

BACKGROUND: Inflammation and complement activation initiated by mannose-binding lectin (MBL) may be implicated in the pathogenesis of diabetic vascular complications. We evaluated the relationship between serum MBL and mortality and development of albuminuria in type 2 diabetes. METHODS: Levels of MBL and C-reactive protein (CRP) were measured at baseline in 326 patients with type 2 diabetes who attended the Steno Diabetes Center, Gentofte, Denmark, for control. Urinary albumin excretion was determined annually, and the vital status of all patients was traced after more than 15 years of follow-up. RESULTS: During follow-up, 169 patients died. The risk of dying was significantly higher among patients with MBL levels greater than or equal to 1000 microg/L than among patients with levels less than 1000 microg/L (hazard ratio, 1.5; 95% confidence interval, 1.1-2.1; P = .005). After adjustment for known confounders, MBL remained a significant risk factor for death from any cause. It added to the predictive power of CRP, and mortality was significantly higher among patients with both high MBL (> or =1000 microg/L) and high CRP (above the median, 3.6 mg/L) levels than among patients with both low MBL and low CRP levels (hazard ratio, 2.7; 95% confidence interval, 1.7-4.3; P<.001). Normoalbuminuric patients with both high MBL and high CRP levels at baseline had a significantly increased risk of developing microalbuminuria or macroalbuminuria compared with patients with both low MBL and low CRP levels (hazard ratio, 2.6; 95% confidence interval, 1.5-4.4; P<.001). CONCLUSION: In patients with type 2 diabetes, measurements of MBL alone or in combination with CRP can provide prognostic information on mortality and the development of albuminuria.

Albuminuria↗

Early posttransplant serum osteoprotegerin levels predict long-term (8-year) patient survival and cardiovascular death in renal transplant patients.

The primary objectives of this analysis were to examine the effects of early posttransplantation (10 wk) serum levels of osteoprotegerin (OPG), mannose-binding lectin (MBL), and MBL-associated serine proteases (MASP; MASP-2 and MASP-3) on long-term (8-yr) patient survival, graft survival, and cardiovascular (CV) death. During a period of 16 mo (1995 to 1996), a total of 173 consecutive renal transplant recipients without diabetes before transplantation were included in a prospective study that was designed to address the impact of metabolic CV risk factors on survival and CV end points. Baseline sera from 172 patients were available for analysis. Follow-up data until January 1, 2004, were obtained from a national renal registry. Patients with high (fourth quartile) serum levels of OPG had significantly higher all-cause mortality (hazard ratio [HR] 6.3; 95% confidence interval [CI] 3.3 to 11.8; P<0.001) and CV death (HR 10.8; 95% CI 3.8 to 30.4; P<0.001) than patients with lower OPG concentrations. After multiple Cox regression analysis, high serum levels of OPG remained an independent predictor of all-cause mortality (HR 6.0; 95% CI 3.1 to 11.6, P<0.001) and CV death (HR 8.2; 95% CI 2.5 to 26.4; P<0.001). Multiple linear regression analysis revealed that age, creatinine clearance, and high-sensitivity C-reactive protein all were independently associated with OPG (R2=0.42). No significant association between OPG and death-censored graft loss was revealed. Serum levels of MBL, MASP-2, and MASP-3 were not significantly associated with patient survival, CV death, or graft loss. Early measured posttransplantation serum OPG is a highly significant independent predictor of death from any cause or CV death in white renal transplant recipients.

Adult↗

Simultaneous quantification of 17 immune mediators in aqueous humour from patients with corneal rejection.

PURPOSE: To simultaneously quantitate and compare the concentrations of 17 immune mediators: (1) the cytokines interleukin-1beta, IL-2, IL-4, IL-5, IL-6, IL-7, IL-10, IL-12p70, IL-13, IL-17, tumour necrosis factor-alpha, interferon-gamma; (2) the growth factors granulocyte-monocyte colony-stimulating factor (GM-CSF) and granulocyte colony-stimulating factor (G-CSF), and (3) the chemokines CXCL-8, monocyte chemoattractant protein-1, and macrophage inflammatory protein-1beta in aqueous humour from patients with corneal rejection and patients with a non-inflammatory condition in the anterior chamber. METHODS: Aqueous humour was obtained by paracentesis of the anterior chamber in 14 patients with corneal rejection, three patients with cataract and six patients with Fuchs' endothelial dystrophy. Simultaneous quantitation of 17 mediators in 25 micro l aqueous humour from each patient was performed by employing a highly sensitive Luminex 100 multiplex array assay. RESULTS: All 17 immune mediators were detected in aqueous humour from rejection patients. The ranges of the immune mediators were determined. The immune mediators were significantly increased in aqueous humour from rejection patients compared with that from other patients. CONCLUSIONS: The Luminex 100 multiplex array assay is very efficient in simultaneous quantitation of multiple immune mediators in small volumes of aqueous humour. A total of 17 immune mediators were increased in aqueous humour from rejection patients. This underlines the complex immunological interactions of the rejection process.

Adult↗

Plasma osteoprotegerin levels are associated with glycaemic status, systolic blood pressure, kidney function and cardiovascular morbidity in type 1 diabetic patients.

OBJECTIVE: The bone-related peptide osteoprotegerin (OPG) has recently been found in increased amounts in the vasculature in diabetes. It is produced by vascular smooth muscle and endothelial cells, and may be implicated in the development of vascular calcifications. OPG is present in the circulation, where increased amounts have been observed in patients with diabetes. In this study, we examined whether plasma OPG is associated with the glycaemic and vascular status of patients with type 1 diabetes. METHODS: Two gender-, age- and duration-comparable groups of type 1 diabetic patients either with (n = 199) or without (n = 192) signs of diabetic nephropathy were studied. Plasma OPG was determined by an ELISA. RESULTS: The plasma OPG concentration was significantly higher in patients with nephropathy than those without (3.11 (2.49-3.99) vs 2.57 (2.19-3.21) (median (interquartiles), ng/ml), P < 0.001). Plasma OPG correlated with haemoglobin A1c (HbA1c), systolic blood pressure and age in both groups and, in addition, with kidney function in the nephropathic group. These correlations remained significant in multivariate models. In addition, we found that plasma OPG concentrations were increased among patients with cardiovascular diseases (CVD), both in the normoalbuminuric and the nephropathic groups. The differences between nephropathic and normoalbuminuric, as well as subgroups with and without CVD, could largely be ascribed to changes in HbA1c, age, systolic blood pressure and creatinine. CONCLUSION: OPG is associated with glycaemic control and CVD in patients with type 1 diabetes, compatible with the hypothesis that OPG is associated with the development of diabetic vascular complications.

Adult↗

Body composition is distinctly altered in Turner syndrome: relations to glucose metabolism, circulating adipokines, and endothelial adhesion molecules.

BACKGROUND: Body composition in Turner syndrome (TS) is altered with final height of TS decreased; anthropometry and bone mass distinctly changed. AIM: To describe total and regional distribution of fat and muscle mass in TS and the relation to measures of glucose metabolism, sex hormones, IGFs, and markers of inflammation and vascular function. MATERIAL AND METHODS: Fifty-four women with TS (mean age, 42.5 +/- 9.7 years) and an age-matched group of controls (n = 55) were examined by dual-energy X-ray absorptiometry scans with determination of regional body composition and estimation of visceral fat and skeletal muscle mass. We determined maximal oxygen uptake and assessed physical activity using a questionnaire. We measured serum adiponectin, ghrelin, IGF-I, IGF-binding protein-3 (IGFBP-3), estradiol, testosterone, sex hormone-binding globulin (SHBG), insulin, glucose, cytokines, vascular cell adhesion molecule-I, and intercellular cell adhesion molecule-I. Insulin sensitivity was estimated. Multiple linear regression models were used to examine the relationships between variables. RESULTS: TS had lower total lean body mass (LBM), while body mass index (BMI) and total fat mass (FM) were increased. We found increased visceral FM, and decreased trunk LBM, appendicular LBM, and skeletal muscle mass. VO2max and physical activity were significantly lower in TS, as were most hormone levels, except increased leptin. In multiple linear regression models, status (i.e. TS or control) was a consistent contributing variable. CONCLUSION: Profound changes are present in body composition in TS, with increased FM, and decreased skeletal muscle mass. Circulating hormones, VO2max, and insulin sensitivity influence body composition. The accumulation of visceral fat would predict a higher risk of development of the insulin resistance syndrome.

Adipocytes↗

Complement activation and diabetic vascular complications.

Diabetes mellitus is a major and increasing health problem worldwide. One of the most serious consequences of diabetes is the development of diabetic angiopathy, which includes cardiovascular disease, neuropathy, retinopathy and nephropathy. Diabetic nephropathy alone affects 15-25% of patients with type 1 diabetes and 30-40% of patients with type 2 diabetes and is the single-most important cause of end-stage renal failure in the Western World. Existing research has demonstrated the involvement of glycation factors, growth factors/cytokines, hemodynamic factors and intracellular changes in the pathogenesis of diabetic kidney disease. An emerging amount of recent data suggests that the complement system, especially the MBL pathway, plays an important role in the pathogenesis of diabetic vascular complications. Although the numerous therapeutic interventions available today may delay the development and progression of diabetes vascular complications, there is an ongoing need for new therapeutic strategies. In this article the evidence for a connection between the complement system and vascular dysfunction will be reviewed, with a special focus on the relation to diabetic kidney disease. Several ways of specifically manipulating the complement system already exist. However, whether or not these drugs provide new targets for intervention on diabetic vascular complications is still unknown.

Animals↗

Thyroid hormone increases mannan-binding lectin levels.

BACKGROUND: Recent studies have indicated the existence of causal links between the endocrine and immune systems and cardiovascular disease. Mannan-binding lectin (MBL), a protein of the innate immune system, may constitute a connection between these fields. METHODS: To test whether thyroid hormone regulates MBL levels, we studied eight patients with Graves' hyperthyroidism before and after methimazole therapy, eight healthy subjects before and after short-term experimental hyperthyroidism, and eight hypothyroid patients with chronic auto-immune thyroiditis before and after L-thyroxine substitution. RESULTS: In all hyperthyroid patients, MBL levels were increased--median (range), 1886 ng/ml (1478-7344) --before treatment and decreased to 954 ng/ml (312-3222) after treatment (P = 0.01, paired comparison: Wilcoxon's signed ranks test). The healthy subjects had MBL levels of 1081 ng/ml (312-1578). Administration of thyroid hormones to these persons induced mild hyperthyroidism and increased MBL levels significantly to 1714 ng/ml (356-2488) (P = 0.01). Two of the eight hypothyroid patients had undetectably low levels of MBL both before and after L-thyroxine substitution. The other six hypothyroid patients had decreased levels of MBL of 145 ng/ml (20-457) compared with 979 ng/ml (214-1533) after L-thyroxine substitution (P = 0.03, paired comparison: Wilcoxon's signed ranks test). CONCLUSION: Our data show that thyroid hormone increases levels of MBL. MBL is part of the inflammatory complement system, and this modulation of complement activation may play a role in the pathogenesis of a number of key components of thyroid diseases.

Adult↗

Mannose-binding lectin as a predictor of microalbuminuria in type 1 diabetes: an inception cohort study.

Inflammation and complement activation via the mannose-binding lectin (MBL) pathway have been suggested to play a role in the pathogenesis of diabetic microvascular complications. The association between the complement-activating protein MBL and the development of persistent microalbuminuria was evaluated in an inception cohort of 286 newly diagnosed type 1 diabetic patients consecutively admitted to the Steno Diabetes Center between 1 September 1979 and 31 August 1984. Serum MBL was measured with an immunofluorometric assay in 270 of the patients (159 men) after 3 years of diabetes duration. During the median (range) follow-up period of 18.0 (1.0-21.8) years, 75 patients subsequently progressed to persistent micro- or macroalbuminuria (urinary albumin excretion rate >30 mg/24 h). In patients with MBL levels above the median (1,597 microg/l), the cumulative incidence of persistent micro- or macroalbuminuria was 41% (CI 31-50) as compared with 26% (CI 17-34) in patients with MBL levels below the median (log-rank test, P = 0.003). In a Cox proportional hazard model with sex and age as fixed covariates, MBL was independently associated with later development of persistent micro- or macroalbuminuria (hazard ratio 1.21 [CI 1.02-1.42] per 1,000 microg/l increase in MBL; P = 0.03) after adjusting for possible confounders. In our study, high levels of MBL early in the course of type 1 diabetes was significantly associated with later development of persistent micro- or macroalbuminuria, suggesting that complement activation initiated by MBL may be involved in the pathogenesis of diabetic microvascular complications.

Adult↗

Fasting unmasks a strong inverse association between ghrelin and cortisol in serum: studies in obese and normal-weight subjects.

Administration of ghrelin, the endogenous ligand for the GH secretagogue receptor, stimulates not only GH secretion but also appetite and food intake in humans. Endogenous ghrelin levels display a distinct circadian rhythm, which is reciprocal to that of insulin and presumed to be meal dependent and not associated with GH secretion. We tested the hypothesis that food deprivation could impact circadian serum ghrelin levels and unmask meal-independent regulatory mechanisms. Thirty-three young adults, subdivided according to gender and level of obesity, were studied with blood sampling every 3 h from 12-84 h of fasting. Serum ghrelin levels showed a marked diurnal rhythm with a nadir in the morning (0800 h), peak levels in the afternoon, and a gradual decline during the night. This pattern was preserved during the entire fasting period and was independent of gender and obesity. Mean 24-h ghrelin levels exhibited a small but significant decline during the fast (P < 0.001). As expected, GH secretion increased with fasting in lean subjects, and a gradual decline in insulin concentrations was observed in all subjects. Neither GH nor insulin showed any significant relationship to ghrelin. In contrast, serum cortisol exhibited a strong inverse temporal association with ghrelin (r = -0.79; P < 0.0001). In conclusion, our study yields no evidence that ghrelin stimulates GH release during fasting. As a novel finding, ghrelin appears to be related to cortisol. However, further studies are needed to elucidate the physiological mechanisms behind this relationship.

Adult↗

Growth hormone increases vascular cell adhesion molecule 1 expression: in vivo and in vitro evidence.

We investigated the impact of GH administration on endothelial adhesion molecules, vascular cell adhesion molecule-1 (VCAM-1) and E-selectin, in vivo and in vitro. Soluble VCAM-1, E-selectin, and C-reactive protein concentrations were measured before and after treatment in 25 healthy subjects and 25 adult GH-deficient (GHD) patients randomized to GH treatment or placebo. Furthermore, we studied the direct effect of GH and IGF-I and serum from GH-treated subjects on basal and TNF alpha-stimulated expression of VCAM-1 and E-selectin on cultured human umbilical vein endothelial cells. Baseline levels of VCAM-1, but not E-selectin, were significantly lower in GHD patients than in healthy subjects (362 +/- 15 microg/liter vs. 516 +/- 21 microg/liter, P < 0.001) and increased in GHD patients during GH treatment, compared with placebo [net difference between groups 151.8 microg/liter (95% confidence interval: 95.0-208.7 microg/liter); P < 0.0001]. In human umbilical vein endothelial cells, there was no direct stimulatory effect of either GH or IGF-I on the expression of VCAM-1 and E-selectin, but serum from GH-treated healthy subjects significantly increased the expression of VCAM-1 (P < 0.01). Our findings are compatible with the notion that GH may stimulate the expression of VCAM-1 indirectly through modulation of circulating factors. VCAM-1-mediated leukocyte extravasation is implicated in several illnesses including atherosclerosis and multiple-organ failure in sepsis, and we hypothesize that enhanced expression of VCAM-1 may contribute to the detrimental effects of GH in critically ill patients.

C-Reactive Protein↗

The effects of GH and hormone replacement therapy on serum concentrations of mannan-binding lectin, surfactant protein D and vitamin D binding protein in Turner syndrome.

OBJECTIVE: Studies in animals and humans indicate that growth hormone (GH) and insulin-like growth factor-I (IGF-I) modulate immune function. Recently, it was reported that GH therapy increased the level of mannan-binding lectin (MBL) in normal patients, and that treatment of acromegalics with pegvisomant decreased the levels of MBL. The effect on MBL was thought to be due to a specific action of GH, since IGF-I treatment did not affect MBL. Whether it is advantageous or not to have high or low levels of MBL is not known. Likewise, it is not clear how the modifications induced by GH affect immune function. In the present study we examined whether GH or hormone replacement therapy (HRT) in Turner syndrome (TS) influence the serum concentrations of MBL and two other proteins partaking in the innate immune defence, surfactant protein D (SP-D) and vitamin D binding protein (DBP). DESIGN: Study 1: a double-blind crossover study of 12 healthy TS adolescents examined during treatment with either placebo or GH for 2 months, and compared with a control group. Study 2: triple-blind crossover study of 9 healthy TS adolescents randomized to treatment with placebo, GH or GH+17beta-estradiol. Study 3: 60 adult TS patients (55 received HRT) compared with 59 age-matched controls. Study 4: 27 patients with TS were examined before and during sex hormone replacement with 17beta-estradiol and norethisterone and compared with age-matched controls (n=24). METHODS: Measurement of MBL, SP-D, DBP, and other inflammation markers. RESULTS: Study 1: the levels of MBL (P=0.002) and SP-D (P=0.012) increased during GH treatment, whereas no changes were observed in comparison with controls. DBP was unchanged by GH, but was significantly higher in TS compared with controls (P=0.017). Study 2: treatment with GH increased MBL (P=0.045) and SP-D (P=0.05) concentrations in TS, while treatment with GH+17beta-estradiol did not increase levels further. DBP was unchanged by treatment. Study 3: levels of MBL, SP-D, and DBP were similar in adult TS and control subjects. Study 4: DBP levels decreased in response to HRT, while MBL and SPD levels were unchanged. Levels of all three plasma proteins were similar to controls. CONCLUSION: We show that treatment with GH significantly increases MBL and SP-D concentrations in TS, while HRT marginally decreases DBP. Whether the present findings, suggesting a link between the endocrine and the immune system, have clinical consequences needs to be studied further.

Adolescent↗

Splanchnic release of ghrelin in humans.

Ghrelin is a novel polypeptide identified in rat stomach, and it increases GH release, gastric motility, and appetite and modulates many other organ functions. It has been reported that ghrelin may be released from a variety of other tissues, but the absolute contribution of the splanchnic bed remains to be defined. We quantified the splanchnic output of ghrelin in 22 healthy people after an overnight fast, with indwelling catheters in the femoral artery and hepatic vein. Splanchnic ghrelin output was calculated by multiplying veno-arterial difference in ghrelin concentration with splanchnic plasma flow (measured by indicator dye dilution technique). Plasma ghrelin was measured using (125)I-labeled ghrelin and rabbit polyclonal antibody raised against octanoylated human ghrelin. Ghrelin concentrations in the artery and in the hepatic veins were 960 +/- 82 pg/ml and 1102 +/- 90 pg/ml (P < 0.001), respectively. The veno-arterial concentration difference was 143 +/- 38 pg/ml, amounting to 15% of the arterial concentration. The splanchnic output of ghrelin was 141 +/- 43 ng/min (P < 0.003). Assuming that the half-life of ghrelin is less than 60 min, the splanchnic output would explain the entire amount of circulating ghrelin in the postabsorptive state. We conclude that a substantial amount of ghrelin is being released from the splanchnic bed in the postabsorptive state in healthy human subjects and that splanchnic bed is the major source of circulating ghrelin in humans.

Adult↗

Hyperthyroidism is associated with suppressed circulating ghrelin levels.

Ghrelin stimulates GH secretion as well as appetite and food intake. To explore whether ghrelin is involved in the regulation of appetite and body weight in hyperthyroidism, circulating ghrelin levels were measured in nine hyperthyroid patients before and after medical treatment and compared with those in eight healthy control subjects. All participants were studied in the postabsorptive state and during a 3-h euglycemic hyperinsulinemic clamp. Before treatment the patients had 3- to 5-fold elevations of T(3), and during treatment the patients gained 5 kg of body weight. Ghrelin levels were decreased in hyperthyroidism both in the fasting state (hyperthyroid, 1080 +/- 195 pg/ml; euthyroid, 1480 +/- 215 pg/ml; P = 0.03) and during clamp (hyperthyroid, 833 +/- 150 pg/ml; euthyroid, 1210 +/- 180 pg/m; P = 0.02). After treatment, ghrelin levels did not differ from those in control subjects. In all three study groups the clamp significantly reduced ghrelin levels compared with fasting levels. In conclusion, ghrelin levels are reduced in hyperthyroidism and become normalized by medical antithyroid treatment. Hyperinsulinemia suppresses ghrelin regardless of thyroid status. Ghrelin is not a primary stimulator of appetite and food intake in hyperthyroidism, and the mechanisms underlying the suppressive effect of hyperthyroidism on ghrelin secretion remain unclear.

Adult↗

Intensive insulin therapy exerts antiinflammatory effects in critically ill patients and counteracts the adverse effect of low mannose-binding lectin levels.

Adverse outcome of critical illness is often caused by systemic inflammation and sepsis. A recent study showed that mortality is significantly reduced by maintenance of normoglycemia using intensive insulin therapy. We examined whether the beneficial effects of intensive insulin therapy involve modulations of mannose-binding lectin (MBL) and C-reactive protein (CRP) levels. From a study of 1548 patients randomly assigned to either conventional treatment or intensive insulin therapy at an intensive care unit (ICU) we included all 451 patients who needed prolonged intensive care (>5 d). CRP and MBL concentrations were measured on admission, d 5, d 15, and the last day in the ICU. In all patients, serum MBL concentrations increased with time in the ICU (P < 0.0001). This acute phase response was suppressed by intensive insulin therapy at all time points studied (P < 0.02). Selectively in patients receiving conventional therapy, MBL concentrations at baseline were almost 3 times higher in survivors than in nonsurvivors (P = 0.04). Baseline CRP concentrations were elevated, but decreased with time in ICU (P < 0.0001). The decrease in CRP was significantly more pronounced in the intensive insulin-treated patients compared with the conventionally treated patients (P </= 0.02) at all time points. Multivariate logistic regression analysis, corrected for all other determinants of outcome, revealed that the antiinflammatory action on CRP, but not on MBL, largely explained the beneficial effects of intensive insulin therapy on morbidity and mortality. In conclusion, intensive insulin therapy exerts a powerful antiinflammatory effect during critical illness which at least partially explains improvement in morbidity and mortality. Possible adverse effects of low baseline MBL are overcome by intensive insulin therapy.

Anti-Inflammatory Agents↗

Elevated levels of mannan-binding lectin in patients with type 1 diabetes.

The hepatic protein mannan-binding lectin (MBL) activates the complement system on binding to carbohydrate patterns and is involved in first-line defense against invading microorganisms. Emerging evidence indicates that in some situations MBL may cause inexpedient complement activation and tissue injury through binding to endothelial glycosylations. MBL levels are suppressed by insulin treatment in critically ill patients, and, hypothetically, hepatic portal hypoinsulinemia could lead to increased levels of MBL in patients with type 1 diabetes. We measured MBL and C-reactive protein (CRP) levels in 132 normoalbuminuric type 1 diabetic patients and 66 healthy age- and sex-matched controls. The median MBL concentration was higher in diabetic patients than in healthy controls [1290 micro g/liter (interquartile range, IQR 354-2961 micro g/liter) vs. 970 micro g/liter (IQR 277-1607 micro g/liter), P = 0.025], whereas CRP concentrations were similar among patients and controls [1.42 mg/liter (IQR 0.95-2.21) vs. 1.21 mg/l (IQR 0.74-2.13), NS]. In diabetic subjects, CRP levels correlated with poor glycemic control as indicated by hemoglobin A(1c) and daily insulin dose, which was not the case with MBL. MBL concentrations were positively correlated with urinary albumin excretion (r = 0.22; P = 0.013) and increased with increasing urinary albumin excretion tertile (P = 0.036). In conclusion, our data demonstrate that circulating MBL concentrations are significantly elevated in patients with type 1 diabetes and suggest a possible role of MBL in the pathogenesis of renovascular complications in diabetes.

Adult↗

Assessment of ghrelin.

Four years ago Kojima and coworkers discovered ghrelin. Within this short lifespan ghrelin has become one of the "hottest topics" in metabolic research, and today more than 300 papers have emerged (PubMed search). The huge interest in ghrelin is partly due to its involvement in appetite regulation. Over-nutrition, obesity and type 2 diabetes are major burdens of health services in all Western countries, and the discovery of ghrelin opens for the development of antagonists that may make it possible to control appetite and food intake. At the other end of the nutritional scale, ghrelin agonists may be used in cachexia in e.g. anorexia nervosa and cancer. Thus, the potential clinical value of ghrelin research appears to be enormous. At the time of writing several in-house as well as commercial ghrelin assays have been developed. However, we still need to come to a consensus on measurement of circulating ghrelin levels. Up till now, blood ghrelin has been estimated by use of serum as well as various types of plasma, with or without extraction prior to assay. This may affect both results and conclusions. In the present paper we shall review the current literature on ghrelin, with special focus on measurements in human blood specimens.

Ghrelin↗

Pharmacokinetics and acute lipolytic actions of growth hormone. Impact of age, body composition, binding proteins, and other hormones.

The biologic actions of endogeneous growth hormone (GH) depend on its secretion and clearance rates as well as sensitivity at the receptor level. Aberrations in GH pharmacokinetics and pharmacodynamics may occur with increasing age, and have been implicated in diseases such as obesity, diabetes mellitus, and critical illness. In this review, recent insights into the association between GH metabolism and age, body composition, binding proteins and other hormones are discussed.

Adult↗

Weight loss increases circulating levels of ghrelin in human obesity.

OBJECTIVE: Ghrelin, a novel endogenous ligand for the GH secretagogue receptor, has been reported to have adipogenic actions and induce weight gain in addition to its GH-releasing properties. Interestingly, recent data indicate that ghrelin is downregulated in human obesity, which is also known to be accompanied by reduced GH levels. PATIENTS AND METHODS: To investigate the influence of weight loss on circulating levels of ghrelin we recruited eight obese women among patients attending a 6-month weight-loss course organized by The Danish Heart Association. We measured body composition including computerized tomography as well as fasting plasma ghrelin concentrations before and after weight loss. RESULTS: Plasma ghrelin concentrations increased by 12% following weight loss (P < 0.01), and the increase in ghrelin levels was positively correlated with the extent of weight loss (r = 0.68, P < 0.05). Exposure to exogenous GH intravenously did not influence fasting ghrelin levels either before or after weight loss. Our data further suggest the existence of hyperghrelinaemia in a single subject with long-standing obesity but no signs of GH excess. CONCLUSIONS: This study provides evidence of a reversible suppression of ghrelin associated with obesity. The feasibility of measuring ghrelin in the circulation provides a new tool for the investigation of the complex hormonal regulation of appetite and energy balance.

Analysis of Variance↗