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Biomedical subjects

B L Herrmann

Publications and source records attributed to B L Herrmann.

12 recordsLinked to original sources

Effects of a combination of recombinant human growth hormone with metformin on glucose metabolism and body composition in patients with metabolic syndrome.

Abdominal obesity and insulin resistance are central findings in metabolic syndrome. Since treatment with recombinant human growth hormone (rhGH) can reduce body fat mass in patients with organic GH deficiency, rhGH therapy may also have favourable effects on patients with metabolic syndrome. However, due to the highly increased risk for type 2 diabetes in these patients, strategies are needed to reduce the antagonistic effect of rhGH against insulin. We conducted a 18-month randomised, double-blind, placebo-controlled study to assess the effect of rhGH in combination with metformin (Met) in patients with metabolic syndrome. 25 obese men (55 +/- 6 years, BMI 33.4 +/- 2.9 kg/m (2)) with mildly elevated fasting plasma glucose (FPG) levels at screening (6.1-8.0 mmol/l) were included. All patients received metformin (850 mg twice daily) either alone or in combination with rhGH (daily dose 9.5 microg/kg body weight). An oGTT was performed at baseline, after 6 weeks, and after 3, 6, 12, and 18 months of therapy. Glucose disposal rate (GDR) was measured by euglycemic hyperinsulinemic clamp at 0 and 18 months and body composition was measured by DEXA every 6 months. In the Met + GH group, IGF-I increased from 146 +/- 56 microg/l to 373 +/- 111 microg/l (mean +/- SD) after 3 months and remained stable after that. BMI did not change significantly in either group during the study. Total body fat decreased by -4.3 +/- 5.4 kg in the Met + GH group and by -2.7 +/- 2.9 kg in the Met + Placebo group (differences between the two groups: p = n. s.). Waist circumference decreased in both groups (Met + GH: 118 +/- 8 cm at baseline, 112 +/- 10 cm after 18 months; Met + Placebo: 114 +/- 7 cm vs. 109 +/- 8 cm; differences between the two groups: p = 0.096). In the Met + GH group, FPG increased significantly after 6 months (5.9 +/- 0.7 vs. 6.7 +/- 0.4 mmol/l; p = 0.005), but subsequently decreased to baseline levels (18 months: 5.8 +/- 0.2 mmol/l). FPG remained stable in the Met + Placebo group until 12 months had elapsed, and then slightly decreased (baseline: 6.2 +/- 0.3, 18 months: 5.5 +/- 0.6 mmol/l, p = 0.02). No significant changes were seen in either group regarding glucose and insulin AUC during oGTT or HbA (1c) levels. GDR at 18 months increased by 20 +/- 39% in Met + GH-group and decreased by -11 +/- 25% in the Met + Placebo group (differences between the two groups: p = 0.07). In conclusion, treatment of patients with metabolic syndrome and elevated FPG levels did not cause sustained negative effects on glucose metabolism or insulin sensitivity if given in combination with metformin. However, since our data did not show significant differences between the two treatment groups with respect to body composition or lipid metabolism, future studies including larger numbers of patients will have to clarify whether the positive effects of rhGH on cardiovascular risk factors that have been shown in patients with GH deficiency are also present in patients with metabolic syndrome, and are additive to the effects of metformin.

Aged↗

Impact of disease activity on thyroid diseases in patients with acromegaly: basal evaluation and follow-up.

In patients with acromegaly, the exact incidence of thyroid disorders is still controversial and less is known about the impact of disease activity and successful treatment. To address this issue, we investigated 73 acromegalic patients (age 55 +/- 13 yr; mean +/- SD) by ultrasonography in comparison to an age-matched control group (54 +/- 1 yr) in the same moderate iodine deficient area (retrospective study). These non-acromegalic volunteers (n = 199) were examined in the same clinic during a thyroid screening test. At the time of examination, 52 (71.2 %) of the acromegalic patients were active, 17 (23.3 %) were cured, and 4 (5.5 %) were controlled with somatostatin analogues. The prevalence of goiter (normal range < 18 ml female, < 25 ml male) was significantly higher (82.2 %) in the mixed group of acromegalics (active, well controlled, cured; n = 73) and in the active group (90.4 %) than in the control group (n = 199, 18.1 %, p < 0.001). Thyroid nodules were found in 63.0 % of the mixed group of acromegalics and in 71.2 % of patients with active disease (33.1 % in controls, p < 0.001). (99 m)Tc scintigraphy revealed thyroid autonomy in 9/73 (12.3 %) and cold nodules in 19/73 (26.0 %) patients. Thyroid cancer was diagnosed in 4 (5.5 %) of acromegalic patients (3 papillary and 1 follicular carcinoma). We found a weak correlation between the disease duration and the initial thyroid volume (r = 0.54, p < 0.0056). Thirty-seven newly diagnosed acromegalics were followed over a period of 7.3 +/- 4.1 years. 5 (13.5 %) of these patients remained active, 8 (21.6 %) were controlled with somatostatin analogues, and 24 (64.9 %) were cured. The mean age, sex distribution, disease duration, prevalence of TSH-deficiency, and initial thyroid volume (46 +/- 11 ml in active, 42 +/- 7 ml in controlled, and 45 +/- 5 ml in cured patients) did not differ statistically between the three groups. In patients with active acromegaly, thyroid volume increased by 19.5 +/- 8.1 %. In contrast, thyroid volume decreased in the group of medically controlled and cured acromegalics (- 21.5 +/- 7.1 %; p < 0.005 and - 24.2 +/- 5.7 %; p < 0.002, respectively). No correlation was found between thyroid volume and TSH levels, levothyroxine and/or iodide administration neither in TSH sufficient nor in TSH insufficient patients. In conclusion, successful treatment of patients with active acromegaly decreases thyroid volume. Cold nodules and thyroid cancer frequently occur in acromegalic patients.

Acromegaly↗

Effects of octreotide on sleep apnoea and tongue volume (magnetic resonance imaging) in patients with acromegaly.

OBJECTIVES: Sleep apnoea has been consistently reported to occur in acromegaly. Both obstructive apnoeas, in which apnoeas are due to intermittent obstruction of the upper airways, as well as central apnoeas are known to occur. Because the relationship between disease activity and severity of sleep apnoea is currently unclear, we have performed a prospective study to address this issue. DESIGN AND METHODS: In 14 newly diagnosed patients with active acromegaly (eight females and six males; mean age 57+/-4 years; IGF-I 583+/-48 microg/l; GH 13.5+/-7.0 microg/l (means+/-s.e.m.)), tongue volume and signal intensity of the tongue were examined by magnetic resonance imaging and sleep apnoea was characterised by polysomnography before and after 6 months of treatment with octreotide acetate (Sandostatin LAR 10-30 mg every 4 weeks i.m.). RESULTS: The initial tongue volume was significantly higher in patients with acromegaly (151+/-9 ml; females 133+/-10 ml; males 172+/-10 ml) in comparison with the body mass index (BMI)- and age-matched healthy control group (97+/-5 ml, P<0.001; females 75+/-1 ml, P<0.001; males 120+/-3 ml, P<0.003). After treatment with octreotide, IGF-I was normalised within the age-adjusted normal range in 50% of the patients. In these patients, tongue volume significantly decreased (120+/-14 ml, P<0.05) in comparison with the persistent uncontrolled group of acromegalics (137+/-10 ml, P=not significant). Overall, tongue volume (128+/-8 ml, P<0.05) and the signal intensity ratio of the tongue decreased significantly after treatment with octreotide acetate (120+/-3 vs 105+/-3, P=0.003). The BMI-adjusted tongue volume correlated with IGF-I levels (r=0.60, P<0.002) and the disease duration (r=0.71, P=0.006). At baseline, 50% had obstructive sleep apnoea with a mean respiratory disturbance index (RDI) of >20/h (range 5.1-91.5) and no patient had central sleep apnoea. After 6 months of octreotide treatment, there was a 28+/-10% decrease in RDI. However, RDI did not correlate with IGF-I or GH levels, but correlated positively with BMI (r=0.58, P=0.001) and age (r=0.46, P=0.02). CONCLUSIONS: Obstructive sleep apnoea but not central sleep apnoea frequently occurs in patients with active acromegaly. Successful treatment with octreotide can decrease tongue volume, which may have benefits for coexisting sleep-disordered breathing.

Acromegaly↗

[Rhabdomyolysis, hyponatremia and fever in a patient with Schmidt's syndrome].

HISTORY: A 38-year-old man had fever (40 degrees C) and a swollen right leg. Two weeks before admission he had received non-steroid anti-inflammatory drugs (paracetamol and ibuprofen) after a tooth extraction. Some weeks before he had noticed a rough voice and a dry skin. INVESTIGATIONS: The patient had a sinus tachycardia of 145/min (blood pressure of 130/80 mm Hg). Laboratory data revealed a CK of 16,650 U/l (< 80 U/l), myoglobin of 2420 U/l (< 90 microg/l) and LDH of 1250 U/l (<240 U/l), leukocyte count of 12,000 / microl and C-reactive protein of 3.0 mg/dl (<0.5 mg/dl). Sodium was markedly decreased (110 mmol/l (135 - 145 mmol/l)). Determination of thyroid hormone showed primary hypothyroidism with an elevated TSH of 62.6 mU/l (0.3 - 4.0 mU/l); T4 of 38 nmol/l (58 - 154 nmol/l), T3 1.17 of nmol/l (1.23 - 3.08 nmol/l) and fT4 of 6 pmol/l (10 - 25 pmol/l). The thyroid autoantibodies were increased (thyroxine peroxidase antibodies of 684 U/l (<35 U/l) and thyroglobulin antibodies of 173 U/l (<40 U/l)). Ultrasound of the thyroid revealed an nonhomogeneous structure. Cortisol at 8.00 a. m. was reduced by 63 mmol/l (180 - 640 mmol/l) and did not increase after administration of ACTH (60 min. cortisol at 90 mmol/l (>550 mmol/l)). ACTH was increased (141 pg/ml; normal range 17 - 52 pg/ml). TREATMENT AND COURSE: The initial therapy consisted of hydrocortisone (100 mg i.v as bolus and 100 mg during the next 24 hours) and levothyroxine replacement (200 micro g) was initiated. During the following 8 days clinical symptoms regressed. Values of sodium, myoglobin and LDH decreased. After therapy with cephalosporin (Ceftriaxon) and penicillin (Flucloxacillin) fever and inflammation parameters decreased. CONCLUSION: This is a rare case of a rhabdomyolysis and hyponatriaemia due to hypothyroidism and Addison's disease (Schmidt's syndrome).

Addison Disease↗

[Hypophyseal coma].

Pituitary coma is a rare case of emergency and primarily due to ACTH and TSH deficiency. Pituitary coma occurs more often in patients with well-known pituitary deficiency than in patients with intrasellar tumor. Clinical manifestations are hypotonia, bradycardia, decreased skin and nipple pigmentation, muscle weakness, vomitus, nausea, obstipation, hypothermia, and hypoventilation. A postpartal agalactia is often the first sign of Sheehan's syndrome. Unlike primary adrenal insufficiency (Addison's disease) ACTH deficiency does not cause hyperpigmentation, hyperkalemia, or salt loss. The suspicion of pituitary coma requires replacement with 100 mg hydrocortisone iv, 200 mg hydrocortisone iv/24 h, 500 micro g levothyroxine iv and fluid substitution. Since thyroxine accelerates the degradation of cortisol and can precipitate adrenal crisis in patients with limited pituitary reserve, hydrocortisone replacement should always precede levothyroxine therapy. ACTH stimulation test, CRH stimulation test and insulin tolerance test (optional) should be performed after therapeutic compensation to determine pituitary function.

Adrenal Insufficiency↗

Myocardial perfusion abnormalities in patients with active acromegaly.

Cardiomyopathy is often seen in patients with a long history of acromegaly. In order to screen for perfusion abnormalities, patients with active acromegaly without evidence for coronary heart disease were examined by single photon emission computed tomography (SPECT). The study included a group of 11 strictly selected patients with active acromegaly (7 males and 4 females; age 51 +/- 12 y [mean +/- S.D.]) with elevated age-adjusted IGF-I levels (IGF-I 569 +/- 193 micro g/l; GH 31.2 +/- 56.3 micro g/l) compared to an age- and sex-matched non-acromegalic control group with comparable muscle mass index of the left ventricle (126 +/- 41 active vs. 122 +/- 33 g/m 2 control group) and body mass index (26.6 +/- 2.7 vs. 27.0 +/- 5.0 kg/m 2). To address this issue, myocardial perfusion was investigated by single photon emission computed tomography (SPECT) using a triple head gamma-camera. 70 MBq 201TlCl was injected, and post-stress (from bicycle ergometer) images were obtained. Images were interpreted quantitatively by bull's eye polary map (16 regions of the left ventricle) and were compared to the control group. In the patients with active acromegaly, the mean nuclide uptake of the 16 regions of the left ventricle after bicycle stress examination was lower than in the control group (82.99 +/- 2.85 active vs 85.48 +/- 1.29 control group, p < 0.01). Non-homogeneity of nuclide uptake was defined as the standard deviations of the 16 regions and was higher in patients with active acromegaly (11.11 +/- 2.35 active vs. 8.77 +/- 1.39 control group, p < 0.01). In conclusion, myocardial perfusion is impaired in patients with active acromegaly, thus representing an early stage of cardiac involvement in acromegaly that may be directly mediated by growth hormone excess.

Acromegaly↗

[Transsphenoidal hypophysectomy of a patient with an ACTH-producing pituitary adenoma and an "empty sella" after pretreatment with etomidate].

HISTORY AND ADMISSION FINDINGS: A seventy-year-old woman was admitted to our hospital under suspicion of an adrenal Cushings's syndrome. Initial laboratory values showed elevated cortisol (834 nmol/l; normal: 180-640) which could not be suppressed after administration of 2 mg dexamethasone (632 nmol/l). Computed tomography of the abdomen showed a 19 x 34 mm mass in the region of the left adrenal gland. INVESTIGATIONS: ACTH levels were normal (42 ng/ml; 17-52). Serum cortisol remained high at 1021 nmol/l after administration of 8 mg dexamethasone. Four more doses of 2 mg dexamethasone were applied on 3 consecutive days, leading to a mild suppression of serum cortisol to 705 nmol/l, with urine cortisol levels dropping from 1915 to 101 nmol/l/24 h. The CRH-test produced a rise of serum cortisol from 895 to 1475 nmol, with ACTH rising from 42 to 68 pg/ml, a laboratory constellation consistent with the diagnosis of centrally located Cushing's syndrome (Cushing's disease). MRI failed to show an adenoma of the pituitary gland so that sinus petrosus sampling was done to confirm the diagnosis (ACTH central/peripheral 7:1; normal range < 2:1). TREATMENT AND COURSE: Serum cortisol rose to 1070 nmol/l and the patient developed pneumonia and contracted tinea. Prior to surgery we lowered the excessive cortisol levels with etomidate and successfully treated the pneumonia with antibiotics. Postoperatively clinical symptoms of Cushing's syndrome disappeared. The patient now presented with total insufficiency of the anterior pituitary. CONCLUSION: Exact hormone testing that may involve sinus petrosus sampling is necessary in diagnosing Cushing's syndrome. Even if radiological procedures cannot show an adenoma of the pituitary, transsphenoidal resection should be considered. Etomidate can lower excessive cortisol levels in seriously ill patients.

Adenoma↗

Occurrence of ventricular late potentials in patients with active acromegaly.

OBJECTIVE: Patients with acromegaly have an increased risk of ventricular dysrhythmias and sudden death. Late potentials in a signal-averaged electrocardiogram (SAECG), a predictor of ventricular dysrhythmias, are frequently seen in patients after previous myocardial infarction, but little is known about the prevalence of late potentials in acromegaly. The aim of our study was to investigate the prevalence of late potentials in patients with acromegaly and their relation to the activity of the disease and to myocardial hypertrophy. PATIENTS: The study included 48 patients with acromegaly [27 males, 21 females, mean age 52.3 +/- 14.2 years, 16 active disease, 32 cured or 'well controlled', under treatment with sandostatin analogues (12/32)] and 38 healthy volunteers as a control group. RESULTS: Late potentials were detected in 9/16 (56%) patients with active acromegaly vs. 2/32 (6%) with cured/well controlled acromegaly (P = 0.001), defined as normal age-related IGF-1 levels and GH levels suppressible below 1 microg/l after an oral glucose load (75 g). Late potentials were not related to muscle mass index (127 +/- 35 active vs. 123 +/- 34 g/m2 cured/well controlled). The association of disease activity with the detection of late potentials was independent of age, gender, duration of the disease and body mass index. In comparison to the control group, the prevalence of late potentials was significantly higher in patients with acromegaly (23%) than in the control group (0%; P < 0.001). CONCLUSIONS: Late potentials in the SAECG are frequently seen in active acromegaly and may represent an early and sensitive parameter to detect myocardial injury in acromegaly.

Acromegaly↗

Primary malignant fibrous histiocytoma of the lung: IGF-II producing tumor induces fasting hypoglycemia.

Augmented glucose utilisation or secretion of insulin-like-growth-factor II (IGF-II) are discussed as important pathogenetic factors in tumor-associated hypoglycemia (Doege-Potter Syndrome) with suppressed insulin and C-peptide levels. Primary malignant fibrous histiocytoma of the lung is an uncommon neoplasia and its association with hypoglycemia is rare and the causal relationship remains unclear. - We report a 57-year-old male with spontaneous hypoglycemia (1.67 mmol/l) due to a primary malignant fibrous histiocytoma of the lung, secreting IGF-II. Insulin (0.10 nmol/l; normal range 0.33-1.2) and C-peptide (3.0 mIU/l; 5-25) levels were suppressed in combination with low levels of growth hormone (<0.5 ng/ml; <7 ng/ml) and IGF-I (<66.0 ng/ml; 70-246). The elevated IGF-II level (787 ng/ml; 300-500) and decreased IGF-binding protein 3 (1.6 mg/l; 2-5) indicated a high free IGF-II activity. After surgery (resection of the right upper lobe), glucose (4.4 mmol/l), insulin (9.0 mIU/L) and C-peptide (0.84 nmol/l) levels returned to normal. Serum IGF-I (289 ng/ml) and the IGF-I/IGF-II ratio (<0.08 preoperative vs. 0.41 postoperative; >0.20) increased to the normal reference range. - In conclusion, malignant fibrous histiocytoma (MFH) is rarely described presenting as tumor-induced hypoglycemia. Doege-Potter Syndrome in MFH seems to be related to tumor-associated IGF-II production.

Adult↗

[Continuous blood glucose monitoring: the acute effect of acarbose on blood glucose variations].

BACKGROUND: Acarbose, a pseudo-tetrasaccharid, inhibits intestinal alpha-glucosidases, effects a reduction of postprandial hyperglycemia and is particularly used in the treatment of patients with type-2 diabetes mellitus. The aim of the study is to analyse by a continuous blood glucose measurement the acute effect of acarbose after a carbohydrate loading and during a 12 hours period. PATIENTS AND METHODS: We examined 10 patients with type-2 diabetes mellitus (mean age 59.2 +/- 3.79, HbA1 9.2 +/- 0.26%) treated with sulfonylureas and/or insulin after a carbohydrate meal and 12 hours during daytime, to test whether the first application of acarbose influences the mean blood glucose or the blood glucose amplitudes. Four measurements were enrolled using a portable continuous blood glucose sensor (Glucosensor, unitec Ulm). A measurement after a carbohydrate loading (Fresubin, 500 kcal, 69 g carbohydrate) with 100 mg acarbose (Glucobay) was followed by a 12-hour measurement during daytime with 3 x 100 mg acarbose and standard diet. These measurements were repeated without acarbose. RESULTS: After a carbohydrate loading, the mean blood glucose level (AUC 44,320 +/- 10,660 with acarbose vs. 61,390 +/- 12,590 without acarbose; mean + SD; p = 0.004) decreased by 28%. During daytime blood glucose levels were not significantly decreased (165.7 +/- 50.3 mg/dl vs 183.7 + 67.4 mg/dl; p = 0.1) although the postprandial blood glucose amplitudes after the 3 meals were reduced significantly (85.90 +/- 24.6 mg/dl vs 106.5 +/- 20.5 mg/dl; p = 0.02). CONCLUSIONS: Continuous blood glucose monitoring indicated that acarbose diminished mean blood glucose levels after a carbohydrate loading in patients with type-2 diabetes mellitus, but not during 12 hours of standard diet, although blood glucose amplitudes decreased. Long-term improvements of metabolism by acarbose may therefore be related to the reduction of blood glucose amplitudes which is likely to reduce toxic effects of glucose on islet cell function.

Acarbose↗