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B Saller

Publications and source records attributed to B Saller.

At least 19 recordsLinked to original sources

Treatment of acromegaly with the GH receptor antagonist pegvisomant in clinical practice: safety and efficacy evaluation from the German Pegvisomant Observational Study.

OBJECTIVE: The GH receptor antagonist pegvisomant is a highly effective new treatment option in acromegaly. The German Pegvisomant Observational Study (GPOS) was started to monitor long-term safety and efficacy of pegvisomant as prescribed in clinical practice. DESIGN: GPOS is an observational, multi-center, surveillance study, which comprises non-interventional data collection. METHODS: Of the 229 patients included in the study, 90.4% had previous pituitary surgery, 43.2% were treated by radiation therapy, and 94.3% had previous medical therapy for acromegaly that had been discontinued mainly due to persistent IGF-I elevation or side effects. The intention-to-treat population included 177 patients with at least one post-baseline efficacy measurement. RESULTS: IGF-I levels decreased from 1.75+/-0.91-fold the upper limit of normal at baseline to 1.05+/- 0.62 at the 6-month visit, 0.96+/-0.60 at the 12-month visit, and to 0.89+/-0.41-fold after 24 months (P<0.0001). Mean duration of pegvisomant therapy was 51.8+/-35.8 weeks (median=51.9 weeks). IGF-I was normalized in 64.4% at 6 months with a median dose of 15.0 mg/day, in 70.9% at 12 months, and in 76.3% at 24 months. Fasting glucose levels improved from 114.4+/-45.9 to 101.5+/- 42.8 mg/dl after 6 months (P<0.01) and to 100.6+/-33.2 mg/ml after 12 months (P<0.01). General physical condition measured by specific signs and symptoms score improved significantly. Adverse events occurring in >1% were injection site reactions in 7.4%, elevated liver enzymes (>3 times of normal) in 5.2% (3.1% spontaneously normalized during continued treatment), reported increase of pituitary tumor volume in 5.2% (which was verified in 3.1%), and headache in 1.7%. CONCLUSIONS: Pegvisomant is generally well tolerated with a safety profile similar to that reported in clinical trials and can effectively reduce IGF-I in patients with acromegaly refractory to conventional therapy.

Acromegaly↗

Effects of growth hormone treatment on B-type natriuretic peptide as a marker of heart failure in adults with growth hormone deficiency.

OBJECTIVE: Patients with growth hormone deficiency (GHD) have abnormalities of cardiac structure and function. Growth hormone replacement (GHR) therapy can induce an increase in cardiac mass and improvement in left ventricular ejection fraction. B-type natriuretic peptide (BNP) levels have been successfully used to identify patients with heart failure and they correlate with both disease severity and prognosis. DESIGN: To investigate the effect of growth hormone replacement on BNP and inflammatory cardiovascular risk factors in adults with GHD we determined NT-proBNP and high sensitive C-reactive protein (CrP) before, 6 and 12 months after GHR. PATIENTS: Thirty adults (14 males, 16 females) with GHD mean age: 41.7+/-14.5 years (range: 17.2 to 75.4 years) were recruited from the German KIMS cohort (Pfizer's International Metabolic Database). RESULTS: During 12 months of GHR, a significant increase of IGF-1 (85.4+/-72.1 VS. 172.0+/-98 mug/dl; p=0.0001; IGF-1 SDS mean+/-SD: -3.85+/-3.09 VS. -0.92+/-1.82) was detectable. Mean baseline NT-proBNP was 112+/-130 pg/ml (range: 7 to 562). Twelve patients had normal BNP, whereas 18 revealed NT-proBNP values corresponding to those of patients with heart failure NYHA classification I (n=10), NYHA II (n=6) and NYHA III (n=2), respectively. Baseline BNP levels correlated significantly (p=0.044) with increased baseline CrP values. After 12 months of GHR, a significant decrease (p=0.001) in NT-proBNP levels mean: 68+/-81 pg/ml (range: 5 to 395) was detectable, associated with an improvement in NYHA performance status in 10 of the 18 with increased baseline NT-proBNP. CONCLUSIONS: Based on our study, approximately two-thirds of patients with GHD have increased NT-proBNP levels which may be useful as screening/diagnostic laboratory parameter for heart failure in such patients. GHR therapy decreases BNP levels in most patients with GHD.

Adolescent↗

Prevalence of anterior pituitary insufficiency 3 and 12 months after traumatic brain injury.

OBJECTIVE: Cross-sectional studies report a high prevalence of hypopituitarism after traumatic brain injury (TBI); however, no longitudinal studies on time of manifestation and reversibility exist. This study was conducted to assess hypopituitarism 3 and 12 months after TBI. DESIGN: This was a prospective, longitudinal, diagnostic study. METHODS: Seventy-eight patients (52 men, 26 women, mean age 36.0 years) with TBI grades I-III and 38 healthy subjects (25 men, 13 women, mean age 36.4 years) as a control group for the GHRH + arginine test were studied. The prevalence of hypopituitarism was assessed 3 and 12 months after TBI by GHRH + arginine test, short adrenocorticotropic hormone (ACTH) test, and basal hormone measurements in patients. RESULTS: After 3 months, 56% of all patients had impairments of at least one pituitary axis with axes being affected as follows: gonadotropic 32%, corticotropic 19%, somatotropic 9% and thyrotropic 8%. After 12 months, fewer patients were affected, but in some cases new impairments occurred; 36% still had impairments. The axes were affected as follows after 12 months: gonadotropic 21%, somatotropic 10%, corticotropic 9% and thyrotropic 3%. CONCLUSIONS: Hypopituitarism occurs often in the post-acute phase after TBI and may normalize later, but may also develop after the post-acute phase of TBI.

Adult↗

Elevated transaminases during medical treatment of acromegaly: a review of the German pegvisomant surveillance experience and a report of a patient with histologically proven chronic mild active hepatitis.

OBJECTIVE: The new GH receptor antagonist pegvisomant is the most effective medical therapy to normalize IGF-I levels in patients with acromegaly. Based on currently available data pegvisomant is well tolerated; however, treatment-induced elevation of transaminases has been reported and led to the necessity for drug discontinuation in some patients in the pivotal studies. The aim of this study was to evaluate and characterize the prevalence of elevated transaminases and to describe in detail the findings in a single case who required drug discontinuation because of elevation of transaminases which emerged during treatment and who underwent liver biopsy. DESIGN AND METHODS: Retrospective safety analyses were carried out on 142 patients with acromegaly receiving pegvisomant treatment in Germany between March 2003 and the end of 2004. Of these patients, 123 were documented in a post-marketing surveillance study, one case of elevated transaminases was reported spontaneously and the other patients were treated in a clinical study. RESULTS: Mean treatment duration with pegvisomant in the ongoing observational study at the end of 2004 was 28.3 +/- 19.9 (S.D.) weeks. Twelve out of the 142 patients had elevated transaminases above three times the upper limit of normal, likely caused by biliary obstruction in five of the patients. All patients but one affected by elevated transaminases had been previously treated with somatostatin analogues. In six out of 142 (4%) of patients, pegvisomant was permanently withdrawn because of elevated transaminases. The same number of patients showed a transient increase of transaminases with either spontaneous remission without dose modification (n = 4) or no re-increase of transaminases after temporary discontinuation and re-exposure (n = 2). The liver biopsy of one patient who was permanently withdrawn showed a chronic mild hepatitis with a mixed portal inflammation including eosinophilic granulocytes. CONCLUSIONS: Liver function tests should be regularly followed on pegvisomant treatment. Biliary complications, which may arise from restitution of normal gall bladder motility after cessation of somatostatin analogue treatment, need to be differentiated from pegvisomant-induced abnormalities. The histological pattern of the liver biopsy performed in one of the patients showed a mild chronic active hepatitis. The lack of dose dependency and rather low frequency of elevated transaminases in those cases where a biliary disorder was excluded render this reaction an idiosyncratic drug toxicity.

Acromegaly↗

Effects of a combination of rhGH and metformin on adiponectin levels in patients with metabolic syndrome.

Adiponectin is a recently discovered adipocytokine that correlates negatively with body mass index and body fat. In patients with GH deficiency, treatment with recombinant human growth hormone (rhGH) reduces body fat mass and thus may also have a favorable effect in patients with metabolic syndrome, and would also be expected to increase adiponectin levels. However, due to its diabetogenic effect, rhGH treatment also bears an increased risk for the development of type 2 diabetes mellitus. We conducted a 18-month randomized, double-blind, placebo-controlled study to assess the effect of rhGH in combination with metformin (MGH) in 14 obese men (7 MGH; 7 Metformin+Placebo, 54 +/- 2 years, BMI 33.0 +/- 1.2 kg/m(2)) with mildly elevated fasting plasma glucose (FPG) at screening (6.1-8.0 mmol/l). All patients received metformin (850 mg twice daily) for treatment of type 2 diabetes mellitus/impaired glucose tolerance, either alone or in combination with rhGH (daily dose 9.5 mug/kg body weight). Glucose disposal rate (GDR) was measured using the euglycemic hyperinsulinemic clamp technique, and body composition was measured by DEXA at 0 and 18 months. After 18 months, the mean adiponectin concentration increased by 32 +/- 11 % (p = 0.018) in the MGH group and did not change in the MP group (- 10 +/- 13 %; p = n. s.). The difference in relative changes in adiponectin levels between the two groups after 18 months was statistically significant (p = 0.026). Improvement in insulin sensitivity (GDR) correlated positively with adiponectin levels (r = 0.73; p = 0.004). In conclusion, the additional administration of rhGH increased adiponectin levels in patients with metabolic syndrome, indicating its potential role in adiponectin-associated insulin sensitivity alterations.

Adiponectin↗

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↗

Insulin sensitivity and coronary vasoreactivity: insulin sensitivity relates to adenosine-stimulated coronary flow response in human subjects.

OBJECTIVE: Diabetes is associated with coronary microvasculature abnormalities and impaired coronary flow reserve (CFR). CFR is the ratio of coronary flow under maximal vasodilation to basal flow and is a measure for coronary vasoreactivity. Insulin resistance is the central defect in the development of type 2 diabetes, preceding its onset by 10-20 years. Thus, the relationship between insulin sensitivity and CFR in nondiabetic subjects is particularly interesting. The aim of the study was to investigate this relationship. DESIGN: Cross-sectional study. PATIENTS: The study population consisted of 18 nondiabetic subjects without coronary artery stenosis on coronary angiography. We excluded patients with structural heart disease or with conditions affecting CFR or insulin sensitivity such as low density lipoprotein (LDL)-cholesterol > or = 4.14 mmol/l, smoking, hypertension or obesity with a body mass index (BMI) > 28 kg/m(2). MEASUREMENTS AND RESULTS: CFR was 3.1 +/- 0.8 (range 1.7-4.8), as assessed by intracoronary Doppler measurements in the left anterior descending coronary arteries after adenosine stimulation. Intravascular ultrasound revealed zero to moderate coronary atherosclerotic changes. Whole-body insulin sensitivity (M-value) was 7.5 +/- 2.9 mg/kg/min (range 2.2-12.6), as assessed by the hyperinsulinaemic-euglycaemic clamp test. Subjects with low CFR (< 3.0) had a significantly lower M-value than subjects with normal CFR (> 3.0) (6.0 +/- 2.5 vs. 9.0 +/- 2.5 mg/kg/min, P = 0.021). Univariate linear regression demonstrated a strong correlation between CFR and M-value (r = 0.76, P < 0.001). In multiple regression analysis, the significant association of CFR with M-value was independent of potential confounders (sex, age, BMI, LDL-cholesterol and plaque burden on intravascular ultrasound). Bootstrap analysis corroborated this finding. CONCLUSIONS: Whole-body insulin sensitivity relates to coronary vasoreactivity. Across a wide range of both insulin sensitivity and coronary flow reserve from markedly abnormal to normal values, an increase in insulin sensitivity appears to be associated with an increase in coronary flow reserve. Insulin resistance is therefore associated with coronary microvasculature abnormalities in nondiabetics.

Adenosine↗

Glucose and lipid metabolism in young lean normotensive males with the G protein beta3 825T-allele.

The 825T-allele of the C825T polymorphism in GNB3, the gene for the G protein beta3 subunit, has been reported to be associated with essential hypertension and obesity. Expression of Gbeta3s, the gene product of GNB3 associated with the GNB3 825T-allele, causes increased signal transduction which may contribute to pathogenetic mechanisms ultimately resulting in hypertension and obesity. Given the known involvement of heterotrimeric G proteins in insulin secretion and insulin action on the cellular level, we analysed insulin sensitivity in each 15 young lean normotensive males with TC- and CC-genotypes, respectively. Blood glucose and serum insulin samples were taken during a standard oral glucose tolerance test. Insulin-stimulated glucose disposal was analysed by euglycemic-hyperinsulinemic clamp. Both groups did not differ with regard to the time-courses for glucose or insulin concentrations in the oral glucose tolerance test. Furthermore, insulin-stimulated glucose disposal was virtually independent of genotype. The TC-genotype is not associated with a primary defect in insulin secretion or sensitivity suggesting that obesity and hypertension in carriers of 825T do not likely result from primary alterations in glucose and insulin homeostasis. However, GNB3 825T-associated obesity may predispose to insulin resistance, an issue which remains to be investigated. Furthermore, fasting cholesterol was significantly higher in TC compared to CC genotype (4.71 versus 3.96 mmol/l; p = 0.007) suggesting that enhanced G protein signalling might be associated with alterations of cholesterol metabolism.

Adult↗

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↗

Effects of acute prolactin manipulation on sexual drive and function in males.

The neuroendocrine response to sexual activity in humans is characterized by a pronounced orgasm-dependent increase of plasma levels of prolactin. In contrast to the well-known inhibitory effects of chronic hyperprolactinemia on sexual drive and function, the impact of acute prolactin alterations on human sexual physiology is unknown. Therefore, this study was designed to investigate the effects of acute manipulation of plasma prolactin on sexual behavior. Ten healthy males participated in a single-blind, placebo-controlled, balanced cross-over design. Prolactin levels were pharmacologically increased to high levels (protirelin, 50 micro g i.v.) or reduced to low physiological concentrations (cabergoline, 0.5 mg p.o.). Sexual arousal and orgasm were then induced by an erotic film and masturbation. In addition to continuous neuroendocrine and cardiovascular recordings, the quality and intensity of the acute sexual drive, arousal, orgasm and refractory period were assessed by extensive psychometric measures. Administration of cabergoline decreased prolactin levels and significantly enhanced all parameters of sexual drive (P<0.05), function (P<0.01) and positive perception of the refractory period (P<0.01). Administration of protirelin increased prolactin concentrations and produced small, but not significant reductions of sexual parameters. The sexual effects observed from cabergoline were completely abrogated by coadministration of protirelin. Although different pharmacological sites of action of prolactin-altering drugs have to be considered, these data demonstrate that acute changes in prolactin plasma levels may be one factor modulating sexual drive and function. Therefore, besides a neuroendocrine reproductive reflex, a post-orgasmic prolactin increase may represent one factor modulating central nervous system centers controlling sexual drive and behavior. These findings may offer a new pharmacological approach for the treatment of sexual disorders.

Adult↗

Acute interferon beta-1b administration alters hypothalamic-pituitary-adrenal axis activity, plasma cytokines and leukocyte distribution in healthy subjects.

It has been suggested that the immune-endocrine communication plays an important role in development and progression of multiple sclerosis (MS). Interferon beta (IFN beta-1b) treatment is the therapy of choice in patients suffering from relapsing remitting or secondary chronic progressive multiple sclerosis. While typical adverse events of IFN beta-1b treatment such as flu-like symptoms or fatigue are well studied, little is known about the acute changes in the immune and neuroendocrine system. Therefore, we analyzed the short-term effects of IFN beta-1b on cortisol, epinephrine, norepinephrine, prolactin and growth hormone (GH) plasma levels before and 4, 8 and 24 h after IFN beta-1b administration in healthy subjects. Moreover, we determined heart rate, blood pressure, body temperature, leukocyte and lymphocyte subsets and plasma levels of interleukin (IL)-1 beta, IL-6, IL-10 and tumor necrosis factor (TNF)-alpha. IFN beta-1b led to an increase in body temperature and heart rate, and in parallel, elevated cortisol, prolactin and GH plasma levels at 4 and 8 h after IFN beta-1b injection. There were no significant alterations in blood pressure, norepinephrine or epinephrine plasma levels. Simultaneously, IFN beta-1b injection led to an immediate granulocytosis while concomitantly decreasing peripheral lymphocytes, especially natural killer (NK) cells. At the same time, IL-6, IL-10 and TNF-alpha plasma levels showed an overall increase. Overall, cytokine administration exerts strong stimulatory effects on the hypothalamic-pituitary-adrenal (HPA)-axis that may contribute to the side effects of IFN beta-1b therapy and affect the efficacy of IFN beta-1b treatment.

Adjuvants, Immunologic↗

Acromegaly: evidence for a direct relation between disease activity and cardiac dysfunction in patients without ventricular hypertrophy.

BACKGROUND AND AIMS: Cardiac abnormalities, such as cardiomegaly and congestive heart failure, occur frequently in advanced acromegaly. Abnormalities of systolic and diastolic function, mostly associated with left ventricular (LV) hypertrophy, have been reported. The impact of disease activity on LV performance in patients with normal or slightly elevated LV muscle mass has not been demonstrated. PATIENTS AND METHODS: Conventional two-dimensional/Doppler echocardiography and tissue Doppler imaging (TDI) of the mitral annulus were performed in 13 patients with active acromegaly (AA) and normal or slightly elevated LV muscle mass (< 140 g/m2) and in 19 cured/well-controlled patients (CA). A group of 21 volunteers without symptoms or signs of cardiac disease served as controls (CON). The combined myocardial performance index (Tei-Index) was determined in all patients and controls. RESULTS: Muscle mass index of the left ventricle, ejection fraction, fractional shorting, E/ET-ratio, systolic (ST) and late diastolic (AT) annular velocities did not differ significantly between the three groups. In the AA group, the early diastolic annular velocity ET[7.13 +/- 2.11 (AA); 9.83 +/- 3.29 (CA); 10.10 +/- 1.70 m/s (CON); P < 0.05 AA vs. CA, P < 0.005 AA vs. CON] and the ET/AT-ratio [0.71 +/- 0.26 (AA); 0.95 +/- 0.33 (CA); 1.00 +/- 0.15 m/s (CON); P < 0.05 AA vs. CA, P < 0.005 AA vs. CON] were significantly reduced. Patients with AA had a longer deceleration time [209 +/- 19 (AA); 179 +/- 22 (CA); 185 +/- 26 ms (CON); P < 0.05]. The Tei-Index was significantly higher in AA in comparison with CON [0.50 +/- 0.15 (AA); 0.48 +/- 0.12 (CA); 0.41 +/- 0.10 (CON); P < 0.05 AA vs. CON]. Subjects with CA did not differ significantly from controls with respect to 2-D/Doppler echo- and TDI-derived parameters. CONCLUSION: The data demonstrate that diastolic dysfunction can be verified by tissue Doppler imaging in patients with active acromegaly with normal or slightly elevated muscle mass of the left ventricle and seems to be related to disease activity. The Tei-Index as a sensitive combined myocardial performance index can be used to complete the assessment of systolic and diastolic LV performance in acromegalic patients.

Acromegaly↗

Surveillance of TSH-suppressive levothyroxine treatment in thyroid cancer patients: TRH testing versus basal TSH determination by a third generation assay.

OBJECTIVE, DESIGN AND METHODS: Although TRH testing has been eliminated in the diagnosis of most benign thyroid diseases, it is still controversial whether or not it can be replaced by ultrasensitive determination of basal TSH for monitoring optimal TSH suppression in thyroid cancer patients. We compared basal and TRH-stimulated TSH values measured by a 2 nd generation assay (lower detection limit 0.1 mU/l) and by a 3 rd generation assay (lower detection limit 0.005 mU/l) in 209 thyroidectomized thyroid cancer patients under suppressive levothyroxine treatment. RESULTS: In the 2 nd generation assay all patients had basal TSH values < 0.1 mU/l (criterion of admission in the study), and the TRH-stimulated TSH values were above the lower detection limit in 47% of the patients (range < 0.1-1.0 mU/l). In the 3 rd generation assay TSH was above the lower detection limit in 67% under basal conditions (range < 0.005-0.098 mU/l), and in 83% after TRH stimulation (range < 0.005-1.000 mU/l). We observed close correlations (p < 0.001) between basal and TRH-stimulated TSH in the 3 rd generation assay (r = 0.86), between TRH-stimulated TSH in the 2 nd and 3 rd generation assay (r = 0.95), and between TRH-stimulated TSH in the 2 nd generation assay and basal TSH in the 3 rd generation assay (r = 0.73). The ratio between TRH-stimulated and basal TSH values was in the average range 7-9 : 1. Subdividing the patients in three subgroups based on the TRH-stimulated TSH values from the 2 nd generation assay, the corresponding basal TSH values (median and [25.-75. percentile]) from the 3 rd generation assay were < 0.005 [< 0.005-0.010] mU/l in subgroup A (2 nd generation stim. TSH: < 0.15 mU/l), 0.032 [0.021-0.040] mU/l in subgroup B (2 nd generation stim. TSH: 0.15-0.4 mU/l), and 0.066 [0.046-0.085] mU/l in subgroup C (2 nd generation stim. TSH: > or = 0.5 mU/l). CONCLUSIONS: Even in those thyroid cancer patients where a high degree of TSH suppression is the therapeutic goal, 3 rd generation TSH assays enable a reliable adjustment of the levothyroxine dose by basal TSH determinations. In laboratories still using 2 nd generation assays, the monitoring of maximal TSH suppression in patients with high-risk thyroid cancer should be performed by TRH testing.

Adolescent↗

Role of conventional ultrasound and color Doppler sonography in the diagnosis of medullary thyroid carcinoma.

Early diagnosis of medullary thyroid carcinoma (MTC) can improve long-term prognosis. MTC can be detected at an early stage by calcitonin screening in all patients with thyroid nodules. This approach, however, is controversial due to high costs and a limited specificity of calcitonin. It was the aim of the present study to investigate whether ultrasonography may contribute to the diagnosis of MTC in patients with thyroid nodules. The study included 19 patients with newly diagnosed MTC. Ten patients had sporadic MTC, 7 had multiple endocrine neoplasia (MEN) type 2A, and 2 patients had MEN 2B. In all subjects conventional ultrasound, and in 14 patients color Doppler sonography were performed before primary surgery. For comparison, ultrasound appearance of 139 benign thyroid nodules was evaluated. In conventional ultrasound, MTC in 17/19 (89%) patients were hypoechoic, contained intranodular calcifications, and had no "halo sign". The combination of these criteria were found in only 8/139 (6%) of benign thyroid nodules. Intranodular blood flow was found in 11/14 patients with MTC (79%), perinodular blood flow in 7/14 MTC (50%). In conclusion, conventional ultrasound reveals a combination of hypoechogenicity, intranodular calcifications, and absence of "halo sign" in the vast majority of MTC. Since this sonographic pattern only rarely occurs in benign thyroid nodules, the results indicate that thyroid ultrasound can contribute to the diagnosis of MTC. In addition, the findings may have implications for calcitonin screening in nodular thyroid disease.

Adult↗

RT-PCR-based detection of circulating calcitonin-producing cells in patients with advanced medullary thyroid cancer.

In patients with medullary thyroid carcinoma (MTC) the clinical course of disease ranges from rapid tumor progression to long-lasting stable disease. The purpose of the present study was to investigate whether circulating tumor cells can be detected in the peripheral blood of patients with MTC by RT-PCR targeted to calcitonin (CT) mRNA and whether the results of this method are correlated with disease manifestation and metastatic potential. Blood samples from 19 consecutive patients with MTC and elevated CT levels were analyzed. Four had newly diagnosed MTC, and 15 patients had undergone total thyroidectomy. Six of 19 patients had detectable CT mRNA by RT-PCR. CT levels in the CT mRNA-positive patients were significantly higher than those in CT mRNA-negative patients [2,239-265,313 pg/ml; median 80,921 pg/ml (n = 6) vs. 70-46,787 pg/ml; median, 932 pg/ml (n = 13); P = 0.006]. CT mRNA was detectable in 5 of 8 patients with distant metastases, in 1 of 6 patients with local/regional lymph node metastases, but in none of the patients with newly diagnosed, organ-confined MTC (n = 2) or surgically treated MTC without tumor manifestation by various imaging studies (n = 3). In peripheral blood from 10 healthy volunteers and 21 patients with benign thyroid nodules, no CT RNA could be detected. In conclusion, an RT-PCR-based procedure was established to detect circulating CT-producing cells in the peripheral blood of patients with MTC. RT-PCR results seem to reflect tumor spread and aggressiveness and thus may help with early identification of patients with disseminated and rapidly progressive disease.

Adult↗

[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↗

[Thyroid carcinoma. Diagnosis--nonoperative therapy--after care].

Thyroid carcinomas may originate in the thyroid cells (follicular and papillary, carcinoma, so-called differentiated carcinomas, constituting roughly 80-90% of cases), and the calcitonin-producing parafollicular C cells (medullary carcinoma, roughly 10%). The suspected diagnosis is clarified with the aid of ultrasonography, scintigraphy and fine-needle aspiration cytology. Primarily, carcinomas of the thyroid are treated surgically; in the case of differentiated carcinomas, surgery is followed by radio-iodine treatment, and in the follow-up period 131I scintigraphy is performed. During this period, physical examination, ultrasonography of the neck, monitoring of the tumours markers, and treatment with levothyroxine are applied (TSH-suppressive in cases of differentiated carcinoma). In the event of a recurrence showing rapid progression, when surgical and nuclear medical treatment modalities have been exhausted, chemotherapy can be given.

Aftercare↗