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J Kratzsch

Publications and source records attributed to J Kratzsch.

At least 37 records · Page 2Linked to original sources

Leptin and leptin receptor in human seminal plasma and in human spermatozoa.

Leptin, a 167 amino acid peptide, is known to influence the gonads via direct and indirect effects. Recent studies provide contradictory proposition about the peripheral impact of leptin in the male gonads. Thus, we examined leptin and its receptors in human seminal plasma and in human ejaculated spermatozoa by Western blot technique and fluorescence microscopy. In seminal plasma we found a free leptin band (16 kDa) by an anti-leptin polyclonal antibody. Incubation of seminal plasma with recombinant leptin caused a statistically significant increase in the amount of free leptin (p < 0.01) and supports this finding. Furthermore, a soluble leptin receptor (145 kDa) was found in human seminal plasma in the same specimen. We also detected a 145-kDa leptin receptor isoform in ejaculated spermatozoa as a possible target of leptin action in the male genital tract, which was localized at the tail of spermatozoa by immunofluorescence microscopy only. This receptor was significantly associated with the intactness of sperm plasma membranes. Spermatozoa with deteriorated membranes contained 49.2 +/- 6.9% leptin receptor signal intensity compared with spermatozoa having intact membranes (p < 0.01). This finding is difficult to interpret and may be caused by a leakage of OB-R due to loss of membrane integrity. In conclusion, these data provide further hints for a peripheral role of leptin in the male genital tract, possibly, by an interaction between leptin and spermatozoa via sperm leptin receptors.

Blotting, Western↗

Association between the GH receptor/exon 3 genotype and the level of exon 3-positive GH-binding protein in human serum.

OBJECTIVE: The human GH-binding protein (GHBP) is derived from the GH receptor (GHR) through proteolytic cleavage of its extracellular domain. Two isoforms of the GHBP exist, differing in the retention or exclusion of exon 3: E3(+)GHBP and E3(-)GHBP. Our study aimed to answer the questions whether the level of E3(+)GHBP in the serum correlates with the GHR exon 3 expression and whether or not the E3 genotype matches the mRNA expression pattern. METHODS: Since exon 3 retention/deletion can be detected at the protein level using epitope-specific antibodies, we were able to quantify the two isoforms by means of specific immunoassays in a total of 37 individuals. Additionally, these persons were also genotyped for exon 3 by genomic PCR and tested for GHR exon 3 mRNA expression by RT-PCR. RESULTS: We found a significant correlation between GHR exon 3 genotype and the ratio of E3(+)GHBP and E3(-)GHBP in the serum. Moreover, the genotype matched exactly the mRNA expression in fibroblasts and/or blood leukocytes in all samples investigated. The levels of E3(+)GHBP are more strongly correlated with body mass index, proinsulin and C-peptide than the levels of the E3(-) isoform. CONCLUSIONS: Our results show that the GHR exon 3 genotype is in accord with the type of GHBP isoforms found in the serum. Our data thus support the idea that the presence of exon 3-retaining and -excluding GHR/GHBP isoforms results from a genomic deletion rather than from alternative splicing.

Adolescent↗

Different isoforms of the soluble leptin receptor in non-pregnant and pregnant mice.

Leptin circulates in murine serum in a free and a bound form. As shown in humans, a soluble leptin receptor (sOB-R), which modulates the effects of its ligand, circulates in murine blood. The aim of our study was to determine abundance and biochemical nature of this protein. For the quantification of sOB-R we developed a ligand-immunofunctional assay (LIFA) which is based on both, leptin binding and immunological recognition. The use of this LIFA revealed that during late gestation sera of pregnant mice had a approximately 290-fold higher level of sOB-R than non-pregnant animals. As investigated by size exclusion chromatography these mice sera demonstrated a co-elution of their leptin binding activity with leptin immunoreactivity and levels of sOB-R measured by LIFA. Therefore, it has to be concluded that sOB-R represents the major leptin binding activity in murine circulation. The molecular analysis of sOB-R by Western blot and by cross-linking with 125I-leptin in sera of pregnant and non-pregnant mice demonstrated two different isoforms of sOB-R, which were capable of leptin binding. The sOB-R in serum migrated at a molecular weight of 150kDa in pregnant and only of 120kDa in non-pregnant animals. Deglycosylation of these isoforms led to sOB-R molecules which were found at the same molecular weight in SDS-PAGE. This finding indicates that both isoforms differ only in the degree of their glycosylation. In conclusion, the non-pregnant and the pregnant states are accompanied by differently glycosylated isoforms of sOB-R whose physiological relevance remains to be determined.

Animals↗

[Age dependence of laboratory parameters in a health study--attempt at calculating a laboratory index for assessing biological aging].

The laboratory analyses of 404 participants of the health study GUNDULA, 201 men and 203 women between 30 and 80 years old, were performed to evaluate the variables for the determination of biological age. From the more than 70 laboratory variables resulting from clinical-chemical and hematologic tests and from urinalysis, less than 40 are significantly age-dependent. About half of these variables were examined by regression analysis to evaluate whether they are useful for the estimation of biological age by a laboratory index. Considerable sex differences were observed. The laboratory indexes for the participants altogether (resulting from 13 parameters) and separated for women (10 parameters) and men (8 parameters) show more variations than the biological age estimated by non-invasive parameters. In men only, there exists a significant but inverse correlation between laboratory index and relative aging rate, the difference between biological and chronological age. The results of some striking variables (e.g. dehydroepiandrosterone sulfate and others) and the results of an explorative factor analysis with regard to possible interconnections between variables and chronological age will be discussed.

Adult↗

Leptin exists in tubuli seminiferi and in seminal plasma.

Leptin is a 167-amino acid protein that stimulates gonadotrophin-releasing hormone secretion and exerts indirect effects on the gonads via neuropeptide Y, NPY. Recent research has suggested that leptin may also have an effect on testosterone secretion. To investigate the role of leptin in reproduction, leptin in testicular tissue and seminal plasma was examined in relation to leptin in serum, semen sample qualities and vasectomy. Seminal plasma and serum of 64 infertility patients, and 15 individuals after vasectomy, were assayed for leptin using a competitive 'in house' radioimmunoassay. The concentration of leptin in seminal plasma was significantly lower in the 'normal' semen sample group than in the 'pathological' group (Mean +/- SEM; 1.45 +/- 0.18 vs. 3.19 +/- 0.57 ng ml-1; P < 0.05), and showed a significantly negative correlation with percentage of motile spermatozoa (r = -0.46; P = 0.0005) and with the velocity straight line, VSL, (r = -0.30; P = 0.029). In contrast, leptin concentration in serum did not show any relationship with the spermiogram parameters. In testicular tissue, leptin was preferentially found within the tubuli seminiferi using anti-leptin polyclonal antibody, Ob A-20 Sc 842. The amount of leptin per ejaculate did not significantly change after vasectomy, and was not correlated to fructose, zinc or neutral alpha glucosidase in seminal plasma (P > 0.05). These results suggest that the amount of leptin in the genital tract, including the tubuli seminiferi, may influence the mechanisms involved in the motility development of spermatozoa.

Chromatography, Gel↗

Circulating soluble leptin receptor and free leptin index during childhood, puberty, and adolescence.

Leptin is bound in human blood by a high affinity binding protein, which appears to be identical with the soluble leptin receptor (sOB-R). Using a ligand-mediated immunofunctional assay for the determination of serum sOB-R, we investigated its course during childhood, puberty, and adolescence in a large cohort of 581 healthy children and adolescents and a small group of 13 patients with anorexia nervosa. In the first years of life, sOB-R is detectable in remarkably high concentrations. Thereafter, a continuous decline of sOB-R levels was found. Consequently, correlation analyses demonstrated significant inverse relationships (P < 0.001) of sOB-R with age, IGF-I levels, pubertal stage, auxological and body composition parameters, as well as with leptin concentrations. Multiple regression analysis revealed that height, IGF-I, and age (only in girls) were independent predictors of sOB-R levels; these variables account for approximately 65% and 48% of the variation of sOB-R levels in boys and girls, respectively. The courses of age-dependent median values for the free leptin index (FLI, ratio between leptin and sOB-R levels) and for leptin levels were parallel in both genders. Correlation analyses demonstrated that in particular parameters of growth and sexual maturation are more closely related to the FLI than to leptin alone; this closer relationship is more pronounced among boys. Weight gains of patients with anorexia nervosa resulted in a significant increase in leptin and IGF-I levels (P < 0.01), whereas the median of sOB-R values decreased (P < 0.01). sOB-R and IGF-I levels were again significantly correlated (r = -0.55, P < 0.01). These findings suggest that high levels of sOB-R in emaciation may reflect an up-regulation of the sOB-R to suppress leptin action during energy deficiency. Furthermore, determinations of sOB-R and FLI are additional valuable tools to investigate the leptin axis during growth and sexual maturation.

Adolescent↗

Soluble leptin receptor represents the main leptin binding activity in human blood.

In human blood leptin circulates both free and bound to high molecular weight proteins. Hypothesising that these proteins may modulate ligand bioavailability and bioactivity of leptin, we investigated their molecular nature. Therefore, leptin binding activity was partially purified from human plasma using a leptin affinity column. Subjecting this preparation to size exclusion chromatography (SEC) we observed a coelution of leptin binding activity with levels of the soluble leptin receptor (sOB-R) determined by a newly developed ligand immunofunctional assay. In Western blot analysis the partially purified leptin binding activity exhibited sOB-R immunoreactivity in two bands of 110 and 140 kD. Following N-deglycosylation these bands were replaced by two bands with the molecular weight of 90 and 60 kD, suggesting two isoforms which are capable of leptin binding, as determined by cross-linking. Furthermore, different ratios of these isoforms were detectable in fractions of the leptin binding activity after separation by SEC. These findings indicate the formation of heterodimers and homodimers complexed with and without leptin. As the two sOB-R bands from Western blot analysis correspond to only two specific bands in cross-linking experiments with 125l-leptin, the role of both isoforms as leptin binding proteins appears to be exclusive. Therefore, our results indicate that sOB-R is the major leptin binding protein in the circulating human blood.

Blotting, Western↗

Clinical aspects of obesity in childhood and adolescence--diagnosis, treatment and prevention.

The level of fatness at which morbidity increases is determined on an acturial basis. Direct measurements of body fat content, eg hydrodensitometry, bioimpedance or DEXA, are useful tools in scientific studies. However, body mass index (BMI) is easy to calculate and is frequently used to define obesity clinically. An increased risk of death from cardiovascular disease in adults has been found in subjects whose BMI had been greater than the 75th percentile as adolescents. Childhood obesity seems to increase the risk of subsequent morbidity whether or not obesity persists into adulthood. The genetic basis of childhood obesity has been elucidated to some extent through the discovery of leptin, the ob gene product, and the increasing knowledge on the role of neuropeptides such as POMC, neuropeptide Y (NPY) and the melanocyte concentrating hormone receptors (MC4R). Environmental/exogenous factors contribute to the development of a high degree of body fatness early in life. Twin studies suggest that approximately 50% of the tendency toward obesity is inherited. There are numerous disorders including a number of endocrine disorders (Cushing's syndrome, hypothyroidism, etc) and genetic syndromes (Prader-Labhard-Willi syndrome, Bardet-Biedl syndrome etc) that can present with obesity. A simple diagnostic algorithm allows for the differentiation between primary or secondary obesity. Among the most common sequelae of primary childhood obesity are hypertension, dyslipidemia and psychosocial problems. Therapeutic strategies include psychological and family therapy, lifestyle/behavior modification and nutrition education. The role of regular exercise and exercise programs is emphasized. Surgical procedures and drugs used as treatments for adult obesity are still not recommended for children and adolescents with obesity. As obesity is the most common chronic disorder in the industrialized societies, its impact on individual lives as well as on health economics has to be recognized more widely. This review is aimed towards defining the clinical problem of childhood obesity on the basis of current knowledge and towards outlining future research areas in the field of energy homoeostasis and food intake control.

Adolescent↗

The exon 3-retaining and the exon 3-deleted forms of the growth hormone-binding protein (GHBP) in human serum are regulated differently.

Recently, two isoforms of the growth hormone-binding protein (GHBP), which is identical with the extracellular domain of the growth hormone receptor (GHR), have been described. One isoform contains the exon 3 (E3+GHBP) and one excludes the exon 3 (E3-GHBP). The distribution of both isoforms in peripheral blood and their functional relevance is so far unknown. To study the molecular distribution of both species we have analysed sera of 141 subjects with average weight, overweight and obesity by newly developed immunoassays. The relationship between the different molecular forms of GHBP and specific parameters of body composition as well as risk factors of metabolic disturbances, were then examined. The extracellular domain of the exon 3-retaining and -deleted isoforms of the GHR are released as E3+GHBP and E3-GHBP into the peripheral circulation. Furthermore, both molecular species do not show any correlation to each other (r = 0.67) and their relative proportion in blood is gender-dependent with a higher E3-GHBP proportion in females (P < 0.01). E3+GHBP appears to have a considerably stronger correlation to indicators (BMI, fat mass, waist circumference) and metabolic risk factors (fasting insulin, uric acid, triglycerides, apolipoprotein B, diastolic blood pressure) of adiposity than E3-GHBP, indicating differences in their functional significance. The availability of assays for the determination of GHBP isoforms may be very important for the study of the GH receptor and its soluble extracellular domain, GHBP.

Body Constitution↗

Clinical aspects of obesity in childhood and adolescence.

The level of fatness of a child at which morbidity acutely and/or later in life increases is determined on an acturial basis. Direct measurements of body fat content, e.g. hydrodensitometry, bioimpedance, or DEXA, are useful tools in scientific studies. However, body mass index (BMI) is easy to calculate and is generally accepted now to be used to define obesity in children and adolescents clinically. An increased risk of death from cardiovascular disease in adults has been found in subjects whose BMI had been greater than the 75th percentile as adolescents. Childhood obesity seems to substantially increase the risk of subsequent morbidity whether or not obesity persists into adulthood. The genetic basis of childhood obesity has been elucidated to some extent through the discovery of leptin, the ob gene product, and the increasing knowledge on the role of neuropeptides such as POMC, neuropeptide Y (NPY) and the melanocyte concentrating hormone receptors (for example, MC4R). Environmental/exogenous factors largely contribute to the development of a high degree of body fatness early in life. Twin studies suggest that approximately 50% of the tendency toward obesity is inherited. There are numerous disorders including a number of endocrine disorders (Cushing's syndrome, hypothyroidism, etc.) and genetic syndromes (Prader-Labhard-Willi syndrome, Bardet Biedl syndrome, etc.) that can present with obesity. A simple diagnostic algorithm allows for the differentiation between primary or secondary obesity. Among the most common sequelae of primary childhood obesity are hypertension, dyslipidemia, back pain and psychosocial problems. Therapeutic strategies include psychological and family therapy, lifestyle/behaviour modification and nutrition education. The role of regular exercise and exercise programmes is emphasized. Surgical procedures and drugs used in adult obesity are still not generally recommended in children and adolescents with obesity. As obesity is the most common chronic disorder in industrialized societies, its impact on individual lives as well as on health economics has to be recognized more widely. This review is aimed towards defining the clinical problem of childhood obesity on the basis of current knowledge and towards outlining future research areas in the field of energy homoesostasis and food intake in relation to child health. Finally, one should aim to increase public awareness of the ever increasing health burden and economic dimension of the childhood obesity epidemic that is present around the globe.

Adolescent↗

Serum leptin in formerly small-for-gestational-age children during adolescence: relationship to gender, puberty, body composition, insulin sensitivity, creatinine, and serum uric acid.

Serum leptin levels reflect body fat mass (FM), and have been described to be related to serum uric acid levels in adult type 2 diabetic and healthy subjects. We therefore aimed to evaluate the interrelationship between leptin and markers of the metabolic syndrome by studying serum leptin concentration, body mass index (BMI), percent body fat (Fat%), total fat mass (FM), sum of skinfolds (SS), triglycerides (TG), total cholesterol (CHOL), high-density lipoprotein cholesterol (HDL-C), low-density lipoprotein cholesterol (LDL-C), glucose, insulin, calculated insulin resistance (HOMA), creatinine (CR), and uric acid (UA) concentration in 50 former small-for-gestational-age (SGA) children and 21 infants born adequate for gestational age (AGA) at the time of mid-puberty. Our data confirm previous results showing a positive association between leptin and body fatness, and female gender. Twelve children with impaired glucose tolerance (IGT) had higher UA levels than subjects with normal glucose tolerance (NGT) (5.1 +/- 1.1 v 4.2 +/- 1.2 mg/dL, P <.05), and showed the strongest relation between serum leptin and UA (r =.76, P <.001). Multiple regression analyses demonstrated that gender, estimates of total body adiposity (Fat% and SS), birth weight (BW), gestational age (GA), stimulated glucose and insulin, and serum UA are independently associated with serum leptin concentration in former SGA children with dysglycemia (R(2) =.89, P <.001). A long-term effect of intrauterine growth restriction on body fatness, metabolic syndrome, and serum leptin levels is suggested.

Adolescent↗

Severe hypoglycemia due to insulin autoimmune syndrome with insulin autoantibodies crossreactive to proinsulin.

We report the case of a 69-year-old woman with insulin autoimmune syndrome first misdiagnosed as insulinoma. The case demonstrates the difficulties to correctly diagnose this rare disorder as both insulin and proinsulin levels were increased by crossreactive autoantibodies. No known triggering agent could be identified. We suggest that this diagnosis should be considered more often also in caucasian patients to avoid useless operations for such patients.

Aged↗

Growth factor expression in cold and hot thyroid nodules.

Hot thyroid nodules (HTNs) are predominantly caused by constitutively activating thyrotropin receptor (TSHR) mutations leading to an activation of the cyclic adenosine monophosphate (cAMP)-cascade that stimulates growth and function of thyroid epithelial cells and confers growth advantage. In contrast to HTNs, the molecular etiology of szintigraphically cold thyroid nodules (CTNs) is largely unknown. An increased prevalence of toxic multinodular goiters in iodine-deficient regions has been reported. Growth factors increase during early stages of iodine deficiency in rats. These growth factors could modulate the proliferation of thyrocytes. In order to determine if and which growth factors could modulate the increase in thyroid epithelial cell proliferation in late stages of CTNs and HTNs we investigated epidermal growth factor (EGF), transforming growth factor-alpha (TGF-alpha), and TGF-beta1 concentrations by enzyme-linked immunosorbant assay (ELISA) in CTNs (n = 7), HTNs (n = 9), and their normal surrounding tissue (ST). Insulin-like growth factor-1 (IGF-1) was determined in CTNs (n = 5) and HTNs (n = 10) and their surrounding tissues by radioimmunoassay (RIA). We found lower concentrations of all investigated growth factors and iodine in CTNs compared to surrounding normal tissues (ST). Only iodine showed a significant difference. Furthermore, we found significantly lower concentrations of EGF and TGF-beta1 concentration in HTNs compared to their STs. Differences of TGF-alpha and IGF-1 were not significant. In conclusion, low EGF, TGF-alpha, and IGF-1 concentrations in most CTNs in spite of low iodine concentrations argue against a pathophysiologic role of EGF, TGF-alpha, or IGF-1 in late stages of CTNs. The low EGF, TGF-alpha, and IGF-1 concentrations in HTNs irrespective of their clonal origin or the presence or absence of activating mutations argue for increased cAMP as the primary cause for thyroid epithelial cell proliferation in established HTNs. However, the pathophysiologic significance of low TGF-beta1 concentrations in CTNs and HTNs remains to be elucidated. It might be possible that growth factors like EGF, TGF-alpha, TGF-beta1, and IGF-1 play a more prominent role during early clonal expansion and that aberrant intrinsic signaling through a somatic mutation (e.g., TSHR for HTNs) confers the predominant selective growth advantage in later stages of HTNs or CTNs.

Epidermal Growth Factor↗

Genome-wide search for loci controlling serum IGF binding protein levels of mice.

A segregating F(2) pedigree based on two mouse lines (DU6i and DBA/2) with extremely different growth characteristics was generated to search for loci affecting serum levels of insulin-like growth factor (IGF) binding proteins (IGFBPs) and to estimate their effects on growth and body composition. DU6i is characterized by high body mass and obesity associated with hyperinsulinemia, hyperleptinemia, and elevated serum IGF-I concentrations. Furthermore, significantly elevated serum levels of IGFBP-2, IGFBP-3, and IGFBP-4 were found in DU6i vs. DBA/2 mice. Linkage analysis identified loci with major effects on the serum level of IGFBP-3 on Chromosome 5 at 58 cM (Igfbp3q1; F = 9.9) and on Chromosome 10 at 46 cM (Igfbp3q2; F = 33.8). A locus significantly influencing serum IGFBP-2 levels in males was found on Chromosome 7. Additional linkage was detected in males and females for IGFBP-2 on Chromosomes 8, 11, 14, 17, and X, and for IGFBP-4 on Chromosome 4. Additional loci affecting IGFBPs acted in a sex-specific manner. The identified loci coincide in part with chromosomal regions controlling growth and obesity. Thus, multiple genes or pleiotropic gene effects may be assumed for these chromosomal regions. The identification of quantitative trait loci for IGFBPs as subcomponents of growth regulation and differentiation will further improve the understanding of complex trait regulation.

Animals↗

The treadmill exhausting test is not suitable for screening of growth hormone deficiency!

BACKGROUND/METHOD: We compared the growth hormone response to a modified exercise test--the treadmill exhausting test--to pharmacological stimulation tests in 77 children with short stature. Each child underwent the treadmill test to individual exhaustion and at least one pharmacological test for GH stimulation. To determine the point of individual exhaustion, the heart rate, workload and oxygen consumption were measured. RESULTS: The mean +/- SEM peak GH concentration (ng/ml) in 47 small, normally growing children (group 1) was 16.1 +/- 1.3 in the pharmacological tests vs. 5.0 +/- 0.6 after a treadmill exhausting test. Thirty children with GH deficiency (group 2) had mean +/- SEM peak GH concentrations (ng/ml) of 5.5 +/- 0.5 in the pharmacological tests and 4.1 +/- 0.7 after physical exercise. The groups differed significantly in the pharmacological tests (p < 0.001) but not in the exhausting test. We found a 90% sensitivity but only a 11% specificity for the treadmill exhausting test compared to the diagnosis obtained by pharmacological testing. CONCLUSION: We do not recommend the treadmill exhausting test in clinical practice of pediatric endocrinology at all.

Adolescent↗

Cerebrospinal fluid and plasma concentrations of leptin, NPY, and alpha-MSH in obese women and their relationship to negative energy balance.

Leptin and its principal mediators, NPY and alpha-MSH are postulated to play a pivotal role in energy balance. To determine the possibility of the disturbance in neuropeptides in human obesity and their consequent changes in response to negative energy balance, we evaluated plasma and cerebrospinal fluid (CSF) leptin, NPY, and alpha-MSH levels in obese women before and after weight loss in comparison with normal control women. Subjects included 16 obese women [mean body mass index (BMI), 35.6 kg/m(2)] before and after weight loss induced by a 2-wk very low caloric diet (800 kcal/d) and 14 normal weight women (mean BMI, 20.4 kg/m(2)). The CSF to plasma leptin ratio in normal weight subjects was 2.3-fold higher than that in obese subjects. After weight loss in obese subjects, plasma leptin levels decreased by 40% and CSF levels decreased by 51%. There was a positive linear correlation between CSF and plasma leptin levels at baseline in obese subjects (r = 0.74, P < 0.05) and a positive logarithmic correlation in normal weight subjects (r = 0.89, P < 0.05) and in obese subjects after weight loss (r = 0.64, P < 0.05). The BMI was negatively correlated with the CSF to plasma leptin ratio (r = -0.86, P < 0.05) in all subjects. Neither the baseline plasma levels nor the baseline CSF levels of NPY were different between normal weight subjects and obese subjects. After weight loss, the CSF NPY level decreased significantly compared with baseline values in obese subjects. The alpha-MSH levels in plasma and CSF did not differ significantly from controls in obese subjects at baseline or after weight loss. Baseline CSF leptin level correlated with neither the baseline CSF NPY level nor the baseline CSF alpha-MSH level. In conclusion, this study demonstrated that the efficiency of brain leptin delivery is reduced in human obesity and central nervous system leptin uptake involves a combination of a saturable and an unsaturable mechanism. CSF NPY and alpha-MSH did not differ from controls in human obesity, and the CSF NPY level decreased significantly whereas alpha-MSH did not differ after weight loss in obese subjects compared with baseline. There was no significant correlation between CSF leptin and CSF NPY or alpha-MSH. This could be the result of leptin resistance present in human obesity and/or the more complex mechanisms involved in modulating appetite and regulating energy balance in human obesity.

Adult↗

Expression of leptin (Ob) and leptin receptor (Ob-R) in human fibroblasts: regulation of leptin secretion by insulin.

Leptin, a hormone of the cytokine family, is mainly synthesized by white adipocytes. As fibroblasts and adipocytes share a common stem cell origin, we hypothesized that connective tissue may be another candidate for leptin synthesis. We demonstrated leptin receptors, inclusive of all isoforms, on cultured fibroblasts (n = 13) by RT-PCR and immunohistochemistry. In contrast to its receptor, basal leptin mRNA expression and protein secretion were found in 8 of 13 cultures, reaching 1.4 ng/350,000 cells.24 h. Incubation with physiological insulin concentrations (1 nmol/liter) increased leptin secretion in fibroblast culture supernatants to 152% of basal levels. A maximal stimulation of the basal level up to 192% was found with 10 nmol/liter insulin after 24 h. Actinomycin D and cycloheximide abolished this effect, providing evidence that active RNA and protein synthesis are involved in insulin's action. Completing these in vitro results, we could show protein expression for leptin and leptin receptors in fibroblasts by immunostaining of human skin biopsies in situ. In conclusion, we provide evidence of leptin synthesis and secretion by human fibroblasts that are regulated by insulin. Leptin produced by fibroblasts may thus exert important local autocrine and paracrine actions and contribute to the total plasma pool. Hence it might in part account for variations in body mass index-dependent reference ranges of leptin as well as disruptions in the relationship between fat content and leptin.

Autocrine Communication↗

Plasma levels of tumor necrosis factor-alpha, angiotensin II, growth hormone, and IGF-I are not elevated in insulin-resistant obese individuals with impaired glucose tolerance.

OBJECTIVE: To investigate the relationship between insulin resistance and plasma concentrations of free fatty acids (FFAs), leptin, and potential agonists of the insulin receptor substrate (IRS) system, including tumor necrosis factor-alpha (TNF-alpha), IGF-I, growth hormone (GH), and angiotensin II in individuals with impaired glucose tolerance (IGT). RESEARCH DESIGN AND METHODS: Because glucose toxicity per se leads to insulin resistance, the determination of the primary metabolic alterations leading to insulin resistance is best accomplished in individuals who are at an increased risk to develop type 2 diabetes. Therefore, 48 subjects with IGT and insulin resistance (IR), characterized by hyperinsulinemic-euglycemic clamps, were compared with 52 healthy insulin-sensitive (IS) control subjects with respect to the relationship between the plasma levels of TNF-alpha, IGF-I, GH, angiotensin II, FFA, leptin, and insulin resistance. RESULTS: Between the IR and the IS groups, there were no significant differences in the plasma concentrations of TNF-alpha, GH, angiotensin II, IGF-I, and leptin. However, plasma FFA levels were significantly elevated in the IR group compared with the IS group after matching for BMI. CONCLUSIONS: The plasma concentrations of FFA, but not TNF-alpha, IGF-I, GH, and angiotensin II, are elevated in patients at an early stage of insulin resistance, suggesting that FFAs, but not the other modulators of the IRS system, may be a primary metabolic abnormality leading to insulin resistance.

Adult↗