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Biomedical subjects

M Landt

Publications and source records attributed to M Landt.

At least 19 recordsLinked to original sources

Analysis of 3-hydroxydodecanedioic acid for studies of fatty acid metabolic disorders: preparation of stable isotope standards.

Current diagnostic tests to detect disorders of fatty acids metabolism, such as long-chain hydroxyacyl CoA dehydrogenase deficiency (LCHAD), are hampered by insensitivity or a long delay time required for results. Children with LCHAD deficiency are known to excrete 3-hydroxydicarboxylic acids with chain lengths of 10-16 carbons, but a quantitative method to measure excretion of these potentially diagnostically important compounds has not been reported. We report synthetic schemes for synthesis of 3-hydroxydodecanedioic acid and a di-deuterated analog, suitable for use in a stable-isotope dilution mass spectrometric analytical approach. Evaluation of several common derivatization protocols to produce a volatile derivative for gas chromatography determined that trimethylsyl derivatives produced the best efficiency and stability. Positive-ion chemical ionization mass spectrometry provided the greatest yield of characteristic ions. These results indicate the basic reagents needed to develop sensitive and accurate 3-hydroxydodecanedioic acid measurements for diagnosis of LCHAD deficiency and other fatty acid oxidation disorders.

3-Hydroxyacyl CoA Dehydrogenases↗

Postictal cerebrospinal fluid abnormalities in children.

OBJECTIVES: To determine the frequency and characteristics of seizure-induced cerebrospinal fluid (CSF) abnormalities in children and to identify potential alternative causes of these findings. METHODS: Consecutive patients (n = 80) who underwent lumbar puncture within 24 hours after a seizure were studied retrospectively. The presence of CSF abnormalities in total leukocytes, polymorphonuclear cells, and protein was determined by using age-specific reference values. Coexisting conditions that could affect CSF findings, such as traumatic lumbar puncture, concurrent neurologic disease, and undiagnosed meningitis, were identified. RESULTS: Eighteen of the 80 patients were excluded from the final study group because of the presence of another condition that could alter the CSF. More than 50% of the excluded patients had an abnormal CSF leukocyte count or protein level, including 2 patients with initially undiagnosed meningitis, which was subsequently detected by post-hoc polymerase chain reaction testing. In the remaining 62 patients, postictal pleocytosis was detected in only 3 (5%), and increased protein was detected in only 6 (10%). The maximal postictal pleocytosis and protein level were 8 x 10(6) leukocytes/L (8 leukocytes/mm(3)) and 0.52 g/L (52 mg/dL), respectively. CONCLUSIONS: Seizure-induced CSF abnormalities are rare in children, and alternative, often unidentified, disease processes may account for many observed postictal abnormalities. All patients with abnormal CSF after a seizure should be thoroughly evaluated for other causes of the abnormality.

Adolescent↗

Acute exercise effect on postabsorptive serum leptin.

We postulated that high circulating cortisol levels during intense exercise would lead to increased serum leptin concentrations. Young, lean men ate a small meal and then exercised on a cycle ergometer for 41 min or rested on a control day. Serum leptin concentration was 10% greater during exercise than in the control condition (P < 0.05). Directly after exercise, serum leptin dropped to approximately 10% less than the control level (P < 0.05) but had recovered to the nonexercised level after approximately 2 h of recovery. Rapid exercise effects on circulating leptin were related to changes in hemoconcentration rather than changes in leptin mass. When serum leptin was normalized to serum protein, leptin increased by 10% in the exercise condition compared with control by the end of recovery (P < 0.05). Although exercise increased serum cortisol concentration threefold, there was no relation between differences in cortisol and exercise vs. control differences in normalized leptin. The increased leptin mass after exercise may have been related to greater plasma glucose concentration during recovery after exercise compared with the control condition.

Adult↗

Effect of short-term fasting on free and bound leptin concentrations in lean and obese women.

Plasma leptin exists in protein-bound and free forms, which may affect its hormonal bioactivity. Therefore, the relationship between bound and free leptin may be particularly important during physiological conditions that cause rapid alterations in total plasma leptin concentration, such as fasting. The purpose of this study was to evaluate the effect of short-term fasting on bound and free plasma leptin concentrations and leptin binding capacity (a measure of plasma leptin-binding protein content) in lean and obese women. Six lean (body mass index, 21 +/- 1 kg/m2) and 6 abdominally obese (BMI, 36 +/- 1 kg/m2) women were studied after 14 h and 22 h of fasting. Although total plasma leptin concentration was more than 6-fold greater in obese (45.4 +/- 7.6 microg/liter) compared with lean (7.4 +/- 1.0 microg/liter) women at 14 h of fasting (P < 0.05), the percentage of leptin in the bound form was greater in lean than obese subjects (29 +/- 2% vs. 12 +/- 3%; P < 0.05). Arterial total, free, and bound plasma leptin concentrations all declined between 14 h and 22 h of fasting in both lean and obese groups, but the relative decline of these fractions was greater in lean (36 +/- 4%, 60 +/- 9%, and 51 +/- 13%, respectively) than in obese (19 +/- 5%, 21 +/- 8%, and 12 +/- 7%, respectively) subjects (all P < 0.05). In contrast, leptin binding capacity was unchanged. The percentage of total plasma leptin present in bound form was constant between 14 h and 22 h of fasting in lean subjects and increased slightly but significantly in obese subjects. These data demonstrate that both free and bound fractions of leptin in plasma decrease quickly in response to energy restriction, but the decline is blunted in abdominally obese compared with lean women. In addition, the equilibrium between bound and free leptin fractions is maintained during brief fasting and is not regulated by leptin binding capacity.

Absorptiometry, Photon↗

Cerebrospinal fluid protein concentration in pediatric patients: defining clinically relevant reference values.

OBJECTIVES: To define clinically relevant reference ("normal") values for cerebrospinal fluid (CSF) protein concentrations in pediatric patients who were evaluated for meningitis by traditional criteria and by enterovirus-polymerase chain reaction (EV-PCR). DESIGN AND PATIENTS: A cohort of 906 consecutive pediatric patients to receive CSF analysis at St Louis Children's Hospital, St Louis, Mo, from June 1, 1998, to December 31,1998, was studied for clinical and laboratory data. Age-dependent CSF protein concentrations were then derived from a reference group of 225 patients in whom meningitis and other neurologic diseases were excluded by traditional clinical or laboratory criteria (excluding EV-PCR). Available CSF samples from 132 patients of the reference group were subsequently tested for EV-PCR. RESULTS: In the reference group, the CSF protein concentration was highest and most variable in neonates, with a maximum of approximately 1.0 g/L. Cerebrospinal fluid protein concentration decreased rapidly to a nadir by 6 months and remained low throughout childhood, rarely exceeding 0.3 g/L and, finally, increasing in adolescence toward adult values. Enterovirus- polymerase chain reaction was positive in CSF of 11% of the reference group, with EV-PCR-positive patients having significantly higher CSF protein concentrations than EV-PCR-negative patients aged between 4 months and 14 years. CONCLUSIONS: Reference values for CSF protein exhibit a characteristic age dependence in pediatric patients. Continued standard use of adult reference values in the pediatric population is inappropriate. The unexpected finding of a positive EV-PCR in patients not diagnosed with meningitis by traditional criteria further emphasizes the importance of selecting the most clinically relevant reference group for age and other variables when defining normal laboratory values. Arch Pediatr Adolesc Med. 2000;154:827-831

Adolescent↗

Leptin concentrations in Prader-Willi syndrome before and after growth hormone replacement.

OBJECTIVE: This study explored leptin concentrations in Prader-Willi syndrome (PWS), a genetic disorder characterized by significant obesity and presumed hypothalamic dysfunction. The potential interaction of leptin metabolism with the growth hormone (GH) axis was also studied. STUDY DESIGN: Plasma leptin concentrations and percent body fat were determined by radioimmunoassay and dual energy x-ray absorptionmetry, respectively, in 23 children with Prader-Willi syndrome and 23 children with exogenous obesity. RESULTS: Log plasma leptin concentrations were positively correlated with percentage body fat in PWS (r = 0.844) and exogenous obesity (r = 0.869). When the regression lines for the two groups were compared, there were no differences in their slopes (P = 0.737) or intercepts (P = 0.701). Administration of recombinant human growth hormone to PWS children for 12 months significantly reduced both percentage body fat and plasma leptin concentrations, but the relationship of log plasma leptin to percentage body fat was unchanged. CONCLUSION: Prader-Willi syndrome is not accompanied by deranged leptin concentrations and there was no evidence of an interaction of the GH axis with leptin metabolism in these GH-deficient children.

Body Composition↗

Leptin production during early starvation in lean and obese women.

We evaluated abdominal adipose tissue leptin production during short-term fasting in nine lean [body mass index (BMI) 21 +/- 1 kg/m(2)] and nine upper body obese (BMI 36 +/- 1 kg/m(2)) women. Leptin kinetics were determined by arteriovenous balance across abdominal subcutaneous adipose tissue at 14 and 22 h of fasting. At 14 h of fasting, net leptin release from abdominal adipose tissue in obese subjects (10.9 +/- 1.9 ng x 100 g tissue x (-1) x min(-1)) was not significantly greater than the values observed in the lean group (7.6 +/- 2.1 ng x 100 g(-1) x min(-1)). Estimated whole body leptin production was approximately fivefold greater in obese (6.97 +/- 1.18 microg/min) than lean subjects (1.25 +/- 0.28 microg/min) (P < 0.005). At 22 h of fasting, leptin production rates decreased in both lean and obese groups (to 3.10 +/- 1.31 and 10.5 +/- 2.3 ng x 100 g adipose tissue(-1) x min(-1), respectively). However, the relative declines in both arterial leptin concentration and local leptin production in obese women (arterial concentration 13.8 +/- 4.4%, local production 10.0 +/- 12.3%) were less (P < 0.05 for both) than the relative decline in lean women (arterial concentration 39.0 +/- 5.5%, local production 56.9 +/- 13.0%). This study demonstrates that decreased leptin production accounts for the decline in plasma leptin concentration observed after fasting. However, compared with lean women, the fasting-induced decline in leptin production is blunted in women with upper body obesity. Differences in leptin production during fasting may be responsible for differences in the neuroendocrine response to fasting previously observed in lean and obese women.

Abdomen↗

Leptin binding and binding capacity in serum.

BACKGROUND: Leptin, a hormone produced primarily by adipose tissue, is known to be present in serum as both monomeric (free) and higher molecular mass (bound) forms, but little is known about the nature of the bound forms or physiological variation in binding capacity. METHODS: A new method to quantify the free and bound forms was developed, based on HPLC separation and RIA quantification in chromatography fractions. Reanalysis of specimens after addition of exogenous leptin allowed direct determination of leptin-binding capacity and the degree of saturation of leptin-binding capacity. RESULTS: HPLC chromatography fractionated serum leptin into both the free form and as a broad peak of 59-130 kDa. Several experiments were conducted to validate the new method. The concentrations of bound leptin in serum were 0.45-3.94 micro/L, and they increased as total leptin (reflecting adiposity) increased in 24 lean and obese volunteers. Leptin was readily dissociated from the bound fraction by competition from exogenous leptin. Rechromatography of the bound fraction led to dissociation of leptin, which was promoted by warming the sera before chromatography. Leptin-binding capacity was 1.8-5.3 microg/L; binding capacity was nearly constant over a range of total leptin concentrations of 2-10 microg/L, and slowly increased at higher total leptin concentrations. Saturation of binding capacity was low (15%) at very low total leptin concentrations (<5 microg/L), but rose quickly to a plateau near 80% at higher total leptin concentrations. CONCLUSIONS: The new method facilitates measurement of free and bound fractions of serum leptin, and is the first method measuring leptin-binding capacity. These experiments demonstrate that the concentration of bound leptin and leptin-binding capacity vary physiologically, with binding/binding capacity increasing with adiposity. Except in very lean individuals, binding capacity is nearly completely saturated.

Adult↗

Leptin in cerebrospinal fluid from children: correlation with plasma leptin, sexual dimorphism, and lack of protein binding.

BACKGROUND: Previous studies in adults have established that leptin is present at very low concentrations in cerebrospinal fluid (CSF), but few data exist concerning CSF leptin in children. Current evidence suggests that CSF leptin concentrations interact with hypothalamic centers controlling food intake. Serum leptin concentrations manifest a sexual dimorphism that arises during puberty. METHODS: Leptin concentrations were determined in CSF from 42 pre- and postpubertal children who had been objectively classified into non-neurological disease or aseptic meningitis groups. Multivariate analysis of the dependence of CSF leptin on gender, pubertal state, body mass index (BMI), presence of aseptic meningitis, and CSF protein concentration was performed. RESULTS: CSF leptin concentrations correlated with log-transformed plasma leptin concentrations in concomitantly collected samples (r = 0.582; P = 0.029). BMI and gender were significant determinants of CSF leptin in postpubertal children, but only BMI was significant in prepubertal children. Analysis with HPLC to separate protein-bound and free forms of leptin found only free leptin in CSF. CONCLUSIONS: CSF leptin concentrations in children reflect plasma leptin concentrations, including the advent of sexual dimorphism at puberty. Only free leptin is detectable in CSF, suggesting that it is the biologically active form.

Adolescent↗

Glyceraldehyde preserves glucose concentrations in whole blood specimens.

BACKGROUND: Glucose concentrations decrease in blood specimens during transport/processing, primarily because of continuing metabolism (glycolysis) by erythrocytes. Several means to reduce the loss of glucose in blood specimens have been developed, but all have major drawbacks. Glyceraldehyde, which has antiglycolytic activity, was assessed for potential in preserving glucose in blood specimens. METHODS: Heparinized blood from volunteers was treated with glyceraldehyde and other agents. After incubation for various times, plasma concentrations of glucose and other common analytes were determined with prevalent commercial analyzers. RESULTS: The racemic mixture of glyceraldehyde (D,L-GA) preserved glucose concentrations for up to 8 h at room temperature. Half-maximal effect was attained with 0.9 mmol/L D,L-GA. Trials of the D and L stereoisomers individually indicated that the L isomer (L-GA) was responsible for all or most of the antiglycolytic activity of the racemic mixture. Other related compounds were ineffective. Measurements of most common clinical laboratory analytes were unaffected by the presence of D,L-GA or L-GA. CONCLUSIONS: Glyceraldehyde (D,L-GA or L-GA) effectively preserves glucose concentrations in whole blood specimens for up to 8 h. Specimens collected with D,L-GA or L-GA are suitable for analysis of many analytes commonly comeasured with glucose.

Blood Glucose↗

Regional leptin kinetics in humans.

BACKGROUND: Leptin is known to be cleared by the kidney, a tissue with substantial leptin receptor mRNA expression; however, lung, liver, and muscle tissues also express leptin receptor messenger RNA and it is not known whether these tissues also clear leptin from the circulation. OBJECTIVE: This study was conducted to determine whether net leptin clearance takes place in the pulmonary, splanchnic, and leg tissue beds to a similar extent as in the kidney. DESIGN: Plasma leptin concentrations were measured in blood entering and exiting the renal bed, pulmonary bed, splanchnic bed, and leg in 4 groups of subjects. Regional plasma flow was measured in 3 of the 4 groups. RESULTS: Renal leptin uptake was substantial, whereas no net uptake of leptin by the splanchnic or pulmonary vascular beds was detected; leg tissue was a net leptin producer. Net leptin release by leg tissue, relative to leg adipose tissue mass, was comparable with that reported previously for abdominal subcutaneous adipose tissue. CONCLUSION: These results confirm that the kidney is a significant site of leptin clearance in humans, whereas pulmonary and splanchnic beds are not.

Absorptiometry, Photon↗

Leptin elimination in hyperleptinaemic peritoneal dialysis patients.

BACKGROUND: Elevated plasma concentrations of leptin, a hormone thought to regulate body composition by influencing food intake/metabolic rate, are prevalent in renal failure patients. The mechanism for these increases is not known, but evidence suggests that simple accumulation due to decreased elimination is insufficient explanation. METHODS: We studied the incidence of hyperleptinaemia in 28 end-stage renal disease patients treated with continuous ambulatory peritoneal dialysis (CAPD), compared with body-mass-index-and sex-matched controls. Results were separated by gender because women have higher leptin concentrations than men. Excretion of leptin and other substances in dialysis fluid was also studied. RESULTS: Hyperleptinaemia was prevalent in women CAPD subjects, but not in men. Plasma leptin concentrations correlated strongly with the daily excretion of leptin in dialysis fluid. Clearance of leptin in dialysis fluid was greater in men than women CAPD subjects. Single regression analysis found that fasting insulin, glucose content of dialysis fluid, plasma albumin, C-reactive protein, erythropoietin dose, urinary creatinine clearance and plasma beta2-microglobulin were not determinants of plasma leptin concentrations. Stepwise forward multiple regression, examining the dependence of plasma leptin on body mass index, renal creatinine clearance, plasma albumin, daily dialysis fluid glucose load, daily leptin in dialysis fluid, erythropoietin dose and plasma C-reactive protein found only erythropoietin dose as a consistent negative predictor of plasma leptin concentrations. CONCLUSIONS: The results suggest that hyperleptinaemia of CAPD was due to predisposing loss of renal elimination capacity combined with increased production due to obesity (more prevalent in women subjects of this study) and potentially female gender.

Adult↗

Leptin response to insulin in humans is related to the lipolytic state of abdominal subcutaneous fat.

Insulin-induced leptinemia in humans appears to be blunted by insulin resistance. We therefore examined the relationship between insulin action and plasma leptin by monitoring regional and whole body lipolysis and plasma leptin levels in 15 premenopausal women (body fat range, 14-59%) during a two-stage euglycemic clamp (insulin was infused 90 min each at 6-10 and 12-20 mU/m2 x min). Microdialysis probes were placed in abdominal and femoral sc adipose tissue. Subjects were given a primed, constant infusion of a stable isotope tracer (2H5-glycerol), and plasma glycerol isotope enrichments were analyzed by mass spectrometry to determine glycerol kinetics. Although there was no mean change in plasma leptin during the clamp (baseline, 16.6 +/- 4.5 ng/mL; final, 16.3 +/- 4.3 ng/mL), there was large interindividual variability in the changes in plasma leptin (range, -18% to +19%). Changes in plasma leptin during the clamp stages were correlated with abdominal dialysate glycerol concentrations (r = -0.44; P < 0.05), but not femoral dialysate glycerol concentrations (r = -0.15), the rate of appearance of glycerol in plasma (r = 0.005), or plasma insulin levels (r = 0.16). The results suggest that insulin-induced changes in plasma leptin are more related to the lipolytic state (i.e. low leptin response when lipolysis is high) of abdominal sc adipose tissue than that of other fat depots.

Abdomen↗

Site-specific phosphorylation of synapsin I by Ca2+/calmodulin-dependent protein kinase II in pancreatic betaTC3 cells: synapsin I is not associated with insulin secretory granules.

Increasing evidence supports a physiological role of Ca2+/calmodulin-dependent protein kinase II (CaM kinase II) in the secretion of insulin from the pancreatic beta-cell, but the precise sites of action are not known. A role of this enzyme in neuroexocytosis is implicated by its phosphorylation of a vesicle-associated protein, synapsin I. Because of emerging similarities to the neuron with respect to exocytotic mechanisms, the expression and phosphorylation of synapsin I in the beta-cell have been studied. Synapsin I expression in clonal mouse beta-cells (betaTC3) and primary rat islet beta-cells was initially confirmed by immunoblot analysis. By immunoprecipitation, in situ phosphorylation of synapsin I was induced in permeabilized betaTC3 cells within a Ca2+ concentration range shown to activate endogenous CaM kinase II under identical conditions. Proteolytic digests of these immunoprecipitates revealed that calcium primarily induced the increased phosphorylation of sites identified as CaM kinase II-specific and distinct from protein kinase A-specific sites. Immunofluorescence and immunogold electron microscopy verified synapsin I expression in betaTC3 cells and pancreatic slices but demonstrated little if any colocalization of synapsin I with insulin-containing dense core granules. Thus, although this study establishes that synapsin I is a substrate for CaM kinase II in the pancreatic beta-cell, this event appears not to be important for the mobilization of insulin granules.

Animals↗

Patterns and potential value of cardiac troponin I elevations after pediatric cardiac operations.

BACKGROUND: Perioperative myocardial injury is a major determinant of postoperative cardiac dysfunction for congenital heart disease, but its assessment during this period is difficult. The objective of this study was to determine the suitability of using postoperative serum concentrations of cardiac troponin I (cTnI) for this purpose. METHODS: Cardiac troponin I levels were measured serially in the serum of patients undergoing uncomplicated repairs of atrial septal defect (n = 23), ventricular septal defect (n = 16) or tetralogy of Fallot (n = 16). The concentrations were correlated with intraoperative parameters (cardiopulmonary bypass time, aortic cross-clamp time, and cardiac bypass temperature), and postoperative parameters (magnitude of inotropic support, duration of intubation, and postoperative intensive care and hospital stay). RESULTS: Postoperative absolute cTnI levels were lesion specific, with a pattern of increase and decrease similar for each lesion. For the total cohort, significant correlations between postoperative cTnI levels at all times (r = 0.43 to 0.83, p < 0.05) until 72 hours were noted for all parameters, except for cardiac bypass temperature. When evaluated as individual procedure groups, no significant relationships were noted in the atrial septal defect group, whereas postoperative cTnI levels were more strongly correlated with all intraoperative and postoperative parameters in the ventricular septal defect group than in the tetralogy of Fallot group. CONCLUSIONS: This study suggests that cTnI values immediately after operation reflect the extent of myocardial damage from both incisional injury and intraoperative factors. Cardiac tropinin I levels in the first hours after operation for congenital heart disease are a potentially useful prognostic indicator for difficulty of recovery.

Body Temperature↗

High-flux dialysis lowers plasma leptin concentration in chronic dialysis patients.

Leptin is a protein produced by fat cells and involved in body weight regulation. Plasma leptin is significantly higher in some hemodialysis (HD) patients than in normal controls. We examined the influence of dialyzer membrane biocompatibility and flux on elevated plasma leptin concentrations in hemodialysis patients. Employing a crossover design, leptin and tumor necrosis factor-alpha (TNF-alpha) levels were serially determined in eight chronic dialysis patients. Patients were dialyzed sequentially on low-flux cellulosic (TAF) dialyzers, low-flux (F8) polysulfone, high-flux (F80B) polysulfone, then low-flux polysulfone and cellulosic dialyzers again. Mean leptin concentrations were similar when low-flux polysulfone or cellulosic dialyzers were employed (141.9+/-24.2 microg/L versus 137.8+/-18.4 microg/L, respectively (P=NS). In contrast, leptin fell significantly on the high-flux polysulfone dialyzer (99.4+/-16.2 microg/L) compared with cellulosic (P < 0.005), and low-flux polysulfone dialyzers (P < 0.02). Leptin clearance by the high-flux polysulfone dialyzer was significantly higher than the low-flux dialyzers (50.4+/-21.5 v -9.6+/-10.3 mL/min; P=0.043), but did not account fully for the 30% decline in plasma leptin during the high-flux arm of the study. Concentrations of TNF-alpha were lower when high-flux polysulfone dialyzers were employed, but there was no correlation of individual TNF-alpha levels with leptin concentrations. High-flux dialysis lowers plasma leptin concentrations an average of 30%, but biocompatibility does not influence leptin levels. The decrease in plasma leptin on high-flux dialysis cannot be explained solely by enhanced clearance.

Cross-Over Studies↗

Plasma leptin concentrations in newborns of diabetic and nondiabetic mothers.

Leptin plays an important role in regulating body composition through modulation of appetite and energy expenditure. We hypothesized that leptin levels in umbilical cord blood correlate with newborn body weight and habitus. We also hypothesized that infants of diabetic mothers would demonstrate altered leptin metabolism. Venous blood was sampled at birth from the umbilical cords of 105 infants (74 infants of nondiabetic mothers, and 31 infants of diabetic mothers). Thirty-nine mothers had plasma leptin concentrations measured. Analysis was done using Student's t-test, Pearson's correlation, and Spearman's correlation. Univariate/multivariate regression was used for analysis of factors associated with leptin concentration in umbilical cord plasma. Maternal and newborn characteristics were correlated with log leptin levels in umbilical venous plasma. Leptin concentration in umbilical cord plasma correlated best with birth weight for newborns of both nondiabetic and diabetic mothers (p < 0.01 for either). Umbilical cord plasma concentration of leptin was higher in infants of diabetic mothers than in infants of nondiabetic mothers (2.53 +/- 1.09 vs. 1.76 +/- 0.82; p < 0.001). Multiple regression analysis revealed a significant (p < 0.01) relationship between umbilical cord leptin level and newborn birth weight, as well as maternal DM, but not with gestational age. Similarly, there was no significant correlation with maternal plasma leptin concentration. The strong correlation of leptin concentration in umbilical cord plasma with newborn birth weight, and the lack of significant correlation with maternal leptin plasma levels, suggest that normal fetal leptin metabolism reflects fetal size and/or body habitus independent of maternal leptin metabolism. On the other hand, the higher umbilical plasma levels in infants of diabetic mothers may reflect an influence of altered fetal insulin homeostasis on fetal leptin metabolism, and suggests that maternal diabetes may influence fetal leptin metabolism.

Adolescent↗

Hyperleptinaemia of end-stage renal disease is corrected by renal transplantation.

BACKGROUND: Previous studies have reported that patients with end-stage renal disease (ESRD) have elevated plasma leptin concentrations, but the cause and significance of the elevations are unknown. We studied leptin concentrations in 29 adults undergoing renal transplantation, to determine if restoration of renal function reduced leptin concentrations in ESRD. METHODS: Leptin concentrations were measured by radioimmunoassay in plasma specimens collected within 1 week before transplant, 6 days post-transplant, and 60 days post-transplant. RESULTS: Mean plasma leptin concentrations were higher in both male and female ESRD patients compared with a control population of similar age and body mass index (BMI), but most of the disparity was due to a minority of patients with grossly elevated concentrations; the majority of ESRD patients had normal or near-normal leptin concentrations after accounting for their adiposity with BMI. Six days after successful renal transplantation, average plasma leptin concentrations decreased to control levels. The grossly elevated pretransplant concentrations in a minority of patients were greatly reduced in relation to BMI, and the reduction persisted to 60 days post-transplant. The decrease in creatinine with transplant did not correlate with the decrease in leptin. CONCLUSIONS: These results demonstrate that restoration of renal function in ESRD patients reduces hyperleptinaemia, which provides further evidence of a cause/effect relationship between impaired renal function and abnormal leptin metabolism.

Adult↗