OBJECTIVEIt is generally agreed that breastfeeding has a positive effect on the metabolic situation in diabetic mothers. However, negative long-term effects are described for breastfed offspring of diabetic women. It is unknown if the composition of free amino acids (FAAs) in breastmilk of women with gestational diabetes mellitus (GDM) differs from that in milk of healthy women. We studied the amount of FAAs in breastmilk of women with GDM and women with normal glucose tolerance (NGT).SUBJECTS AND METHODSHuman milk samples of 68 women (21 GDM and 47 NGT) were analyzed. Contents of FAAs in milk samples, obtained within the first 4 days after delivery (colostrum) and 6 weeks later (mature milk), were analyzed using high-performance liquid chromatography. Total amounts of FAAs in colostrum and in mature milk were compared between the groups. The impact of maternal age, body mass index (BMI), gestational age at birth, birth weight, and diagnosis of GDM on the total amount of FAAs was evaluated.RESULTSOverall, the total amount of FAAs increased significantly from colostrum to mature milk in both groups (p<0.001). The total amount of FAAs did not significantly differ between GDM and NGT in colostrum and in mature milk (1,560 μmol/L vs. 1,730 μmol/L and 2,440 μmol/L vs. 2,723 μmol/L, respectively). No significant influence on the total amount of FAAs at both measurements of maternal age, BMI, gestational age at birth, birth weight, and diagnosis of GDM could be observed by regression analyses.CONCLUSIONThe content of FAAs of human milk does not significantly differ between women with GDM and women with NGT.
Monoamine oxidase-B (Mao-B) catalysing the breakdown of the neurotransmitter dopamine, is known to be involved in the pathophysiology of Parkinson's (PD) and Alzheimer's disease (AD). Increased brain Mao-B activity is associated with AD. This alteration can also be seen in platelets, albeit the cause has hitherto remained elusive. To gain a deeper understanding of the etiology of AD, the platelet proteome was characterised, (2D DIGE pH6-9, including Mao-B) from 150 individuals: 34 AD, 13 vascular dementia, 15 non-demented PD patients, 49 matched controls, 18 oldest old and 21 young individuals. One significant change was noted after applying false discovery rate with the upregulation of the Mao-B expression (30% adjusted P value < 0.001; effect size 1.31) in AD compared to age- and sex-matched controls. In contrast, Mao-B levels were unchanged in PD to matched controls. Western blot and mRNA analyses verified these findings. Moreover, Mao-B concentration correlated with age in the cognitive healthy individuals (r = 0.53; P < 0.001) and PD patients but not in those suffering from AD (r = − 0.03; P = 0.874). Mao-B activity correlated with the increased Mao-B protein expression in AD (r = 0.81; P = 0.016). We suggest that Mao-B platelet protein level may serve as a biomarker for age-related dementia, especially AD.
OBJECTIVE:The rule of thumb (ROT) method is used to estimate energy expenditure (EE) at bedside. ROTs are fixed numbers of calories given daily per kilogram of body weight. Textbooks nevertheless indicate that age and body mass index (BMI) affect EE. This should also affect ROTs. We thus scrutinized the impact of BMI, age, and sex on ROTs, compared the results to the often used 25 kcal/kg ROT, and calculated a BMI-, age-, and sex-adjusted ROT table containing calories per kilogram in the basal state. METHODS:We based calculations on the Harris-Benedict equation corrected for systematic error in women and obesity obtained in previous validation studies and used age, weight, and height of 676 consecutively admitted patients from five hospitals. RESULTS:The calculated ROTs continuously decreased from normal weight (20.8 ± 2.2 kcal/kg) to overweight (18.9 ± 1.8 kcal/kg) and obese patients (15.5 ± 1.6 kcal/kg, P < 0.001). However, not only BMI but also increasing age reduced the ROT significantly within each BMI category (P < 0.01 except for BMI > 35 kg/m²), resulting in a BMI- and age-adjusted ROT spectrum of 12-27 kcal/kg in the total population. The 25-kcal ROT, even when used with normal ("ideal") body weight, overestimated calculated ROTs in more than 95% of patients. CONCLUSION:We found that both BMI and age significantly impacted ROT estimates. Thus, using one single fixed ROT for all patients independent of age and BMI does not seem appropriate. We consequently suggest a calculated table of BMI-, age-, and sex-adjusted ROTs where the results of resting EE were multiplied with 1.1, 1.2, and 1.3 and separately listed in the table to account for activity/stress factors.
Background: Recommendations to use other criteria than N-balance for defining protein requirements have been proposed. However, little evidence to support other measures such as physiological functions is available.Objective: To investigate the effects of a usual (UP) versus a high protein (HP) diet on muscle function, cognitive function, quality of life and biochemical regulators of protein metabolism.Design: A randomised intervention study was conducted with 23 healthy males (aged 19-31 yrs). All subjects consumed a Usual Protein (UP) diet (1.5 g protein/kg BW) for a 1-wk run-in period before the intervention period where they were assigned to either a UP or a High Protein (HP) diet (3.0 g protein/kg BW) for 3-wks with controlled intake of food and beverages. Blood and urine samples were taken along with measurements of physiological functions at baseline and at the end of the intervention period.Results: The HP group improved their reaction time significantly compared with the UP group. Branched chain amino acids and phenylalanine in plasma were significantly increased following the HP diet, which may explain the improved reaction time.Conclusion: Healthy young males fed a HP diet improved reaction time. No adverse effects of the HP diet were observed.This trial was registered at www.clinicaltrials.govas NCT00621231. (C) 2010 Elsevier Ltd and European Society for Clinical Nutrition and Metabolism. All rights reserved.
Purpose of reviewIn various diseases amino acid imbalances occur which have been described especially in the 1980s of the last century. It was noted that some of these imbalances may exert specific negative physiological effects. However, mainly because of economic reasons, no real attempts have been made to develop special amino acid solutions for disease processed associated with amino acid imbalances to restore normal amino acid concentrations.Recent findingsA recent study performed in the fruit-fly Drosophila indicated that modifying the amino acid supply may influence both lifespan and fecundity. It was shown that adding amino acids but not carbohydrates or fat to a restricted diet decreases lifespan. In contrast, administration of certain amino acids especially of methionine increased fecundity without decreasing lifespan. It is known that dietary restriction can decrease fecundity at the cost of a prolonged lifespan.SummaryRecent investigations revealed that amino acids are powerful molecules in mediating cell signalling. Therefore, it can be hypothesized that the severe amino acid imbalances as observed in uraemia or liver failure may exert a relevant impact on various physiologic processes and on organ function. The recent results described in Drosophila should stimulate a new research area on the effect of amino acid supply in various disease processes.
Studies investigating the impact of high meat intake on cognition have yielded contradictory results as some show improved cognitive performance, whereas others report an increase of risk factors for dementia. However, few studies were designed to directly assess the effect of a high protein (HP) diet on both cognitive performance and corresponding biochemical parameters. A randomised intervention study was conducted with 23 healthy males (aged 19-31 years) to investigate the effects of a usual (UP) versus a HP diet on cognitive function and on the platelet proteome a well-established model for neurons. The study individuals were assigned to either a UP diet (15% energy) or a HP diet (30% energy) for 3 weeks with controlled intake of food and beverages. Blood samples were taken along with measurements of cognitive functions at the beginning and at the end of the intervention period. Among 908 reproducibly studied platelet proteins only the level of monoamine oxidase B (MaoB), a neurotransmitter degrading enzyme, decreased by 26% significantly (adjusted P value < 0.05) due to the HP diet. In addition, we found a correlation (r = 0.477; P < 0.02) between the decrease of MaoB expression and the shortened reaction time (cognitive function) which is in accordance with reports that dementia patients show increased MaoB activity. Plasma vitamin B(12) concentration was increased by the HP diet and correlates inversely with platelet MaoB expression (r = -0.35; P < 0.02). Healthy young males on a HP diet showed improved cognitive function and counteract well-known dementia biomarkers such as platelet MaoB and components of the methylation cycle such as vitamin B(12) and homocysteine.
Moderate hyperhomocysteinemia is a well-established coronary risk factor that develops when dietary supply with folate and/or vitamin B12 is inadequate. Recently, stimulated peripheral blood mononuclear cells were shown to produce homocysteine. Thus, the stimulated immune system may contribute to moderate hyperhomocysteinemia during certain diseases. Because multiple trauma and sepsis are accompanied by often strong inflammatory responses, we investigated whether hyperhomo-cysteinemia may develop in patients. Total homocysteine and cysteine concentrations were measured in 83 plasma specimens from 18 patients (14 men, 4 women; 15 posttrauma with sepsis and 3 with sepsis alone) every third day of follow-up. Finally results were compared with concentrations of cytokines tumor necrosis factor (TNF)-α and interleukin (IL)-6, the immune activation marker neopterin and the extent of tryptophan degradation as indicated by the kynurenine-to-tryptophan ratio (kyn/trp). Compared with baseline, average total homocysteine (P < 0.05, d 4-d 10) and cysteine (P < 0.05, d 7-d 13) concentrations increased during follow-up of patients. However, only the increase of homocysteine was related to the survival status: total homocysteine was significantly higher in nonsurvivors (P < 0.05, d 4 and d 10) than in survivors, whereas cysteine concentrations increased in both subgroups. Homocysteine correlated with kyn/trp but not with neopterin concentrations. Increase of total homocysteine is common in patients after trauma with unfavorable outcome. Because all patients received standardized enteral nutrition after the end of hypodynamic shock, inconsistent vitamin supply is unlikely to be the reason for hyperhomocysteinemia in some of the patients; rather, it is associated with a stronger proinflammatory response. Certainly, the number of patients in our study is still small and results can only be regarded as preliminary.
Die essenzielle Aminosure Tryptophan ist für den Aufbau von Proteinen von zentraler Bedeutung. Daneben ist Tryptophan aber auch Substrat für zwei wichtige biochemische Stoffwechselwege: (1) die Bildung des Neurotransmitters Serotonin (5-Hydroxytryptamin) durch das Enzym Tryptophan-5-Hydroxylase und (2) die Biosynthese von Kynureninderivaten und Nicotinamid-Adenin-Dinukleotiden, die durch die Enzyme Tryptophan-2,3-Dioxygenase (TDO, Tryptophanpyrrolase) und Indolamin-2,3-Dioxygenase (IDO) (EC 1.13.11.17) eingeleitet wird (Abb. 1) Abb. 1. Neben seiner Bedeutung als Proteinbaustein ist Tryptophan auch Substrat für die Biosynthese des Neurotransmitters Serotonin (5-Hydroxytryptamin) durch das Enzym Tryptophan-5-Hydroxylase (T5H) und von Kynureninderivaten und Nicotinamid-Adenin-Dinukleotiden (NAD, NADH), die durch die Enzyme Tryptophan 2,3-Dioxygenase (TDO) und Indolamin 2,3-Dioxygenase (IDO) eingeleitet wird.
Glutamine depletion in skeletal muscle of severely ill patients is an outstanding metabolic marker related to acute skeletal muscle wasting. To date it is unclear why intracellular glutamine concentrations are lowered in skeletal muscle to such an extent when simultaneously muscular glutamine synthesis and release are stimulated. This essay introduces a hypothesis that intracellular glutamine deficiency is part of a metabolic program maintaining cell integrity. This program seems to resemble short-term hibernation, which can be observed in various mammalian species during periods of starvation. Interestingly, even in septic patients who do not survive, there are no signs of apoptosis or necrosis in affected organs. Therefore, in severe illness evolutionarily conserved energy saving programs may be switched on for protecting the organs in a mode reminiscent of hibernation. This would explain the low energy expenditure as described for septic patients and the limited success of nutrition in avoiding skeletal muscle atrophy in sepsis.
Immune system activation and inflammation accompanies immune dysfunction in trauma and sepsis patients. Immunodeficiency may develop in such patients as one consequence of an activated chronic pro-inflammatory response. According to recent data, degradation of L-tryptophan (TRP) via the kynurenine (KYN) pathway by the cytokine-inducible enzyme indoleamine 2,3-dioxygenase (IDO) could represent an important contributor to the deficient responsiveness of immunocompetent cells. Compared to healthy controls, patients post trauma or with sepsis had increasing KYN concentrations and KYN to TRP ratios (KYN/TRP) whereas TRP concentrations decreased. Likewise, concentrations of cytokines tumor necrosis factor-α (TNF-α) and interleukin-6 (IL-6) and of immune activation marker neopterin increased in patients (all p < 0.001). Furthermore in patients KYN/TRP, KYN and neopterin concentrations were further increasing (all p < 0.001), whereas the changes of TRP, TNF-α and IL-6 concentrations were not significant. Compared to the survivors, the non-survivors had a higher concentration of KYN, neopterin, TNF-α and IL-6 as well as a higher KYN/TRP ratio. KYN/TRP correlated with neopterin (p < 0.001) and also with TNF-α (p < 0.01) and IL-6 concentrations (p < 0.05) and inversely with the in vitro response of stimulated monocytes. We conclude that increased TRP degradation in patients post trauma is closely associated with immune activation. Cytokines released during the pro-inflammatory response may induce the activity of IDO and thus accelerate TRP degradation. Thus, increased IDO activity most likely represents a result of host response to pro-inflammation in patients. Data support a possible role of inflammation-induced IDO in the diminished immunoresponsiveness in patients.
Immune dysfunction in trauma patients is associated with immune system activation and inflammation. The cytokine-inducible enzyme IDO (indoleamine 2,3-dioxygenase) initiates the degradation of the essential aromatic amino acid tryptophan via the kynurenine pathway and could contribute to deficient immune responsiveness. Activated IDO is indicated by an increased kyn/trp (kynurenine/tryptophan) ratio. The aim of the present study was to investigate whether tryptophan degradation is associated with outcome in patients post-trauma. Tryptophan and kynurenine concentrations were measured by HPLC in serum specimens of 15 patients post-trauma during 12-14 days of follow-up. Up to five samples within this observation period from each patient were included in this analysis, and a total a 69 samples were available. For further comparisons, concentrations of the immune activation marker neopterin were measured. Compared with healthy controls, the average kyn/trp ratio and kynurenine concentrations were increased in patients, whereas tryptophan concentrations were decreased. During follow-up, increased kyn/trp ratio and kynurenine concentrations (all P<0.001) were observed, whereas the changes in tryptophan concentrations were not significant. Non-survivors had higher kyn/trp ratios and kynurenine concentrations compared with survivors. The kyn/trp ratio correlated with neopterin concentrations (r(s)=0.590, P<0.001). In conclusion, these results imply that increased tryptophan degradation in patients is due to activated IDO, which most probably is a consequence of a host defence response. These findings support a possible role for IDO in the development of immunodeficiency and death in patients.
Immune system activation and inflammation accompanies immune dysfunction in trauma and sepsis patients. Tryptophan degradation via the kynurenine pathway by the cytokine-inducible enzyme indoleamine 2,3-dioxygenase (IDO) could contribute to the deficient responsiveness of immunocompetent cells. Activated IDO in patients after trauma and with sepsis is indicated by an increased kynurenine to tryptophan ratio (kyn/trp), which was found to be associated with poor outcome of patients. In this study, tryptophan and kynurenine concentrations in 18 patients post trauma or with sepsis during 12-14 days of follow up (up to 84 specimens were available) were compared to concentrations of neopterin and cytokines tumor necrosis factor-α (TNF-α) and interleukin- 6 (IL-6) and the in vitro response of lipopolysaccharide-stimulated monocytes. Compared to healthy controls, average kyn/trp and kynurenine, TNF-α, IL-6 and neopterin concentrations were increased in patients, and tryptophan concentrations were decreased. During follow-up, only kyn/trp, kynurenine and neopterin concentrations (all p <0.001) were increasing, whereas the changes of tryptophan, TNF-α and IL-6 concentrations were not significant. Non-survivors presented not only with higher kyn/trp and with higher kynurenine and neopterin concentrations than survivors, but also TNF-α and IL-6 concentrations were higher. Kyn/trp correlated with neopterin (rs = 0.590; p <0.001) and also with TNF-α (rs = 0.374; p <0.01) and IL-6 concentrations (rs = 0.262; p <0.05) and inversely with the in vitro response of stimulated monocytes. Data imply that increased tryptophan degradation in patients post trauma is due to IDO activation. Increased IDO activity most likely represents a result of host defence response in patients, and data support a possible role of IDO to diminish immunoresponsiveness in such patients.
Recently we showed that the polyunsaturated fatty acid (PUFA) docosahexaenoic acid (DHA) sensitizes arsenic trioxide (As2O3)-resistant tumor cells to a clinically achievable concentration (1 microM) of As2O3 via a reactive oxygen species (ROS)-dependent mechanism. The aim of the present study was to evaluate, whether this combined effect of As2O3 and DHA is also applicable to other PUFAs [i.e., eicospentaenoic acid (EPA), arachidonic acid (AA), and gamma-linolenic acid (GLA)]. Fourteen tumor cell lines were incubated with As2O3 (1 microM), PUFA (25-100 microM), or the combination thereof (+/- vitamin E). Cell viability (colorimetric), apoptosis (bivariate annexin V/propidium iodide staining, detection of hypodiploid DNA), and thiobarbituric acid reactive substances (TBARS) were evaluated. Twelve of 14 As2O3-resistant cell lines tested were resistant to PUFA monotherapy. However, combined treatment with As2O3 and either PUFA significantly reduced cell viability in a dose-dependent manner with AA being the most potent As2O3 enhancer. The combined cytotoxic effect of As2O3/AA treatment was due to induction of apoptosis, preceded by increased intracellular TBARS and was abolished by the antioxidant vitamin E. Importantly, the combined effect of As2O3 and AA was selectively toxic for malignant cells because no cytotoxic effect was observed in normal skin fibroblasts and human microvascular endothelial cells. In conclusion, our study shows that also other PUFAs than DHA-and in particular the omega-6-PUFA AA--can be used as effective modulators of tumor cell chemosensitivity to clinically achievable concentrations of As2O3. Enhanced lipid peroxidation most likely constitutes the key mechanism for the combined effect.
OBJECTIVE:To investigate the effect of neuromuscular electrical stimulation (NMES) on skeletal muscle metabolism after major abdominal surgery. SUMMARY BACKGROUND DATA:Protein catabolism associated with surgical interventions leads to reduced muscle strength, increased clinical complications and prolonged convalescence. Immobilization is suggested as a major stimulus for muscle wasting. This study investigates the potency of NMES on skeletal muscle growth factors and degradation processes in surgical patients. METHODS:This observer blind study included 26 patients after major abdominal surgery mainly due to cancer aged 60 +/- 10 years. Starting on the first postoperative day, 1 randomly assigned thigh of each patient was treated on 4 consecutive days with NMES, whereas the other leg was used as sham-stimulated control. Thereafter, muscle biopsies from both legs were performed. Differences in mRNA level, protein expression, and enzyme activity between legs were analyzed by cross-over analysis of variance (Clinical Trial Registration Number: NCT00635440). RESULTS:NMES significantly increased total RNA content and total sarcoplasmatic protein content. NMES significantly reduced ubiquitin-conjugated sarcoplasmatic proteins and proteasome activity. The mechano growth factor mRNA level correlated positively with the applied current and negatively with the body mass index of the patients. The increase in insulin like growth factor-1Ea mRNA after NMES correlated negatively with the age of the patients. CONCLUSIONS:This study shows that NMES significantly increases total RNA content and reduces protein degradation in postoperative patients. Moreover, the induction of growth factors by NMES reveals dependency on body mass index, age, and applied current. We conclude that NMES is a useful clinical tool to reduce protein catabolism in postoperative patients.