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[Analysis of platelet shape change, inositol metabolism, and Ca mobilization in patients with platelet dysfunction].

Agonists-induced platelet shape change, inositol metabolism, and Ca mobilization were investigated in patients with various platelet dysfunctions. The platelet shape change determined by our method revealed that arachidonate-induced platelet shape change was completely defective in patients with cyclo-oxygenase (CO) deficiency (A). STA2-induced platelet shape change was also defective in one of five patients with impaired aggregation to STA2 (B). Thrombin-induced platelet shape change was weak in patients with Bernard-Soulier syndrome. In patient with Hermansky-Pudlak syndrome, the platelets did not respond normally to STA2, arachidonate or PMA. These findings suggested that the determinations of platelet shape change by our method was useful in diagnosing platelet dysfunctions. Inositol metabolism and Ca mobilization in response to thrombin, STA2, or NaF were also investigated in patient A,B, and impaired aggregation to A23187 in patient C. The responses were normal in patient A, suggested that CO activity did not affect them. Inositol metabolism was also normal in patient C, although Ca mobilization in response to A23187 was delayed, and that in response to thrombin was defective in the absence of extracellular Ca2+. This suggests that the patient's platelets have a defective IP3-induced Ca mobilization pathway. STA2 selectively failed to induce IP3 formation and Ca mobilization in patient B, although 3H-labelled thromboxane ligand (3H-U46619) bound to the patient's platelets, normally. These findings suggested that the patient's platelets have a defect in postreceptor signal transduction, especially thromboxane receptor-mediated phospholipase C activation pathway.

Blood Platelet Disorders↗

Aberrant sphingomyelin/ceramide metabolic-induced neuronal endosomal/lysosomal dysfunction: potential pathological consequences in age-related neurodegeneration.

Alterations in the trafficking and function of the endocytic pathway have been extensively documented to be one of the earliest pathological changes in sporadic Alzheimer's disease (AD). Although the pathophysiological consequences of these endosomal/lysosomal changes are currently unknown, several recent studies have suggested that such changes in endocytic function are able to cause a redistribution of several lysosomal hydrolases into early endosomes, leading to the overproduction of neurotoxic amyloid peptide. Recently, we and others have demonstrated that abnormal endocytic pathology within post-mitotic neurons can, in part, be attributed to alterations in sphingomyelin/ceramide metabolism, resulting in the intracellular accumulation of ceramide. Once inside the cell, the ability of ceramide to physically alter membrane structure, formation, and fusion, rather than serving solely as a lipid secondary messenger, may severely compromise normal endocytic trafficking. In this review, we will discuss the potential pathological effects of abnormal sphingomyelin/ceramide metabolism on intracellular vesicular transport in relation to both amyloid accumulation in AD and various neurodegenerative diseases associated with lysosomal abnormalities.

Aged↗

Cecal ligation and puncture with total parenteral nutrition: a clinically relevant model of the metabolic, hormonal, and inflammatory dysfunction associated with critical illness.

BACKGROUND: Standard rat cecal ligation and puncture (CLP) results in only transient hyperglycemia, making an examination of the effects of glucoregulatory agents, such as insulin, on the morbidity and mortality of CLP problematic. Accordingly, we sought to develop a model of rat CLP with prolonged hyperglycemia through continuous infusion of total parenteral nutrition (TPN) post CLP. MATERIALS AND METHODS: Polyethylene catheters were implanted into the femoral vein of female Sprague Dawley rats (245-265 g) which were subsequently subjected to CLP. TPN was initiated at different intervals following CLP, and mortality, bacteremia, blood glucose, hormonal, and inflammatory responses were monitored. RESULTS: Without TPN, CLP resulted in significantly lower blood glucose at 22 h post CLP. In contrast, CLP rats receiving TPN exhibited significant prolonged hyperglycemia that was responsive to insulin treatment. Mortality and hyperglycemia tended to increase with puncture size in CLP TPN rats, with early initiation of TPN leading to poorer outcome. There were time-dependent differences in bacteremia and mortality based on time of TPN initiation. Levels of insulin, leptin, and glucagon were significantly elevated in CLP TPN rats, as were many inflammatory markers. Organ damage was evident as early as 12 h post CLP and blood cell kinetics indicated significantly depressed neutrophil and lymphocyte counts. CONCLUSIONS: Our results indicate that addition of TPN to CLP provides a clinically relevant animal model of critical illness with associated hyperglycemia that may provide utility for the testing of glucoregulatory and other therapeutic modalities.

Animals↗

Erectile dysfunction as a predictor of the metabolic syndrome in aging men: results from the Massachusetts Male Aging Study.

PURPOSE: The metabolic syndrome, characterized by central obesity, insulin dysregulation, abnormal lipids and borderline hypertension, is a precursor state for cardiovascular disease. We determined whether erectile dysfunction is predictive of the metabolic syndrome. MATERIALS AND METHODS: Data were obtained from the Massachusetts Male Aging Study, a population based prospective cohort observed at 3 points during approximately 15 years (T(1)-1987 to 1989, T(2)-1995 to 1997, T(3)-2002 to 2004). The metabolic syndrome was defined by using a modification of the Adult Treatment Panel III guidelines. The association between erectile dysfunction and the metabolic syndrome was assessed using relative risks and 95% confidence intervals estimated using Poisson regression models. RESULTS: Analysis was conducted of 928 men without the metabolic syndrome at T(1). There were 293 men with incident metabolic syndrome, of which 56 had erectile dysfunction at baseline. Body mass index and the presence of 1 or 2 conditions constituting the metabolic syndrome definition were the strongest predictors of the metabolic syndrome. The association of erectile dysfunction with the metabolic syndrome (unadjusted RR 1.35, 95% CI 1.01-1.81) was modified by body mass index, with a stronger effect of erectile dysfunction in men with body mass index less than 25 (adjusted RR 2.09, 95% CI 1.09-4.02), and no erectile dysfunction and metabolic syndrome association in men with body mass index 25 or greater (adjusted RR 1.06, 95% CI 0.76-1.50). CONCLUSIONS: Erectile dysfunction was predictive of the metabolic syndrome only in men with body mass index less than 25. This finding suggests that erectile dysfunction may provide a warning sign and an opportunity for early intervention in men otherwise considered at lower risk for the metabolic syndrome and subsequent cardiovascular disease.

Adult↗

Polymorphonuclear leucocyte dysfunction during short term metabolic changes from normo- to hyperglycemia in type 1 (insulin dependent) diabetic patients.

Polymorphonuclear leucocyte (PMN) ingestion of particles coated with lipopolysaccharide (LPS) from Escherichia coli was compared to other PMN functions in seven patients with insulin dependent diabetes mellitus (IDDM) during short-term controlled metabolic changes from normo- to hyperglycemia without ketoacidosis. Factors known to interfere with PMN functions were excluded. PMN ingestion of particles coated with both LPS and bovine serum albumin became reduced from normo- to hyperglycemia. PMN motility was impaired in IDDM, but did not seem to be affected by short-term changes in metabolic control. PMN metabolism did not change from normo-to hyperglycemia. Particle-uptake by diabetic PMN is impaired after short term hyperglycemia in the range normally occurring in diabetics in every-day life.

Adult↗

Integrated Multi-omics Profiling of 2,4-dinitrochlorobenzene (DNCB)-induced Atopic Dermatitis in Mice Reveals a Coordinated Network of Barrier Dysfunction, Immune Activation, and Metabolic Reprogramming.

Atopic dermatitis (AD) is caused by a combination of epidermal barrier defect and immune imbalance. However, the molecular networks between these structural abnormalities and metabolic variations are unclear. This study aim of this research was to examine the concurrent molecular alterations in skin barrier damage and metabolic disorders in an AD-like mouse model by a multi-omics strategy. A 2,4-dinitrochlorobenzene (DNCB)-induced AD-like mouse model was established and the skin tissues were examined through the combination of transcriptomic, quantitative proteomic, and metabolomic analyses. Cross-omics correlation and network analyses were performed to identify consistently abnormal molecular pathways and crucial regulatory molecules. DNCB treatment caused severe epidermal hyperplasia, and prominent infiltration of CD3⁺ T cells, F4/80⁺ macrophages, and mast cells. Transcriptomic and proteomic analysis indicated significant disruption in keratinocyte differentiation, extracellular matrix organization, and cornified envelope formation pathways. Combined analysis detected 171 molecules which were simultaneously altered at both mRNA and protein levels, and network analysis identified FLG2 and KRT6B as central barrier-related molecules. Pathway enrichment analysis consistently showed the participation of AMPK and PPAR signaling pathways. Metabolomic analysis also revealed coordinated changes in lipid and amino acid metabolism which were closely associated with cornified envelope-associated genes and collagen-modifying enzymes. These findings indicate a close relationship between barrier, immune and metabolic regulation in DNCB-induced dermatitis and provide a multi-omics resource for future mechanistic studies of atopic skin inflammation.

Animals↗

Alleviation of myocardial dysfunction and abnormal lactate metabolism during coronary stenosis in dogs by ICI 118,551.

Hemodynamic parameters, segment shortening in the ischemic myocardium and cardiac lactate extraction were estimated in the presence of a critical coronary stenosis, before and after administration of the selective beta 2-adrenoceptor antagonist, ICI 118,551, or the beta 1-adrenoceptor antagonist, atenolol, to anesthetized dogs. ICI 118,551 (0.2 and 0.5 mg/kg i.v.) and atenolol (0.2 mg/kg i.v.) produced significant decreases in both heart rate (by 6, 14 and 20% of the predrug value, respectively) and maxLVdP/dt (by 15, 26 and 24% of the predrug value, respectively). ICI 118,551 (0.5 mg/kg) and atenolol significantly improved the impaired shortening of the myocardial segment when compared with the change seen after saline administration. ICI 118,551 at both doses and atenolol significantly increased depressed cardiac lactate extraction while saline did not. Increasing heart rate by pacing abolished the beneficial effects of ICI 118,551 and atenolol on ischemic myocardial segment shortening and lactate metabolism. The data suggest that not only beta 1- but also beta 2-adrenoceptor blockade may contribute to the amelioration of myocardial ischemia in a model of coronary stenosis.

Angina Pectoris↗

Bedside microdialysis reflects dysfunction of cerebral energy metabolism in patients with aneurysmal subarachnoid hemorrhage as confirmed by 15 O-H2 O-PET and 18 F-FDG-PET.

OBJECTIVE: To compare microdialysis (MD) and positron emission tomography (PET) in the detection of ischemia in aneurysmal subarachnoid hemorrhage (SAH) patients. METHODS: 15 SAH patients (13F/2M, 48+/-13 years, WFNS Grade I-V) were prospectively included in the study. A MD-catheter was inserted into the brain parenchyma most likely to be affected by vasospasm directly after aneurysm clipping. Glucose, pyruvate, lactate, glutamate and glycerol were analyzed hourly (CMA 600). 15O-H2O-PET scans (n=10) and 18F-FDG-PET scans (n=13) were performed between the day 2 and 17 after SAH. 15O-H2O-PET data were merged with CT scans to provide quantification of rCBF within the MD-ROI (rCBFMD; Amira, ZIB Berlin, Germany). 18F-FDG-PET data were evaluated visually by visual analysis. RESULTS: Regions of glucose hypometabolism were observed in 10 patients with symptoms of ischemia. Their rCBF was lower compared to asymptomatic patients (p<0.05). The MD levels of glutamate, lactate, the L/P ratio and glycerol were significantly higher in symptomatic than asymptomatic patients (p<0.05). Out of all measured MD parameters, glutamate showed the closest correlation with rCBF (r=-0.66, p=0.014). Microdialysis parameters were well correlated with glucose hypometabolism (18F-FDG-PET) and symptoms of ischemia. However, the threshold for a metabolic derangement was above the limits of cerebral ischemia defined by PET. CONCLUSION: MD is a useful tool to monitor ischemia, especially in patients with high-grade SAH.

Adult↗

Metabolic basis for contractile dysfunction following chronic partial bladder outlet obstruction in rabbits.

Prior studies have shown that partial outlet obstruction of the rabbit bladder causes a progressive increase in bladder mass, a progressive decrease in the contractile response to different forms of stimulation, and a selective decrease in the activity of mitochondrial enzymes. In this investigation the contractile responses to field stimulation and bethanechol were directly correlated with the activity of citrate synthase as a function of both the duration of obstruction and the bladder mass. Partial bladder outlet obstruction was surgically induced in twenty New Zealand White rabbits. The bladders were then rapidly excised at 30, 40, 90, 105 or 150 days post obstruction. The contractile responses to field stimulation (32 Hz) and bethanechol (250 microM) were determined. The remainder of the bladders were frozen and used for citrate synthase activity determinations. The data were grouped for analysis both by the duration of obstruction and by the bladder mass. Chronic partial outlet obstruction caused a parallel decline in the activity of citrate synthase and in the response of the obstructed tissue to stimulation.

Animals↗

Dysfunctions of cellular oxidative metabolism in patients with mutations in the NDUFS1 and NDUFS4 genes of complex I.

The pathogenic mechanism of a G44A nonsense mutation in the NDUFS4 gene and a C1564A mutation in the NDUFS1 gene of respiratory chain complex I was investigated in fibroblasts from human patients. As previously observed the NDUFS4 mutation prevented complete assembly of the complex and caused full suppression of the activity. The mutation (Q522K replacement) in NDUFS1 gene, coding for the 75-kDa Fe-S subunit of the complex, was associated with (a) reduced level of the mature complex, (b) marked, albeit not complete, inhibition of the activity, (c) accumulation of H(2)O(2) and O(2)(.-) in mitochondria, (d) decreased cellular content of glutathione, (e) enhanced expression and activity of glutathione peroxidase, and (f) decrease of the mitochondrial potential and enhanced mitochondrial susceptibility to reactive oxygen species (ROS) damage. No ROS increase was observed in the NDUFS4 mutation. Exposure of the NDUFS1 mutant fibroblasts to dibutyryl-cAMP stimulated the residual NADH-ubiquinone oxidoreductase activity, induced disappearance of ROS, and restored the mitochondrial potential. These are relevant observations for a possible therapeutical strategy in NDUFS1 mutant patients.

Adenosine Triphosphate↗

Multiple metabolic factors and kidney dysfunction: Causal evidence and translational insights from a mendelian randomization study.

Chronic kidney disease is a major global public health burden. This study investigated the causal effects of systolic blood pressure (SBP), apolipoprotein B (ApoB), and serum urate on renal function and albuminuria, and explored potential mechanistic implications. Two-sample Mendelian randomization (MR) analyses were conducted using large-scale genome-wide association study summary statistics from European populations. Univariable MR estimated total causal effects on estimated glomerular filtration rate (eGFR) and albuminuria. Multivariable MR assessed independent effects of correlated exposures, and 2-step MR evaluated albuminuria as a mediator. Cis-MR analyses were performed to explore target-proximal genetic evidence for lipid-related drug targets. Genetically predicted SBP was causally associated with reduced eGFR, while ApoB was inversely associated with albuminuria risk. serum urate showed no significant causal effects. Multivariable and mediation analyses supported distinct roles of SBP and ApoB, with albuminuria partially mediating the SBP-eGFR association. Cis-MR analyses indicated heterogeneous renal effects of lipid-lowering targets. These findings provide genetic evidence linking SBP to renal dysfunction, suggest that albuminuria may partially mediate the association between SBP and renal function, and highlight the complex renal relevance of lipid-related pathways.

Mendelian Randomization Analysis↗

Metabolic changes and mitochondrial dysfunction early following transthoracic countershock in dogs.

The mechanisms of myocardial injury and necrosis following transthoracic shocks from a direct current cardiac defibrillator were investigated in adult greyhounds. Myocardial lactate extraction became negative maximally at 1 minute, following two (mean -22% +/- SEM23) or five (-193% +/- 135) shocks and returned to baseline in 6-15 minutes. Myocardial necrosis assessed at 4 hours following the shock period was 0.05 g (+/- 0.03) after two shocks, 6.69 g (+/- 1.76) after five shocks and zero in controls. In further experiments, dogs received five or zero (dummy) shocks and mitochondria were isolated from their hearts following excision within 1 minute of receiving the final shock. Maximal oxygen consumption in right ventricular mitochondria was lower than the unshocked controls with both glutamate (66.9 +/- 9.4 nanoatoms of oxygen/mg per minute, n = 9 vs 86.6 +/- 13.6 nanoatoms/mg per minute, n = 7) and succinate (96.2 +/- 8.7 nanoatoms/mg per minute, n = 9 vs 119.5 +/- 14.4 nanoatoms/mg per minute, n = 7) as substrates. Using electron spin resonance spectroscopy, an increase in a peroxyl-free radical with g = 2.031 was detected in myocardial tissue after two internal shocks (50 joules stored energy, 0.5-minute intervals). We conclude that mitochondrial dysfunction and free-radical generation are likely contributors to cellular injury following multiple countershocks.

Animals↗