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M Giralt

Publications and source records attributed to M Giralt.

At least 37 records · Page 2Linked to original sources

Successful outcome of a cirrhotic patient with postoperative haematuria treated with a single high dose of recombinant factor VIIa.

Recombinant factor VIIa (rfVIIa) has been widely used for the treatment and prevention of bleeding episodes in haemophiliacs with high-titre inhibitors. High single doses are the treatment of choice for joint and muscle bleeds in those patients. There are only a few reports on the value of rfVIIa in cirrhotic patients with haemostatic impairment but this drug can consistently correct the prothrombin time in these individuals. We report a case of a good response to a single high dose of rfVIIa in a patient with advanced liver disease who suffered from severe refractory postoperative haematuria.

Factor VII↗

Zinc or copper deficiency-induced impaired inflammatory response to brain trauma may be caused by the concomitant metallothionein changes.

The role of zinc- and copper-deficient diets on the inflammatory response to traumatic brain injury (TBI) has been evaluated in adult rats. As expected, zinc deficiency decreased food intake and body weight gain, and the latter effect was higher than that observed in pair-fed rats. In noninjured brains, zinc deficiency only affected significantly lectin (increasing) and glial fibrillary acidic protein (GFAP) and Cu,Zn-superoxide dismutase (Cu,Zn-SOD) (decreasing) immunoreactivities (irs). In injured brains, a profound gliosis was observed in the area surrounding the lesion, along with severe damage to neurons as indicated by neuron specific enolase (NSE) ir, and the number of cells undergoing apoptosis (measured by TUNEL) was dramatically increased. Zinc deficiency significantly altered brain response to TBI, potentiating the microgliosis and reducing the astrogliosis, while increasing the number of apoptotic cells. Metallothioneins (MTs) are important zinc- and copper-binding proteins in the CNS, which could influence significantly the brain response to TBI because of their putative roles in metal homeostasis and antioxidant defenses. MT-I+II expression was dramatically increased by TBI, and this response was significantly blunted by zinc deficiency. The MT-III isoform was moderately increased by both TBI and zinc deficiency. TBI strongly increased oxidative stress levels, as demonstrated by malondialdehyde (MDA), protein tyrosine nitration (NITT), and nuclear factor kappaB (NF-kappaB) levels irs, all of which were potentiated by zinc deficiency. Further analysis revealed unbalanced expression of prooxidant and antioxidant proteins besides MT, since the levels of inducible nitric oxide synthase (iNOS) and Cu,Zn-SOD were increased and decreased, respectively, by zinc deficiency. All these effects were attributable to zinc deficiency, since pair-fed rats did not differ from normally fed rats. In general, copper deficiency caused a similar pattern of responses, albeit more moderate. Results obtained in mice with a null mutation for the MT-I+II isoforms strongly suggest that most of the effects observed in the rat brain after zinc and copper deficiencies are attributable to the concomitant changes in the MT expression.

Animals↗

Chitotriosidase genotype and plasma activity in patients type 1 Gaucher's disease and their relatives (carriers and non carriers).

BACKGROUND AND OBJECTIVES: Chitinases are enzymes that hydolyze chitin and have been found in a wide variety of nonvertebrate species; recently an human analogue of chitinases, chitotriosidase (CT) has been identified. Extreme elevations of plasma CT activity are observed in patients with Gaucher disease (GD), being Gaucher cells the source of the CT. It has been reported a 24 bp duplication in CT gene that results an inactive protein. The carrier prevalence is high as 30 to 40% and the CT activity is half that in wild individuals. However no systematic evaluation of plasma CT activity has been carried in GD patients taken into account status of allele defective for CT and dose in patients on enzyme replacement therapy (ERT). DESIGN AND METHODS: We had previously study 210 subjects from 99 unrelated Spanish GD families; 121 were non-affected carriers and 89 were non-carriers to establish carrier prevalence of CT genotypes. Plasma CTactivity and CTgenotypes by PCR and gel electrophoresis have been measured in 109 GD patients before treatment. We also evalued CT activity after ERT with alglucerase in 68 patients. RESULTS: Three patients had defective activities of CT. The carrier prevalence for 24 bp duplication was 35% and the allele frequency 0.20. No correlation between CT activity and GBA genotype was detected and between CT activity and visceral or skeletal disease in GD patients. Untreated affected patients, non-carriers for the duplication, had higher CT activity than carriers (p<.0001). CT activity decreased dramatically during the first 12 months of ERT; even after 3 years of therapy a persistent fall of CT activity was observed. How ever within 3 years of treatment, a significant difference in the mean decrease of CT activity was present among the groups of patients on varying alglucerase doses (p<.01). After 12 months of ERT the activity of plasma CT decline in the same percentage in both groups: heterozygous for the carriers of 24bp duplication and wild type, but thereafter CT activity decline more slowly in carriers than non carriers. INTERPRETATION AND CONCLUSIONS: The present data can be used as a reference to interpret the CT activity in GD patients with or without ERT, as well as to evaluate the doses response and can be used as a reference to interpret the CTactivity in carriers and non-carriers.

Adolescent↗

Co-morbidity in Gaucher's disease results of a nationwide enquiry in Spain.

SHORT INTRODUCTION: Gaucher's disease (GD) is an autosomal recessive disease produced by mutations of the Glucocerebrosidase gene. Carriers are considered to be healthy subjects because there is no manifestation of the disease, but they show signs of macrophage disfunction. The aim of the study was to determine if GD patients and non affected carriers risk suffering other diseases when compared to healthy non-carrier relatives. MATERIAL AND METHODS DESIGN: Epidemiologic study of historic cohorts. The fact that they have one or two mutated alleles has been considered to be the risk factor leading to other conditions (Dementia, Parkinson disease, Ischemic stroke, Ischemic heart disease, Non rheumatic valvular disease, Cancer hematological and non-hematological, Pulmonary fibrosis, Tuberculosis, Gallstones and Schizophrenia). All people, patients, carriers and healthy controls shared the same genetical background and environmental influence. - Patients and relatives enrolled on the Spanish Gaucher Disease Registry were evaluated. STATISTICS: For the Relative-Risk calculation the Mantel-Haenszel test was applied. Yates' correction was used when size sample was too small. A value of p <0.05 was accepted for statistical significance. RESULTS: 370 people, from 79 different families, were surveyed. We received evaluable information from 45 families (56%), totalling 258 people (69%): 59 healthy subjects (Mean age 32. 20, RANGE: 10-85; M 57.63%/F 42.37%), 132 carriers (Mean age 35.91, RANGE: 1-79; M 56.82%/F 43.18%) and 67 patients (Mean age 32.16, Range: 1-76; M 44.78%/F 55.22%. - Relative Risk of suffering any disease with regard to Gaucher's status: Patient vs Healthy 9.69 (95% Confidence interval [CI] 2.00-63.99; p 0.0006). Patient vs Carrier 3.74 (CI 1.53-9.27; p 0.001); Carrier vs Healthy 2.59 (CI 0. 52-12.50; p 0.21). Relative Risk of suffering any disease with regard to sex was 3.96 for female patients (CI 1.01-16.75; p 0.02) and 1.34 for female carriers (CI 0.27-6.75; p = 0.68). CONCLUSION: As a group, Gaucher's patients seem to have a greater risk of suffering other common unrelated diseases than carriers or healthy relatives. This excess of risk is particularly higher among female patients and can not be explained in terms of differences in age. Carrier status doesn't seem to highten the risk of suffering other diseases.

Adolescent↗

Both retinoic-acid-receptor- and retinoid-X-receptor-dependent signalling pathways mediate the induction of the brown-adipose-tissue-uncoupling-protein-1 gene by retinoids.

The intracellular pathways and receptors mediating the effects of retinoic acid (RA) on the brown-fat-uncoupling-protein-1 gene (ucp-1) have been analysed. RA activates transcription of ucp-1 and the RA receptor (RAR) is known to be involved in this effect. However, co-transfection of an expression vector for retinoid-X receptor (RXR) increases the action of 9-cis RA but not the effects of all-trans RA on the ucp-1 promoter in brown adipocytes. Either RAR-specific ¿p-[(E)-2-(5,6,7,8,-tetrahydro-5,5,8, 8-tetramethyl-2-naphthalenyl)-1-propenyl]benzoic acid¿ or RXR-specific [isopropyl-(E,E)-(R,S)-11-methoxy-3,7, 11-trimethyldodeca-2,4-dienoate, or methoprene] synthetic compounds increase the expression of UCP-1 mRNA and the activity of chloramphenicol acetyltransferase expression vectors driven by the ucp-1 promoter. The RXR-mediated action of 9-cis RA requires the upstream enhancer region at -2469/-2318 in ucp-1. During brown-adipocyte differentiation RXRalpha and RXRgamma mRNA expression is induced in parallel with UCP-1 mRNA, whereas the mRNA for the three RAR subtypes, alpha, beta and gamma, decreases. Co-transfection of murine expression vectors for the different RAR and RXR subtypes indicates that RARalpha and RARbeta as well as RXRalpha are the major retinoid-receptor subtypes capable of mediating the responsiveness of ucp-1 to retinoids. It is concluded that the effects of retinoids on ucp-1 transcription involve both RAR- and RXR-dependent signalling pathways. The responsiveness of brown adipose tissue to retinoids in vivo relies on a complex combination of the capacity of RAR and RXR subtypes to mediate ucp-1 induction and their distinct expression in the differentiated brown adipocyte.

Adipose Tissue, Brown↗

Impaired inflammatory response and increased oxidative stress and neurodegeneration after brain injury in interleukin-6-deficient mice.

In order to determine the role of the neuropoietic cytokine interleukin-6 (IL-6) during the first 3 weeks after a focal brain injury, we examined the inflammatory response, oxidative stress and neuronal survival in normal and interleukin-6-deficient (knockout, IL-6KO) mice subjected to a cortical freeze lesion. In normal mice, the brain injury was followed by reactive astrogliosis and recruitment of macrophages from 1 day postlesion (dpl), peaking at 3-10 dpl, and by 20 dpl the transient immunoreactions were decreased, and a glial scar was present. In IL-6KO mice, the reactive astrogliosis and recruitment of macrophages were decreased throughout the experimental period. The expression of the antioxidant and anti-apoptotic factors metallothionein I+II (MT-I+II) was increased prominently by the freeze lesion, but this response was significantly reduced in the IL-6 KO mice. By contrast, the expression of the antioxidants Cu/Zn-superoxide dismutase (Cu/Zn-SOD), Mn-SOD, and catalase remained unaffected by the IL-6 deficiency. The lesioned mice showed increased oxidative stress, as judged by malondialdehyde (MDA) and nitrotyrosine (NITT) levels and by formation of inducible nitric oxide synthase (iNOS). IL-6KO mice showed higher levels of MDA, NITT, and iNOS than did normal mice. Concomitantly, in IL-6KO mice the number of apoptotic neurons was significantly increased as judged by TUNEL staining, and regeneration of the tissue was delayed relative to normal mice. The changes in neuronal tissue damage and in brain regeneration observed in IL-6KO mice are likely caused by the IL-6-dependent decrease in MT-I+II expression, indicating IL-6 and MT-I+II as neuroprotective factors during brain injury.

Animals↗

Metallothionein induction by restraint stress: role of glucocorticoids and IL-6.

Restraint stress increased liver metallothionein-I (MT-I) mRNA and MT-I+II protein levels. The glucocorticoid receptor antagonist RU 486 decreased this response. In contrast, adrenalectomy only decreased MT-I+II protein levels. Moreover, corticosterone or progesterone did not reverse the effect of RU 486. These results suggest that glucocorticoids are important for MT-I+II protein synthesis but not for MT-I mRNA accumulation during restraint stress, and that other factors must be involved in this process. Interleukin-6 (IL-6) deficient mice showed a significant decrease of restraint stress-induced liver MT-I mRNA levels (approximately 30% of IL-6+/+ mice) up to approximately 4-5 hours after the onset of stress. Western blotting of hepatic nuclear proteins showed that the IL-6 responsive transcription factor Stat3, which has been shown to mediate MT induction by inflammation, was also activated by restraint stress. Results after extended periods of restraint stress indicate that IL-6 participates early and transiently in the process. The analysis of the expression of the acute phase plasma protein serum amyloid A suggests that restraint stress elicits an acute phase response similar to that caused by inflammation.

Adrenalectomy↗

Metallothioneins are upregulated in symptomatic mice with astrocyte-targeted expression of tumor necrosis factor-alpha.

Transgenic mice expressing TNF-alpha under the regulatory control of the GFAP gene promoter (GFAP-TNFalpha mice) exhibit a unique, late-onset chronic-progressive neurological disorder with meningoencephalomyelitis, neurodegeneration, and demyelination with paralysis. Here we show that the metallothionein-I + II (MT-I + II) isoforms were dramatically upregulated in the brain of symptomatic but not presymptomatic GFAP-TNFalpha mice despite TNF-alpha expression being present in both cases. In situ hybridization analysis for MT-I RNA and radioimmunoassay results for MT-I + II protein revealed that the induction was observed in the cerebellum but not in other brain areas. Increased MT-I RNA levels occurred in the Purkinje and granular neuronal layers of the cerebellum but also in the molecular layer. Reactive astrocytes, activated rod-like microglia, and macrophages, but not the infiltrating lymphocytes, were identified as the cellular sources of the MT-I + II proteins. In situ hybridization for MT-III RNA revealed a modest increase in the white matter of the cerebellum, which was confirmed by immunocytochemistry. MT-III immunoreactivity was present in cells which were mainly round or amoeboid monocytes/macrophages. The pattern of expression of the different MT isoforms in the GFAP-TNFalpha mice differed substantially from that described previously in GFAP-IL6 mice, demonstrating unique effects associated with the expression of each cytokine. The results suggest that the MT expression in the CNS reflects the inflammatory response and associated damage rather than a direct role of the TNF-alpha in their regulation and support a major role of these proteins during CNS injury.

Animals↗

Effect of dietary zinc deficiency on brain metallothionein-I and -III mRNA levels during stress and inflammation.

Zinc is an essential heavy metal for the normal function of the central nervous system (CNS), but the knowledge of its metabolism and functions is scarce. In this report we have studied the effect of a zinc deficient diet on the regulation of brain metallothioneins (MTs). In situ hybridization analysis revealed that brain MT-I induction by restraint stress was significantly blunted in some but not all brain areas in the mice fed the zinc deficient diet compared to normally fed mice. In contrast, brain MT-I induction by the administration of bacterial lipopolysaccharide (LPS) was not significantly lower in the mice fed the zinc deficient diet. In contrast to MT-I, MT-III mRNA levels were minimally affected by either stress or LPS. Yet, significant decreasing effects of the zinc deficient diet were observed in areas such as the neocortex, CA1-CA3 neuronal layer and dentate gyrus of the hippocampus, and the Purkinje neuronal layer of the cerebellum. These results demonstrate that dietary zinc deficiency impairs the response of brain MTs during both stress and LPS-elicited inflammatory response in a highly specific manner.

Animals↗

Inhibition by CCK of ascending contraction elicited by mucosal stimulation in the duodenum of the rat.

CCK released by intraluminal stimuli modifies duodenal activity contributing to a decrease in gastric emptying. However, the neural mechanisms by which CCK controls motility are not well known. The aim of this study was to investigate the interaction between CCK and the enteric nervous system through the study of the effects of CCK-8 on ascending excitation. Anaesthetized Sprague-Dawley rats were prepared with a strain-gauge sutured to the duodenum wall. An electrode holder was placed in the duodenum lumen to elicit ascending contraction. Electrical field stimulation of the duodenal mucosa (4 Hz, 0.6 ms, 30 V) induced an ascending excitation which was blocked by hexamethonium (10 mg kg-1; n=5) and atropine (0.3 mg kg-1; n=5), but enlarged by L-NNA (10(-5) mol kg-1; n=5). CCK-8 (3 ¿ 10(-9) mol kg-1 10 min-1) blocked ascending excitation and an inhibition of the induced phasic activity was observed instead (n=18). Individually, none of the CCK receptor antagonists (L-364 718 and L-365 260) (3 ¿ 10(-7) mol kg-1; n=6 each) blocked the inhibition of ascending excitation induced by CCK-8. However, simultaneous infusion of both antagonists abolished CCK-8 effect on electrical stimulation (n=5). Similarly, none of the CCK-8 agonists (A-71623, A-71378, gastrin) modified the ascending excitation. In contrast, the simultaneous infusion of A-71623 and CCK-4 (n=4) induced an effect similar to CCK-8. In conclusion, CCK-8 blocked ascending contraction elicited by electrical field stimulation of duodenal mucosa by means of simultaneous activation of CCK-A and CCK-B receptors.

Adrenergic beta-Antagonists↗

The human uncoupling protein-3 gene promoter requires MyoD and is induced by retinoic acid in muscle cells.

The uncoupling protein-3 (UCP-3) gene encodes for a mitochondrial protein expressed preferentially in skeletal muscle. UCP-3 mRNA is expressed in cultured muscle cells (C2C12 or L6E9) only when differentiated, at which stage UCP-3 is highly induced by all-trans retinoic acid (RA). Here we report that human UCP-3 promoter activity is dependent on MyoD and inducible by all trans-RA. The action of all trans-RA is increased by co-transfection with RA receptor (RAR). We have characterized the RA response element that controls the induction by RA in the 5' noncoding region of the UCP-3 gene. Deletion and point-mutation analysis of the hUCP-3 promoter led us to identify a direct-repeat element with one base-pair spacing (DR1) at position -71/-59 responsible for the induction by RA of the activity of the promoter. This DR1 element bound a nuclear protein complex from muscle cells that contain RAR and retinoid X receptor (RXR). In the absence of this element, the promoter became unresponsive to RA, but it was still dependent on MyoD. In conclusion, it has been established that UCP-3 gene promoter activity is dependent on MyoD, and the first regulatory pathway for UCP-3 gene promoter regulation has been recognized by identifying RA as a transcriptional activator of the gene.

Animals↗

Altered central nervous system cytokine-growth factor expression profiles and angiogenesis in metallothionein-I+II deficient mice.

To study the importance of metallothionein-I and -II (MT-I+II) for brain inflammation and regeneration, the authors examined normal and MT-I+II knock-out (MT-KO) mice subjected to a cortical freeze injury. Normal mice showed profound neurodegeneration, inflammation, and gliosis around the injury, which was repaired by 20 days postlesion (dpl). However, in MT-KO mice the lesion-associated inflammation was still present as late as 90 dpl. Scanning electron microscopy demonstrated that the number of capillaries was lower, and ultrastructural preservation of the lesioned parenchyma was poorer in MT-KO mice, suggesting an altered angiogenesis. To gain insight into the mechanisms involved, a number of cytokines and growth factors were evaluated. The number of cells expressing the proinflammatory cytokines IL-1beta, IL-6, and TNF-alpha was higher in MT-KO mice than in normal mice, which was confirmed by RNase protection analysis, whereas the number of cells expressing the growth factors bFGF, TGFbeta1, VEGF, and NT-3 was lower. Increased expression of proinflammatory cytokines could be involved in the sustained recruitment of CD-14+ and CD-34+ inflammatory cells and their altered functions observed in MT-KO mice. Decreases in trophic factors bFGF, TGFbeta1, and VEGF could mediate the decreased angiogenesis and regeneration observed in MT-KO mice after the freeze lesion. A role for MT-I+II in angiogenesis was also observed in transgenic mice expressing IL-6 under the control of the promoter of glial fibrillary acidic protein gene (GFAP-IL6 mice) because MT-I+II deficiency dramatically decreased the IL-6-induced angiogenesis of the GFAP-IL6 mice. In situ hybridization analysis indicated that the MT-III expression was not altered by MT-I+II deficiency. These results suggest that the MT-I+II isoforms have major regulatory functions in the brain inflammatory response to injury, especially in the angiogenesis process.

Animals↗

Impaired expression of the uncoupling protein-3 gene in skeletal muscle during lactation: fibrates and troglitazone reverse lactation-induced downregulation of the uncoupling protein-3 gene.

The expression of uncoupling protein (UCP)-3 mRNA in skeletal muscle is dramatically reduced during lactation in mice. The reduction in UCP-3 mRNA levels lowers the amount of the UCP-3 protein in skeletal muscle mitochondria during lactation. Spontaneous or abrupt weaning reverses the downregulation of the UCP-3 mRNA but not the reduction in UCP-3 protein levels. In lactating and virgin mice, however, fasting increases UCP-3 mRNA levels. Changes in UCP-3 mRNA occur in parallel with modifications in the levels of free fatty acids, which are reduced in lactation and are upregulated due to weaning or fasting. Modifications in the energy nutritional stress of lactating dams achieved by manipulating litter sizes do not influence UCP-3 mRNA levels in skeletal muscle. Conversely, when mice are fed a high-fat diet after parturition, the downregulation of UCP-3 mRNA and UCP-3 protein levels due to lactation is partially reversed, as is the reduction in serum free fatty acid levels. Treatment of lactating mice with a single injection of bezafibrate, an activator of the peroxisome proliferator-activated receptor (PPAR), raises UCP-3 mRNA in skeletal muscle to levels similar to those in virgin mice. 4-chloro-6-[(2,3-xylidine)-pirimidinylthio] acetic acid (WY-14,643), a specific ligand of the PPAR-alpha subtype, causes the most dramatic increase in UCP-3 mRNA, whereas troglitazone, a specific activator of PPAR-gamma, also significantly increases UCP-3 mRNA abundance in skeletal muscle of lactating mice. However, in virgin mice, bezafibrate and WY-14,643 do not significantly affect UCP-3 mRNA expression, whereas troglitazone is at least as effective as it is in lactating dams. It is proposed that the UCP-3 gene is regulated in skeletal muscle during lactation in response to changes in circulating free fatty acids by mechanisms involving activation of PPARs. The impaired expression of the UCP-3 gene is consistent with the involvement of UCP-3 gene regulation in the reduction of the use of fatty acids as fuel by the skeletal muscle and in impaired adaptative thermogenesis, both of which are major metabolic adaptations that occur during lactation.

Animals↗

Report of the Spanish Gaucher's disease registry: clinical and genetic characteristics.

BACKGROUND AND OBJECTIVES: Since 1993 the demographic, clinical, analytical, genetic and follow-up data of Spanish patients with Gaucher's disease (GD) have been collected in an anonymous national database. Some statistical analyses of these data are reported concerning the distribution, clinical and genetic characteristics of GD in Spain and the response to enzyme replacement therapy (ERT) is evaluated. DESIGN AND METHODS: We performed a cohort study in Spanish GD patients by national inquiry, submitted by mail to 75 Spanish hospitals (over 300 beds) directed to internal medicine, hematology and pediatric departments. The questionnaire included 30 questions (gender, height, weight, date of birth, date of diagnosis, abode and number of relatives affected, bone crises, neurologic symptoms, other symptoms, liver and spleen size, hemoglobin, leukocyte and platelet count, tartrate resistant acid phosphatase, ALT/AST, chitotrioxidase activity, total plasma cholesterol, triglycerides, high density lipoprotein cholesterol, enzymatic activity of acid -glycosides, mutation, X-ray examination, magnetic resonance imaging-MRI-evaluation, spleen removal, and orthopedic procedures (ERT, date of first infusion). Each case with a presumed diagnosis was considered an enrolled patient. Written informed consent was obtained from all patients. The cases without enzymatic or genetic diagnosis were studied in a reference laboratory (the same for all the samples). Clinical status was evaluated by Zimran's severity score index. The enzymatic activity of acid -glycosides was determined in cellular extracts of peripheral blood granulocytes by a fluorescent method using an artificial substrate (4-methyl-umbelliferyl -D-glycoside). Polymerase chain reaction (PCR) molecular analysis was performed in DNA samples to characterize the mutations (N370S, L444P, IVS2+1, 84GG, D409H, R463C and G377S) of the glycoside genes. Two groups were created according to age at diagnosis: children under 15 years and adults, in order to evaluate clinical, genetics and follow-up. Effectiveness of ERT was evaluated using objective parameters (hemoglobin, platelets, liver and spleen size, skeletal lesions), before and after therapy. In patients under ERT, quality of life (QOL) was assessed by a SF-36 modified inquiry, including 22 questions. Statistical analysis including descriptive and frequency distribution for each variable was performed, the ANOVA test was used to identify differences between groups. Paired t-tests (before and during therapy) were carried out. The degree of linear association among measured variables was estimated by Pearson's correlation. RESULTS: By December 1999 one hundred and fifty-five patients from 117 families had been included from 66 Spanish Hospitals; the inquiry was complete for 114 patients. Mean age at diagnosis: 24.0+/-16.9 years, M/F: 72/83. No symptoms were present at diagnosis in 19.3%; visceral disease was present in 95.6% and bone disease in 62.4%. Hemoglobin levels, leukocyte and platelet counts were below the normal range in 62.3% of cases. Higher acid phosphatase levels were observed in 99% of cases; biochemical liver dysfunction tests were found in 42.9%. The test for acid glycosidase showed a marked decrease in enzymatic activity. Morphologic documentation (spleen or liver tissue, bone marrow biopsy or aspirate) of GD was obtained in 71% of the patients. The most frequent mutations observed were N370S (46.3% of the alleles detected), and L444P (18.5%). In 18.7% of the cases the disease was stable or progressing slightly; in 23.8% the spleen had been removed between 1-14 years after diagnosis and 60.6% were under ERT. Children showed both greater liver enlargement and higher SSI (p = 0.0001). There was a correlation between SSI and clinical or analytical data in adults patients for spleen size (Z: 3.142; CI: 0. 173-0.637; p= 0.0017). In 35 patients on ERT, clinical and analytic data improved as did self-evaluated QOL (p< 0.0001). (A

Adolescent↗

Opposite regulation of PPAR-alpha and -gamma gene expression by both their ligands and retinoic acid in brown adipocytes.

The peroxisome proliferator-activated receptors (PPARs) are lipid-activated transcription factors involved in the regulation of lipid metabolism and adipocyte differentiation. Little is known, however, about the control of the expression of the genes encoding each of all three receptor subtypes: alpha, delta, and gamma. We have addressed this question in the brown adipocyte, the only cell type that co-expresses high levels of the three PPAR subtypes. Differentiation of brown adipocytes is associated with enhanced expression of PPAR genes. However, whereas PPARgamma and PPARdelta genes are already expressed in preadipocytes, the mRNA for PPARalpha appears suddenly in association with the acquisition of the terminally differentiated phenotype. Both retinoic acid isomers and PPAR agonists, specific for either PPARalpha or PPARgamma, regulate expression of each PPAR subtype gene in the opposite way: they up-regulate PPARalpha and down-regulate PPARgamma. The effects on PPARalpha mRNA are independent of protein synthesis, whereas inhibition of PPARgamma mRNA expression depends on protein synthesis, except when its specific ligand prostaglandin J2 is used. Our results indicate a strictly opposite autoregulation of PPAR subtypes, which supports specific physiological roles for them in controlling brown fat differentiation and thermogenic activity.

Adipocytes↗

Uncoupling protein-3 gene expression in skeletal muscle during development is regulated by nutritional factors that alter circulating non-esterified fatty acids.

Uncoupling protein-3 gene expression in skeletal muscle is up-regulated during postnatal development of mice. A high-carbohydrate diet at weaning induces a decrease in uncoupling protein-3 mRNA levels that does not occur when mice were weaned onto a high-fat diet. Uncoupling protein-3 mRNA levels do not increase in response to fasting in young pups. Only after day 15 of life, when fasting increases serum non-esterified fatty acids, uncoupling protein-3 mRNA is up-regulated by starvation. Over-nutrition or under-nutrition during lactation increases or decreases, respectively, uncoupling protein-3 mRNA expression in skeletal muscle. Regulation of uncoupling protein-3 gene expression in skeletal muscle during development is mediated by ontogenic and nutritional factors determining changes in circulating non-esterified fatty acids.

Age Factors↗