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1.
Nutrients ; 16(6)2024 Mar 15.
Artigo em Inglês | MEDLINE | ID: mdl-38542762

RESUMO

The parenteral nutrition (PN) received by premature newborns is contaminated with peroxides that induce global DNA hypermethylation via oxidative stress. Exposure to peroxides could be an important factor in the induction of chronic diseases such as those observed in adults who were born preterm. As endogenous H2O2 is a major regulator of glucose-lipid metabolism, our hypothesis was that early exposure to PN induces permanent epigenetic changes in H2O2 metabolism. Three-day-old guinea pigs were fed orally (ON), PN or glutathione-enriched PN (PN+GSSG). GSSG promotes endogenous peroxide detoxification. After 4 days, half the animals were sacrificed, and the other half were fed ON until 16 weeks of age. The liver was harvested. DNA methylation and mRNA levels were determined for the SOD2, GPx1, GCLC, GSase, Nrf2 and Keap1 genes. PN induced GPx1 hypermethylation and decreased GPx1, GCLC and GSase mRNA. These findings were not observed in PN+GSSG. PN+GSSG induced Nrf2 hypomethylation and increased Nrf2 and SOD2 mRNA. These observations were independent of age. In conclusion, in neonatal guinea pigs, PN induces epigenetic changes, affecting the expression of H2O2 metabolism genes. These changes persist for at least 15 weeks after PN. This disruption may signify a permanent reduction in the capacity to detoxify peroxides.


Assuntos
Peróxido de Hidrogênio , Fator 2 Relacionado a NF-E2 , Animais , Cobaias , Peróxido de Hidrogênio/metabolismo , Dissulfeto de Glutationa/metabolismo , Fator 2 Relacionado a NF-E2/genética , Fator 2 Relacionado a NF-E2/metabolismo , Proteína 1 Associada a ECH Semelhante a Kelch/metabolismo , Animais Recém-Nascidos , Nutrição Parenteral/efeitos adversos , Glutationa/metabolismo , Peróxidos/metabolismo , Suplementos Nutricionais , Epigênese Genética , RNA Mensageiro/genética
2.
Antioxidants (Basel) ; 12(7)2023 Jun 29.
Artigo em Inglês | MEDLINE | ID: mdl-37507901

RESUMO

In premature infants receiving parenteral nutrition, oxidative stress is a trigger for the development of bronchopulmonary dysplasia, which is an important factor in the development of adult lung diseases. Neonatal vitamin C and glutathione deficiency is suspected to induce permanent modification of redox metabolism favoring the development of neonatal and adult lung diseases. A total of 64 3-day-old guinea pigs were fed an oral diet that was either complete or deficient in vitamin C (VCD), cysteine (CD) (glutathione-limiting substrate) or both (DD) for 4 days. At 1 week of age, half of the animals were sacrificed while the other started a complete diet until 12 weeks of age. At 1 week, the decrease in lung GSH in all deficient groups was partially explained by the oxidation of liver methionine-adenosyltransferase. mRNA levels of kelch-like ECH-associated protein 1 (Keap1), glutathione-reductase (Gsr) and glutaredoxin-1 (Glrx) were significantly lower only in CD but not in DD. At 12 weeks, glutathione levels were increased in VCD and CD. Keap1, Gsr and Glrx mRNA were increased, while glutathione-reductase and glutaredoxin proteins were lower in CD, favoring a higher glutathionylation status. Both neonatal deficiencies result in a long-term change in glutathione metabolism that could contribute to lung diseases' development.

3.
Biomedicines ; 12(1)2023 Dec 27.
Artigo em Inglês | MEDLINE | ID: mdl-38255171

RESUMO

Due to their gastrointestinal immaturity or the severity of their pathology, many neonates require parenteral nutrition (PN). An amino acid (AA) solution is an important part of PN. Cysteine is a key AA for protein and taurine synthesis, as well as for glutathione synthesis, which is a cornerstone of antioxidant defenses. As cysteine could be synthesized from methionine, it is considered a nonessential AA. However, many studies suggest that cysteine is a conditionally essential AA in preterm infants due to limitations in their capacity for cysteine synthesis from methionine and the immaturity of their cellular cysteine uptake. This critical review discusses the endogenous synthesis of cysteine, its main biological functions and whether cysteine is a conditionally essential AA. The clinical evidence evaluating the effectiveness of the current methods of cysteine supplementation, between 1967 and 2023, is then reviewed. The current understanding of cysteine metabolism is applied to explain why these methods were not proven effective. To respond to the urgent need for changing the current methods of parenteral cysteine supplementation, glutathione addition to PN is presented as an innovative alternative with promising results in an animal model. At the end of this review, future directions for research in this field are proposed.

4.
Antioxidants (Basel) ; 11(10)2022 Sep 30.
Artigo em Inglês | MEDLINE | ID: mdl-36290679

RESUMO

In premature infants, glutathione deficiency impairs the capacity to detoxify the peroxides resulting from O2 metabolism and those contaminating the parenteral nutrition (PN) leading to increased oxidative stress, which is a major contributor to bronchopulmonary dysplasia (BPD) development. In animals, the supplementation of PN with glutathione prevented the induction of pulmonary oxidative stress and hypoalveolarization (characteristic of BPD). Hypothesis: the dose of glutathione that corrects the plasma glutathione deficiency is sufficient to prevent oxidative stress and preserve pulmonary integrity. Three-day-old guinea pigs received a PN, supplemented or not with GSSG (up to 1300 µg/kg/d), the stable form of glutathione in PN. Animals with no handling other than being orally fed constituted the control group. After 4 days, lungs were removed to determine the GSH, GSSG, redox potential and the alveolarization index. Total plasma glutathione was quantified. The effective dose to improve pulmonary GSH and prevent the loss of alveoli was 330 µg/kg/d. A 750 µg/kg/d dose corrected the low-plasma glutathione, high-pulmonary GSSG and oxidized redox potential. Therefore, the results suggest that, in a clinical setting, the dose that improves low-plasma glutathione could be effective in preventing BPD development.

5.
JPEN J Parenter Enteral Nutr ; 46(5): 1080-1087, 2022 07.
Artigo em Inglês | MEDLINE | ID: mdl-34669977

RESUMO

BACKGROUND: Most very premature newborns (<32 weeks of gestation) receive parenteral nutrition (PN) that is inherently contaminated with peroxides. Oxidative stress induced by PN is associated with bronchopulmonary dysplasia, a main pathological complication in these infants who have weak antioxidant capacity to detoxify peroxides because of their glutathione deficiency. In animals, glutathione supplementation of PN prevented oxidative stress and alveolar loss (the main characteristic of bronchopulmonary dysplasia). Of its two forms-oxidized glutathione (GSSG) and reduced glutathione (GSH)-GSSG was used because of its better stability. However, a 30% loss of GSSG in PN is observed. The potentially high therapeutic benefits of GSSG supplementation on the health of very premature infants make the study of its stability highly important. METHODS: GSSG was incubated in combination with the following components of PN: dextrose, multivitamins, Primene, and Travasol, and with cysteine, cystine, and peroxides, for 24 h. Total glutathione in these solutions was measured 0-24 h after the addition of GSSG. RESULTS: The combination of cysteine and multivitamins caused the maximum loss of glutathione. The stability of GSSG was not affected by multivitamins. The cysteine was responsible for ∼20% of the loss of GSSG; in the presence of multivitamins, the loss reached >70%. Removing the cysteine prevented the degradation of glutathione. CONCLUSION: GSSG reacts with cysteine to form cysteine-glutathione mixed disulfide, another suitable glutathione substrate for preterm neonates. The study confirms that GSSG added to PN can potentially provide a precursor to de novo synthesis of glutathione in vivo.


Assuntos
Displasia Broncopulmonar , Displasia Broncopulmonar/etiologia , Displasia Broncopulmonar/prevenção & controle , Cisteína , Suplementos Nutricionais , Glutationa/metabolismo , Humanos , Recém-Nascido , Estresse Oxidativo , Nutrição Parenteral , Peróxidos
6.
BMJ Open ; 11(9): e046585, 2021 09 08.
Artigo em Inglês | MEDLINE | ID: mdl-34497076

RESUMO

INTRODUCTION: Little is known regarding associations between potentially modifiable lifestyle habits and early markers of cardiovascular disease (CVD) in pediatric type 1 diabetes (T1D), hindering early prevention efforts. Specific objectives are: (1) compare established risk factors (dyslipidemia, hypertension) with novel early markers for CVD (cardiac phenotype, aortic distensibility, endothelial function) in adolescents with T1D and healthy age-matched and sex-matched controls; (2) examine associations between these novel early markers with: (i) lifestyle habits; (ii) adipokines and measures of inflammation; and (iii) markers of oxidative stress among adolescents with T1D and controls, and determine group differences in these associations; (3) explore, across both groups, associations between CVD markers and residential neighbourhood features. METHODS AND ANALYSES: Using a cross-sectional design, we will compare 100 participants aged 14-18 years with T1D to 100 healthy controls. Measures include: anthropometrics; stage of sexual maturity (Tanner stages); physical activity (7-day accelerometry); sleep and sedentary behaviour (self-report and accelerometry); fitness (peak oxygen consumption); and dietary intake (three non-consecutive 24- hour dietary recalls). Repeated measures of blood pressure will be obtained. Lipid profiles will be determined after a 12- hour fast. Cardiac structure/function: non-contrast cardiac magnetic resonance imaging (CMR) images will evaluate volume, mass, systolic and diastolic function and myocardial fibrosis. Aortic distensibility will be determined by pulse wave velocity with elasticity and resistance studies at the central aorta. Endothelial function will be determined by flow-mediated dilation. Inflammatory markers include plasma leptin, adiponectin, tumour necrosis factor alpha (TNF-α), type I and type II TNF-α soluble receptors and interleukin-6 concentrations. Measures of endogenous antioxidants include manganese superoxide dismutase, glutathione peroxidase and glutathione in blood. Neighbourhood features include built and social environment indicators and air quality. ETHICS AND DISSEMINATION: This study was approved by the Sainte-Justine Hospital Research Ethics Board. Written informed assent and consent will be obtained from participants and their parents. TRIAL REGISTRATION NUMBER: NCT04304729.


Assuntos
Doenças Cardiovasculares , Diabetes Mellitus Tipo 1 , Adolescente , Doenças Cardiovasculares/etiologia , Criança , Estudos Transversais , Hábitos , Humanos , Inflamação , Estilo de Vida , Estresse Oxidativo , Análise de Onda de Pulso
7.
Antioxidants (Basel) ; 10(6)2021 Jun 12.
Artigo em Inglês | MEDLINE | ID: mdl-34204849

RESUMO

Premature neonates are submitted to an early-life oxidative stress from parenteral nutrition, which is vitamin C (VC) deficient and induces low endogenous levels of glutathione. The oxidative stress caused by these deficiencies may permanently affect liver glycolysis and lipogenesis. This study evaluates the short- and long-term effects of neonatal VC and cysteine deficient diets on redox and energy metabolism. Three-day-old Hartley guinea pigs from both sexes were given a regular or a deficient diet (VC, cysteine, or both) until week 1 of life. Half of the animals were sacrificed at this age, while the other half ate a complete diet until 12 weeks. Liver glutathione and the activity and protein levels of glucokinase, phosphofructokinase, and acetyl-CoA-carboxylase were measured. Statistics: factorial ANOVA (5% threshold). At 1 week, all deficient diets decreased glutathione and the protein levels of glucokinase and phosphofructokinase, while cysteine deficiency decreased acetyl-CoA-carboxylase levels. A similar enzyme level was observed in control animals at 12 weeks. At this age, VC deficiency decreased glutathione, while cysteine increased it. Acetyl-CoA-carboxylase protein levels were increased, which decreased its specific activity. Early-life VC and cysteine deficiencies induce neonatal oxidative stress and an adult-like metabolism, while predisposing to increased lipogenic rates during adulthood.

8.
J Dev Orig Health Dis ; 12(3): 484-495, 2021 06.
Artigo em Inglês | MEDLINE | ID: mdl-32741420

RESUMO

Extremely premature birth is associated with a permanent disruption of energy metabolism. The underlying mechanisms are poorly understood. The oxidative stress induced by parenteral nutrition (PN) during the first week of life is suspected to reprogram energy metabolism in the liver. Full-term male Hartley guinea pigs (to isolate PN from prematurity) receiving PN enriched or not with glutathione (to isolate PN effects from PN-induced oxidative stress effects) or an Oral Nutrition (ON) during the first week of life were used. At 1 week (neonatal) and 16 weeks (adult), measurements of liver glutathione (GSH and GSSG) and activities of three key enzymes of energy metabolism (glucokinase (GCK), phosphofructokinase (PFK), and acetyl-CoA carboxylase (ACC)) were performed. Differences between groups were reported if p ≤ 0.05 (Analysis of Variance). At 1 week, compared to ON, PN induced higher GSSG (oxidative stress), higher GCK activity, and lower PFK and ACC activity, the glutathione supplement prevented all PN effects. At 16 weeks, early PN induced lower GSSG (reductive stress) and lower GCK activity, which was prevented by added glutathione, and higher ACC activity independent of glutathione supplement. ACC was negatively associated (r2 = 0.33) with GSSG. Increased nicotinamide adenine dinucleotide phosphate levels confirmed the glucose-6-phosphate accumulation at 1 week, whereas our protocol failed to document lipid accumulation at 16 weeks. In adult male guinea pigs, neonatal exposure to PN affected glutathione metabolism leading to reductive stress (lower GSSG) and an altered metabolic flow of glucose. Partial prevention with glutathione supplementation suggests that, in addition to peroxides, other factors of PN are involved.


Assuntos
Metabolismo Energético , Fígado/enzimologia , Estresse Oxidativo , Nutrição Parenteral/efeitos adversos , Nascimento Prematuro , Animais , Animais Recém-Nascidos , Glucose/metabolismo , Glutationa/administração & dosagem , Cobaias , Masculino
9.
Epigenetics ; 15(12): 1348-1360, 2020 12.
Artigo em Inglês | MEDLINE | ID: mdl-32594836

RESUMO

The metabolism of DNA methylation is reported to be sensitive to oxidant molecules or oxidative stress. Hypothesis: early-life oxidative stress characterized by the redox potential of glutathione influences the DNA methylation level. The in vivo study aimed at the impact of modulating redox potential of glutathione on DNA methylation. Newborn guinea pigs received different nutritive modalities for 4 days: oral nutrition, parenteral nutrition including lipid emulsion Intralipid (PN-IL) or SMOFLipid (PN-SF), protected or not from ambient light. Livers were collected for biochemical determinations. Redox potential (p < 0.001) and DNA methylation (p < 0.01) were higher in PN-infused animals and even higher in PN-SF. Their positive correlation was significant (r2 = 0.51; p < 0.001). Methylation activity was higher in PN groups (p < 0.01). Protein levels of DNA methyltransferase (DNMT)-1 were lower in PN groups (p < 0.01) while those of both DNMT3a isoforms were increased (p < 0.01) and significantly correlated with redox potential (r2 > 0.42; p < 0.001). The ratio of SAM (substrate) to SAH (inhibitor) was positively correlated with the redox potential (r2 = 0.36; p < 0.001). In conclusion, early in life, the redox potential value strongly influences the DNA methylation metabolism, resulting in an increase of DNA methylation as a function of increased oxidative stress. These results support the notion that early-life oxidative stress can reprogram the metabolism epigenetically. This study emphasizes once again the importance of improving the quality of parenteral nutrition solutions administered early in life, especially to newborn infants. Abbreviation of Title: Parenteral nutrition and DNA methylation.


Assuntos
Metilação de DNA , Glutationa/metabolismo , Fígado/metabolismo , Estresse Oxidativo , Animais , DNA (Citosina-5-)-Metiltransferases/genética , DNA (Citosina-5-)-Metiltransferases/metabolismo , Emulsões/administração & dosagem , Emulsões/metabolismo , Emulsões/farmacologia , Óleos de Peixe/administração & dosagem , Óleos de Peixe/metabolismo , Óleos de Peixe/farmacologia , Cobaias , Fígado/efeitos dos fármacos , Fígado/crescimento & desenvolvimento , Masculino , Azeite de Oliva/administração & dosagem , Azeite de Oliva/metabolismo , Azeite de Oliva/farmacologia , Nutrição Parenteral , Fosfolipídeos/administração & dosagem , Fosfolipídeos/metabolismo , Fosfolipídeos/farmacologia , Óleo de Soja/administração & dosagem , Óleo de Soja/metabolismo , Óleo de Soja/farmacologia , Triglicerídeos/administração & dosagem , Triglicerídeos/metabolismo , Triglicerídeos/farmacologia
10.
Nutrients ; 11(9)2019 Sep 03.
Artigo em Inglês | MEDLINE | ID: mdl-31484318

RESUMO

Peroxides contaminating parenteral nutrition (PN) limit the use of methionine as a precursor of cysteine. Thus, PN causes a cysteine deficiency, characterized by low levels of glutathione, the main molecule used in peroxide detoxification, and limited growth in individuals receiving long-term PN compared to the average population. We hypothesize that glutathione supplementation in PN can be used as a pro-cysteine that improves glutathione levels and protein synthesis and reduces oxidative stress caused by PN. One-month-old guinea pigs (7-8 per group) were used to compare glutathione-enriched to a non-enriched PN, animals on enteral nutrition were used as a reference. PN: Dextrose, amino acids (Primene), lipid emulsion (Intralipid), multivitamins, electrolytes; five-day infusion. Glutathione (GSH, GSSG, redox potential) and the incorporation of radioactive leucine into the protein fraction (protein synthesis index) were measured in the blood, lungs, liver, and gastrocnemius muscle. Data were analysed by ANOVA; p < 0.05 was considered significant. The addition of glutathione to PN prevented the PN-induced oxidative stress in the lungs and muscles and supported protein synthesis in liver and muscles. The results potentially support the recommendation to add glutathione to the PN and demonstrate that glutathione could act as a biologically available cysteine precursor.


Assuntos
Glutationa/farmacologia , Nutrição Parenteral , Biossíntese de Proteínas/efeitos dos fármacos , Ração Animal , Animais , Peso Corporal/efeitos dos fármacos , Suplementos Nutricionais , Esquema de Medicação , Glutationa/administração & dosagem , Cobaias , Hemoglobinas , Masculino , Estresse Oxidativo , Ureia/sangue
11.
Free Radic Biol Med ; 142: 155-167, 2019 10.
Artigo em Inglês | MEDLINE | ID: mdl-30807828

RESUMO

There is strong evidence that oxidant molecules from various sources contaminate solutions of parenteral nutrition following interactions between the mixture of nutrients and some of the environmental conditions encountered in clinical practice. The continuous infusion of these organic and nonorganic peroxides provided us with a unique opportunity to study in cells, in vascular and animal models, the mechanisms involved in the deleterious reactions of oxidation in premature infants. Potential clinical impacts of peroxides infused with TPN include: a redox imbalance, vasoactive responses, thrombosis of intravenous catheters, TPN-related hepatobiliary complications, bronchopulmonary dysplasia and mortality. This is a narrative review of published data.


Assuntos
Displasia Broncopulmonar/etiologia , Emulsões Gordurosas Intravenosas/efeitos adversos , Estresse Oxidativo , Soluções de Nutrição Parenteral/efeitos adversos , Nutrição Parenteral/efeitos adversos , Peróxidos/efeitos adversos , Displasia Broncopulmonar/metabolismo , Displasia Broncopulmonar/fisiopatologia , Emulsões Gordurosas Intravenosas/química , Emulsões Gordurosas Intravenosas/efeitos da radiação , Feminino , Humanos , Lactente , Recém-Nascido , Recém-Nascido Prematuro , Recém-Nascido de muito Baixo Peso , Luz , Masculino , Soluções de Nutrição Parenteral/efeitos da radiação , Peróxidos/química , Peróxidos/efeitos da radiação , Processos Fotoquímicos , Vitaminas/efeitos adversos , Vitaminas/química , Vitaminas/efeitos da radiação
12.
JPEN J Parenter Enteral Nutr ; 42(8): 1314-1321, 2018 Nov.
Artigo em Inglês | MEDLINE | ID: mdl-29534293

RESUMO

BACKGROUND: Parenteral nutrition (PN) is associated with bronchopulmonary dysplasia in premature infants. In animals, PN leads to alveolar loss following stimulation of apoptosis by oxidative stress (oxidized redox potential). Peroxides and aldehydes generated in PN can induce hypo-alveolarization. The implication of peroxides, which is reduced by light protection, is demonstrated. The implication of aldehydes from omega-6 fatty acids oxidation is expected. The hypothesis is that composition and light exposure of PN influences bronchopulmonary dysplasia development. Since SMOFLipid (SMOF) contains a lower amount of omega-6 fatty acids than Intralipid (IL), the aim was to compare, the impacts of PN compounded with SMOF or IL, photo-protected or not, on alveolar development. MATERIALS AND METHODS: Three-day-old Guinea pigs received PN, photo-protected or not, made with SMOF or IL through a jugular vein catheter. After 4 days, lungs were sampled for determinations of redox potential of glutathione, apoptosis (caspase-3, caspase-8, and caspase-9) and alveolarization index (histology: number of intercepts/mm). RESULTS: Compared with IL, SMOF induces a greater oxidation of redox potential (-200 ± 1 versus [vs] -205 ± 1 mV), apoptosis (caspase-3: 0.27 ± 0.04 vs 0.16 ± 0.02; caspase-9: 0.47 ± 0.03 vs 0.30 ± 0.03), and a lower alveolarization index (27.2 ± 0.8 vs 30.0 ± 0.9). Photo-protection prevented activation of caspase-9 and was statistically without effect on redox potential, caspase-3, and alveolarization index. CONCLUSION: In our model, SMOF is pro-oxidant and induces hypo-alveolarization following exaggerated apoptosis. These results highlight the need for further studies before introducing SMOFLipid in standard neonatal care.


Assuntos
Estabilidade de Medicamentos , Ácidos Graxos Ômega-6/efeitos adversos , Estresse Oxidativo , Soluções de Nutrição Parenteral/efeitos adversos , Nutrição Parenteral/efeitos adversos , Fosfolipídeos/efeitos adversos , Alvéolos Pulmonares/patologia , Óleo de Soja/efeitos adversos , Aldeídos/efeitos adversos , Aldeídos/análise , Animais , Animais Recém-Nascidos , Apoptose , Displasia Broncopulmonar/etiologia , Caspases/metabolismo , Cateterismo Venoso Central , Emulsões/efeitos adversos , Emulsões/química , Ácidos Graxos Ômega-6/química , Glutationa/metabolismo , Cobaias , Humanos , Saúde do Lactente , Recém-Nascido , Recém-Nascido Prematuro , Luz , Oxidantes/efeitos adversos , Oxidantes/química , Oxirredução , Peróxidos/efeitos adversos , Peróxidos/análise , Fosfolipídeos/química , Óleo de Soja/química
13.
Antioxidants (Basel) ; 7(4)2018 Mar 27.
Artigo em Inglês | MEDLINE | ID: mdl-29584624

RESUMO

Oxidative stress is a critical process that triggers several diseases observed in premature infants. Growing recognition of the detriment of oxidative stress in newborns warrants the use of an antioxidant strategy that is likely to be nutritional in order to restore redox homeostasis. It appears essential to have a personalized approach that will take into account the age of gestation at birth and the sex of the infant. However, the link between sex and oxidative stress remains unclear. The aim of this study was to find a common denominator explaining the discrepancy between studies related to sex-specific effects of oxidative stress. Results highlight a specificity of sex in the levels of oxidative stress markers linked to the metabolism of glutathione, as measured in the intracellular compartments. Levels of all sex-dependent oxidative stress markers are greater and markers associated to a better antioxidant defense are lower in boys compared to girls during the neonatal period. This sex-specific discrepancy is likely to be related to estrogen metabolism, which is more active in baby-girls and promotes the activation of glutathione metabolism. CONCLUSION: our observations suggest that nutritive antioxidant strategies need to target glutathione metabolism and, therefore, should be personalized considering, among others, the sex specificity.

14.
JPEN J Parenter Enteral Nutr ; 41(6): 1023-1029, 2017 08.
Artigo em Inglês | MEDLINE | ID: mdl-27036126

RESUMO

BACKGROUND: Ascorbylperoxide (AscOOH) is a hydrogen peroxide-dependent by-product of ascorbic acid that contaminates parenteral nutrition. In a guinea pig model, it caused oxidized redox potential, increased apoptosis, and decreased alveolarization. AscOOH detoxification is carried out by glutathione peroxidase (GPX). We hypothesize that extremely preterm infants have limited capacity for AscOOH detoxification. Our objective was to determine if there is an association between an early level of urinary AscOOH and later development of bronchopulmonary dysplasia (BPD) or death. MATERIALS AND METHODS: This prospective cohort study included 51 infants at <29 weeks of gestation. Baseline clinical characteristics and clinical outcomes data were collected. Urine samples were collected on days 3, 5, and 7 of life for urinary AscOOH. Blood samples on day 7 were collected for total plasma glutathione, GPX, and glutathione reductase. χ2, Student's t test, Spearman correlation ( r), linear regression (adjusted r2), and repeated-measure analysis of variance were used as appropriate. P < .05 was considered significant. RESULTS: Urinary AscOOH increased over time ( P = .001) and was higher in infants who later developed BPD or died ( P = .037). Compared with adults and full-term infants, total plasma glutathione concentration was low (median, 1.02 µmol/L; 25th-75th percentiles, 0.49-1.76 µmol/L), whereas GPX and glutathione reductase activities were sufficient (3.98 ± 1.25 and 0.36 ± 0.01 nmol/min/mg of protein, respectively). CONCLUSION: Extremely preterm infants have low glutathione levels, which limit their capacity to detoxify AscOOH. Higher first-week urinary AscOOH levels are associated with an increased incidence of BPD or death.


Assuntos
Ácido Ascórbico/análogos & derivados , Displasia Broncopulmonar/diagnóstico , Mortalidade Infantil , Lactente Extremamente Prematuro/urina , Nutrição Parenteral , Peróxidos/efeitos adversos , Ácido Ascórbico/efeitos adversos , Ácido Ascórbico/urina , Displasia Broncopulmonar/etiologia , Displasia Broncopulmonar/urina , Feminino , Glutationa/sangue , Glutationa Peroxidase/sangue , Glutationa Redutase/sangue , Humanos , Incidência , Lactente , Lactente Extremamente Prematuro/sangue , Recém-Nascido , Masculino , Peróxidos/urina , Estudos Prospectivos
15.
Redox Biol ; 8: 18-23, 2016 08.
Artigo em Inglês | MEDLINE | ID: mdl-26722840

RESUMO

BACKGROUND: The oxidation of the methionine adenosyltransferase (MAT) by the combined impact of peroxides contaminating parenteral nutrition (PN) and oxidized redox potential of glutathione is suspected to explain its inhibition observed in animals. A modification of MAT activity is suspected to be at origin of the PN-associated liver disease as observed in newborns. We hypothesized that the correction of redox potential of glutathione by adding glutathione in PN protects the MAT activity. AIM: To investigate whether the addition of glutathione to PN can reverse the inhibition of MAT observed in animal on PN. METHODS: Three days old guinea pigs received through a jugular vein catheter 2 series of solutions. First with methionine supplement, (1) Sham (no infusion); (2) PN: amino acids, dextrose, lipids and vitamins; (3) PN-GSSG: PN+10µM GSSG. Second without methionine, (4) D: dextrose; (5) D+180µM ascorbylperoxide; (6) D+350µM H2O2. Four days later, liver was sampled for determination of redox potential of glutathione and MAT activity in the presence or absence of 1mM DTT. Data were compared by ANOVA, p<0.05. RESULTS: MAT activity was 45±4% lower in animal infused with PN and 23±7% with peroxides generated in PN. The inhibition by peroxides was associated with oxidized redox potential and was reversible by DTT. Correction of redox potential (PN+GSSG) or DTT was without effect on the inhibition of MAT by PN. The slope of the linear relation between MAT activity and redox potential was two fold lower in animal infused with PN than in others groups. CONCLUSION: The present study suggests that prevention of peroxide generation in PN and/or correction of the redox potential by adding glutathione in PN are not sufficient, at least in newborn guinea pigs, to restore normal MAT activity.


Assuntos
Suplementos Nutricionais , Glutationa/metabolismo , Fígado/metabolismo , Metionina Adenosiltransferase/metabolismo , Nutrição Parenteral , Animais , Biomarcadores , Ativação Enzimática/efeitos dos fármacos , Dissulfeto de Glutationa/metabolismo , Cobaias , Fígado/efeitos dos fármacos , Oxirredução/efeitos dos fármacos , Estresse Oxidativo/efeitos dos fármacos , Soluções de Nutrição Parenteral/farmacologia , Peróxidos/metabolismo
16.
Free Radic Biol Med ; 87: 274-81, 2015 Oct.
Artigo em Inglês | MEDLINE | ID: mdl-26164632

RESUMO

UNLABELLED: Bronchopulmonary dysplasia, a main complication of prematurity, is characterized by an alveolar hypoplasia. Oxidative stress is suspected to be a trigger event in this population who has a low level of glutathione, a main endogenous antioxidant, and who receives high oxidative load, particularly ascorbylperoxide from their parenteral nutrition. HYPOTHESIS: the addition of glutathione (GSSG) in parenteral nutrition improves detoxification of ascorbylperoxide by glutathione peroxidase and therefore prevents exaggerated apoptosis and loss of alveoli. METHODS: Ascorbylperoxide is assessed as substrate for glutathione peroxidase in Michaelis-Menten kinetics. Three-days old guinea pig pups were divided in 6 groups to receive, through a catheter in jugular vein, the following solutions: 1) Sham (no infusion); 2) PN(-L): parenteral nutrition protected against light (low ascorbylperoxide); 3) PN(+L): PN without photo-protection (high ascorbylperoxide); 4) 180 µM ascorbylperoxide; 5) PN(+L)+10 µM GSSG; 6) ascorbylperoxyde+10 µM GSSG. After 4 days, lungs were sampled and prepared for histology and biochemical determinations. Data were analysed by ANOVA, p < 0.05 RESULTS: The Km of ascorbylperoxide for glutathione peroxidase was 126 ± 6 µM and Vmax was 38.4 ± 2.5 nmol/min/ U. The presence of GSSG in intravenous solution has prevented the high GSSG, oxidized redox potential of glutathione, activation of caspase-3 (apoptosis marker) and loss of alveoli induced by PN(+L) or ascorbylperoxide. CONCLUSION: A correction of the low glutathione levels observed in newborn animal on parenteral nutrition, protects lungs from toxic effect of ascorbylperoxide. Premature infants having a low level of glutathione, this finding is of high importance because it provides hope in a possible prevention of bronchopulmonary dysplasia.


Assuntos
Displasia Broncopulmonar/dietoterapia , Glutationa/administração & dosagem , Estresse Oxidativo/efeitos dos fármacos , Nutrição Parenteral , Animais , Animais Recém-Nascidos , Antioxidantes/administração & dosagem , Antioxidantes/metabolismo , Displasia Broncopulmonar/metabolismo , Displasia Broncopulmonar/patologia , Glutationa/metabolismo , Cobaias , Humanos , Peróxido de Hidrogênio/metabolismo , Pulmão/metabolismo , Pulmão/patologia , Alvéolos Pulmonares/metabolismo , Alvéolos Pulmonares/patologia
17.
Redox Biol ; 2: 725-31, 2014.
Artigo em Inglês | MEDLINE | ID: mdl-25009773

RESUMO

BACKGROUND: Bronchopulmonary dysplasia is one of the main complications associated with extreme prematurity. Oxidative stress is suspected to be a trigger event of this lung disease, which is characterized by impaired alveolar development. Peroxides, mainly ascorbylperoxide and H2O2, are known contaminant of parenteral nutrition. We hypothesize that these oxidant molecules induce bronchopulmonary dysplasia development. The aim was to determine if the infusion of ascorbylperoxide, whether in presence or absence of H2O2, is associated with oxidative stress, apoptosis and loss of alveoli in the lungs of newborn guinea pigs. METHOD: Three-day-old guinea pigs received parenteral solutions containing 0, 20, 60 or 180 µM ascorbylperoxide in the presence or not of 350 µM H2O2 (concentrations similar to those measured in parenteral nutrition). After 4 days, the lungs were collected for determination of glutathione's redox potential, caspase-3 activation (an apoptosis marker), alveolarization index (by histology), activation of Nrf2 and NF?B (biological markers of oxidative stress), and IL-6 and PGJ2 levels (markers of NF?B activation). Groups were compared by ANOVA, p < 0.05. RESULTS: Loss of alveoli was associated with ascorbylperoxide in a dose-dependent manner, without an influence of H2O2. The dose-dependent activation of caspase-3 by ascorbylperoxide was lower in the presence of H2O2. Ascorbylperoxide induced an increase of redox potential in a dose-dependent manner, which reached a plateau in presence of H2O2. Nrf2 and NF?B were activated by H2O2 but not by ascorbylperoxide. CONCLUSION: Results suggest that ascorbylperoxide, generated in parenteral nutrition, is involved in the development of bronchopulmonary dysplasia, independently of the increase of the redox potential. This study underlines the importance of developing a safer formulation of parenteral nutrition.


Assuntos
Ácido Ascórbico/análogos & derivados , Glutationa/metabolismo , Pulmão/efeitos dos fármacos , Peróxidos/toxicidade , Alvéolos Pulmonares/fisiopatologia , Animais , Animais Recém-Nascidos , Ácido Ascórbico/toxicidade , Caspase 3/metabolismo , Cobaias , Peróxido de Hidrogênio/toxicidade , Interleucina-6/metabolismo , Pulmão/metabolismo , Fator 2 Relacionado a NF-E2/metabolismo , NF-kappa B/metabolismo , Oxirredução/efeitos dos fármacos , Estresse Oxidativo/efeitos dos fármacos , Nutrição Parenteral , Prostaglandina D2/análogos & derivados , Prostaglandina D2/análise
18.
PLoS One ; 8(5): e63456, 2013.
Artigo em Inglês | MEDLINE | ID: mdl-23717425

RESUMO

INTRODUCTION: The gastrointestinal tract is frequently exposed to noxious stimuli that may cause oxidative stress, inflammation and injury. Intraluminal pro-oxidants from ingested nutrients especially iron salts and ascorbic acid frequently consumed together, can lead to catalytic formation of oxygen-derived free radicals that ultimately overwhelm the cellular antioxidant defense and lead to cell damage. HYPOTHESIS: Since the mechanisms remain sketchy, efforts have been exerted to evaluate the role of epigenetics in modulating components of endogenous enzymatic antioxidants in the intestine. To this end, Caco-2/15 cells were exposed to the iron-ascorbate oxygen radical-generating system. RESULTS: Fe/Asc induced a significant increase in lipid peroxidation as reflected by the elevated formation of malondialdehyde along with the alteration of antioxidant defense as evidenced by raised superoxide dismutase 2 (SOD2) and diminished glutathione peroxidase (GPx) activities and genes. Consequently, there was an up-regulation of inflammatory processes illustrated by the activation of NF-κB transcription factor, the higher production of interleukin-6 and cycloxygenase-2 as well as the decrease of IκB. Assessment of promoter's methylation revealed decreased levels for SOD2 and increased degree for GPx2. On the other hand, pre-incubation of Caco-2/15 cells with 5-Aza-2'-deoxycytidine, a demethylating agent, or Trolox antioxidant normalized the activities of SOD2 and GPx, reduced lipid peroxidation and prevented inflammation. CONCLUSION: Redox and inflammatory modifications in response to Fe/Asc -mediated lipid peroxidation may implicate epigenetic methylation.


Assuntos
Ácido Ascórbico/efeitos adversos , Epigênese Genética/efeitos dos fármacos , Células Epiteliais/efeitos dos fármacos , Inflamação/induzido quimicamente , Intestinos/efeitos dos fármacos , Ferro/efeitos adversos , Peroxidação de Lipídeos/efeitos dos fármacos , Antioxidantes/metabolismo , Células CACO-2 , Linhagem Celular Tumoral , Sobrevivência Celular/efeitos dos fármacos , Sobrevivência Celular/genética , Ciclo-Oxigenase 2/genética , Ciclo-Oxigenase 2/metabolismo , Metilação de DNA/efeitos dos fármacos , Metilação de DNA/genética , Epigênese Genética/genética , Células Epiteliais/metabolismo , Radicais Livres/efeitos adversos , Radicais Livres/metabolismo , Expressão Gênica/efeitos dos fármacos , Expressão Gênica/genética , Glutationa Peroxidase/genética , Glutationa Peroxidase/metabolismo , Humanos , Quinase I-kappa B/genética , Quinase I-kappa B/metabolismo , Inflamação/genética , Inflamação/metabolismo , Interleucina-6/metabolismo , Intestinos/embriologia , Peroxidação de Lipídeos/genética , Malondialdeído/metabolismo , NF-kappa B/genética , NF-kappa B/metabolismo , Regiões Promotoras Genéticas/efeitos dos fármacos , Regiões Promotoras Genéticas/genética , Superóxido Dismutase/genética , Superóxido Dismutase/metabolismo , Regulação para Cima/efeitos dos fármacos , Regulação para Cima/genética
19.
Free Radic Biol Med ; 53(12): 2250-5, 2012 Dec 15.
Artigo em Inglês | MEDLINE | ID: mdl-23085223

RESUMO

Premature newborn infants on total parenteral nutrition (TPN) are at risk of oxidative stress because of peroxides contaminating TPN and low glutathione level. Low cysteine availability limits glutathione synthesis. In this population, the main source of cysteine derives from the hepatic conversion of methionine. The first enzyme of this conversion, methionine adenosyltransferase (MAT), contains redox-sensitive cysteinyl residues. We hypothesize that inhibition of MAT by peroxides contaminating TPN leads to a lower availability of cysteine for glutathione synthesis. At 3 days of life, animals were fitted with a jugular catheter for intravenous infusion. Four groups were compared by ANOVA (P<0.05): (1) Control, without surgery, fed regular chow; (2) Sham, fitted with an obstructed catheter, fed orally regular chow; (3) TPN, fed exclusively TPN (dextrose, amino acids, fat, vitamins) containing 350 µM peroxides; (4) H2O2, fed regular chow orally and infused with 350 µM H2O2. Four days later, MAT activity and glutathione in liver and blood were lower in TPN and H2O2 groups. The redox potential was more oxidized in blood and liver of the TPN group. In conclusion, peroxides generated in TPN inhibit methionine adenosyltransferase activity with, among consequences, a low level of glutathione and a more oxidized redox potential.


Assuntos
Glutationa/deficiência , Peróxido de Hidrogênio/toxicidade , Fígado/enzimologia , Metionina Adenosiltransferase/metabolismo , Oxidantes/toxicidade , Soluções de Nutrição Parenteral/toxicidade , Animais , Animais Recém-Nascidos , Contaminação de Alimentos , Glutationa/biossíntese , Glutationa/sangue , Cobaias , Peróxido de Hidrogênio/administração & dosagem , Infusões Intravenosas , Metionina Adenosiltransferase/antagonistas & inibidores , Oxidantes/administração & dosagem , Oxirredução , Estresse Oxidativo , Soluções de Nutrição Parenteral/administração & dosagem , Nutrição Parenteral Total , Nascimento Prematuro/terapia
20.
Am J Physiol Gastrointest Liver Physiol ; 303(5): G623-34, 2012 Sep 01.
Artigo em Inglês | MEDLINE | ID: mdl-22744335

RESUMO

Paraoxonase (PON) family members seem central to a wide variety of human illnesses, but appreciation of their antioxidative function in the gastrointestinal tract is in its infancy. The major objective of the present work is to highlight the role of the ubiquitously expressed PON2 in the small intestine. With use of pLKO lentiviral vector containing short hairpin RNA (shRNA) lentivirus, PON2 expression was knocked down in intestinal Caco-2/15 cells, where antioxidative status, lipid peroxidation, and degree of inflammation were evaluated. As a consequence of PON2 inactivation in the epithelial cells, we observed 1) imbalanced primary and secondary antioxidative responses, characterized by increased superoxide dismutases and decreased catalase, 2) high concentrations of H(2)O(2) and malondialdehyde, along with low glutathione-to-glutathione disulfide ratio, 3) upregulation of TNF-α, IL-6, and monocyte chemoattractant protein-1 gene expression after induction of oxidative stress, and 4) raised level of the activation of transcription factor NF-κB, which was likely implicated in exacerbation of the inflammatory activation. These results suggest that PON2 is involved in the antioxidative and anti-inflammatory response in intestinal epithelial cells.


Assuntos
Arildialquilfosfatase/metabolismo , Células Epiteliais/metabolismo , Mucosa Intestinal/metabolismo , Estresse Oxidativo/genética , Antioxidantes , Arildialquilfosfatase/genética , Western Blotting , Catalase/metabolismo , Técnicas de Cultura de Células , Humanos , Inflamação/metabolismo , Peroxidação de Lipídeos , Malondialdeído/metabolismo , Reação em Cadeia da Polimerase , Superóxido Dismutase/metabolismo
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