42 research outputs found

    Estudio del efecto fisiológico del consumo de arepas enriquecidas con pectina extraída de la cáscara de curuba (Passiflora tripartita var. mollissima)

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    Se evaluó el efecto fisiológico del consumo de arepas de maíz enriquecidas con 10% (p/p) de pectina extraída de cáscara de curuba sobre los niveles séricos de glucosa y lípidos en adultos voluntarios. La pectina se extrajo con ácido clorhídrico y se precipitó con etanol del 96% (v/v). En primer lugar, los voluntarios consumieron arepa sin pectina por siete días; después, arepa con 10% (p/p) de pectina cítrica comercial por 20 días y, finalmente, arepa con 10% de pectina de curuba por 20 días. Al mismo tiempo, se realizó un análisis sensorial de aceptación. Los resultados mostraron que, al consumir arepa con pectina de curuba, los niveles séricos de glucosa disminuyeron significativamente (5,88% (p = 0,023)), mientras que el perfil lipídico no se afectó. La arepa con pectina de curuba mostró mayor porcentaje de fibra dietética soluble, insoluble y total, así como menor porcentaje de carbohidratos disponibles, respecto a las otras arepas analizadas. El panel sensorial dictaminó baja aceptación en sabor y textura para las arepas con pectina cítrica comercial y con pectina de curuba. Se concluyó que la pectina de curuba puede aprovecharse para la formulación de arepas ya que ofrece a los consumidores un alimento benéfico para reducir los niveles de glucosa en la sangre.The physiological effect of corn arepas consumption enriched with 10% (w/w) pectin extracted from banana passionfruit peel was evaluated on the serum levels of glucose and lipid in adult volunteers. The pectin was extracted with hydrochloric acid and precipitated with 96% (v/v) ethanol. Firstly, the volunteers consumed arepa without pectin for seven days; then, arepa with 10% of commercial citrus pectin for 20 days, and, finally, arepa with 10% banana passionfruit pectin for 20 days. At the same time, a sensory acceptance analysis was carried out. The results showed that, when consuming arepa with banana passionfruit pectin, serum glucose levels decreased significantly (5.88% (p = 0.023)), while the lipid profile was not affected. The arepa formulated with banana passionfruit pectin showed a higher percentage of soluble, insoluble and total of dietary fiber, as well as a lower percentage of available carbohydrates as compared to the other analyzed arepas. The sensory panel ruled low acceptance in flavor and texture for arepas with commercial citrus and banana passionfruit pectin. It was concluded that banana passionfruit pectin can be used for the formulation of arepas since it offers to consumers a beneficial food to reduce blood glucose levels.Este estudo avaliou o efeito metabólico do consumo de arepas de milho enriquecidas com 10% (p/p) de pectina extraída da casca da curuba, sobre os níveis séricos de glucose e lipídios, em adultos voluntários. A pectina foi extraída utilizando ácido clorídrico e precipitou-se com etanol à 96% (v/v). Primeiro, os voluntários consumiram arepa sem pectina por sete dias, então arepa com 10% de pectina cítrica comercial por 20 dias, e finalmente arepa com 10% de pectina de curuba por 20 dias. Paralelamente, foi realizado uma análise sensorial de aceitação. Os resultados encontrados mostram que ao consumir arepa com pectina de curuba os níveis séricos de glucose diminuíram significativamente (5,88% (p = 0,023)), enquanto que o perfil lipídico não foi afectado. A arepa com pectina de curuba mostrou maior percentagem de fibra dietética solúvel, insolúvel e total, e um menor percentagem de carboidratos disponíveis com respeito aos valores das outras arepas avaliadas. O painel sensorial mostrou baixa aceitação no sabor y textura para arepas com pectina cítrica comercial e de curuba. Concluiu-se que a pectina de curuba pode ser usada para a formulação de arepas, uma vez que oferece aos consumidores um alimento benéfico para reduzir os níveis de glucose no sangue

    Mujeres rurales, tierra y producción : participación de mujeres rurales en cadenas de valor

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    Esta publicación recoge 6 estudios de casos sobre las mujeres campesinas, afrodescendientes e indígenas, en diferentes procesos productivos en la agricultura y pesca artesanal en El Salvador, Honduras, Costa Rica, Colombia y Venezuela. En cada uno de los casos estudiados se plantea la necesidad de generar acciones desde los diferentes espacios para garantizar que las mujeres puedan potenciar sus capacidades productivas, así como recibir una retribución justa del esfuerzo productivo que realizan. El objetivo es hacer una contribución al conocimiento para enfrentar la exclusión social, económica y cultural que viven las mujeres productoras rurales desde sus diversas identidades. El análisis de las cadenas de valor orgánicas de la semilla de marañón, el café, la miel y el cacao, así como la de la pesca artesanal y la de salsa de tomate, dejan plasmada la constancia del aporte significativo que están haciendo las mujeres al desarrollo de sus comunidades y al de sus familias

    Mitochondrial Aging and Metabolism: The Importance of a Good Relationship in the Central Nervous System

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    The mitochondrial theory of aging suggests that mitochondria have a decrease in production capacity of adenosine triphosphate (ATP). The question may seem trivial, but it becomes more complex when considering that dysfunctional mitochondria can be eliminated by lysosomal digestion and that cell with dysfunctional mitochondria can undergo the process of apoptosis. In organs with regenerative capacity, like the liver, cell proliferation can almost completely hide mitochondrial dysfunction. However, evidence indicates selective damage in mitochondria during aging, and so the mitochondrial aging theory is gaining recognition and respect. There is solid evidence that accumulated DNA damage in mitochondria is a cause directly related to metabolic disorders such as diabetes and degenerative disorders such as Alzheimer’s disease. The central nervous system is particularly susceptible to oxidative damage due to several factors, among which are its high oxygen consumption, its dependence on aerobic carbohydrate metabolism, and its complex composition of membrane lipids. Free radicals are generated at many cell sites, and the mitochondrial respiratory chain is one of the main sources. While many studies have been conducted in experimental animal models, the results are relevant because at least some of their interventions suggest a directing aim at reducing the effects of aging

    Genomic Instability Decreases in HIV Patient by Complementary Therapy with Rosmarinus officinalis Extracts

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    Genomic instability is associated with increased oxidative stress in patients with human immunodeficiency virus (HIV). The aim of this study was to determine the effect of intake of methanolic and aqueous extracts of Rosmarinus officinalis on genomic instability in HIV patients. We studied 67 HIV patients under pharmacological treatment with ATRIPLA who were divided into three groups: group 1, patients under ATRIPLA antiretroviral therapy; group 2, patients with ATRIPLA and rosemary aqueous extract (4 g/L per day); and group 3, patients with ATRIPLA and rosemary methanolic extract (400 mg/day). The genomic instability was evaluated through the buccal micronucleus cytome assay. Oral epithelial cells were taken at the beginning and 1 and 4 months later. The groups that received the pharmacological therapy with ATRIPLA and the complementary therapy with R. officinalis extracts showed a decrease in the number of cells with micronuclei and nuclear abnormalities compared with the group that only received ATRIPLA. The complementary therapy with R. officinalis decreased the genomic instability in HIV patients

    Spare PRELI Gene Loci: Failsafe Chromosome Insurance?

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    LEA (late embryogenesis abundant) proteins encode conserved N-terminal mitochondrial signal domains and C-terminal (A/TAEKAK) motif repeats, long-presumed to confer cell resistance to stress and death cues. This prompted the hypothesis that LEA proteins are central to mitochondria mechanisms that connect bioenergetics with cell responses to stress and death signaling. In support of this hypothesis, recent studies have demonstrated that mammalian LEA protein PRELI can act as a biochemical hub, which upholds mitochondria energy metabolism, while concomitantly promoting B cell resistance to stress and induced death. Hence, it is important to define in vivo the physiological relevance of PRELI expression.Given the ubiquitous PRELI expression during mouse development, embryo lethality could be anticipated. Thus, conditional gene targeting was engineered by insertion of flanking loxP (flox)/Cre recognition sites on PRELI chromosome 13 (Chr 13) locus to abort its expression in a tissue-specific manner. After obtaining mouse lines with homozygous PRELI floxed alleles (PRELI(f/f)), the animals were crossed with CD19-driven Cre-recombinase transgenic mice to investigate whether PRELI inactivation could affect B-lymphocyte physiology and survival. Mice with homozygous B cell-specific PRELI deletion (CD19-Cre/Chr13 PRELI(-/-)) bred normally and did not show any signs of morbidity. Histopathology and flow cytometry analyses revealed that cell lineage identity, morphology, and viability were indistinguishable between wild type CD19-Cre/Chr13 PRELI(+/+) and CD19-Cre/Chr13 PRELI(-/-) deficient mice. Furthermore, B cell PRELI gene expression seemed unaffected by Chr13 PRELI gene targeting. However, identification of additional PRELI loci in mouse Chr1 and Chr5 provided an explanation for the paradox between LEA-dependent cytoprotection and the seemingly futile consequences of Chr 13 PRELI gene inactivation. Importantly, PRELI expression from spare gene loci appeared ample to surmount Chr 13 PRELI gene deficiency.These findings suggest that PRELI is a vital LEA B cell protein with failsafe genetics

    Formando educadores en el sur de Colombia : Investigación educativa en licenciatura en educación infantil.

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    Este libro ofrece al lector reflexión continua de los retos de la universidad en la formación de licenciados para la transformación y emancipación de Colombia hacia la construcción de paz, revela las realidades socio críticas del XXI en los programas académicos de licenciados y visualiza las niñeces como sujetos políticos y sociales, logrando un despliegue significativo de metodologías pertinentes para la formación de maestros en Colombia y Latinoamérica

    Formando educadores en el sur de Colombia : Investigación educativa en licenciatura en educación infantil.

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    Este libro ofrece al lector reflexión continua de los retos de la universidad en la formación de licenciados para la transformación y emancipación de Colombia hacia la construcción de paz, revela las realidades socio críticas del XXI en los programas académicos de licenciados y visualiza las niñeces como sujetos políticos y sociales, logrando un despliegue significativo de metodologías pertinentes para la formación de maestros en Colombia y Latinoamérica

    Extracellular MicroRNAs as Intercellular Mediators and Noninvasive Biomarkers of Cancer

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    MicroRNAs (miRNAs) are released by different types of cells through highly regulated mechanisms under normal and pathological conditions. These extracellular miRNAs can be delivered into recipient cells for functional purposes, acting as cell-to-cell signaling mediators. It has been discovered that cancer cells release miRNAs into their surroundings, targeting normal cells or other cancer cells, presumably to promote tumor development and progression. These extracellular miRNAs are associated with oncogenic mechanisms and, because they can be quantified in blood and other bodily fluids, may be suitable noninvasive biomarkers for cancer detection. This review summarizes recent evidence of the role of extracellular miRNAs as intercellular mediators, with an emphasis on their role in the mechanisms of tumor development and progression and their potential value as biomarkers in solid tumors. It also highlights the biological characteristics of extracellular miRNAs that enable them to function as regulators of gene expression, such as biogenesis, gene silencing mechanisms, subcellular compartmentalization, and the functions and mechanisms of release

    Mechanisms of Lung Damage and Development of COPD Due to Household Biomass-Smoke Exposure: Inflammation, Oxidative Stress, MicroRNAs, and Gene Polymorphisms

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    Chronic exposure to indoor biomass smoke from the combustion of solid organic fuels is a major cause of disease burden worldwide. Almost 3 billion people use solid fuels such as wood, charcoal, and crop residues for indoor cooking and heating, accounting for approximately 50% of all households and 90% of rural households globally. Biomass smoke contains many hazardous pollutants, resulting in household air pollution (HAP) exposure that often exceeds international standards. Long-term biomass-smoke exposure is associated with Chronic Obstructive Pulmonary Disease (COPD) in adults, a leading cause of morbidity and mortality worldwide, chronic bronchitis, and other lung conditions. Biomass smoke-associated COPD differs from the best-known cigarette smoke-induced COPD in several aspects, such as a slower decline in lung function, greater airway involvement, and less emphysema, which suggests a different phenotype and pathophysiology. Despite the high burden of biomass-associated COPD, the molecular, genetic, and epigenetic mechanisms underlying its pathogenesis are poorly understood. This review describes the pathogenic mechanisms potentially involved in lung damage, the development of COPD associated with wood-derived smoke exposure, and the influence of genetic and epigenetic factors on the development of this disease

    Mechanisms of Lung Damage and Development of COPD Due to Household Biomass-Smoke Exposure: Inflammation, Oxidative Stress, MicroRNAs, and Gene Polymorphisms

    No full text
    Chronic exposure to indoor biomass smoke from the combustion of solid organic fuels is a major cause of disease burden worldwide. Almost 3 billion people use solid fuels such as wood, charcoal, and crop residues for indoor cooking and heating, accounting for approximately 50% of all households and 90% of rural households globally. Biomass smoke contains many hazardous pollutants, resulting in household air pollution (HAP) exposure that often exceeds international standards. Long-term biomass-smoke exposure is associated with Chronic Obstructive Pulmonary Disease (COPD) in adults, a leading cause of morbidity and mortality worldwide, chronic bronchitis, and other lung conditions. Biomass smoke-associated COPD differs from the best-known cigarette smoke-induced COPD in several aspects, such as a slower decline in lung function, greater airway involvement, and less emphysema, which suggests a different phenotype and pathophysiology. Despite the high burden of biomass-associated COPD, the molecular, genetic, and epigenetic mechanisms underlying its pathogenesis are poorly understood. This review describes the pathogenic mechanisms potentially involved in lung damage, the development of COPD associated with wood-derived smoke exposure, and the influence of genetic and epigenetic factors on the development of this disease
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