6 research outputs found

    Toxicological, genotoxic and antioxidant potential of Pyrostegia venusta

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    Pyrostegia venusta is usually found in the secondary growth of the Atlantic forests, and in the Brazilian Savanna. Flowers and leaves of this plant are used in folk remedies for treating a wide variety of healthy conditions, this way is important evaluate its safety and antioxidant potential for this applications. For this, was made a ethanolic extract from its flowers and analyzed with toxicological, genotoxicity and antioxidant tests, the toxicological analysis was made by reproductive toxicity in rats and clatogenicity/aneugenicity in human lymphocytes. The genotoxicity was studied by micronucleus test mice bone marrow. The antimutagenic test in root cells of Allium cepa, the antioxidant assays used was DPPH, FRAP, Lipid Perxidation and REM, beyond of that the extract was analyzed in HPLC showing the profile of its compounds. The toxicological analysis showed that P. venusta has no negative significant effect on reproductive and cellular level. The micronucleus test in mouse bone marrow, the extract protected cells from cyclophosphamide, mutagenic compound, in a similar way. The A. cepa test showed that the extract reduced chromosomal disorders formations. The antioxidant activity of extract was significant, except in REM test. The phytochemical analysis showed the presence of flavonoids compounds. P. venusta extract does not present reproductive toxicity and genotoxic effects. However, the extract of this species showed antigenotoxic and antioxidant potential, possibly due to the different flavonoid compounds present in its extract

    Mitochondrial physiology

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    As the knowledge base and importance of mitochondrial physiology to evolution, health and disease expands, the necessity for harmonizing the terminology concerning mitochondrial respiratory states and rates has become increasingly apparent. The chemiosmotic theory establishes the mechanism of energy transformation and coupling in oxidative phosphorylation. The unifying concept of the protonmotive force provides the framework for developing a consistent theoretical foundation of mitochondrial physiology and bioenergetics. We follow the latest SI guidelines and those of the International Union of Pure and Applied Chemistry (IUPAC) on terminology in physical chemistry, extended by considerations of open systems and thermodynamics of irreversible processes. The concept-driven constructive terminology incorporates the meaning of each quantity and aligns concepts and symbols with the nomenclature of classical bioenergetics. We endeavour to provide a balanced view of mitochondrial respiratory control and a critical discussion on reporting data of mitochondrial respiration in terms of metabolic flows and fluxes. Uniform standards for evaluation of respiratory states and rates will ultimately contribute to reproducibility between laboratories and thus support the development of data repositories of mitochondrial respiratory function in species, tissues, and cells. Clarity of concept and consistency of nomenclature facilitate effective transdisciplinary communication, education, and ultimately further discovery

    Mitochondrial physiology

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    As the knowledge base and importance of mitochondrial physiology to evolution, health and disease expands, the necessity for harmonizing the terminology concerning mitochondrial respiratory states and rates has become increasingly apparent. The chemiosmotic theory establishes the mechanism of energy transformation and coupling in oxidative phosphorylation. The unifying concept of the protonmotive force provides the framework for developing a consistent theoretical foundation of mitochondrial physiology and bioenergetics. We follow the latest SI guidelines and those of the International Union of Pure and Applied Chemistry (IUPAC) on terminology in physical chemistry, extended by considerations of open systems and thermodynamics of irreversible processes. The concept-driven constructive terminology incorporates the meaning of each quantity and aligns concepts and symbols with the nomenclature of classical bioenergetics. We endeavour to provide a balanced view of mitochondrial respiratory control and a critical discussion on reporting data of mitochondrial respiration in terms of metabolic flows and fluxes. Uniform standards for evaluation of respiratory states and rates will ultimately contribute to reproducibility between laboratories and thus support the development of data repositories of mitochondrial respiratory function in species, tissues, and cells. Clarity of concept and consistency of nomenclature facilitate effective transdisciplinary communication, education, and ultimately further discovery

    Interações medicamentosas potenciais com benzodiazepínicos em prescrições médicas de pacientes hospitalizados

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    A prática de associações medicamentosas é comum em pacientes hospitalizados, Esta prática é muitas vezes necessária, principalmente em pacientes psiquiátricos, uma vez que, juntamente com as doenças neuropsiquiátricas, podem ocorrer outras comorbidades, Entretanto, esta prática pode favorecer a ocorrência de interações medicamentosas com consequente potencialização de diferentes efeitos adversos, Diante deste quadro, o presente trabalho teve como objetivo avaliar a ocorrência de potenciais interações medicamentosas com os benzodiazepínicos, prescritos aos pacientes internados na Clínica Psiquiátrica do Hospital Regional de Assis – SP, a fim de gerar informações que contribuam para a eficácia do tratamento estabelecido ao paciente, Para isso, foi realizada uma análise de 100 prescrições médicas, nas quais foram avaliadas as possibilidades de ocorrência de interações medicamentosas entre os diferentes fármacos da classe dos benzodiazepínicos administrados concomitantemente, bem como com outras classes de fármacos, Por meio deste estudo, verificou-se que das 100 prescrições médicas analisadas 93 apresentaram a possibilidade de ocorrência de interações farmacológicas entre benzodiazepínicos e com outras classes de fármacos, totalizando 356 possíveis interações, Desse total, destacam-se as associações dos benzodiazepínicos com os antipsicóticos, anti-histamínicos, antiepilépticos e antidepressivos, as quais podem potencializar a manifestação de inúmeros efeitos adversos, em destaque, a exacerbação do efeito depressor do sistema nervoso central, com repercussões que podem variar desde a manifestação clínica leve até risco de êxito letal, Neste contexto, busca-se com este trabalho contribuir para uma melhor compreensão, reconhecimento e intervenção precoce ou profilática em situações clínicas decorrentes de interações farmacológicas entre diferentes classes de fármacos com os benzodiazepínicos

    Application of a 5-tiered scheme for standardized classification of 2,360 unique mismatch repair gene variants in the InSiGHT locus-specific database.

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    The clinical classification of hereditary sequence variants identified in disease-related genes directly affects clinical management of patients and their relatives. The International Society for Gastrointestinal Hereditary Tumours (InSiGHT) undertook a collaborative effort to develop, test and apply a standardized classification scheme to constitutional variants in the Lynch syndrome-associated genes MLH1, MSH2, MSH6 and PMS2. Unpublished data submission was encouraged to assist in variant classification and was recognized through microattribution. The scheme was refined by multidisciplinary expert committee review of the clinical and functional data available for variants, applied to 2,360 sequence alterations, and disseminated online. Assessment using validated criteria altered classifications for 66% of 12,006 database entries. Clinical recommendations based on transparent evaluation are now possible for 1,370 variants that were not obviously protein truncating from nomenclature. This large-scale endeavor will facilitate the consistent management of families suspected to have Lynch syndrome and demonstrates the value of multidisciplinary collaboration in the curation and classification of variants in public locus-specific databases

    Mitochondrial physiology: Gnaiger Erich et al ― MitoEAGLE Task Group

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