258 resultados para Atividades de ocupação terapêutica


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Cancer is a multi-factorial disease linked with different initiating causes, cofactors and promoters, and several types of cellular damage. Advancing knowledge on the cellular and molecular biology of the processes that regulate cell proliferation, cell differentiation and cellular responses to external signals, has provided a wealth of information about the cancer cell and how it differs from a normal one. These findings make available a number of potential targets for new therapeutic approaches. The Medicinal Chemistry artwork performed so far in the development of selective and potent adenosine receptor A3 ligands, a current cancer target, will be highlighted in this work.

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Through the analysis of articles with proposals for experimental activities and with current pedagogical, epistemological and environmental discussion on experimentation by Chemistry professors, this paper investigates ways of highlighting relevant methodological characteristics that can be incorporated in experiments. 102 articles from national periodicals were analysed, all of which suggested experiments for use in Chemistry higher education. Based on analysis of the suggestions for experiments it appears that of particular importance are: visions, such as those that explain a belief that experimentation incentivizes motivation and conceptual learning; awareness of observation influenced by empiricism; and "errors" of students, which enrich their knowledge.

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TiO2 nanotubes were synthesized by hydrothermal method and doped with three nitrogen compounds to enhance photocatalytic activity under visible light. Catalysts were characterized by X-ray diffraction (XRD), transmission electron microscopy (TEM), diffuse reflectance spectroscopy (DRS) and specific surface area and pore volume determined by BET and BJH methods, respectively. Photocatalytic activity was evaluated by photodegradation of rhodamine B under visible and UV radiations. Results showed doped-nanotubes were more efficient under visible light. The best photocatalytic activity was for sample NTT-7-600/NH3I, being 30% higher than the non-doped sample.

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Emission factors of natural processes and anthropogenic activities were used to estimate nutrients and metal loads for the lower Macaé river basin, which hosts the operational base for the offshore oil and gas exploration in the Campos Basin. The estimates indicated that emissions from anthropogenic activities are higher than natural emissions. Major contributing drivers include husbandry and urbanization, whose effluents receive no treatment. The increasing offshore oil exploration along the Brazilian littoral has resulted in rapid urbanization and, therefore might increase the inshore emission of anthropogenic chemicals in cases where effective residue control measures are not implemented in fluvial basins of the region.

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The essential oils of branches and leaves of Endlicheria citiodora were obtained by hydrodistillation and analysed using GC-FID, GC-MS and both NMR 13C and ¹H, resulting in the identification of methyl geranate as major constituent (93%) in both oils. Cytotoxicity, tyrosinase-inhibition and antioxidant activities were studied and characterized. High antioxidant potential (15.52 and 13.53 µg/mL), low cytotoxicity and tyrosinase inhibition (53.85%) were observed. This is the first paper reporting the biological activities and composition of the essential oils of this species.

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A new flavonoid, catechin-3-O-(3"-O-trans-cinnamoyl)-α-rhamnopyranoside, along with known compounds, catechin-3-O-α-rhamnopyranoside, 3-oxo-urs-12-en-28-oic acid, 2,4,6-trimethoxybenzoic acid, 2-butyl-D-fructofuranoside and 1-butyl-D-fructofuranoside, has been isolated from the stem bark of V. thyrsoidea. These compounds were assayed for inhibition of protease activity (cathepsins B and K) and against cancer cell lines. Catechin-3-O-(3"-O-trans-cinnamoyl)-α-rhamnopyranoside showed moderate inhibitory activity (IC50 = 62.02 µM) against cathepsin B while 2-butyl-D-fructofuranoside was the most potent against a strain of CNS (SF-295) and human leukemia (HL-60) with IC50 = 36.80 µM and IC50 = 25.37 µM, respectively.

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The phytochemical investigation of Sabicea brasiliensis roots led to the isolation of 5-O-caffeoylquinic acid, 3,5- and 4,5-O-dicaffeoylquinics acids, scopoletin, ursolic acid, a mixture of β-sitosterol, stigmasterol and campesterol, daucosterol and saccharose. The structures of the isolated compounds were assigned on the basis of one- and two-dimensional NMR spectroscopic methods and by comparison with literature data. The anti-inflammatory and antioxidant activities of the crude methanolic extract and its fractions were analyzed.

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Latent fluorogenic probes are essential tools for molecular and chemical biology, providing valuable information about enzymatic activity and occurrence. In this review, a brief outline of fluorophores and latent fluorogenic probes is given. Furthermore, advances and challenges in the development of fluorogenic chemical probes to visualize enzymatic activities (hydrolases and oxidoreductases) of biotechnological and biomedical interest are highlighted, including some methodologies for intracellular imaging.

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The chemical study of the orchid Maxillaria picta resulted in the isolation of the bioactive stilbenes phoyunbene B and phoyunbene C, in addition to four phenolic acids, one xanthone, steroidal compounds and two triterpenes. Crude extract, fractions, subfractions and the isolated xanthone were evaluated for anticancer activity against human tumor cell lines and against evolutionary forms of T. cruzi and L. amazonensis. The structures of the compounds were determined by GC-MS, and ¹H NMR, 13C NMR spectral methods as well as bidimensional techniques.

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Nutrient levels in water reservoirs have been increasing over the years worldwide and fish farming is one of the activities with the potential to cause negative impacts on these environments. Thus, the sedimentation of the main nutrients was evaluated in a reservoir as well as the contribution of aquaculture in raising these rates. The results indicated a significant difference for all nutrients, with higher concentrations in areas near the fish farming, and lower levels in more distant regions. Therefore, assessments that focus only on the water column do not reflect the true impact of this activity.

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Phytochemical investigations of the stem bark, leaves and twigs of Guatteria citriodora resulted in the isolation of eight alkaloids: liriodenine, lysicamine, O-methylmoschatoline, 3-methoxyoxoputerine, palmatine, 3-methoxyguadiscidine, guattescidine and oxoputerine. The structures of the isolated substances were established by extensive spectroscopic techniques (1D and 2D NMR) and mass spectrometry (MS), as well as by comparison with data reported in the literature. The in vitro antimalarial activity of the alkaloidal fractions of the leaves and twigs against Plasmodium falciparum FCR3 showed significant results, with IC50 = 1.07 and 0.33 mg mL-1, respectively. The alkaloidal fraction of the leaves showed moderate activity against Enterococcus faecalis, with IC50 = 125.0 mg mL-1. Antiplasmodial and antibacterial activities are attributed to alkaloidal constituents.

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Turmeric, obtained from the dried rhizomes of Curcuma longa (Zingiberaceae), is a golden colored material, commonly used around the world for seasoning and coloring food dishes. Since antiquity, turmeric has been widely used in the treatment of several diseases in traditional Chinese and Indian medicine (Ayurveda), where it is also known by other names such as Kanchani (goddess gold) or also Gauri (having a bright and luminous face), a designation stemming from the gilded appearance of the plant material. Curcumin, the main chemical component of turmeric, is responsible both for its properties as dyes as well as its biological activities. This diarylheptanoid was first isolated almost two centuries ago and had its chemical structure determined in 1910 as being diferuloylmethane. Subsequently, more detailed and relevant data were obtained furthering the understanding of structural features of curcumin. The classical methodology for the synthesis of curcumin and other curcuminoids was described in 1960 by Pabon. Subsequently, different variations on this methodology have been developed, culminating with the synthesis of different curcuminoids. Several studies have been published in recent years on the biological activities exhibited by curcumin including its antioxidant, antitumor, anti-inflammatory, antiviral, antibacterial, antifungal, antimalarial and leishmanicidal activities.

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A geração de radicais livres, resultado dos processos metabólicos necessários para a produção de energia, causam um grande número de doenças, o que aumenta o interesse pelos compostos antioxidantes presentes em frutos e vegetais e que são responsáveis pela captura destes radicais. Além disso, a aplicação de óleos e extratos de frutos no controle microbiológico justifica o crescimento dos estudos científicos dessas matérias-primas. Nesse contexto o presente trabalho analisou o óleo essencial de diferentes partes do fruto de uvaia (Eugenia pyriformis) em relação à atividade microbiológica, fenóis totais e antioxidantes. O óleo essencial apresentou rendimento maior na casca (1,23 %), seguido pela fração casca com polpa, a fração com menor rendimento foi à semente, sendo quantificados a partir do fruto refrigerado. Os resultados obtidos na microbiologia frente as cepas de Scherichia coli ATCC25922, Staphylococcus aureus ATCC 6538, Pseudomonas aeruginosas ATCC 27 853 e Enterococcus faecalis ATCC99212 foram de ação bacteriostática em todas as cepas testadas, exceto a bactéria P. aeruginosas. Intervalo de inibição superior a 24 h foi observado para o óleo essencial da casca frente a bactéria P. aeruginosas. A quantificação de fenóis totais não foi possível pois os valores médios encontrados foram inferiores ao LQ (5 μg/mL), por espectrofotometria a 760 nm e as atividade antioxidante mostraram-se não significativas nas concentrações analisadas, em todas as frações.

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As atividades amilolítica e pectinolítica de 45 isolados de Alternaria solani, provenientes de diferentes hospedeiros, foram estimadas por meio da difusão enzimática em meio sólido específico e mensuração do halo de degradação do substrato. Todos os isolados degradaram pectina. Apenas 17 isolados apresentaram atividade amilolítica, sendo nove isolados provenientes de batateira. Somente o isolado AS18 se destacou como bom produtor de ambas as enzimas. Uma vez que a atividade pectinolítica foi mais evidente, avaliou-se a influência de pectinases na agressividade de A. solani ao tomateiro. Para isso, cinco isolados (2 de berinjela, 2 de tomateiro e 1 de batateira) contrastantes quanto à produção de pectinases foram selecionados para testes em folíolos destacados e plantas inteiras. Quatro isolados foram utilizados no teste em folíolos destacados (AS6, AS7, AS12 e AS26), e constatou-se haver variabilidade patogênica. A correlação obtida entre o tamanho das lesões e a atividade pectinolítica foi de r = 0,963 (P = 0,087). Cinco isolados (AS6, AS7, AS12, AS25 e AS26) foram inoculados em plantas inteiras de tomate. Os isolados não diferiram quanto ao número de lesões/cm² de área foliar, porém variaram em agressividade. Houve correlação (r = 0,916; P = 0,042) entre a atividade de pectinases e o índice de doença, sugerindo possível papel para as enzimas pécticas durante a infecção de A. solani em tomateiro. É provável que as diferenças no perfil enzimático dos isolados estejam associadas ao hospedeiro original de onde os mesmos foram obtidos. Os resultados reforçaram evidências de especificidade por hospedeiro em populações de A. solani.

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Compostos secundários presentes em plantas medicinais desempenham funções importantes em interações planta-patógeno, por ação antimicrobiana direta ou induzindo a síntese de mecanismos de defesa em outras plantas. Para verificar o efeito fungitóxico do eucalipto sobre o crescimento micelial de Rhizoctonia solani, Sclerotium rolfsii, Phytophthora sp, Alternaria alternata e Colletotrichum sublineolum, o extrato bruto (EB) foi incorporado ao BDA e o óleo essencial (OE) foi distribuído na superfície do meio com alça de Drigalski. A germinação de esporos de C. sublineolum também foi avaliada na presença de diferentes alíquotas de OE. Para verificar a indução de fitoalexinas, mesocótilos de sorgo foram aspergidos com EB a 20% ou então, mergulhados em suspensões do OE. Para a indução de gliceolina, 20 µL do EB foram colocados em cotilédones de soja. A presença de compostos fungitóxicos no OE e EB através da cromatografia de camada delgada também foi avaliada. Os resultados evidenciaram inibição do crescimento micelial dos fungos para concentrações do EB acima de 20%. Todas as alíquotas do óleo inibiram o crescimento micelial dos fungos testados, com exceção de R. solani cuja inibição ocorreu para alíquotas acima de 20µL. Houve inibição de 100% na germinação dos conídios para todas as alíquotas do OE testadas na primeira metodologia, porém, na segunda metodologia o OE não promoveu inibição da germinação de esporos. Entretanto, foram observadas alterações na morfologia dos tubos germinativos e inibição da formação de apressórios. Observou-se a presença de apenas uma fração fungitóxica no OE, e o EB não apresentou frações fungitóxicas. Houve a produção de fitoalexinas apenas em mesocótilos de sorgo tratados com o EB.