1000 resultados para acerola (Malpighia glabra, L.)


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The bioactive compounds and antioxidant capacities of polyphenolic extracts of 18 fresh and dry native non-traditional fruits from Brazil were determined using ABTS, DDPH, FRAP and beta-carotene bleaching methods. The study provides an adaptation of these methods, along with an evaluation of the compounds related to antioxidant potential. The results show promising perspectives for the exploitation of non-traditional tropical fruit species with considerable levels of nutrients and antioxidant capacity. Although evaluation methods and results reported have not yet been sufficiently standardised, making comparisons difficult, our data add valuable information to current knowledge of the nutritional properties of tropical fruits, such as the considerable antioxidant capacity found for acerola - Malpighia emarginata and camu-camu - Myrciaria dubia (ABTS, DPPH and FRAP) and for puca-preto - Mouriri pusa (all methods). (C) 2010 Elsevier Ltd. All rights reserved.

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Odontopus brevirostris (Hustache, 1936) feeding on Annona squamosa L., A. cherimola Mill., A. glabra L., and A. muricata L. was observed. The last three host plants are recorded for the first time. The endophitic oviposition occurs in the veins of the ventral surface of the young leaves. The larvae, leaf miners, eat the parenchyma and the adults make small holes in the leaves. The pupation occurs in spherical cocoons protected by a sort of nest (pupation chamber) between the two epidermal layers.

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Este trabalho objetivou avaliar o curso diário e sazonal das trocas gasosas, da temperatura foliar e do potencial hídrico da acerola (Malpighia emarginata D.C.), no campo. O experimento realizou-se no município de Paudalho, PE. Os valores da transpiração e do potencial da água foram, de modo geral, mais elevados no início da manhã e no final da tarde; os da resistência difusiva e temperatura foliar foram menores no início da manhã e no final da tarde. Houve uma limitação das trocas gasosas com o ambiente, em decorrência da redução da transpiração nas horas mais quentes do dia, sendo mais acentuada na estação seca e na matriz UFRPE 7. Os valores mínimos do potencial ocorreram na época seca, variando de -3,4 MPa (UFRPE 7) a -4,3 MPa (UFRPE 8), enquanto os valores máximos da resistência variaram de 16,30 s cm-1 (UFRPE 7) a 22,10 s cm-1 (UFRPE 8) na mesma estação. O potencial hídrico e a resistência difusiva mostraram forte correlação com o déficit de pressão de vapor. A maior capacidade fotossintética foi verificada em folhas maduras da matriz UFRPE 8. Os mecanismos fisio³gicos apresentados pelas plantas demonstram que elas podem resistir a períodos de estresse hídrico quando estes se manifestam. A matriz UFRPE 8 é mais adaptada a períodos de estiagem do que a UFRPE 7.

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O objetivo deste trabalho foi avaliar as características físicas, físico-químicas e químicas de frutos de nove genótipos de acerola (Malpighia sp.) cultivados no Município de Anápolis, GO, localizado a 1.000 m de altitude. Os resultados mostraram que nessa região se consegue produção de frutos com elevados teores de vitamina C (acima de 1.000 mg/100 mL de suco). Há, entretanto, uma considerável variabilidade entre os genótipos estudados. Os genótiposde número2, 6, 3, 1 e 7 destacaram-se, atendendo àsprincipais exigências da indústria de suco.

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O trabalho objetivou o estudo da capacidade de enraizamento de quatro espécies de Annonaceae potenciais como porta-enxertos (Annona glabra L., Annona montana Macfad, Rollinia emarginata e Rollinia mucosa Baill.) em três épocas do ano (verão, outono e inverno). Experimento conduzido em câmara de nebulização intermitente pertencente à UNESP/FCAV (21º15'22"S e 48º18'58"W), utilizando-se de estacas apicais enfolhadas em tratamento rápido (5 segundos) com ácido indolbutírico (IBA) (0; 1000; 3000; 5000 e 7000 mg.L-1), em esquema fatorial. Após 90 dias, avaliaram-se a porcentagem de estacas enraizadas, sobrevivência, comprimento e número de raízes. Como resultados, o IBA não incrementou a capacidade de enraizamento das espécies. A época do ano foi grande influente no sucesso de enraizamento, sendo o verão mais adequado. A. glabra e A. montana mostraram-se promissoras na propagação vegetativa via estaquia (clonagem). R. emarginata apresentou baixos valores para as características avaliadas, devendo ser intensificados experimentos na promoção do enraizamento em relação aos atuais valores obtidos. R. mucosa não apresentou resultados satisfatórios, ocorrendo necrose de tecido na base das estacas, devendo as causas serem melhor investigadas. O sucesso no enraizamento de Annonaceae é dependente da espécie, tendo aquelas do gênero Annona apresentado resultados superiores em relação às do gênero Rollinia.

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Parasitoides são importantes agentes de controle natural de tefritídeos, e os conhecimentos sobre as relações tritróficas podem subsidiar o manejo destas pragas. Este trabalho objetivou estimar índices de parasitismo em moscas-das-frutas, em 21 espécies vegetais, e identificar as espécies de parasitoides associados, nas condições do semiárido do sudoeste da Bahia. Oito hospedeiros apresentaram infestação por Anastrepha spp. e, destes, em quatro, ocorreu parasitismo superior a 20,0%, sendo: 20,8% (Ziziphus joazeiro L.); 21,3% (Spondias tuberosa L.); 32,4% (Spondias purpurea L.) e 57,1% (Malpighia emarginata L.). Os parasitoides coletados pertencem à família Braconidae, sendo 89% de Doryctobracon areolatus e 11% de Asobara anastrephae.

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Avaliou-se, em condições de casa de vegetação, a patogenicidade de dois isolados de Corynespora cassiicola, obtidos de tomateiro (Lycopersicon esculentum), a abóbora (Cucurbita pepo), aceroleira (Malpighia glabra), caupi (Vigna unguiculata), mamoeiro (Carica papaya), maxixe (Cucumis anguria), pimentão (Capsicum annum), quiabeiro (Abelmoschus esculentus), soja (Glycines max), tomateiro e vinagreira (Hibiscus sabdariffa) com o objetivo de selecionar plantas que possam ser utilizadas em sistemas de rotação de culturas, nas áreas produtoras de tomate. Duas plantas daninhas, trapoeraba (Commelina benghalensis) e assa peixe (Vernonia cinerea), comuns em tomatais, foram incluídas nos testes para se avaliar sua importância como fontes de inóculo. As plantas reagiram diferentemente ao patógeno, sendo a maioria suscetível aos dois isolados do fungo. Sugere-se que o tomateiro não deva ser cultivado consorciado ou muito próximo a plantios de abóbora, maxixe, pimentão, quiabeiro e vinagreira. O controle das invasoras como C.benghalensis e V. cinerea é de fundamental importância para a redução do inóculo no campo.

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O trabalho objetivou o estudo da capacidade de enraizamento de quatro espécies de Annonaceae potenciais como porta-enxertos (Annona glabra L., Annona montana Macfad, Rollinia emarginata e Rollinia mucosa Baill.) em três épocas do ano (verão, outono e inverno). Experimento conduzido em câmara de nebulização intermitente pertencente à UNESP/FCAV (21º15'22S e 48º18'58W), utilizando-se de estacas apicais enfolhadas em tratamento rápido (5 segundos) com ácido indolbutírico (IBA) (0; 1000; 3000; 5000 e 7000 mg.L-1), em esquema fatorial. Após 90 dias, avaliaram-se a porcentagem de estacas enraizadas, sobrevivência, comprimento e número de raízes. Como resultados, o IBA não incrementou a capacidade de enraizamento das espécies. A época do ano foi grande influente no sucesso de enraizamento, sendo o verão mais adequado. A. glabra e A. montana mostraram-se promissoras na propagação vegetativa via estaquia (clonagem). R. emarginata apresentou baixos valores para as características avaliadas, devendo ser intensificados experimentos na promoção do enraizamento em relação aos atuais valores obtidos. R. mucosa não apresentou resultados satisfatórios, ocorrendo necrose de tecido na base das estacas, devendo as causas serem melhor investigadas. O sucesso no enraizamento de Annonaceae é dependente da espécie, tendo aquelas do gênero Annona apresentado resultados superiores em relação às do gênero Rollinia.

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Background: With the emergence of strains resistant to conventional antibiotics, it is important to carry studies using alternative methods to control these microorganisms causing important infections, such as the use of products of plant origin that has demonstrated effective antimicrobial activity besides biocompatibility. Therefore, this study aimed to evaluate the antimicrobial activity of plant extracts of Equisetum arvense L., Glycyrrhiza glabra L., Punica granatum L. and Stryphnodendron barbatimam Mart. against Staphylococcus aureus, Staphylococcus epidermidis, Streptococcus mutans, Candida albicans, Candida tropicalis, and Candida glabrata, and to analyze the cytotoxicity of these extracts in cultured murine macrophages (RAW 264.7).Methods: Antimicrobial activity of plant extracts was evaluated by microdilution method based on Clinical and Laboratory Standards Institute (CLSI), M7-A6 and M27-A2 standards. The cytotoxicity of concentrations that eliminated the microorganisms was evaluated by MTT colorimetric method and by quantification of proinflammatory cytokines (IL-1β and TNF-α) using ELISA.Results: In determining the minimum microbicidal concentration, E. arvense L., P. granatum L., and S. barbatimam Mart. extracts at a concentration of 50 mg/mL and G. glabra L. extract at a concentration of 100 mg/mL, were effective against all microorganisms tested. Regarding cell viability, values were 48% for E. arvense L., 76% for P. granatum L, 86% for S. barbatimam Mart. and 79% for G. glabra L. at the same concentrations. About cytokine production after stimulation with the most effective concentrations of the extracts, there was a significant increase of IL-1β in macrophage cultures treated with S. barbatimam Mart. (3.98 pg/mL) and P. granatum L. (7.72 pg/mL) compared to control (2.20 pg/mL) and a significant decrease of TNF-α was observed in cultures treated with G. glabra L. (4.92 pg/mL), S. barbatimam Mart. (0.85 pg/mL), E. arvense L. (0.83 pg/mL), and P. granatum L. (0.00 pg/mL) when compared to control (41.96 pg/mL).Conclusions: All plant extracts were effective against the microorganisms tested. The G. glabra L. extract exhibited least cytotoxicity and the E. arvense L. extract was the most cytotoxic. © 2013 de Oliveira et al.; licensee BioMed Central Ltd.

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Coordenação de Aperfeiçoamento de Pessoal de Nível Superior (CAPES)

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BACKGROUND Gastrointestinal and respiratory diseases in calves and piglets lead to significant economic losses in livestock husbandry. A high morbidity has been reported for diarrhea (calves ≤ 35 %; piglets ≤ 50 %) and for respiratory diseases (calves ≤ 80 %; piglets ≤ 40 %). Despite a highly diverse etiology and pathophysiology of these diseases, treatment with antimicrobials is often the first-line therapy. Multi-antimicrobial resistance in pathogens results in international accordance to strengthen the research in novel treatment options. Medicinal plants bear a potential as alternative or additional treatment. Based on the versatile effects of their plant specific multi-component-compositions, medicinal plants can potentially act as 'multi-target drugs'. Regarding the plurality of medicinal plants, the aim of this systematic review was to identify potential medicinal plant species for prevention and treatment of gastrointestinal and respiratory diseases and for modulation of the immune system and inflammation in calves and piglets. RESULTS Based on nine initial sources including standard textbooks and European ethnoveterinary studies, a total of 223 medicinal plant species related to the treatment of gastrointestinal and respiratory diseases was identified. A defined search strategy was established using the PRISMA statement to evaluate 30 medicinal plant species starting from 20'000 peer-reviewed articles published in the last 20 years (1994-2014). This strategy led to 418 references (257 in vitro, 84 in vivo and 77 clinical trials, thereof 48 clinical trials in veterinary medicine) to evaluate effects of medicinal plants and their efficacy in detail. The findings indicate that the most promising candidates for gastrointestinal diseases are Allium sativum L., Mentha x piperita L. and Salvia officinalis L.; for diseases of the respiratory tract Echinacea purpurea (L.) MOENCH, Thymus vulgaris L. and Althea officinalis L. were found most promising, and Echinacea purpurea (L.) MOENCH, Camellia sinensis (L.) KUNTZE, Glycyrrhiza glabra L. and Origanum vulgare L. were identified as best candidates for modulation of the immune system and inflammation. CONCLUSIONS Several medicinal plants bear a potential for novel treatment strategies for young livestock. There is a need for further research focused on gastrointestinal and respiratory diseases in calves and piglets, and the findings of this review provide a basis on plant selection for future studies.

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Medicinal plants bave gained a special attention in the last years, due to its renowned health benefits, such as antimicrobial effects [I]. In fact, several natural matrices bave been increasingly studied, namely for its antifungal activity against opportunistic fungi [2,3]. Candida species, although commensa! microorganisms, have caused severe organic dysfunctions to the host, once current antifungal agents have lost their recognized efficiency [2]. So, numerous studies have been carried out focusing the mechanisms of acquired drug-resistance by Candida species [lti-drug therapy (i.e. chemical drugs and also natural extracts combination), the discovery of the involved mechanisms of actions, morphological changes and related kinetic parameters are of major importance. Glycyrrhiza glabra L. (licorice) hydromethanolic extract have evidenced promissory candidacidal effects, and therefore, the involved mechanisms of action need to be clarified. Thus, in the present study these modes of action were assessed, by using flow cytometry.Overall, the licorice extract induced significant and irreversible primary damages on Candida cells, being membrane disruption and consequent unviability one of the main targets. In fact, after membrane destabilization, cells lost their proper homeostasis, their metabolic functions were blocked and, consequently cells lost functionality. The relevance and interest of the achieved results open new insights towards the upcorning use of the present phenolic matrix, being important to evaluate its in viva efficacy. Therefore, further studies are necessary to deepen knowledge on this field, aiming not only to establish therapeutic and prophylactic doses, but also to improve the clinical intervention in Candida infections.

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Aging process is conceived as a normal stage during human life cycle, but it is also considered a hot topic among scientists and medical community. Alarming rates of premature aging and oxidative stress-related diseases have increasingly affect human individuals. Stress, pollution and exposition to chemical substances are considered the main triggering factors for those conditions; in addition, they also suppress the immune system and, therefore, improve organic vulnerability and occurrence of opportunistic infections [I]. Apart from the associated morbidity and mortality, the increasing rates of antimicrobial resistance improve the severity of the clinical conditions [2]. Botanical preparations possess a multitude of bioactive properties, namely acting as antimicrobials, antioxidants, and homeostasis modulators. Thus, upcoming alternatives, mainly based in plant phytochemicals, are necessary to improve the wellbeing as also life expectancy of individuals. The present study aims to evaluate and to compare both antioxidant and antimicrobial properties of plant extracts rich in phenolic compounds. Among the tested plants, Glycyrrhiza glabra L. (licorice) evidenced the most pronounced free radicals scavenging and antimicrobial effects, followed by Salvia officina/is L. (sage), Thymus vulgaris L. (thyme) and Origanum vulgare L. (oregano). Eucalyptus globulus Labill. (blue gum) and Juglans regia L. (walnut) also showed a high effect, while Pterospartum tridentatum (L.) Willk. (carqueja) and Rubus ulmifolius Schott (elm leaf blackberry) displayed moderate effects, and lastly, Tabebuia impetigirwsa (Mart. ex DC) Standley (pau d'arco), Foeniculum vulgare Miller (fennel), Rosa canina L. (rose hips) and Matricaria recutita L. (chamomile) gave only slight effects. In general, the most pronounced bioactivities were observed in the plant preparations (infusion>decoction>hydromethanolic extract) with higher levels of phenolic compounds (both flavonoids and phenolic acids). The observed synergisms between the phenolic compounds present in the extracts highlight the use of phytochemicals as future health promoters. However, further studies are necessary to understand the effective mode of action of individual phenolic constituents as also the existence of polyvalence relationships between them.

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Opportunistic fungal infections, namely involving Candida species, constitute a hot topic for scientific researchers. The present wor1( aims to access antifungal potential of plant-derived phenolic extrac:ls against planktonic cells and biofilms of Candida species. Eucalyptvs globulus Labill. (blue gum), Glycyrrhiza glabra L. (licorice), Juglans regia L. (walnut) and Salvia officina/is L. (sage) evidenced to be the most effective Candida growth inhibitors, using disc diffusion assay. Minmal inhibitory (MIC) and minimal fungicidal (MFC) concentrations, and chemical composition of extracts by using HPLC-DAO-ESVMS were also determined. Blue gum and walnut mainly exerted fungistatic potential, while sage exerted an interesting anti-Candida potential. However, the most prominent candidacidal potential was observed to licorice extract, being achieved the lowest MIC and MFC values. The candidacidal potential of these phenolic extracts was mainly attributed to their high abundance in flavonoids, mainly flavones: luteolin (sage) and apigen~ derivatives (licorice), and flavanones: liQuiritin derivatives (licorice). In order to deepen the knowledge on the most effective extract. its abiity to inhibit biofilm formation was evaluated. Overall, a double concentration of MFC value was necessary to achieve similar results in biofims. Row cytometry assays were also carried out, and the obtained results revealed that primary lesion of cellular membrane appear to be most relevant mode of action. Thus, plant derived phenolic compounds evidence a promising potential to combat Candida species biofilms, both individually or combined with conventional therapy.

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In chapter one, the autoxidation kinetics of natural oil substrates, including, triglyceric sunflower oil, olive oil, terpenic squalene, and p-cymene were calibrated through differential oximetry methods. Calibration allows their use as reference oxidizable substrates for further studies, e.g. for quantitative testing of antioxidants under biomimetic settings. Several essential oils samples, of different botanical species or different productions of same species were studied for their antioxidant activity in inhibited autoxidation kinetics. Their antioxidant activities were matched with their composition analyzed by GC-MS. In chapter two, the molecular mechanism of the synergy between the common phenolic antioxidants such as tocopherol and catechols with widespread essential component gamma-terpinene was studied through lipid oxidation kinetics. Wherein, gamma-terpinene was able to disclose the key intermediacy HOO·, which acted as a reducing agent regenerating the phenolic antioxidant. This counterintuitive role of HOO· radicals was further investigated in detail and allowed to rationalize for the first time the purported antioxidant behavior of PDA melanin nanoparticles. It will also open to a deeper understanding of the redox biology of quinones. Regarding melanin, its role is broadly important in living organisms and its control, including its inhibition, is of great importance with several relevant applications ranging from food preservation to control of human skin pigmentation. In chapter three, an oximetry method combined with the traditional UV-Vis spectroscopy was developed to study the tyrosinase inhibition kinetics, which allowed identifying Glabridin (from G. glabra, L.), as one of the most effective natural tyrosinase inhibitors.