892 resultados para Plantas medicinais - Atividade antimicrobiana


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O estudo de plantas medicinais possibilita a descoberta de novos compostos bioativos na procura de drogas promissoras. O aumento de infecções e o aparecimento da resistência microbiana reforçam essa pesquisa. O objetivo do trabalho foi avaliar a atividade antimicrobiana de extratos de seis espécies de plantas medicinais que ocorrem na Amazônia: Psidium guajava (goiabeira), Bryophyllum calycinum Salisb (pirarucu), Eleutherine plicata Herb (marupazinho), Uncaria guianensis (unha-de-gato), Arrabideae chica (pariri) e Mansoa alliacea (Lam.) A.H. Gentry (cipó d'alho) frente a cepas ATCC de bactérias e fungos. A coleta e a identificação das plantas foram realizadas na EMBRAPA/CPATU e a análise fitoquímica no Laboratório de Fitoquímica da FACFAR/UFPA e CESUPA obedecendo às metodologias estabelecidas nestes laboratórios. Os extratos etanólicos seco das folhas frescas das plantas e bulbo do marupazinho foram submetidos à avaliação da atividade antimicrobiana pelo método de disco difusão em ágar e determinação da Concentração Inibitória Mínima (CIM) através do método de microdiluição em placas e disco difusão em ágar. Os extratos foram utilizados em concentrações de 500, 250, 125, 62,5 e 31,25 mg/mL utilizando como solvente o Dimetil-Sulfóxido (DMSO). O extrato de goiabeira teve atividade frente a S. aureus, P. aeruginosa e C. albicans (CIM125mg\mL), o de pirarucu frente a S. aureus (CIM= 500 mg/mL) e P. aeruginosa (CIM= 250 mg/mL), o de marupazinho para S. aureus (CIM= 500mg/mL) e C. albicans (CIM= 250mg/mL), o de unha-de-gato contra S. aureus (CIM= 62,5 mg/mL) e o de pariri inibiu S. aureus (62,5 mg/mL), E. coli (250 mg/mL) e C. albicans (500 mg/mL). O fracionamento do EEB de U. guianensis através da técnica de dissolução fracionada demonstrou que a fração metanólica teve ação antimicrobiana. Os resultados comprovaram que estas plantas possuem atividade antimicrobiana. Estes extratos abrem uma possibilidade de descobertas de novos compostos antimicrobianos clinicamente efetivos.

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Resistance of Plasmodium falciparum to the usual antimalarials, as well as their adverse effects and high cost, has led to the search of new drugs against malaria. Several of these have been developed from medicinal plants based on ethnopharmacology, including the most widely used antimalarials today: quinine and artemisinin. In the present study schizonticide activity of extracts and fractions of a number of medicinal plants from the Caatinga and Amazon biomes were assessed based on ethnopharmacological and chemosystematic information. These included Ximenia americana, Maytenus rigida, Sideroxylon obtusifolium, Stryphnodendro coriaceum, Bowdichia virgiliodes, Schinopis brasiliensis and Picrolemma sprucei, the last, an Amazon species. Antimalarial tests of blood schizonticides were conducted in Swiss mice infected with P. berghei and in vitro against P. falciparum. In vitro cytotoxicity studies were carried out using HeLa, CHO, 3T3, Raw and HEPG2 cell lines. Except for X. americana, all species exhibited in vivo or in vitro antimalarial activity, inhibiting parasitic growth by up to 79%. Extracts exhibited moderate toxicity with dosedependent kinetics. In this sense, ethnopharmacological and chemosystematic approaches were shown to be useful and promising tools in the search of new drugs. These findings represent a significant contribution to scientific knowledge of the antimalarial potential of Brazilian flora, thereby opening perspectives for the development of new antimalarials

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O controle de micro-organismos infecciosos multirresistentes às vezes é ineficaz mesmo com o desenvolvimento de novos antibióticos. Diversos extratos de plantas medicinais têm efeitos antimicrobianos o que pode representar uma alternativa terapêutica para doenças infecciosas, principalmente quando associados aos antibióticos de uso clínico. O objetivo do trabalho foi avaliar a atividade antibacteriana de plantas medicinais sobre bactérias multirresistentes e os efeitos de sua interação com drogas antimicrobianas. Foi determinada a atividade antibacteriana de extratos e frações das plantas Eleutherine plicata (marupazinho), Geissospermum vellosii (pau-pereira) e Portulaca pilosa (amor-crescido) frente a isolados de Staphylococcus aureus Oxacilina Resistente (ORSA) e de Pseudomonas aeruginosa multirresistente, provenientes de processos clínicos humanos, assim como a interação destes produtos vegetais com drogas antimicrobianas de uso clínico. A atividade antibacteriana foi determinada pelo método de disco difusão em ágar Muller Hinton e a Concentração Inibitória Mínima (CIM) pela técnica de microdiluição em placas utilizando caldo Muller Hinton como meio de cultura e resazurina a 0,01% como revelador de crescimento bacteriano. Os extratos e frações foram testados nas concentrações de 500, 250, 125, 62,5, 31,2 e 16,2 μg/mL dissolvidos em DMSO a 10%. As plantas E. plicata e G. vellosii demonstraram atividade contra os isolados ORSA com CIM de 125 μg/mL, enquanto que P. pilosa teve ação sobre os isolados de P. aeruginosa multirresistentes com CIM de 250 μg/mL. Ocorreram 25% de sinergismo e apenas 5% de antagonismo entre as 120 interações de produtos vegetais e drogas antimicrobianas testadas. Frente aos isolados ORSA houve sinergismo com as drogas ciprofloxacina, clindamicina e vancomicina tanto com os derivados de E. plicata como os de G. vellosii. Os produtos de P. pilosa potencializaram a ação das drogas aztreonam, cefepime e piperacilina+tazobactam frente aos isolados de P. aeruginosa multirresistentes. Os resultados comprovaram o potencial das plantas E. plicata, G. vellosii e P. pilosa no controle de infecções bacterianas envolvendo fenótipos multidrogas resistentes (MDR) e que a sua interação com drogas antibacterianas pode representar uma nova alternativa na terapia destas infecções.

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Coordenação de Aperfeiçoamento de Pessoal de Nível Superior (CAPES)

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The increase of the antimicrobial resistance and its propagation around the world are the biggest threats to the public health care and to the treatment of diseases caused by microorganisms. Nowadays the antimicrobial resistance has increased abruptly. The essential oils are volatile and aromatic compounds derived from parts of plants as flowers, leafs, fruits, seeds, roots, sprouts, among others. The activity of extracts and essential oils of several plant species have been recognized and studied by empirical methods since a long time, but its antimicrobial activities were confirmed recently. Medicinal plants are used in folk medicine as medicines, antibiotic, analgesic, sedative and anti-inflammatory. The use of medicinal plants like source of medicines is an alternative of therapeutics for diseases treatment. In Brazil, studies with this goal are very important, once medicinal plants have been used as a choice of treatment and prevention of infections and diseases in health areas. Considering the fact that some products from medicinal plants have antimicrobial properties it is expected that using screening programs, new potential medicaments could be developed. Otherwise, scientific researches focused on determining therapeutic potential of plants are limited, there are lack of scientific studies which confirms the potential antibiotics properties of a large number of plants. The aim of the present study is determinate the antimicrobial activity of 10 medicinal species belonging to CPMA - Collection of Medicinal and Aromatic Plants from CPQBA/UNICAMP. The minimal inhibitory (MIC) and minimal bactericidal or fungicidal concentration (MBC) will be determined against the bacteria Escherichia coli, Pseudomonas aeruginosa, Salmonella choleraesuis, Staphylococcus aureus and the yeast Candida albicans. Furthermore, will be conducted chemical identification and fractionation of essential oils and extract with better activity

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Coordenação de Aperfeiçoamento de Pessoal de Nível Superior (CAPES)

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Malaria, also popularly known as maleita , intermittent fever, paludism, impaludism, third fever or fourth fever, is an acute infectious febrile disease, which, in human beings, is caused by four species: Plasmodium falciparum, P. vivax, P. malariae and P. ovale. Malaria, one of the main infectious diseases in the world, is the most important parasitoses, with 250 million annual cases and more than 1 million deaths per year, mainly in children younger than live years of age. The prophylactic and therapeutic arsenal against malaria is quite restricted, since all the antimalarials currently in use have some limitation. Many plant species belonging to several families have been tested in vivo, using the murine experimental model Plasmodium berghei or in vitro against P. falciparum, and this search has been directed toward plants with antithermal, antimalarial or antiinflammatory properties used in popular Brazilian bolk medicine. Studies assessing the biological activity of medicinal plant essential oils have revealed activities of interest, such as insecticidal, spasmolytic and antiplasmodic action. It has also been scientifically established that around 60% of essential oils have antifungal properties and that 35% exhibit antibacterial properties. In our investigation, essential oils were obtained from the species Vanillosmopsis arborea, Lippia sidoides and Croton zethneri which are found in the bioregion of Araripe-Ceará. The chemical composition of these essential oils was partially characterized and the presence of monoterpenes and sesquiterpenes. The acute toxicity of these oils was assessed in healthy mice at different doses applied on a single day and on four consecutive days, and in vitro cytotoxicity in HeLa and Raw cell lines was determined at different concentrations. The in vivo tests obtained lethal dose values of 7,1 mg/Kg (doses administered on a single day) and 1,8 mg/Kg (doses administered over four days) for 50% of the animals. In the in vitro tests, the inhibitory concentration for 50% of cell growth in Hela cell lines was 588 μg/mL (essential oil from C. zethneri after 48 h), from 340-555 μg/mL (essential oil from L. sidoides, after 24 and 48 h). The essential oil from V. arborea showed no cytotoxicity and none of the essential oils were cytotoxic in Raw cell lines. These data suggest a moderate toxicity in the essential XVIII oils under study, a finding that does not impede their testing in in vivo antimalarial assays. Was shown the antimalarial activity of the essential oils in mice infected with P. berghei was assessed. The three species showed antimalarial activity from 36%-57% for the essential oil from the stem of V. arborea; from 32%-82% for the essential oil from the leaves of L. sidoides and from 40%-70% of reduction for the essential oil from the leaves of C. zethneri. This is the first study showing evidence of antimalarial activity with these species from northeast Brazil. Further studies to isolate the active ingredients of these oils are needed to determine if a single active ingredient accounts for the antimalarial activity or if a complex integration of all the compounds present occurs, a situation reflected in their biological activity

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Malaria is a disease of global distribution, recognized by governments around the world as a serious public health problem, affecting more than 109 countries and territories and endangering more than 3.3 billion people. The economic costs of this disease are also relevant: the African continent itself has malaria-related costs of about $ 12 billion annually. Nowadays, in addition to chloroquine, Plasmodium falciparum is resistant to many drugs used in the treatment of malaria, such as amodiaquine, mefloquine, quinine and sulfadoxine-pyrimethamine; resistance of Plasmodium vivax to treatments, although less studied, is also reported. Nature, in general, is responsible for the production of most known organic substances, and the plant kingdom is responsible for the most of the chemical diversity known and reported in the literature. Most medicinal plants commercialized in Brazil, however, are of exotic origin, which makes the search for endemic medicinal plants, besides a patent necessity, a fascinating subject of academic research and development. This study aimed to: (i) verify the antimalarial activity of ethanolic and hydroalcoholic extracts of Boerhavia paniculata Rich. And acetonic extract of Clethra scabra Pers. in Swiss albino mice infected by Plasmodium berghei NK65, (ii) observe possible combined effects between the course of infection by P. berghei NK65 and administration of these extracts in Swiss albino mice, and (iii) conduct a preliminary study of the acute toxicity of these extracts in Swiss albino mice. All extracts notable pharmacological activities - with parasite infections inhibitions ranging from 22% to 54%.These characteristics suggest that the activities are relevant, although comparatively lower than the activity displayed by the positive control group (always above 90%). The general framework of survival analysis demonstrates an overall reduction in survival times for all groups. Necroscopy has not pointed no change in color, shape, size and/or consistency in the evaluated organs - the only exception was the livers of rats submitted to treatment to hydroalcoholic extracts: these organs have been presented in a slightly congestive aspect with mass increasing roughly 28% higher than the other two groups and a p-value of 0.0365. The 250 mg/Kg ethanolic group has been pointed out by the Dunn s post test, as the only class with simultaneous inequalities (p<0.05) between positive and negative control groups. The extracts, notably ethanol extract, have, in fact, a vestigial antimalarial activity, although well below from the ones perceived to chloroquine-treated groups; nevertheless, the survival times of the animals fed with the extracts do not rise by presence of such therapy. Both the toxicopharmacological studies of the synergism between the clinical course of malaria and administration of extracts and the isolated evaluation of toxicity allow us to affirm the absence of toxicity of the extracts at the level of CNS and ANS, as well as their non-influence on food and water consumption patterns, until dosages of 500 mg/Kg. Necroscopic analysis leads us to deduct a possible hepatotoxic effect of hydroalcoholic extract at dosages of 500 mg/Kg, and an innocuous tissue activity of the ethanol extract, in the same dosage. We propose a continuation of the studies of these extracts, with protocol modifications capable of addressing more clearly and objectively their pharmacological and toxicological aspects

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O potencial alelopático de quatro diferentes extratos de plantas medicinais (Eclipta alba, Gomphrena globosa, Tabernaemontana catharinensis e Tithonia diversifolia) foi avaliado na germinação de Bidens pilosa e Lactuca sativa. Dentre os resultados obtidos no teste de germinação, notou-se um maior poder inibitório do extrato de G. globosa sobre sementes e plântulas de Bidens pilosa e Lactuca sativa independente da concentração utilizada e aumento da atividade inibitória de extratos T. catharinensis e de T. diversifolia com aumento da concentração destes. Quanto ao Índice de Velocidade de Germinação, os dados demonstraram redução do índice devido a elevada mortalidade das plântulas submetidas aos extratos de G. globosa e de T. catharinensis e a germinação tardia das sementes submetidas ao extrato de T. diversifolia. Quanto ao vigor das sementes, as menores porcentagens de sobrevivência ocorreram extratos à 2,5% para B. pilosa e 10% para L. sativa.

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Este trabalho apresenta os resultados de atividade alelopática, antimicrobiana e antioxidante dos extratos orgânicos (hexano, acetato de etila e metanol) das folhas de Pyrostegia venusta (Ker Gawl.) Miers (Bignoniaceae). Para alelopatia, foi estudado o desenvolvimento de Cucumis sativus (pepino), sendo avaliados o comprimento da raiz principal, o número de raízes secundárias e o comprimento do hipocótilo. Os dois primeiros parâmetros foram afetados por todos os três extratos testados enquanto o comprimento do hipocótilo só não foi afetado pelo extrato acetato de etila. Quanto à atividade antimicrobiana, avaliada pelo ensaio de CIM, o extrato hexânico apresentou inibição moderada frente ao Staphylococcus aureus (0,9 mg mL-1) e forte ao Enterococcus hirae (0,5 mg mL-1). O extrato acetato de etila apresentou forte atividade frente Candida albicans (0,3 mg mL-1) enquanto o extrato metanólico não mostrou-se ativo para os microrganismos testados. Por outro lado, o extrato metanólico apresentou a maior capacidade de seqüestrar radicais livres (Concentração Efetiva 50%-CE50 =102,0 ± 56,9 mg mL-1, com TCE50 = 30 min) no ensaio com DPPH (2,2-difenil-1-picril-hidrazila) e o maior teor de compostos fenólicos (116,2 ± 83,0 mg ácido gálico g amostra-1), avaliado pelo ensaio de Folin-Ciocalteau.

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The number of studies of genotoxic activity of medicinal plants has been growing alongside with their increasing therapeutic use and scientific interest in proving their effectiveness for a variety of pharmacological purposes. This reflects the fact that many of the plants used by great numbers of people, in spite of their proven pharmacological value, can also cause harmful changes in the DNA. The risks are greater when alternative treatments are applied in an uncontrolled way, without due attention to correct botanical identification, to the part of the plant that should to be used and to the method of preparation and administration. In this review, aspects of the mutagenic activity of some medicinal plants are discussed.

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Coordenação de Aperfeiçoamento de Pessoal de Nível Superior (CAPES)

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Coordenação de Aperfeiçoamento de Pessoal de Nível Superior (CAPES)

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Coordenação de Aperfeiçoamento de Pessoal de Nível Superior (CAPES)