195 resultados para Copaiba (Copaifera langsdorffii) Oil


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(Aspectos ecológicos de um trecho de floresta de brejo em Itatinga, SP: florística, fitossociologia e seletividade de espécies). No presente trabalho estudou-se um trecho de floresta de brejo localizada na fazenda Santa Irene, de propriedade da EUCATEX Ltda., no município de Itatinga-SP (48º38'52,2"W e 23º17'41,6"S), com uma área de 2 ha. O levantamento fitossociológico foi realizado através do método de censo de 1 ha do remanescente florestal, onde foram amostrados todos os indivíduos com PAP (perímetro à altura do peito) > a 15 cm. Foram amostrados 1310 indivíduos, pertencentes a 28 famílias, 34 gêneros e 39 espécies do estrato arbustivo-arbóreo. As famílias que apresentaram os maiores valores de IVC foram Clusiaceae (53,49), Burseraceae (41,30), Euphorbiaceae (31,42). Podocarpaceae (9,04), Caesalpiniaceae (6,99), Myrsinaceae (6,38), Melastomataceae (5,75), Anacardiaceae (5,70), Arecaceae (4,51) e Styracaceae (4,44). Estas 10 famílias somaram 74,50% do IVC total. As espécies de maior destaque em IVC foram Calophyllum brasiliense (53,49), Protium almecega (41,30), Pera obovata (14,46), Podocarpus sellowii (9,04), Hyeronima alchorneoides (8,68), Copaifera langsdorffii (6,99), Rapanea guianensis (5,72), Tapirira guianensis (5,70), Miconia ligustroides (5,62) e Sebastiania serrata (4,71). Tais espécies somadas perfazem 77,84% do IVC total. O índice de diversidade de Shannon (H') obtido foi de 2,751 nats/indivíduos. Baseado em critérios florísticos e fitossociológicos, as espécies amostradas foram divididas em dois grupos: a) espécies peculiares, com os subgrupos de peculiares exclusivas e não exclusivas e b) complementares, com os subgrupos de áreas secas e indiferentes.

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Este trabalho compara anatomicamente os limbos cotiledonares e eofilares de Caesalpinia leiostachya (Benth.) Ducke, Dimorphandra mollis Benth., Peltophorum dubium (Spreng.) Taub., Pterogyne nitens Tul., Schizolobium parahyba (Vell.) Blake (Caesalpinieae), Cassia ferruginea (Schrad.) Schrad. ex DC., Senna multijuga (Rich.) Irwin & Barn. (Cassieae), Bauhinia forficata Link (Cercideae), Copaifera langsdorffii Desf. e Hymenaea stilbocarpa Hayne (Detarieae). As células epidérmicas dos cotilédones apresentam, na maioria das espécies, paredes anticlinais retas, enquanto os eofilos mostram-nas sinuosas. Os cotilédones são, em sua maioria, anfiestomáticos, e os eofilos, hipoestomáticos. A estrutura do mesofilo cotiledonar mostra-se variável, sendo homogêneo o tipo mais comum. Todos os eofilos estudados apresentam-se dorsiventrais. Há variações específicas com relação à presença e localização de grãos de amido, compostos fenólicos, lipídios e polissacarídios, tanto em cotilédones quanto em eofilos. Ambos exibem apenas feixes vasculares colaterais, acompanhados ou não por fibras e/ou bainha parenquimática, na qual, geralmente, ocorrem cristais prismáticos. Conclui-se que: a) há tendência de aumento da complexidade estrutural dos limbos dos eofilos em relação aos dos cotilédones; b) este fenômeno pode ser explicado pelas funções e curto período de vida dos cotilédones.

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Oligossacarídeos derivados do xiloglucano, um polissacarídeo constituinte da parede celular vegetal, vêm sendo considerados como moléculas capazes de sinalizar e/ou regular eventos relacionados ao crescimento e à expansão celular. A purificação desses oligossacarídeos é imprescindível para a realização de ensaios relativos à sua atividade biológica. Neste trabalho, xiloglucanos foram extraídos a partir de sementes de copaíba (Copaifera langsdorffii Desf.) e suspensões celulares de feijão (Phaseolus vulgaris L.) e hidrolisados com celulase (endo-glucanase) para obtenção dos oligossacarídeos de xiloglucano, os OXGs. Os resultados obtidos mostram que a técnica de cromatografia dupla em gel de exclusão molecular foi eficiente para purificação dos oligossacarídeos, apresentando OXGs dos tipos XLLG e XXXG com grau de pureza próximo a 90%, e do tipo XXFG próximo de 80%.

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Este estudo avaliou a variação da composição florística do componente arbóreo de 35 áreas inundáveis das regiões Sul e Sudeste do Brasil. Foi utilizada uma lista com 602 espécies arbóreas de 23 áreas de florestas aluviais (inundações temporárias) e 12 de florestas paludosas (inundações permanentes). Por meio de um teste de chi2, as espécies foram classificadas de acordo com o habitat em: 1) preferenciais de florestas paludosas, e.g. Magnolia ovata (A. St.-Hil.) Spreng., Dendropanax cuneatus (DC.) Decne & Planch. e Calophyllum brasiliense Cambess.; 2) preferenciais de florestas aluviais, e.g. Sebastiania commersoniana (Baill.) L.B. Sm. & Downs, Ocotea pulchella Mart. e Sorocea bonplandii (Baill.) W. Burger et al. e 3) espécies não preferenciais, e.g. Luehea divaricata Mart. & Zucc., Syagrus romanzoffiana (Cham.) Glassman e Copaifera langsdorffii Desf. A análise multivariada de gradientes (DCA) demonstrou maior agrupamento das florestas paludosas do que florestas aluviais, indicando maior heterogeneidade florística do último grupo. Os resultados indicaram que a variação, ambiental associada aos diferentes regimes de inundação é determinante na definição dos padrões fitogeográficos de áreas inundáveis.

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The parameters of germination, initial growth, and biomass allocation of three native plant species of Cerrado (Copaifera langsdorffii, Dipteryx alata and Kielmeyera coriacea) were established. The species had germination percentages above 88% and average germination times longer than 139 hours. The average time for the opening of the first leaf pair was more than 538 hours for all three species. The average root length of C. langsdorffii and D. alata seedlings after 80 days of growth was around 40cm, four times larger than the average shoot length (<10cm), although the root and shoot biomasses were similar for both species. The average root length (>20cm) of K. coriacea seedlings was four times larger than the average shoot length (<5cm), and the root biomass was 243% greater than the shoot biomass. Increase in seedling biomass was sustained primarily by the cotyledons in C. langsdorffii and D. alata, which acted as reserve organs and showed progressive weight reductions. Increase in seedling biomass in K. coriacea was sustained primarily by photosynthesis, since the cotyledons showed no significant weight reduction, acting primarily as photosynthetic organs. The length of the root systems was at least four times larger than the length of the shoots parts in all three species. Higher investment in root length rather than in root biomass suggest that the initial growth of these species is primarily to ensure access to water resources, apparently putting off the function of the radicular system as storage organ.

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The antimicrobial activity of copaiba oils was tested against Gram-positive and Gram-negative bacteria, yeast, and dermatophytes. Oils obtained from Copaifera martii, Copaifera officinalis, and Copaifera reticulata (collected in the state of Acre) were active against Gram-positive species (Staphylococcus aureus, methicillin-resistant S. aureus, Staphylococcus epidermidis, Bacillus subtilis, and Enterococcus faecalis) with minimum inhibitory concentrations ranging from 31.3-62.5 µg/ml. The oils showed bactericidal activity, decreasing the viability of these Gram-positive bacteria within 3 h. Moderate activity was observed against dermatophyte fungi (Trichophyton rubrum and Microsporum canis). The oils showed no activity against Gram-negative bacteria and yeast. Scannning electron microscopy of S. aureus treated with resin oil from C. martii revealed lysis of the bacteria, causing cellular agglomerates. Transmission electron microscopy revealed disruption and damage to the cell wall, resulting in the release of cytoplasmic compounds, alterations in morphology, and a decrease in cell volume, indicating that copaiba oil may affect the cell wall.

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Leishmaniasis is a neglected tropical disease. According to the World Health Organization, there are approximately 1.5-two million new cases of cutaneous leishmaniasis each year worldwide. Chemotherapy against leishmaniasis is based on pentavalent antimonials, which were developed more than a century ago. The goals of this study were to investigate the antileishmanial activity of diterpene acids in copaiba oil, as well as some possible targets of their action against Leishmania amazonensis. Methyl copalate and agathic, hydroxycopalic, kaurenoic, pinifolic and polyaltic acids isolated from Copaifera officinales oleoresins were utilised. Ultrastructural changes and the specific organelle targets of diterpenes were investigated with electron microscopy and flow cytometry, respectively. All compounds had some level of activity against L. amazonensis. Hydroxycopalic acid and methyl copalate demonstrated the most activity against promastigotes and had 50% inhibitory concentration (IC50) values of 2.5 and 6.0 µg/mL, respectively. However, pinifolic and kaurenoic acid demonstrated the most activity against axenic amastigote and had IC50 values of 3.5 and 4.0 µg/mL, respectively. Agathic, kaurenoic and pinifolic acid caused significant increases in plasma membrane permeability and mitochondrial membrane depolarisation of the protozoan. In conclusion, copaiba oil and its diterpene acids should be explored for the development of new antileishmanial drugs.

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Oil-resin fractions from Copaifera reticulata Ducke (Leguminosae-Caesalpinoideae) were evaluated for larvicidal activity on third larval instars of Aedes aegypti, in searching for alternative control methods for this mosquito. The bioactive fractions were chemically monitored by thin-layer chromatography, ¹H and 13C nuclear magnetic resonance and mass spectrometry. Bioassays were performed using five repetitions, at a temperature of 28 ± 1°C, relative humidity of 80 ± 5% and light and dark cycles of 12h. Mortality was indicated by darkening of the cephalic capsule after 24h of exposure of the larvae to the solutions. The most active fractions were CRM1-4 (sesquiterpenes) and CRM5-7 (labdane diterpenes), which showed LC50 values of 0.2 and 0.8ppm, respectively.

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This review details the history, chemistry and pharmacology of the Copaifera L. genus (Leguminosae - Caesalpinoideae), including copaiba oils.

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Plant extracts are usually complex mixtures which contain several molecules of different sizes with varied functional groups. Such extracts are a challenge to the chemist of natural products. Ion exchange chromatography in non-aqueous medium, used for separation of basic or acidic fractions from plant extracts, is an important unit operation in preparative scale separations. Anionic macroporous resin in non-aqueous medium was used with success in this study for separation of the acid fraction of Copaifera multijuga (Copaiba oil), rich in labdanic diterpenes and for the methanolic extract of Croton cajucara (acetyl aleuritoric acid).

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The objective of this study was to evaluate the larvicidal activity of diterpenoids obtained from the oil-resin of Copaifera reticulata against Aedes aegypti larvae, the principal vector of dengue and urban yellow fever. Four diterpenes were obtained from oil-resin extraction with organic solvents and subsequent chromatographic and spectroscopic procedures allowed to isolation and identification of these compounds as 3-b-acetoxylabdan-8(17)-13-dien-15-oic acid (1), alepterolic acid (2), 3-b-hidroxylabdan-8(17)-en-15-oic acid (3), and ent-agatic acid (4). Each compound was previously dissolved in dimethylsulphoxide, and distilled water was added to obtain the desired concentrations. Twenty larvae of third instars were placed into plastic beckers, containing the solution test (25 mL), in a five repetitions scheme, and their mortality, indicated by torpor and darkening of the cephalic capsule, was recorded after 48h. Probit analyses were used to determine lethal concentrations (LC50 and LC90) and their respective 95% confidence intervals. This study showed that only diterpenoids 1 and 2 exhibited larvicidal properties with LC50 of 0.8 ppm and 87.3 ppm, respectively, revealing the former as the most toxic compound against third instars of Ae. aegypti. Therefore, this compound seems to be an interesting source for new metabolite to be exploited.

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Copaiba oil is a resin extracted from the trunk of trees of Copaifera species which grow in Brazil where it is widely used in popular medicine as an anti-inflammatory, antiseptic anti-bactericidal, diuretic, dermatological, expectorant, and anti-infective. The comparative study of the composition of commercial copaiba oils was carried out by high resolution gas chromatography (HRGC) and high resolution gas chromatography-mass spectrometry (HRGC-MS) analysis. The commercial oils were compared with authentic oils, collected from the southeast and northern regions of Brazil. Sixteen commercial oils were analysed and two of them revealed adulterations with fatty acids. Using the chromatographic profile of authentic copaiba species oils, it is possible to analyse commercial oils and determine the authenticity of these materials.

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This study evaluated the effects on the development and predatory capacity of Podisus nigrispinus fed on Spodoptera frugiperda that have ingested different concentrations of neem oil. The predatory capacity of Podisus nigrispinus was assessed, separating nymphs (fourth instar) and adults (males and females). The treatments consisted of S. frugiperda larvae reared in neem oil aqueous solutions (0.077, 0.359 and 0.599%), deltamethrin EC 25 (0.100%) and control arranged in a completely randomized design, with ten replicates. Insects were offered three larval densities (one, three and six), in the third or fourth instars. The predated larvae were examined at 24 and 48 hours after the beginning of the experiment. Biological parameters of Podisus nigrispinus were evaluated in groups of ten second-instar nymphs transferred to pots, in five replicates. Insects were offered 2-6 third and/or fourth-instar larvae reared in the same neem oil concentrations in a completely randomized design. The following parameters were evaluated: duration of each nymph stage (days), nymph mortality (%), weight of fifth-instar nymphs (mg), sex ratio, weight of males and females (mg) and longevity of unfed adults (days). The predatory capacity of nymphs and adults of Podisus nigrispinus was influenced by the neem oil at the concentrations of 0.359% and 0.599% in the highest density. The concentration of 0.359% lengthened the nymphal stage and the concentration of 0.599% reduced the weight of males.

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DEET (N,N-diethyl-3-methylbenzamide) is nowadays the most effective mosquito repellent available, however, its use can present some topical and systemic side effects. Some botanical compositions, as Andiroba (Carapa guianensis), have been proved repellent properties at low cost and toxicity. An experimental study was driven involving four volunteers submitting their forearms covered with Andiroba oil at 100%, DEET 50%, refined soy oil, Andiroba oil 15% and in the absence of products, directly to healthy females of Aedes sp. The times of first and third bites were checked. The results showed that the median of the first bite without any product was 17.5s and the third bite, 40.0s. In the soy oil, the bites happened in 60.0s and 101.5s, in the presence of Andiroba oil 100%, in 56.0s and 142.5s and in Andiroba oil 15%, in 63.0s and 97.5s. The volunteers using DEET 50% had not received bites after 3600s in most of the experiments (p < 0.001 Wilcoxon). Pure Andiroba oil compared to the soy oil, forearm without product and Andiroba oil 15%, showed discreet superiority (p < 0.001 Wilcoxon). Our conclusion is that this study demonstrated that the pure Andiroba oil presents discreet repellent effect against bite of Aedes sp., being significantly inferior to DEET 50%.

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The ultrastructural superficial changes in third instar house fly (Musca domestica) and blow fly (Chrysomya megacephala) induced by eucalyptol oil were observed using scanning electron microscopy. Dipped in 0.902 g/ml eucalyptol for 30 sec, the larvae integument of both species showed significant aberrant appearance of the body surface, particularly swelling integument, bleb formation, partial breach and deformation of spines.