92 resultados para Copaifera
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Conselho Nacional de Desenvolvimento Científico e Tecnológico (CNPq)
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Conselho Nacional de Desenvolvimento Científico e Tecnológico (CNPq)
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Conselho Nacional de Desenvolvimento Científico e Tecnológico (CNPq)
Oleoresin glands in copaiba (Copaifera trapezifolia Hayne: Leguminosae), a Brazilian rainforest tree
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Although studies have addressed the chemical analysis and the biological activity of oleoresin in species of Copaifera, the cellular mechanisms of oleoresin production, storage, and release have rarely been investigated. This study detailed the distribution, ontogeny, and ultrastructure of secretory cavities and canals distributed in leaf and stem, respectively, of Copaifera trapezifolia, a Brazilian species included in a plant group of great economic interest. Axillary vegetative buds, leaflets, and portions of stem in primary and secondary growth were collected and processed in order to study the anatomy, histolocalization of substances, and ultrastructure. Secretory cavities are observed in the foliar blade and secretory canals in the petiolule and stem. They are made up of a uniseriate epithelium delimiting an isodiametric or elongated lumen. Biseriate epithelium is rarely observed and is a novelty for Leguminosae. Cavities and canals originate from ground meristem cells and the lumen is formed by schizogenesis. The content of the cavities and canals of both stem and leaf is oily and resinous, which suggests that the oleoresin could be extracted from the leaf instead of the stem. Phenolic compounds are also detected in the epithelial cell cytoplasm. Cavities and canals in the beginning of developmental stages have polarized epithelial cells. The cytoplasm is rich in smooth and rough endoplasmic reticula connected to vesicles or plastids. Smooth and rough endoplasmic reticulum and plastids were found to be predominant in the epithelial cells of the secretory cavities and canals of C. trapezifolia. Such features testify the quantities of oleoresin found in the lumen and phenolic compounds in the epithelial cell cytoplasm of these glands. Other studies employing techniques such as correlative light electron microscopy could show the vesicle traffic and the compartmentalization of the produced substances in such glands.
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Hydroethanolic extracts of C. langsdorffii leaves have therapeutic potential. This work reports a validated chromatographic method for the quantification of polar compounds in the hydroethanolic extract of C. langsdorffii leaves. A reliable HPLC method was developed using two monolithic columns linked in series (100 x 4.6 mm - C-18), with nonlinear gradient elution, and UV detection set at 257 nm. A procedure for the extraction of flavonols was also developed, which involved the use of 70% aqueous ethanol and the addition of benzophenone as the internal standard. The developed method led to a good detection response as the values for linearity were between 10.3 and 1000 mu g/mL, and those for recovery between 84.2 and 111.1%. The detection limit ranged from 0.02 to 1.70 mu g/mL and the quantitation limit from 0.07 to 5.1 mu g/mL, with a maximum RSD of 5.24%. Five compounds, rutin, quercetin-3-O-alpha-L-rhamnopyranoside, kaempferol-3-O-alpha-L-rhamnopyranoside, quercetin and kaempferol, were quantified. This method could, therefore, be used for the quality control of hydroethanolic extracts of Copaifera leaves and their cosmetic and pharmaceutical products.
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Copaifera langsdorffii Desf. commonly known as "copaiba", produce a commercially valuable oil-resin that is extensively used in folk medicine for anti-inflammatory, antimicrobial and antiseptic purposes. We have found the hydroalcoholic extract of this plant leaf has the potential to treat urolithiasis, a problem affecting similar to 7% of the population. To isolate the functional compounds C. langsdorffii leaves were dried, ground, and macerated in a hydroalcoholic solution 7:3 to produce a 16.8% crude extract after solvent elimination. Urolithiasis was induced by introduction of a calcium oxalate pellet (CaOx) into the bladders of adult male Wistar rats. The treated groups received the crude extract by oral gavage at 20 mg/kg body weight daily for 18 days. Extract treatment started 30 days after CaOx seed implantation. To monitor renal function sodium, potassium and creatinine concentrations were analyzed in urine and plasma, and were found to be in the normal range. Analyses of pH, magnesium, phosphate, calcium, uric acid, oxalate and citrate levels were evaluated to determine whether the C. langsdorffii extract may function as a stone formation prevention agent. The HPLC analysis of the extract identified flavonoids quercitrin and afzelin as the major components. Animals treated with C. langsdorffii have increased levels of magnesium and decreased levels of uric acid in urinary excretions. Treated animals have a significant decrease in the mean number of calculi and a reduction in calculi mass. Calculi taken from extract treated animals were more brittle and fragile than calculi from untreated animals. Moreover, breaking calculi from untreated animals required twice the amount of pressure as calculi from treated animals (6.90 +/- A 3.45 vs. 3.00 +/- A 1.51). The extract is rich in flavonoid heterosides and other phenolic compounds. Therefore, we hypothesize this class of compounds might contribute significantly to the observed activity.
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Background Natural antioxidants present in common foods and beverages have drawn great attention to cancer prevention due to its health benefits, remarkable lack of toxicity and side effects. Copaifera langsdorffii, known as “copaiba”, “capaiva”, or “pau-de-óleo“, belongs to the Leguminosae family and occurs in fields and grasslands in the northern and northeastern parts of Brazil. Biological studies of Copaifera corroborate its widespread use by the population. This paper describes the effects of C. langsdorffii leaves hydroalcoholic extract on the 1,2-dimethylhydrazine (DMH)-induced DNA damage and aberrant crypt foci (ACF) in the colon of male Wistar rats. Methods The hydroalcoholic extract of C. langsdorffii was administered to rats by gavage at daily doses of 20, 40 and 80 mg/kg body weight. To evaluate DNA damage by the comet assay, animals received the C. langsdorffii extract for seven days and a single subcutaneous injection (sc) of 1,2-dimethylhydrazine (DMH) at a dose of 40 mg/kg on day 7. Animals were sacrificed 4 h after injection of DMH, to assess DNA damage. For the ACF assay, animals were acclimatized for one week (week 1) and then treated with the C. langsdorffii extract five times a week for four weeks (weeks 2 to 5). The rats received sc injections of DMH (40 mg/kg) on days 2 and 5 of weeks 2 and 3, to induce ACF. Animals were euthanized at week 5; i.e., four weeks after the first DMH treatment. Results Animals treated with different doses of the C. langsdorffii extract combined with DMH had significantly lower frequency of DNA damage as compared with the positive control (animals treated with DMH only). The percentage of reduction in the frequency of DNA damage ranged from 14.30% to 38.8%. The groups treated with 40 and 80 mg/kg C. langsdorffii extract during and after DMH treatment presented significantly lower numbers of ACF and aberrant crypts compared with the control. Conclusion The C. langsdorffii extract significantly reduced the extent of DNA damage and ACF induced by DMH, suggesting that the extract has a protective effect against colon carcinogenesis.
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This study evaluated the inhibitory activity of copaiba oil (Copaifera officinalis against the cariogenic microorganism, Streptococcus mutans. For such purpose, a minimum inhibition concentration test of copaiba oil against S. mutans was performed, using the serial dilution in broth technique, with a negative control, a positive control (0.12% chlorhexidine) and a 10% copaíba oil solution as a test. A minimum bactericidal concentration test with tubes presenting microbial inhibition was also conduced. In the minimum inhibitory concentration test, copaiba oil showed inhibition of bacterial growth at all concentrations tested up to 0.78 µL/mL of the 10% copaiba oil solution in the broth. In addition, the negative control had no inhibition, and the 0.12% chlorhexidine solution was effective up to 6.25 µL/mL in the broth. Copaiba oil showed a bacteriostatic activity against S. mutans at low concentrations, and could be a an option of phytotherapic agent to be used against cariogenic bacteria in the prevention of caries disease.
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The increased incidence of visceral leishmaniasis (VL) in Brazil is due to a lack of effective disease control measures. In addition to that, no effective treatment exists for canine VL in response to synthetic drugs. Thus, the objective of this study was to evaluate the effect of the essential oils of Coriandrum sativum and Lippia sidoides, and oleoresin from Copaifera reticulata, on Leishmania chagasi promastigotes and amastigotes. We also examined the toxicity of these treatments on the murine monocyte cell line RAW 264.7. To determine the IC50 a MTT test (3-(4,5-Dimethylthiazol-2-yl)-2,5-diphenyltetrazolium bromide) was performed on promastigotes, and an in situ ELISA assay was conducted on amastigotes. Here, we demonstrate that oleoresin from C. reticulata was effective against both promastigotes (IC50 of 7.88 µg.mL-1) and amastigotes (IC50 of 0.52 µg.mL-1), and neither of the two treatments differed significantly (p > 0.05) from pentamidine (IC50 of 2.149 µg.mL-1) and amphotericin B (IC50 of 9.754 µg.mL-1). Of the three plant oils tested, only oleoresin showed no toxicity toward monocyte, with 78.45% viability after treatment. Inhibition of promastigote and amastigote growth and the lack of cytotoxicity by C. reticulata demonstrate that oleoresin may be a viable option for analyzing the in vivo therapeutic effects of leishmanicidal plants
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v. 45, n. 2, abr./jun. 2016.
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As florestas de galeria vêm sendo fragmentadas, levando à perda de sua elevada diversidade, tornando-se imprescindíveis estudos que avaliem o comportamento ecológico de suas espécies arbóreas. O presente estudo teve como objetivo testar a hipótese de que a produção de mudas de Copaifera langsdorffii é influenciada pela luminosidade do ambiente, apresentando maior qualidade e desenvolvimento inicial em níveis intermediários de luz. As plantas foram testadas em pleno sol, 30%, 50%, 70% e 90% de sombreamento, avaliando-se número de folhas, altura e diâmetro aos 60, 90, 120 e 191 dias após a emergência (DAE) e massa seca aérea e radicular e, índice de qualidade de Dickson ao final do experimento (191 DAE). O efeito dos níveis de sombreamento foi analisado por meio de análise de regressão. As plantas apresentaram boa plasticidade de crescimento nos diferentes níveis de luminosidade, mas com melhor desenvolvimento e qualidade (IQD) em 50% de sombreamento, corroborando a hipótese testada. A luminosidade ou sombreamento excessivo devem ser evitados para garantir a produção de mudas mais vigorosas de Copaifera langsdorffii. Assim, recomenda-se a produção de mudas desta espécie sob 50% de sombreamento para favorecer a sua qualidade e possivelmente garantir melhor sobrevivência em campo.
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2016
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Tecnicas de propagacao por meio de enraizamento de estacas tem sido amplamente empregadas na fruticultura, floricultura e silvicultura. No entanto, no Brasil, poucos estudos tem sido feitos com especies nativas. Neste estudo foi testado o enraizamento de estacas caulinares de seis especies nativas de Mata de Galeria do bioma Cerrado: Copaifera langsdorffii Desf. (copaiba), Tibouchina stenocarpa (DC.) Cogn. (quaresmeira), Piper arboreum Aubl. (pimenta-de-macaco), Inga laurina (Sw.) Willd. (inga), Calophyllum brasiliense Camb. (landim) e Bauhinia rufa (Bong.) Steud. (unha-de-vaca). Foi estudada a influencia de diferentes concentracoes de acido indolbutirico, AIB (0, 1000, 2000 e 4000 ppm), em talco, e tratamento com agua sob gotejamento no enraizamento de estacas basais e/ou apicais, conforme a especie, em duas epocas do ano, final das chuvas (marco-maio/98) e inicio da seca (junho/98). Com P. arboreum tambem foi feito um tratamento onde as estacas foram enraizadas usando agua como substrato. Os resultados mostraram que as especies apresentaram diferentes habilidades para formar raizes adventicias em estacas. As estacas de C. langsdorffii e T. stenocarpa nao formaram raizes em qualquer das epocas realizadas, enquanto P. arboreum e I. laurina formaram raizes nas estacas apicais coletadas nas duas epocas (chuvosa e seca). Porem, as estacas basais de P. arboreum formaram menos raizes do que as apicais e as estacas basais de I. laurina nao enraizaram. Ja em C. brasiliense observaram-se altas taxas de sobrevivencia das estacas coletadas nas duas epocas (final das chuvas e inicio da seca), mas nao houve enraizamento. Por ultimo, as estacas de B. rufa enraizaram somente nas coletas realizadas na estacao chuvosa. Os tratamentos auxinicos (AIB) nao tiveram efeitos sobre a percentagem final de enraizamento das estacas de P. arboreum (apicais e basais), de I. laurina (apicais) e de B. rufa, bem como sobre a porcentagem final de sobrevivencia das estacas de C. brasiliense. Entre as especies estudadas, as estacas apicais de P. arboreum apresentaram os percentuais de enraizamento mais elevados: de 63% a 83% no periodo chuvoso e de 63% a 90% no periodo seco. Nas estacas basais o enraizamento foi menor, variando de 7% a 20%, no periodo chuvoso, e de 0 a 13%, no periodo seco. A epoca de coleta afetou a sobrevivencia e o peso seco das estacas apicais de P. arboreum, mas nao o numero de estacas enraizadas. Ja nas estacas basais, onde a capacidade de enraizamento foi menor, a epoca de coleta afetou o enraizamento das estacas, mas nao a sobrevivencia. Nas estacas basais houve uma grande mortalidade das estacas nas duas epocas estudadas (chuva e seca). Em geral, os melhores resultados de enraizamento ocorreram na epoca seca para as estacas apicais e na epoca chuvosa para as estacas basais. A utilizacao de agua de torneira como substrato proporcionou resultados satisfatorios no enraizamento das estacas basais de P. arboreum tanto em copos (200 ml) com agua colocados na casa de vegetacao (87%) quanto no tanque com agua corrente (77%). Em I. laurina a epoca de coleta influenciou a sobrevivencia das estacas apicais. As estacas coletadas na estacao chuvosa apresentaram melhores resultados sobrevivencia do que aquelas coletadas na estacao seca. Nas coletas feitas no final da epoca chuvosa obteve-se uma media de 15% de enraizamento e uma variacao de 3 a 23% de estacas enraizadas conforme os tratamentos. Na seca a media foi de 7% e a variacao foi de 0 a 13%. No periodo seco as medidas de peso seco das raizes foram mais inferiores do que na epoca chuvosa. A maioria das estacas vivas de I. laurina que nao enraizaram formaram calos, sugerindo que um periodo maior de observacao pode levar a maiores percentuais de enraizamento. Em C. brasiliense a epoca de coleta influenciou a sobrevivencia das estacas, de forma que no periodo chuvoso a porcentagem media de sobrevivencia (81%) foi maior do que na epoca seca (71%). Bauhinia rufa teve uma baixa capacidade de enraizamento por meio de estacas coletadas nas duas epocas do ano: apenas 3% das estacas enraizaram quando tratadas com 1000 e 4000 ppm de AIB; nos outros tratamentos nao ocorreu enraizamento. Pelos resultados, sugere-se que P. arboreum e uma especie de facil enraizamento por meio de estacas apicais, nas duas datas estudadas (no final das chuvas e inicio da seca), mas o uso de estacas basais nestas datas e inviavel. Sugere-se tambem que, devido aos baixos percentuais de enraizamento, nas duas epocas (chuva e seca), I. laurina e B. rufa sao especies de dificil enraizamento por meio de estacas apicais e basais com folhas. Ja C. Brasiliense, C. langsdorffii e T. stenocarpa nao enraizaram e podem ser consideradas especies de dificil enraizamento, nestas duas epocas estudadas (chuvosa e seca).
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2016
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Decomposition was studied in a reciprocal litter transplant experiment to examine the effects of forest type, litter quality and their interaction on leaf decomposition in four tropical forests in south-east Brazil. Litterbags were used to measure decomposition of leaves of one tree species from each forest type: Calophyllum brasiliense from restinga forest; Guapira opposita from Atlantic forest; Esenbeckia leiocarpa from semi-deciduous forest; and Copaifera langsdorffii from cerradao. Decomposition rates in rain forests (Atlantic and restinga) were twice as fast as those in seasonal forests (semi-deciduous and cerradao), suggesting that intensity and distribution of precipitation are important predictors of decomposition rates at regional scales. Decomposition rates varied by species, in the following order: E. leiocarpa > C. langsdorffii > G. opposita > C. brasiliense. However, there was no correlation between decomposition rates and chemical litter quality parameters: C:N, C:P, lignin concentration and lignin:N. The interaction between forest type and litter quality was positive mainly because C. langsdorffii decomposed faster than expected in its native forest. This is a potential indication of a decomposer`s adaptation to specific substrates in a tropical forest. These findings suggest that besides climate, interactions between decomposers and plants might play an essential role in decomposition processes and it must be better understood.