98 resultados para alcaloides isoquinoleínicos


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Echium hypertropicum Webb e Echium stenosiphon Webb subsp. stenosiphon são arbustos endêmicos de Cabo Verde, usados na medicina popular para o tratamento de distúrbios gastrintestinais e tosse. As duas espécies tiveram suas frações alcalóidicas obtidas por extração ácido-base. A análise por CG-EM e ESI-EM/EM indicou a presença de alcaloides pirrolizidínicos (APs) e as substâncias purificadas foram analizadas por experimentos de RMN de 1D e 2D. Um total de 10 alcaloides foram isoladas e identificadas, sendo que 8 identificadas através da comparação de suas massas moleculares e padrões de fragmentação de massas, com a base de dados NIST e os dados da litratura para o género. Os diésteres hepatotóxicos equimidana e 7-(2-metilbutiril)-9-equimidinilretronecina foram identificadas em ambas as espécies. Os alcaloides 7-senecioilretronecina, 9-angeloilretronecina, licopsamina, 7-acetil-licopsamina e equihumilina foram identificados nas folhas de E. hypertropicum, enquanto que o N-óxido da 7-(2-metilbutiril)-9-equimidinilretronecina foi identificado nas folhas de E. stenosipnhon. A equimidina foi o componente majoritário na fração em éter dietílico das folhas de E. hypertropicum, enquanto a 7-(2-metilbutiril)-9-equimidinilretronecina foi o componente majoritário na fração em diclorometano das folhas de E. stenosiphon. O alcaloide 7-(2-metilbutiril)-9-equimidinilretronecina N-óxido foi identificado pela primeira vez no gênero Echium. Em adição, 22 componentes de óleo essencial foram identificadas nas flores de Echium hypertropicum, sendo trans-fitol (30,64 %), n-pentacosano (8,28 %) e n-tricosano (6,73) como componentes majoritários. O triterpeno friedelina foi também isolado das folhas de E. hypertropicum. Na avaliação da atividade antibacteriana, os extratos etanólicos das duas espécies vegetais e o alcaloide 7-(2-metilbutiril)-9-equimidinilretronecina foram capazes de inibir o crescimento de Staphylococcus aureus ATCC 29213 com CMI de 250,0 μg/mL e 25,0 μg/mL, respectivamente. A atividade anticolinesterásica foi avaliada e a equimidina foi capaz de inibir a enzima acetilcolinesterase nas concentrações testadas com o valor de P = 0,0011. O alcaloide 7-(2-metilbutiril)-9-equimidinilretronecina retardou o crescimento do fitófago Dysdercus peruvianus na concentração de 1mg/mL. Os extratos etanólicos de E. hypertropicum e E. stenosiphon (3,9 μg/mL) foram avaliados frente ao vírus HSV. O extrato etanólico de E. hypertropicum apresentou uma porcentagem de inibição (PI) de 27,5% contra HSV-1S e 43,8% contra HSV-2S. Apresentaram ainda elevada citotoxidade para as celulas Vero, utilizadas como sistema hospedeiro (CC50 de 140,10 μg/mL e 96,86 μg/mL). A composição química e as atividades biológicas de E. hypertropicum e E. stenosiphon subsp. stenosiphon foram relatadas pela primeira vez. As substâncias identificadas podem ser utilizadas no futuro como marcadores quimiotaxonômicos para o gênero Echium.

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Scopolamine is an alkaloid widely used in medicine for its anticholinergic activity. The aim of this review is to show that metabolic engineering techniques constitute a suitable tool to improve the production of tropane alkaloids, focusing in particular on scopolamine. We present an overview of results obtained by various research groups, including our own, who have studied the overexpression of genes involved in the biosynthesis of scopolamine in different plant species that produce tropane alkaloids. Experiments carried out to improve production in hairy root cultures will also be described, as well as those attempting to biotransform hyoscyamine into scopolamine in roots and transgenic tobacco cells.

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Starting from (S)-tryptophanol, a formal synthesis of ent-rhyncho-phylline and ent-isorhynchophylline, involving stereoselective cyclocondensation, spirocyclization, and alkylation reactions, and the final adjustment of the oxidation level at the oxindole and piperidine moieties, is reported.

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Using simplified model derivatives, the assembly of the macrocyclic rings of madangamines, including the 13- and 14-membered D rings of madangamines C-E, the all-cis-triunsaturated 15-membered D ring of madangamine A, and the (Z,Z)-unsaturated 11-membered E ring common to madangamines A-E, has been studied.

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Starting from (S)-tryptophanol, a formal synthesis of ent-rhyncho-phylline and ent-isorhynchophylline, involving stereoselective cyclocondensation, spirocyclization, and alkylation reactions, and the final adjustment of the oxidation level at the oxindole and piperidine moieties, is reported.

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Este trabalho teve como objetivo avaliar o efeito da espécie de Passiflora usada como porta-enxerto no pegamento e desenvolvimento da microenxertia interespecífica ex vitro e caracterizar anatomicamente a região em que ela é realizada. Ápices caulinares de Passiflora edulis f. flavicarpa foram enxertados em hipocótilo de porta-enxertos de P. alata, P. cincinnata, P. edulis e P. setacea. Foram avaliados o desenvolvimento da microenxertia, a ocorrência de brotações adventícias do porta-enxerto e o percentual de microenxertos com folhas expandidas. Os porta-enxertos foram submetidos à avaliação anatômica e histoquímica. O desenvolvimento dos microenxertos e o número de brotações adventícias foram maiores quando se utilizou porta-enxertos de P. edulis e menores com porta-enxertos de P. setacea e P. alata. Porta-enxertos de P. edulis, P. cincinnata, P. alata e P. setacea proporcionaram, respectivamente, 30,3, 10, 1,6 e 0% de microenxertos com folhas expandidas. As avaliações histológicas evidenciaram maior espessura da região cortical em porta-enxertos de P. edulis, enquanto em P. setacea foi observado menor número de camadas corticais, maior quantidade de fibras floemáticas e de alcaloides, características que influenciaram negativamente o resultado da microenxertia.

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Lamellarins are a large family of marine alkaloids with potential anticancer activity that have been isolated from diverse marine organisms, mainly ascidians and sponges. All lamellarins feature a 3,4-diarylpyrrole system. Pentacyclic lamellarins, whose polyheterocyclic system has a pyrrole core, are the most active compounds. Some of these alkaloids are potently cytotoxic to various tumor cell lines. To date, Lam-D and Lam-H have been identified as lead compounds for the inhibition of topoisomerase I and HIV-1 integrase, respectively nuclear enzymes which are over-expressed in deregulation disorders. Moreover,these compounds have been reported for their efficacy in treatment of multi-drug resistant (MDR) tumors cells without mediated drug efflux, as well as their immunomodulatory activity and selectivity towards melanoma cell lines. This article is an overview of recent literature on lamellarins, encompassing their isolation, recent synthetic strategies for their total synthesis, the preparation of their analogs, studies on their mechanisms of action, and their structure-activity relationships (SAR).

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Research on natural products containing hexahydropyrrolo[2,3-b]indole (HPI) has dramatically increased during the past few years. Newly discovered natural products with complex structures and important biological activities have recently been isolated and synthesized. This review summarizes the structures, biological activities, and synthetic routes for natural compounds containing HPI, emphasizing the different strategies for assembling this motif. It covers a broad gamut of molecules, from small alkaloids to complex peptides.

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Research on natural products containing hexahydropyrrolo[2,3-b]indole (HPI) has dramatically increased during the past few years. Newly discovered natural products with complex structures and important biological activities have recently been isolated and synthesized. This review summarizes the structures, biological activities, and synthetic routes for natural compounds containing HPI, emphasizing the different strategies for assembling this motif. It covers a broad gamut of molecules, from small alkaloids to complex peptides.

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The marine alkaloid, Lamellarin D (Lam-D), has shown potent cytotoxicity in numerous cancer cell lines, and was recently identified as a potent topoisomerase I inhibitor. A library of open lactone analogs of Lam-D was prepared from a methyl 5,6-dihydropyrrolo[2,1-a]isoquinoline-3- carboxylate scaffold (1) by introducing various aryl groups through sequential and regioselective bromination, followed by Pd(0)-catalyzed Suzuki cross-coupling chemistry. The compounds were obtained in a 24-44% overall yield, and tested in a panel of three human tumor cell lines, MDA-MB- 231 (breast), A-549 (lung), and HT-29 (colon), to evaluate their cytotoxic potential. From these data the SAR study concluded that more than 75% of the open-chain Lam-D analogs tested showed cytotoxicity in a low micromolar GI50 range.

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The first total synthesis of the indole alkaloids ()-aplicyanins A, B and E, plus seventeen analogs, all in racemic form is reported. Modifications to the parent compound included changing the number of bromine substituents on the indole, the groups on the indole nitrogen (H, Me or OMe), and/or the oxidation level of the heterocyclic core tetrahydropyrimidine. Each compound was screened against three human tumor cell lines, and fourteen of the newly synthesized compounds showed considerable cytotoxicity. The assay results were used to establish structure-activity relationships. These results suggest that the acetyl group moiety on the imine nitrogen, and the bromine at position 5 of the indole, are both critical to activity.

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The marine alkaloid, Lamellarin D (Lam-D), has shown potent cytotoxicity in numerous cancer cell lines, and was recently identified as a potent topoisomerase I inhibitor. A library of open lactone analogs of Lam-D was prepared from a methyl 5,6-dihydropyrrolo[2,1-a]isoquinoline-3- carboxylate scaffold (1) by introducing various aryl groups through sequential and regioselective bromination, followed by Pd(0)-catalyzed Suzuki cross-coupling chemistry. The compounds were obtained in a 24-44% overall yield, and tested in a panel of three human tumor cell lines, MDA-MB- 231 (breast), A-549 (lung), and HT-29 (colon), to evaluate their cytotoxic potential. From these data the SAR study concluded that more than 75% of the open-chain Lam-D analogs tested showed cytotoxicity in a low micromolar GI50 range.

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Larnellarins are a group of marine natural products isolated from the prosobranch mollusc Lamellaria sp., the ascidian Didemnum sp., and the sponge Dendrilla Cactos. Several of them exhibit interesting biological activities. Natural as well as synthetic lamellarins should be excellent candidates for the development of new drugs due to their unique skeletal structure and their important biological activities especially as antitumor agents. Lamelarin O has been recently characterized as a topoisomerase 1-targeted anti tumor agent. A variety of synthetic approaches have been developed for this family of alkaloids. Herein we describe a new route to the synthesis of Lamellarin D, from a methyl 2-pyrrolecarboxylate. Transformation of the starting material into the scaffold, a substituted 5,6-dihydropyrrolo (2,l ­a)isoquinoline (5,6-DHPl), was afforded by N-alkylation followed by intramolecular Heck cyclization. From this scaffold the synthetic strategy is based on two sequential regioselective bromination!Suzuki cross-coupling reactions which permitted the introduction of differently substituted aryl groups on positions 1 and 2 followed by oxidation, deprotection, and lactonization.

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The Lycopodium alkaloids are a structurally diverse group of natural products isolated from Lycopodium with important biological effects for the potential treatment of cancer and severe neurodegenerative diseases. To date, full biological studies have been hampered by lack of material from natural sources. Total synthesis represents a possible solution to meet this demand as well as the most effective way to design new compounds to determine structural activity relationships and obtain more potent compounds. The aim of this chapter is to summarise the work carried out in this field so far by presenting an overview of the synthetic strategies used to access each of the four key Lycopodium alkaloid types. Particular emphasis has been placed on methods that rapidly construct each nucleus utilizing tandem reactions.