800 resultados para ALLYLIC AMINES


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ALVES, Ana Paula de Melo et al. Synthesis and characterization of hybrids derived from vermiculite chloropropyl and aliphatic diamines. Journal of Thermal Analysis and Calorimetry, v.87, n. 3, p.771–774, 2007.

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Campylobacter is a leading cause of foodborne bacterial gastroenteritis worldwide and infections can be fatal. The emergence of antibiotic-resistant Campylobacter spp. necessitates the development of new antimicrobials. We identified novel anti-Campylobacter small molecule inhibitors using a high throughput growth inhibition assay. To expedite screening, we made use of a “bioactive” library of 4,182 compounds that we have previously shown to be active against diverse microbes. Screening for growth inhibition of Campylobacter jejuni, identified 781 compounds that were either bactericidal or bacteriostatic at a concentration of 200 µM. Seventy nine of the bactericidal compounds were prioritized for secondary screening based on their physico-chemical properties. Based on the minimum inhibitory concentration against a diverse range of C. jejuni and a lack of effect on gut microbes, we selected 12 compounds. No resistance was observed to any of these 12 lead compounds when C. jejuni was cultured with lethal or sub-lethal concentrations suggesting that C. jejuni is less likely to develop resistance to these compounds. Top 12 compounds also possessed low cytotoxicity to human intestinal epithelial cells (Caco-2 cells) and no hemolytic activity against sheep red blood cells. Next, these 12 compounds were evaluated for ability to clear C. jejuni in vitro. A total of 10 compounds had an anti-C. jejuni effect in Caco-2 cells with some effective even at 25 µM concentrations. These novel 12 compounds belong to five established antimicrobial chemical classes; piperazines, aryl amines, piperidines, sulfonamide and pyridazinone. Exploitation of analogues of these chemical classes may provide Campylobacter specific drugs that can be applied in both human and animal medicine.

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The focus of this thesis was the study of a recently developed class of picolinamide cinchona alkaloid derivatives for the synthesis of Rivastigmine, a biologically active compound used for the treatment of Alzheimer’s disease. Six 9-picolinamide-cinchona alkaloid derivatives were successfully synthesized through simple and effective methods. These catalysts were then applied in the enantioselective reduction of O-protected ketimines (intermediates of Rivastigmine). The hydrosilylation of the N-phenyl ketimines afforded good results with excellent yields and high enantioselectivities, while much lower values, in terms of both enantioselectivity and yield, were obtained in the reduction of N-benzyl ketimines. Preliminary studies on the immobilization of these organocatalysts to different solid supports were conducted, with the purpose of applying them in continuous flow systems, which to date has never been reported; RESUMO: No âmbito deste trabalho, foi estudada a síntese de um composto biologicamente ativo usado para o tratamento da doença de Alzheimer, Rivastigmina, usando uma classe de picolinamidas derivadas de alcaloides de cinchona recentemente desenvolvida. Seis 9-picolinamida derivados de alcaloides de cinchona foram preparados com êxito através de metodologias simples e eficazes. Os organocatalisadores foram posteriormente aplicados na redução enantiosseletiva de cetiminas O-protegidas (intermediários de Rivastigmina). Foram obtidos bons resultados na hidrossililação de N-fenilo cetiminas, com rendimentos excelentes e elevadas enantiosseletividades, enquanto a redução de N-benzilo cetiminas proporcionou valores muito mais baixos, tanto em termos de rendimento como de enantiosseletividade. Com o objetivo de serem aplicados em sistemas de fluxo contínuo, realizaram-se estudos preliminares sobre a imobilização destes organocatalisadores em diferentes suportes sólidos, a qual, ate à data, ainda não foi descrita na literatura.

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Hydroalumination of thioacetylenes using DIBAL-H and lithium di-(isobutyl)-n-(butyl)-aluminate hydride (Zweifel's reagent), followed by addition of water, furnished exclusively the (Z)- and (E)-vinyl sulfides, respectively. The regio- and stereochemistry of the intermediates generated, (Z)- and (E)-phenylthio vinyl alanates, were determined by capture with iodine, which afforded the corresponding (E)- and (Z)-1-iodo-1-phenylthio-2-organoyl ethenes. Reactions of the (E)-iodo(thio)ketene acetals with n-BuLi followed by addition of hexanal afforded the (Z)-phenylthio allylic alcohol, while the (Z)-iodo(thio)ketene acetals under similar reactions conditions gave the (E)-phenylthio allylic alcohol exclusively.

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Tese (doutorado)—Universidade de Brasília, Instituto de Química, 2016.

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Expedient synthetic approaches to the highly functionalized polycyclic alkaloids communesin F and perophoramidine are described using a unified approach featuring a key decarboxylative allylic alkylation to access a crucial and highly congested 3,3-disubstituted oxindole. Described are two distinct, stereoselective alkylations that produce structures in divergent diastereomeric series possessing the critical vicinal all-carbon quaternary centers needed for each synthesis. Synthetic studies toward these challenging core structures have revealed a number of unanticipated modes of reactivity inherent to these complex alkaloid scaffolds. Finally, a previously unknown mild and efficient deprotection protocol for the o-nitrobenzyl group is disclosed – this serendipitous discovery permitted a concise endgame for the formal syntheses of both communesin F and perophoramidine.

In addition, the atroposelective synthesis of PINAP ligands has been accomplished via a palladium-catalyzed C–P coupling process through dynamic kinetic resolution. These catalytic conditions allow access to a wide variety of alkoxy- and benzyloxy-substituted PINAP ligands in high enantiomeric excess.

An efficient and exceptionally mild intramolecular nickel-catalyzed carbon–oxygen bond-forming reaction between vinyl halides and primary, secondary, and tertiary alcohols has been achieved. This operationally simple method allows direct access to cyclic vinyl ethers in high yields in a single step.

Finally, synthetic studies toward polycyclic ineleganolide are described. The entire fragmented carbon framework has been constructed from this work. Highly (Z)-selective olefination was achieved by the method by the Ando group.

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In this work, biodiesel was produced from castor oil that was a byproduct glycerin. The molar ratio between oil and alcohol, as well as the use of (KOH) catalyst to provide the chemical reaction is based on literature. The best results were obtained using 1 mol of castor oil (260g) to 3 moles of methyl alcohol (138g), using 1.0% KOH as catalyst at a temperature of 260 ° C and shaken at 120 rpm. The oil used was commercially available, the process involves the reaction of transesterification of a vegetable oil with methyl alcohol. The product of this reaction is an ester, biodiesel being the main product and the glycerin by-product which has undergone treatment for use as raw material for the production of allyl alcohol. The great advantage of the use of glycerin to obtain allyl alcohol is that its use eliminates the large amount of waste of the biodiesel and various forms of insult to the environment. The reactions for the formation of allyl alcohol was conducted from formic acid and glycerin in a ratio 1/1, at a temperature of 260oC in a heater blanket, being sprayed by a spiral condenser for a period of 2 hours and the product obtained contains mostly the allylic alcohol .. The monitoring of reactions was performed by UV-Visible Spectrophotometer: FTIR Fourier transform, the analysis showed that these changes occur spectrometer indicating the formation of the product allylic alcohol (prop-2-en-1-ol) in the presence of water, This alcohol was appointed Alcohol GL. The absorption bands confirms that the reaction was observed in (υ C = C) 1470 -1600 cm -1 and (υ CO), 3610-3670 attributed to C = C groups and OH respectively. The thermal analysis was carried out in a thermogravimetric analyzer SDT Q600, where the mass and temperature are displayed against time, that allows checking the approximate rate of heating. The innovative methodology developed in the laboratory (LABTAM, UFRN), was able to treat the glycerine produced by transesterification of castor oil and used as raw material for production of allyl alcohol, with a yield of 80%, of alcohol, the same is of great importance in the manufacture of polymers, pharmaceuticals, organic compounds, herbicides, pesticides and other chemicals

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MBDB, MDEA y PMA son tres drogas de diseño, estructuralmente similares al MDMA (“éxtasis”), que se han identificado en la composición de pastillas distribuidas como “éxtasis” en entornos recreativos durante los últimos treinta años. Estas feniletilaminas sintéticas presentan un perfil psicotrópico de tipo entactógeno (con capacidad para facilitar la proximidad, el contacto y la comunicación empática), similar al del MDMA en el modelo de discriminación de drogas. El MDMA ha sido objeto de un creciente interés científico y es, hasta la fecha, la única sustancia con un perfil entactógeno de la que se han investigado sus efectos conductuales en modelos animales de agresión y ansiedad, si bien sus resultados no siempre coinciden. Aunque existen algunas evidencias de que el MDMA puede tener efectos ansiolíticos en animales de laboratorio (Lin, Burden, Christie, & Johnston, 1999; Morley & McGregor, 2000; Ho, Pawlak, Guo, & Schwarting, 2004), en otros estudios se han observado alteraciones conductuales y correlatos neuroquímicos que sugieren un efecto ansiogénico (Bhattacharya, Bhattacharya & Ghosal, 1998; Gurtman, Morley, Li, Hunt, & McGregor, 2002; Maldonado & Navarro, 2000;; Navarro & Maldonado, 2002). Asimismo, en otros trabajos se ha señalado que el MDMA induce efectos antiagresivos (reducción de las conductas de amenaza y ataque), que se acompañan de un marcado aumento de las conductas de evitación/huida y defensa/sumisión, así como de una reducción de las conductas de investigación social, sugiriendo también la existencia de un perfil ansiogénico en los encuentros agonísticos entre ratones machos (Maldonado & Navarro, 2001; Navarro & Maldonado, 1999). En contraste, hasta la fecha la información experimental de las drogas MBDB, MDEA y PMA se limita a la evaluación de sus efectos conductuales sobre la conducta motora, así como algunos estudios sobre su metabolismo y posible mecanismo de acción. El objetivo general de este trabajo de investigación ha sido estudiar el perfil conductual de MBDB, MDEA y PMA en modelos animales de agresión y ansiedad. Para ello, se han examinado los efectos del MBDB (2, 4 y 8 mg/kg), MDEA (5, 10 y 20 mg/kg) y PMA (2, 4, 8 y 12 mg/kg) utilizando el modelo de agresión inducida por aislamiento y el modelo de ansiedad del laberinto elevado en cruz en ratones machos. Los resultados indican que estas sustancias en general comparten un perfil antiagresivo inespecífico. Esta falta de especificidad se debe en unos casos al aumento de las conductas de inmovilidad (4-12 mg/kg PMA), pero también a la presencia de propiedades ansiogénicas durante la interacción social, en especial con dosis elevadas, mientras que solo las dosis más bajas parecen aumentar la proximidad social, en especial la dosis menor de MBDB. Además, estas drogas parecen alterar el patrón conductual agonístico ofensivo (MBDB y MDEA) y defensivo (MBDB, MDEA y PMA), produciendo cambios diádicos que resultan coherentes con un aumento del nivel de conflicto y de ansiedad. En consonancia, los resultados del modelo del laberinto elevado en cruz indican que el MBDB produce un aumento de la ansiedad de menor intensidad que el producido por el MDMA. Sin embargo, MDEA y PMA parecen generar un estado de hipoexploración, y solo en dosis determinadas (20 mg/kg de MDEA y 4 mg/kg de PMA) muestran alteraciones discretas que sugieren un efecto ansiogénico débil, un perfil que en conjunto podría sugerir cierta similitud con alteraciones conductuales propias de los compuestos alucinógenos. Debido a la diferencia del perfil conductual del MDEA y PMA hallados en ambos modelos, sería necesario evaluar la ansiedad y su posible relación con la dosis y/o con la presencia de un oponente en la prueba en otros modelos experimentales. Lin, H. Q., Burden, P. M., Christie, M. J., & Johnston, G. A. R. (1999). The anxiogenic-like and anxiolytic-like effects of MDMA on mice in the elevated plus-maze: A comparison with amphetamine. Pharmacology, Biochemistry and Behavior, 62(3), 403-408. Morley, K. C., & McGregor, I. S. (2000). (±)-3,4-methylenedioxymethamphetamine (MDMA, 'ecstasy') increases social interaction in rats. European Journal of Pharmacology, 408(1), 41-49. Bhattacharya, S. K., Bhattacharya, A., & Ghosal, S. (1998). Anxiogenic activity of methylenedioxymethamphetamine (Ecstasy): An experimental study. Biogenic Amines, 14(3), 217-237. Gurtman, C. G., Morley, K. C., Li, K. M., Hunt, G. E., & McGregor, I. S. (2002). Increased anxiety in rats after 3,4-methylenedioxymethamphetamine: Association with serotonin depletion. European Journal of Pharmacology, 446(1-3), 89-96. Ho, Y., Pawlak, C. R., Guo, L., & Schwarting, R. K. W. (2004). Acute and long-term consequences of single MDMA administration in relation to individual anxiety levels in the rat. Behavioural Brain Research, 149(2), 135-144. Maldonado, E., & Navarro, J. F. (2000). Effects of 3,4-methylenedioxy-methamphetamine (MDMA) on anxiety in mice tested in the light/dark box. Progress in Neuro-Psychopharmacology and Biological Psychiatry, 24(3), 463-472. Maldonado, E., & Navarro, J. F. (2001b). MDMA ('ecstasy') exhibits an anxiogenic-like activity in social encounters between male mice. Pharmacological Research, 44(1), 27-31. Navarro, J. F., & Maldonado, E. (1999). Behavioral profile of 3,4-methylenedioxy-methamphetamine (MDMA) in agonistic encounters between male mice. Progress in Neuro-Psychopharmacology and Biological Psychiatry, 23(2), 327-334. Navarro, J. F., & Maldonado, E. (2002). Acute and subchronic effects of MDMA ("ecstasy") on anxiety in male mice tested in the elevated plus-maze. Progress in Neuro-Psychopharmacology and Biological Psychiatry, 26(6), 1151-1154.

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Biodegradable polyesters such as poly(epsilon-caprolactone) (PCL) have a number of biomedical applications; however, their usage is often limited by a lack of biological functionality. In this paper, a PCL-based polymer containing pendent groups activated by 4-nitrophenyl chloroformate (NPC) and reactive toward primary amines has been cast into thin films. The reactivity of the films toward poly(l-lysine) and the cell adhesion peptide, GRGDS, was assessed, and their cell adhesive capabilities were characterized. ATR-FTIR analysis found that NPC functional groups were present on the surface of the cast film, and the synthesis, conjugation, and visualization of a fluorescent molecule on these films further demonstrated the success of this functionalization methodology. The immersion of these films into a solution of either poly(l-lysine) (PLL) or GRGDS in PBS (pH 7.4) and subsequent 3T3 fibroblast adhesion studies demonstrated significant improvement in cell adhesion and spreading over films cast from unmodified PCL. This investigation has shown that this novel NPC-containing polymer can be utilized in many applications where increased cellular adhesion is required, or the coupling of specific molecules to polymer surfaces is of interest.

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Ce mémoire traite de la chimie des complexes pinceurs de nickel (II) cationiques ayant un ligand de type POCOP. Elle se divise en deux parties. La première traite de la synthèse, de la caractérisation et de la réactivité des complexes cationiques pinceurs de Ni(II) de type POCOP (POCOP = 1,3-bis(phosphinitobenzene), où C fait partie d’un cycle benzénique et est lié au métal, et P est un ligand phosphoré aussi lié au métal). Ces complexes ont un ligand acétonitrile coordonné au centre métallique et sont du type [(R-POCOPR’)Ni(NCMe)][OSO2CF3], où R est un substituant du cycle benzénique et R’ est un substituant sur le ligand phosphoré (R’ = iPr: R = H (1), p-Me(2), p-OMe(3), p-CO2Me(4), p-Br(5), m,m-tBu2(6), m-OMe(7), m-CO2Me(8); R’ = t-Bu : R = H (9), p-CO2Me(10)). Les complexes cationiques sont préparés en faisant réagir le dérivé Ni(II) neutre correspondant R-(POCOPR’)Ni-Br avec Ag(OSO2CF3¬) dans l’acétonitrile à température ambiante. L’impact des groupements R et R’ du ligand POCOP sur la structure et sur les propriétées électroniques du complexe a été étudié par spectroscopies RMN, UV-VIS et IR, analyse électrochimique, et diffraction des rayons X. Les valeurs de fréquence du lien C≡N (ν(C≡N)) augmentent avec le caractère électroattracteur du complexe, dans l’ordre 7 < 3 ~ 2 ~ 6 < 1 < 5 ~ 8 < 4 et 9 < 10. Ces résultats sont en accord avec le fait qu’une augmentation du caractère électrophile du centre métallique devrait résulter en une augmentation de la donation σ MeCN→Ni. De plus, les complexes cationiques montrent tous un potentiel d’oxydation Ni(II)/Ni(III) plus élevé que leurs analogues neutres Ni-Br. Ensuite, une étude d’équilibre entre un complexe neutre (R-POCOPR’)NiBr et un complexe cationique [(R-POCOPR’)Ni(NCMe)][OSO2CF3] démontre l’échange facile des ligands MeCN et Br. La deuxième partie de ce mémoire consiste en deux chapitres. Le premier (Chapitre 3) est une étude structurelle permettant une meilleure compréhension du mécanisme d’hydroamination des oléfines activées promue par les complexes présentés au chapitre 1, suivi de tentatives de synthèse de nouveaux composés POCOP cationiques comportant un ligand amine et nitrile, et de déplacement du groupement amine par un groupement nitrile. Le deuxième chapitre (4) décrit la réactivité et la cinétique de la réaction d’hydroamination et d’hydroalkoxylation d’oléfines activées, qui permet ainsi de mieux comprendre l’impact des différentes variables du système (groupements R et R’, température, substrats, solvent, etc.) sur la réactivité catalytique.

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Ce mémoire traite de la chimie des complexes pinceurs de nickel (II) cationiques ayant un ligand de type POCOP. Elle se divise en deux parties. La première traite de la synthèse, de la caractérisation et de la réactivité des complexes cationiques pinceurs de Ni(II) de type POCOP (POCOP = 1,3-bis(phosphinitobenzene), où C fait partie d’un cycle benzénique et est lié au métal, et P est un ligand phosphoré aussi lié au métal). Ces complexes ont un ligand acétonitrile coordonné au centre métallique et sont du type [(R-POCOPR’)Ni(NCMe)][OSO2CF3], où R est un substituant du cycle benzénique et R’ est un substituant sur le ligand phosphoré (R’ = iPr: R = H (1), p-Me(2), p-OMe(3), p-CO2Me(4), p-Br(5), m,m-tBu2(6), m-OMe(7), m-CO2Me(8); R’ = t-Bu : R = H (9), p-CO2Me(10)). Les complexes cationiques sont préparés en faisant réagir le dérivé Ni(II) neutre correspondant R-(POCOPR’)Ni-Br avec Ag(OSO2CF3¬) dans l’acétonitrile à température ambiante. L’impact des groupements R et R’ du ligand POCOP sur la structure et sur les propriétées électroniques du complexe a été étudié par spectroscopies RMN, UV-VIS et IR, analyse électrochimique, et diffraction des rayons X. Les valeurs de fréquence du lien C≡N (ν(C≡N)) augmentent avec le caractère électroattracteur du complexe, dans l’ordre 7 < 3 ~ 2 ~ 6 < 1 < 5 ~ 8 < 4 et 9 < 10. Ces résultats sont en accord avec le fait qu’une augmentation du caractère électrophile du centre métallique devrait résulter en une augmentation de la donation σ MeCN→Ni. De plus, les complexes cationiques montrent tous un potentiel d’oxydation Ni(II)/Ni(III) plus élevé que leurs analogues neutres Ni-Br. Ensuite, une étude d’équilibre entre un complexe neutre (R-POCOPR’)NiBr et un complexe cationique [(R-POCOPR’)Ni(NCMe)][OSO2CF3] démontre l’échange facile des ligands MeCN et Br. La deuxième partie de ce mémoire consiste en deux chapitres. Le premier (Chapitre 3) est une étude structurelle permettant une meilleure compréhension du mécanisme d’hydroamination des oléfines activées promue par les complexes présentés au chapitre 1, suivi de tentatives de synthèse de nouveaux composés POCOP cationiques comportant un ligand amine et nitrile, et de déplacement du groupement amine par un groupement nitrile. Le deuxième chapitre (4) décrit la réactivité et la cinétique de la réaction d’hydroamination et d’hydroalkoxylation d’oléfines activées, qui permet ainsi de mieux comprendre l’impact des différentes variables du système (groupements R et R’, température, substrats, solvent, etc.) sur la réactivité catalytique.

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La concentration des médicaments cationiques dans les compartiments acides de la cellule est bien connue. Nous avons tenté d’expliquer davantage certains aspects encore inconnus au sujet de cette réaction cellulaire. En premier lieu, nous avons étudié l’accumulation subcellulaire et in vivo d’un médicament cationique fluorescent, la quinacrine, dans un modèle murin. L’accumulation cellulaire de la quinacrine dans les fibroblastes dermiques de souris induisait une inhibition du flux autophagique, ainsi qu’une lysosomogénèse. L’administration de la quinacrine in vivo démontrait une distribution hétérogène et une augmentation autophagique et lysosomale dans les poumons. En deuxième lieu, l’effet cytostatique et cytotoxique d’une série de médicaments cationiques lysosomotropiques furent étudiés dans une série de lignées cellulaires. Une série de 6 triéthylamines substituées furent choisies afin d’étudier davantage l’effet cytostatique de l’ion trapping. L’accumulation du marqueur autophagique LC3 II, le marqueur apoptotique PARP1, la cytotoxicité, le cycle cellulaire et la fonction endocytose furent étudiés plus en détails dans la lignée tumorale U937. Chacun des médicaments cationiques démontrait un effet antiprolifératif significatif, mais aucun signe de cytotoxicité n’était observé à certains niveaux de concentrations. Un cotraitement avec les inhibiteurs de cholestérol, β-cyclodextrine et lovastatine, renversait partiellement l’effet antiprolifératif des amines. L’intensité de l’effet antiprolifératif induit par les médicaments cationiques est clairement prédite par leur puissance de l’inhibition du flux autophagique et par la liposolubilité. L’accumulation tissulaire de la quinacrine et l’effet cytostatique prédit par l’inhibition du flux autophagique et par la liposolubilité des amines substituées offre des possibilités d’application dans le domaine de l’oncologie et de la pharmacocinétique des nombreux médicaments concernés.

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In the first chapter of this thesis, published works found in the literature about hexacyclinic acid and FR182877 are reported and commented. A quick summary of the previous work done in the Prunet group is also described. In the second and third chapter, a more detailed account of the work undertaken during this PhD was given. Firstly, syntheses of two ABC tricycles incorporating tert-butyl and (trimethylsilyl)ethyl esters were undertaken. These syntheses include two key steps previously developed in the group, a diastereoselective Michael addition and a Snider cyclisation. Multiple conditions for the hydrolysis of the esters were attempted but none of them gave the desired product. The main part of this work is focused on the synthesis of a CDEF model and in particular about the development of the key step, the formation of a nine-membered ring. Several DEF fragments were synthesised in short synthetic sequences and as single isomers. Six different synthetic pathways were developed in total and a novel method, a Michael/elimination reaction, was found to be a very efficient way to close the desired medium-size ring. From the nine-membered ring, regioselective reduction and palladiumcatalysed allylic substitution led to the formation of the CDF tricycle. Final steps of the synthesis were fruitless and led only to decomposition. A synthesis of a chiral C-ring was also developed during this PhD. II Finally, another project was undertaken, not related to hexacyclinic acid. Methodology developed in the group for the diastereoselective formation of trisubstituted alkenes employing a temporary silicon-tethered ring-closing metathesis was extended to homoallylic alcohols. The first steps of the method were similar to the previous methodology but the end-game had to be modified in favour of an oxidation/reduction sequence to successfully obtain the desired products with the correct geometry. In the fourth chapter, procedures and analytical data for the synthesised compounds previously described are reported.

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The present study evaluated the effect of salt reduction on traditional dry-cured sausages' safety, quality and product acceptance, comprising physicochemical and microbiological parameters, biogenic amines, fatty acids, texture profile and sensory analysis. According to our results, salt content had a major effect on microbiological counts, although not compromising the products' safety. Marked differences were identified regarding biogenic amines, in particular for histamine, tyramine and cadaverine, which were detected in larger amounts in products with 3%. Moreover, significant differences in the fatty acids profile have also been found, but only in less abundant components such as linoleic, lauric and heneicosanoic acids. Texture profile analysis of low-salt products, revealed a decrease in hardness and chewiness, along with an increase in adhesiveness values. Sensory evaluations revealed that despite the less intense aroma, products with 3% salt, had a more balanced salt perception. Our results suggest that salt content may be reduced to 50% in dry-cured products, with the obvious health-related advantages.