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  • About
  • The Global ETD Search service is a free service for researchers to find electronic theses and dissertations. This service is provided by the Networked Digital Library of Theses and Dissertations.
    Our metadata is collected from universities around the world. If you manage a university/consortium/country archive and want to be added, details can be found on the NDLTD website.
11

Template directed synthesis of porphyrin nanorings

O'Sullivan, Melanie Claire January 2011 (has links)
This thesis describes supramolecular approaches to porphyrin nanorings. Cyclic porphyrin arrays resemble natural light harvesting systems, and it is of interest to probe the photophysical effects of bending the porphyrin aromatic π-system. A general overview of the synthesis and photophysical properties of porphyrins and their arrays is carried out in Chapter 1. The electronic structure of porphyrins is examined, and how conformational effects in oligomers, such as inter-porphyrin torsional angle and backbone bending influence the π-conjugation pathway. The structures of light harvesting complexes are discussed. Chapter 2 describes the design and synthesis of a complementary 12-armed template designed to coordinate linear porphyrin oligomers in the correct conformation for cyclisation to give a cyclic porphyrin dodecamer. Chapter 3 demonstrates two approaches to a cyclic porphyrin dodecamer ring. Firstly, a classical templating approach using the 12-armed template is described. The limitations of this approach in the quest for larger nanorings are discussed. Vernier templating, which utilises a mismatch in the number of binding sites between a ligand and its receptor is introduced as a general strategy to the synthesis of large nanorings. This is demonstrated by the synthesis of cyclic dodecamer from a linear porphyrin tetramer and a hexadentate template via a figure-of-eight intermediate. The general utility of the Vernier method to large nanorings is explored in Chapter 4 with steps towards the synthesis of a cyclic tetracosamer, consisting of 24 porphyrin subunits. In preliminary experiments, an improved route to the cyclic porphyrin octamer is described. Finally, the photophysical properties of the nanoring series are explored in Chapter 5 as a function of size and conformation. Femtosecond photoluminescence spectroscopy shows that even in cyclic dodecamer, exciton delocalisation over the entire porphyrin backbone occurs on a sub-picosecond timescale, and parallels are drawn with the dynamics of natural light harvesting complexes.
12

Analogues of antibacterial natural products

Heaviside, Elizabeth Anne January 2012 (has links)
Analogues of Antibacterial Natural Products Elizabeth Anne Heaviside, St Catherine’s College, University of Oxford DPhil Thesis, Trinity Term 2012 This thesis is concerned with the synthesis and biological evaluation of structural mimics for the natural products 16-methyloxazolomycin and lemonomycin which display potent biological activity including antibacterial and antitumour activity. Chapter 1 explores methods and approaches to the discovery of new antibacterial drugs and the challenges faced in this respect. It also gives an overview of the properties of the natural products investigated in the following chapters and summarises previous synthetic approaches to these molecules published in the scientific literature. Chapter 2 describes the work carried out towards the synthesis of the diazabicyclo[3.2.1]octane unit of the tetrahydroisoquinoline antitumour antibiotic lemonomycin. The intended retrosynthesis of the natural product led to a 2,5-disubstituted pyrrolidine bearing a 1ʹ-amino functional group; a series of routes were explored for the synthesis of this unit. Using (S)-pyroglutamic acid, strategies using Eschenmoser and thiolactim ether coupling reactions were investigated. A sequence based on the formation of a pyrrolidine ring from the cyclisation of an appropriately substituted oxime ether derived from L-phenylalanine was then implemented but a competing Beckmann rearrangement/Grob fragmentation prevented access to the desired heterocycle. Preliminary investigations were also carried out on the modification of cyclic imines derived from oxime ethers which did not undergo Beckmann rearrangement. Chapter 3 describes the synthesis of a library of densely functionalised tetramic acid and pyroglutamate mimics for the right-hand fragment of 16-methyloxazolomycin, and their coupling with a gem-dimethylamide unit mimicking the middle fragment of the natural product. Tetramates were accessed through the Dieckmann cyclisation of N-acyloxazolidines and were derivatised with various alkyl halides. The pyroglutamates were accessed via the highly diastereoselective aldol cyclisation of N-acyloxazolidines formed by the amide coupling of a threonine derived oxazolidine and β-keto-acids. A series of β-keto-acids were synthesised through the acylation and subsequent ring-opening/decarboxylation reaction of Meldrum’s acid. The formation of right-hand/middle fragment adducts was explored using cycloaddition, alkylation and Sonogashira chemistry before a Wittig protocol led to the formation of adducts (E)- and (Z)- 402 and 403. Biological evaluation of the compounds synthesised in this chapter was carried out using both broth and hole-plate bioassays and active compounds were identified. Of particular note was that the Wittig adducts displayed a higher level of activity against Gram-negative E. coli than either the pyroglutamate or amide motifs alone.
13

A comparison of the reactivity of different synthetic calcium carbonate minerals with arsenic oxyanions

Mandal, Abhishek 14 January 2009
This study was conducted to determine how the structure and surface chemistry of bulk CaCO3 differs from that of nanometer-sized CaCO3 and then to determine rate, extent and mechanisms of As adsorption on various synthetic CaCO3 materials. Additionally, we sought to devise a chemical CaCO3 precipitate that approximates biogenic CaCO3. The bulk CaCO3 precipitation was performed by using a solution that was highly oversaturated so that large CaCO3 precipitates rapidly form. Two different methods were employed for the synthesis of nanometer size CaCO3 i) an in situ deposition technique and ii) an interfacial reaction (water in oil emulsion). Mineral characterization of all CaCO3 precipitates was done with Nitrogen Porosimetry (Brunauer Emmett Teller method), particle size analysis, X-ray diffraction and Fourier Transform Infrared/ Fourier Transform Raman spectroscopy. The principal objective of the research was to assess the overall reactivity of As(III) and As(V) with different synthetic CaCO3 minerals. This was accomplished by i) running adsorption isotherms (varying As concentration), ii) measuring pH envelopes (varying pH at a fixed concentration) and iii) kinetic experiments (varying reaction time). Also, electrophoretic mobility experiments were performed in the presence of As(III) and As(V), and these studies revealed that As(III) forms stronger inner-sphere complexes with CaCO3 than As(V). Also, it was found that nanometer-sized CaCO3 prepared via deposition formed stronger inner-sphere complexes with As oxyanions (q = 5.26 µmol/m2) compared to either nano-sized CaCO3 from interfacial reactions (q = 4.51 µmol/m2) or bulk CaCO3 (q = 4.39 µmol/m2).<p> The PEG-based nano CaCO3 prepared by an in-situ deposition technique presents a novel and readily available synthesis route that can be used as proxy for the biogenic CaCO3 known to be present in many different environmental conditions. The results of this study suggest that CaCO3 can be used as a sorbent for As in groundwater.
14

A comparison of the reactivity of different synthetic calcium carbonate minerals with arsenic oxyanions

Mandal, Abhishek 14 January 2009 (has links)
This study was conducted to determine how the structure and surface chemistry of bulk CaCO3 differs from that of nanometer-sized CaCO3 and then to determine rate, extent and mechanisms of As adsorption on various synthetic CaCO3 materials. Additionally, we sought to devise a chemical CaCO3 precipitate that approximates biogenic CaCO3. The bulk CaCO3 precipitation was performed by using a solution that was highly oversaturated so that large CaCO3 precipitates rapidly form. Two different methods were employed for the synthesis of nanometer size CaCO3 i) an in situ deposition technique and ii) an interfacial reaction (water in oil emulsion). Mineral characterization of all CaCO3 precipitates was done with Nitrogen Porosimetry (Brunauer Emmett Teller method), particle size analysis, X-ray diffraction and Fourier Transform Infrared/ Fourier Transform Raman spectroscopy. The principal objective of the research was to assess the overall reactivity of As(III) and As(V) with different synthetic CaCO3 minerals. This was accomplished by i) running adsorption isotherms (varying As concentration), ii) measuring pH envelopes (varying pH at a fixed concentration) and iii) kinetic experiments (varying reaction time). Also, electrophoretic mobility experiments were performed in the presence of As(III) and As(V), and these studies revealed that As(III) forms stronger inner-sphere complexes with CaCO3 than As(V). Also, it was found that nanometer-sized CaCO3 prepared via deposition formed stronger inner-sphere complexes with As oxyanions (q = 5.26 µmol/m2) compared to either nano-sized CaCO3 from interfacial reactions (q = 4.51 µmol/m2) or bulk CaCO3 (q = 4.39 µmol/m2).<p> The PEG-based nano CaCO3 prepared by an in-situ deposition technique presents a novel and readily available synthesis route that can be used as proxy for the biogenic CaCO3 known to be present in many different environmental conditions. The results of this study suggest that CaCO3 can be used as a sorbent for As in groundwater.
15

Synthese von Capreomycidin- und Epicapreomycidin-haltigen Naturstoff-Bausteinen / Synthesis of capreomycidine and epicapreomycidine containing naural product building blocks

Büschleb, Martin 23 April 2012 (has links)
No description available.
16

Recherche de molécules antimicrobiennes d'origine lichénique : Etude phytochimique de trois lichens & approche synthétique de deux composés actifs / Research of antimicrobial molecules from lichens : Phytochemical study of three lichens and synthetic approach of two active compounds

Andraud-Dieu, Amandine 01 June 2015 (has links)
L’étude physicochimique de trois lichens récoltés en Limousin, Usnea florida, Flavoparmelia caperata et Cladonia incrassata, a permis d’isoler et de caractériser 16 composés issus du métabolisme secondaire. Dans un premier temps, ces lichens ont été sélectionnés lors d’un criblage analytique préliminaire réalisé sur 17 espèces. L’activité antimicrobienne des extraits acétoniques a été évaluée, puis leur fractionnement bioguidé a été mis en œuvre. Les deux isomères de l’acide usnique, 3 dibenzofuranes, 4 depsides, 3 depsidones, un acide aliphatique, un phtalide et un stérol ont été isolés. Une xanthone trichlorée, la cladoxanthone A, a été extraite et identifiée pour la première fois à partir d’une source naturelle. L’effet de tous les composés a été évalué sur Staphyloccocus aureus par bioautographie. Pour les produits isolés en quantité suffisante, des tests de dilution en milieu liquide ont permis de déterminer leurs CMI, en comparaison avec le Phénonip®, conservateur couramment utilisé dans l’industrie cosmétique. Les acides didymique et condidymique en particulier s’avèrent être de bons candidats pour une utilisation en tant que conservateurs. Dans un second temps, compte tenu de leur potentielle application industrielle, nous avons exploré des voies de synthèse de l’acide usnique et de la cladoxanthone A. Ainsi, la préparation de l’intermédiaire clé pour l’accès à l’acide usnique a été optimisée et les premiers essais de couplage en présence d’une porphyrine sont encourageants. De même, les voies de synthèse proposées et mises en œuvre pour la cladoxanthone A sont prometteuses. / Phytochemical study of three lichens collected in Limousin, Usnea florida, Flavoparmelia caperata and Cladonia incrassata, led to the isolation and the structural identification of 16 secondary metabolites. First, these lichens were chosen after a preliminary screening performed on 17 species. Antimicrobial activity of acetone extracts was evaluated and bioassay-guided fractionation was performed. The two isomers of usnic acid, 3 dibenzofurans, 4 depsides, 3 depsidones, one aliphatic acid and one sterol were isolated. A trichlorinated xanthone, named cladoxanthone A, was extracted and identified for the first time in a natural source. A bioautographic protocol was used to evaluate antibacterial activities of these compounds on Staphylococcus aureus. MICs of the products obtained in sufficient amounts were determined by a broth microdilution method in parallel with Phenonip®, a preservative commonly used in cosmetic industry. Didymic and condidymic acids were found to be good candidates for use as preservatives. Secondly, owing to their potential industrial application, we explored synthetic routes for usnic acid and cladoxanthone A. Thus, the preparation of the key intermediate for access to usnic acid was optimized and the first coupling tests in the presence of a porphyrin were encouraging. Similarly, the proposed synthetic routes for cladoxanthone A are promising.
17

Isolement, identification et synthèse biomimétique de métabolites secondaires issus d'invertébrés marins de la zone sud-ouest de l'océan Indien / Isolation, identification and biommetic synthesis of secondary metabolites from marine invertebrates of south-west Indian ocean

Gros, Emmanuelle 10 October 2013 (has links)
Le principal objectif de cette thèse, au caractère interdisciplinaire, concernait l'étude de l'éponge Biemna laboutei de Madagascar, connue pour sa toxicité (causant notamment des dermatites). Les travaux entrepris comprenaient en premier lieu, l'étude chimique de cette éponge incluant l'extraction, l'isolement et l'identification des métabolites secondaires par différentes techniques chromatographiques (CLMP, CLHP…) et spectroscopiques (UV-visible, HRMS, RMN 1D et 2D…). Dix-huit alcaloïdes appartenant à la classe rare des hétérocycles tricycliques (5,6,8b)-triazaperhydroacénaphtylène (i.e. ptilocaulines, mirabilines, nétamines) ont été isolés et identifiés. Douze de ces alcaloïdes tricycliques guanidiniques, de structures nouvelles, ont été nommées nétamines H-S. Ces composés ont été classés en fonction des insaturations de leur noyau tricyclique : type pyrimidine, insaturés en Δ8,8a et insaturés en Δ8a,8b. Pour deux des composés isolés, les nétamines I (58) et J (59), une étude configurationnelle reposant sur la comparaison de spectres UV et DCE, expérimentaux et théoriques (théorie de la fonctionnelle et de la densité), a permis la détermination de leurs configurations absolues : 5aS, 7R, 8R pour la nétamine I et 5aS, 7R, 8S pour la nétamine J. La valorisation des molécules isolées a ensuite été envisagée via d'une part la réalisation d'une étude chimiotaxonomique et d'autre part, l'évaluation de leurs activités biologiques (cytotoxicité, activité antipaludique, …). La nétamine M (62) a présenté une activité cytotoxique sur les cellules cancéreuses KB (CI50 = 1,0 μg/mL) et les nétamines O (64), Q (66) et K (60) se sont montrées actives contre le parasite Plasmodium falciparum, responsable du paludisme avec respectivement une CI50 de 4,66 ; 2,53 et 0,62 μg/mL. Enfin, au cours de ces travaux de thèse, ont été explorées trois nouvelles stratégies de synthèse conduisant au squelette des alcaloïdes guanidiniques tricycliques, suivant une approche biomimétique. / The main purpose of this interdisciplinary thesis was to study Biemna laboutei, a sponge from Madagascar, known to have toxic properties (dermatitis-producing). The chemical investigation of this sponge including extraction, isolation and identification of secondary metabolites was first undertaken using several chromatographic (HPLC, MPLC…) and spectroscopic (UV-visible, HRMS, NMR 1D et 2D…) techniques. Eighteen alkaloids belonging to the rare class of tricyclic (5,6,8b)-triazaperhydroacenaphtylene heterocycles (i.e. ptilocaulins, mirabilins, netamines) were isolated and identified. Twelve new alkaloids from this group of guanidine derivatives were named netamine H-S. These compounds were grouped on the basis of unsaturation and double bond regiochemistry, with pyrimidine, Δ8,8a and Δ8a,8b heterocycles. For two compounds, netamine I (58) and J (59), a joint theoretical (Density functional theory) and experimental study of UV and ECD spectra allowed the determination of their absolute configuration: 5aS, 7R, 8R for netamine I and 5aS, 7R, 8S for netamine J. The chemotaxonomic meaning of these alkaloids was discussed. Their biological activities were also evaluated. Netamine M (62) exhibited a cytotoxic activity towards KB cells (IC50 = 1,0 μg/mL) while netamine O (64), Q (66) and K (60) were active against the malaria parasite Plasmodium falciparum with IC50 value of 4,66; 2,53 and 0,62 μg/mL respectively. Finally, this work was also dedicated to the biomimetic synthesis of the tricyclic guanidine skeleton. Three new synthesis routes were explored.
18

Reaction engineering for protein modification : tools for chemistry and biology

Chalker, Justin M. January 2011 (has links)
Chemical modification of proteins is critical for many areas of biochemistry and medicine. Several methods for site-selective protein modification are reported in this Thesis that are useful in accessing both natural and artificial protein architectures. Multiple, complementary methods for the conversion of cysteine to dehydroalanine are described. Dehydroalanine is used as a general precursor to several post-translational modifications and glycosylation, polyprenylation, phosphorylation, and lysine methylation and acetylation are all accessible. These modifications and their mimics were explored on multiple proteins, including histone proteins. Unnatural modifications were also explored. The first examples of olefin metathesis and Suzuki-Miyaura cross-coupling on protein substrates are reported. Allyl sulfides were discovered to be remarkably reactive substrates in olefin metathesis, allowing use of this reaction in water and on proteins. For Suzuki-Miyaura cross-coupling, a new catalyst is described that is fully compatible with proteins. Both olefin metathesis and cross-coupling allow the formation of carbon-carbon bonds on proteins. The prospects of these transformations in chemical biology are discussed. Finally, a novel strategy is reported for the installation of natural, unnatural, and post-translationally modified amino acid residues on proteins. This technology relies on addition of carbon radicals to dehydroalanine. This method of "chemical mutagenesis" is anticipated to complement standard genetic manipulation of protein structure.

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