@phdthesis{Seupel2018, author = {Seupel, Raina}, title = {Antiinfektive und Antitumorale Naphthylisochinolin-Alkaloide: Isolierung und Strukturaufkl{\"a}rung, Totalsynthese und Untersuchungen zum Wirkmechanismus}, url = {http://nbn-resolving.de/urn:nbn:de:bvb:20-opus-167950}, school = {Universit{\"a}t W{\"u}rzburg}, year = {2018}, abstract = {Bedingt durch ihre strukturelle Diversit{\"a}t und biologischen Eigenschaften sind Naturstoffe seit jeher Quelle und Inspiration f{\"u}r Arzneimittel vor allem im therapeutischen Bereich der Onkologie und der Infektionskrankheiten. Ihr einzigartiges pharmakologisches Potenzial wird durch die selektive Interaktion mit einer Vielzahl von Zielmolek{\"u}len hervorgerufen. Aufgrund der zentralen Bedeutung von Naturstoffen in der Entdeckung und Entwicklung von neuen Arzneimitteln sind nach wie vor die Isolierung und Strukturaufkl{\"a}rung, die totalsynthetische Darstellung und Derivatisierung sowie die Identifizierung der Zielmolek{\"u}le und die Aufkl{\"a}rung des Wirkmechanismus dieser nat{\"u}rlichen Wirkstoffe unabdingbar. Die kleine, aber spannende Klasse der Naphthylisochinolin-Alkaloide, die ausschließlich aus den beiden Pflanzenfamilien der Dioncophyllaceae und der Ancistrocladaceae gewonnen werden, zeichnet sich mit ihren mehr als 200 Vertretern nicht nur durch ihre strukturelle Vielfalt aus, sondern zeigt vor allem pharmakologisch interessante Wirksamkeiten. Neben ausgepr{\"a}gten In-vitro-Aktivit{\"a}ten gegen protozoische Erreger wie Leishmanien, Plasmodien und Trypanosomen besitzen die Vertreter dieser einzigartigen Naturstoffklasse nach neuesten Untersuchungen auch vielversprechende antitumorale Aktivit{\"a}ten. F{\"u}r deren Weiterentwicklung zu m{\"o}glichen Arzneistoffen ist es daher unabdingbar, ihr pharmakologisches Potenzial tiefergehend zu untersuchen. Ziel der vorliegenden Dissertation war die Entwicklung totalsynthetischer Zug{\"a}nge zu biologisch interessanten Naphthylisochinolin-Alkaloiden mit Hilfe unterschiedlicher Synthesestrategien. Ebenfalls sollten durch die Darstellung strukturell vereinfachter Derivate sowie markierter Naturstoffe in Zusammenarbeit mit Kooperationspartnern m{\"o}gliche Zielmolek{\"u}le identifiziert und Beitr{\"a}ge zum Wirkmechanismus untersucht werden.}, subject = {Naphthylisochinolinalkaloide}, language = {de} } @phdthesis{Cheng2017, author = {Cheng, Cheng}, title = {Metabolomics and dereplication-based isolation of novel bioactive natural products from marine sponge-associated actinomycetes}, url = {http://nbn-resolving.de/urn:nbn:de:bvb:20-opus-136587}, school = {Universit{\"a}t W{\"u}rzburg}, year = {2017}, abstract = {Marine sponge-associated actinomycetes are considered as promising source for the discovery of novel biologically active compounds. Metabolomics coupled multivariate analysis can efficiently reduce the chemical redundancy of re-isolating known compounds at the very early stage of natural product discovery. This Ph.D. project aimed to isolate biologically active secondary metabolites from actinomycetes associated with different Mediterranean sponges with the assistance of metabolomics tools to implement a rapid dereplication and chemically distinct candidate targeting for further up-scaling compounds isolation. This study first focused on the recovery of actinomycetes from marine sponges by various cultivation efforts. Twelve different media and two separate pre-treatments of each bacterial extract were designed and applied to facilitate actinomycete diversity and richness. A total of 64 actinomycetes were isolated from 12 different marine sponge species. The isolates were affiliated to 23 genera representing 8 different suborders based on nearly full-length 16S rRNA gene sequencing. Four putatively novel species belonging to the genera Geodermatophilus, Microlunatus, Rhodococcus, and Actinomycetospora were identified based on a sequence similarity <98.5\% to validly described 16S rRNA gene sequences. 20\% of the isolated actinomycetes was shown to exhibit diverse biological properties, including antioxidant, anti-Bacillus sp., anti-Aspergillus sp., and antitrypanosomal activities. The metabolomics approaches combined with the bioassay results identified two candidate strains Streptomyces sp. SBT348 and Streptomyces sp. SBT345 for further up-scaling cultivation and compounds isolation. Four compounds were isolated from Streptomyces sp. SBT348. Three of these compounds including the new cyclic dipeptide petrocidin A were previously highlighted in the metabolomics analyses, corroborating the feasibility of metabolomics approaches in novel compounds discovery. These four compounds were also tested against two pathogen microorganisms since the same activities were shown in their crude extract in the preliminary bioassay screening, however none of them displayed the expected activities, which may ascribe to the insufficient amount obtained. Streptomyces sp. SBT345 yielded 5 secondary metabolites, three of which were identified as new natural products, namely strepthonium A, ageloline A and strepoxazine A. Strepthonium A inhibited the production of Shiga toxin produced by enterohemorrhagic Escherichia coli at a concentration of 80 μM, without interfering with the bacterial growth. Ageloline A exhibited antioxidant activity and inhibited the inclusion of Chlamydia trachomatis with an IC50 value of 9.54 ± 0.36 μM. Strepoxazine A displayed antiproliferative property towards human promyelocytic HL-60 cells with an IC50 value of 16 μg/ml. 11 These results highlighted marine sponges as a rich source for novel actinomycetes and further exhibited the significance of marine sponge-associated actinomycetes as promising producers of novel biologically active compounds. The chemometrics coupled metabolomics approach also demonstrated its feasibility and efficacy in natural product discovery.}, subject = {Actinomyces}, language = {en} } @phdthesis{Faber2007, author = {Faber, Johan Henrik}, title = {Naphthylisoquinoline Alkaloids : Structural Elucidation, Metabolism and Functional Analysis of their Bioactivities}, url = {http://nbn-resolving.de/urn:nbn:de:bvb:20-opus-22789}, school = {Universit{\"a}t W{\"u}rzburg}, year = {2007}, abstract = {This thesis deals with the isolation and structural elucidation of bioactive naphthylisoquinoline alkaloids and related analogs. The mode of action of the antiplasmodial activity exhibited by the naphthylisoquinoline alkaloids was explored and compared to that of the antimalarial drug chloroquine. Furthermore, the phase 1 and 2 metabolism of dioncophyllines A and C and dioncopeltine A were investigated. In detail the following results have been obtained: • From the leaves of the recently discovered East African liana A. tanzaniensis six naphthylisoquinoline alkaloids were isolated. • The leaves of a botanical yet undescribed Ancistrocladus species, collected by Prof. Dr. V. Mudogo in the Democratic Republic of Congo in the habitat Yeteto near the town Ikela, were analyzed for naphthylisoquinoline alkaloids for the first time. The isolation work led to the first identification of an N,C-coupled naphthyldihydroisoquinoline alkaloid; ancistrocladinium B. Phytochemical investigation of the roots of the Congolese Ancistrocladus species (habitat Yeteto), , afforded five new derivatives of known naphthylisoquinoline alkaloids, namely 5'-O-demethylhamatine, 5'-O-demethylhamatinine, 6-O-demethylancistroealaine A, 6,5'-O,O-didemethylancistroealaine A, and 5-epi-6-O-methylancistrobertsonine A, along with six known naphthylisoquinoline alkaloids. • The antiplasmodial activity guided purification of 60Co irradiated samples containing commercially available naphthylisoquinoline related substances, afforded the isolation of the irradiation products 3,4-dihydro-1-isoquinolinone, 3,4-dihydro-1-isoquinolineamine, and 1,2,3,4-tetrahydro-1,2-diazirino-isoquinoline. The compounds were found to be more active than the starting material, although only exhibiting weak antiplasmodial activity against P. falciparum. • The effect on the absorption spectrum of FPIX due to complex formation with the naphthylisoquinoline alkaloids dioncophyllines A and C, dioncopeltine A korupensamine A, and ancistrocladine was examined by a titration study. Job's plot analyses by UV-spectroscopy determined the stoichiometry for the complex formation of FPIX and naphthylisoquinoline alkaloids to be 2:1. Furthermore, the dissociation constants for the complexation with FPIX were determined for each of the naphthylisoquinoline alkaloids investigated. Dioncophylline C and dioncopeltine A were found to possess dissociation constants, which are comparable to the one reported for the antimalarial drug chloroquine. The ability of ESI to transfer noncovalent solution-phase assemblies intact into the gas phase, was conducted on solution mixtures of naphthylisoquinoline alkaloid and FPIX, as well as on mixtures of chloroquine and FPIX. The mass spectrometry analyses revealed several peaks, which corresponded to the complex formation of FPIX to the respective ligands investigated. The most interesting results obtained were the detection of peaks corresponding to the complex formation between a chelated dimer of FPIX and dioncophylline Cand of peaks corresponding to a double protonated tetramer of FPIX - consisting of two chelated \&\#61549;-oxo dimers of FPIX - in complex formation with two molecules of chloroquine. • Two phase 1 metabolism products of dioncophylline A were identified. Coelution in combination with HPLC-MS/MS, NMR, and CD investigations assigned the major metabolic product as 5'-O-demethyldioncophylline A. The minor metabolic product was only present in small amounts, which disabled an unambiguous structural characterization of the compound. However, as deduced from the mass spectrometry analyses and exclusion of a possible metabolic oxidation product by coelution with authentic reference material, the metabolite should possess a 4-hydroxylated isoquinoline portion and is assumed to be represented by structure. Dioncophylline C and dioncopeltine A were found to be stable to phase 1 metabolism reactions caused by rat liver microsomes.}, subject = {Naphthylisochinolinalkaloide}, language = {en} } @phdthesis{Schies2019, author = {Schies, Christine Lisa}, title = {Totalsynthese von Mbandakamin A und Weiteren Dimeren Naphthylisochinolin-Alkaloiden mit Antiplasmodialer Aktivit{\"a}t sowie HPLC-ECD-Analyse Inh{\"a}rent Chiraler Metallocorrole}, doi = {10.25972/OPUS-18501}, url = {http://nbn-resolving.de/urn:nbn:de:bvb:20-opus-185012}, school = {Universit{\"a}t W{\"u}rzburg}, year = {2019}, abstract = {Tropische Infektionskrankheiten sind noch immer die Haupttodesurache in vielen L{\"a}ndern der Dritten Welt. Unter ihnen ist Malaria neben der Immunschw{\"a}chekrankheit AIDS und Tuberkulose am weitesten verbreitet. Laut WHO erkrankten allein im Jahr 2016 rund 216 Millionen Menschen an Malaria und weltweit verstarben 445.000 Menschen an den Folgen dieser Infektion. Solange die Wirksamkeit des Impfstoffs RTS,S/AS01 gegen Malaria noch Schwachstellen aufweist und andere Impfstoff-Kanditaten sich noch in pr{\"a}klinischen Testphasen befinden, ist vor allem die Entwicklung neuer Wirkstoffe, auch im Hinblick auf die rasante Ausbreitung von Resistenzen gegen herk{\"o}mmliche Medikamente, weiterhin eine dringende Aufgabe. Eine vielversprechende Wirkstoffklasse mit interessanten strukturellen Eigenschaften und einer ungew{\"o}hnlichen Biosynthese aus Acetat-Einheiten sind die Naphthylisochinolin-Alkaloide aus den beiden pal{\"a}otropischen Pflanzenfamilien der Dioncophyllaceae und Ancistrocladaceae. Die Naphthylisochinolin-Alkaloide sind hervozuheben aufgrund ihrer exzellenten Aktivit{\"a}t gegen Plasmodium falciparum, den Erreger der Malaria tropica, sowie wegen ihrer Wirksamkeit gegen Erreger weiterer Krankheiten wie beispielsweise AIDS, Leishmaniose und Afrikanische Trypanosomiasis. Auch im Kampf gegen maligne Erkrankungen wie Leuk{\"a}mie und pankreatischen Krebs werden sie aufgrund ihrer cytotoxischen Eigenschaften als vielversprechende Leitstrukturen betrachtet. Die strukturell beeindruckendsten Naphthylisochinolin-Alkaloide sind die dimeren Mbandakamine, die von unserer Arbeitsgruppe vor einiger Zeit aus einer kongolesischen Ancistrocladus-Liane isoliert wurden. Sie besitzen sieben stereogene Elemente und sind die ersten nat{\"u}rlich vorkommenden Dimere mit einer h{\"o}chst unsymmetrischen 6',1''-gekuppelten zentralen Biarylachse. Diese impliziert eine außergew{\"o}hnlich hohe sterische Hinderung an der zentralen Achse, wie sie noch in keinem anderen dimeren Naphthylisochinolin-Alkaloid gefunden wurde. Verbunden mit ihren bemerkenswerten und vielseitigen pharmakologischen Wirkeigenschaften sind sie ausgesprochen interessante Molek{\"u}le f{\"u}r eine synthetische Erschließung. Ziel dieser Arbeit war die erstmalige Totalsynthese von Mbandakamin A und B sowie die Synthese ihrer monomeren H{\"a}lften 5-epi-Korupensamin E und 8-O-Methylkorupensamin A. Zudem sollten weitere Naphthylisochinolin-Dimere, die bei der Synthese der Mbandakamine anfallen, isoliert und charakterisiert werden. Alle neuen mono- und dimeren Naphthylisochinoline sollten abschließend am Schweizerischen Tropen- und Public-Health-Institut auf ihre biologische Aktivit{\"a}t getestet werden. Zus{\"a}tzlich gelang im Rahmen eines Kooperationsprojekts erstmals die stereochemische Charakterisierung des strukturell ganz neuartigen, inh{\"a}rent chiralen Wolframbiscorrols durch online HPLC-ECD-Analyse in Kombination mit quantenchemischen Rechnungen.}, subject = {Naphthylisochinolin-Alkaloide}, language = {de} }