TY - JOUR A1 - Brünnert, Daniela A1 - Seupel, Raina A1 - Goyal, Pankaj A1 - Bach, Matthias A1 - Schraud, Heike A1 - Kirner, Stefanie A1 - Köster, Eva A1 - Feineis, Doris A1 - Bargou, Ralf C. A1 - Schlosser, Andreas A1 - Bringmann, Gerhard A1 - Chatterjee, Manik T1 - Ancistrocladinium A induces apoptosis in proteasome inhibitor-resistant multiple myeloma cells: a promising therapeutic agent candidate JF - Pharmaceuticals N2 - The N,C-coupled naphthylisoquinoline alkaloid ancistrocladinium A belongs to a novel class of natural products with potent antiprotozoal activity. Its effects on tumor cells, however, have not yet been explored. We demonstrate the antitumor activity of ancistrocladinium A in multiple myeloma (MM), a yet incurable blood cancer that represents a model disease for adaptation to proteotoxic stress. Viability assays showed a potent apoptosis-inducing effect of ancistrocladinium A in MM cell lines, including those with proteasome inhibitor (PI) resistance, and in primary MM cells, but not in non-malignant blood cells. Concomitant treatment with the PI carfilzomib or the histone deacetylase inhibitor panobinostat strongly enhanced the ancistrocladinium A-induced apoptosis. Mass spectrometry with biotinylated ancistrocladinium A revealed significant enrichment of RNA-splicing-associated proteins. Affected RNA-splicing-associated pathways included genes involved in proteotoxic stress response, such as PSMB5-associated genes and the heat shock proteins HSP90 and HSP70. Furthermore, we found strong induction of ATF4 and the ATM/H2AX pathway, both of which are critically involved in the integrated cellular response following proteotoxic and oxidative stress. Taken together, our data indicate that ancistrocladinium A targets cellular stress regulation in MM and improves the therapeutic response to PIs or overcomes PI resistance, and thus may represent a promising potential therapeutic agent. KW - multiple myeloma KW - ancistrocladinium A KW - naphthylisoquinoline alkaloids KW - proteasome inhibitor resistance KW - RNA splicing KW - cellular stress response KW - proteasome subunit beta type-5 (PSMB5) KW - activating transcription factor 4 (ATF4) KW - ataxia teleagiectasia mutated (ATM) KW - H2A histone family member X (H2AX) Y1 - 2023 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-362887 SN - 1424-8247 VL - 16 IS - 8 ER - TY - THES A1 - Mufusama Koy Sita, Jean-Pierre T1 - Quality Assessment of Antimalarial Medicines Sold in the Democratic Republic of the Congo and Phytochemical Investigations on a Congolese Ancistrocladus Liana T1 - Qualitätsbewertung der in der Demokratischen Republik Kongo vermarkteten Malariamittel sowie phytochemische Untersuchung einer kongolesichen Ancistracladus-Liane N2 - Nowadays, the management of infectious diseases is especially threatened by the rapid emergence of drug resistance. It has been suggested that the medicine quality assurance combined with good medication adherence may help to reduce this impendence. Moreover, the search for new antimicrobial agents from medicinal plants is strongly encouraged for the exploration of alternatives to existing therapies. In this context, the present work focused on both the quality evaluation of commercialized antimalarial medicines from the Democratic Republic of the Congo and on the phytochemical investigations of a Congolese Ancistrocladus species. N2 - Heute ist die Behandlung von Infektionskrankheiten besonders durch das schnelle Auftreten von Arzneimittelresistenzen bedroht. Es wurde vorgeschlagen, dass eine gute Arzneimittelqualitätssicherung in Verbindung mit einer sicheren Medikamentenhaftung dazu beitragen kann, dieser Gefahr entgegenzuwirken. Darüber hinaus wird unter anderem die Suche nach neuen antimikrobiellen Wirkstoffen aus Heilpflanzen dringend empfohlen, um nach Alternativen zu bestehenden Therapien Ausschau zu halten. In diesem Zusammenhang konzentrierte sich die vorliegende Arbeit sowohl auf die Qualitätsbewertung der in der Demokratischen Republik Kongo (DR Kongo) vermarkteten Malariamittel, als auch auf die phytochemische Untersuchung einer kongolesischen Ancistrocladus-Art. ... KW - artemether - lumefantrine KW - amodiaquine KW - Congolese Ancistrocladus plants KW - Quality assessment of antimalarial medicines from the Congo KW - Phytochemical investigations of a Congolese Ancistrocladus Liana KW - substandard and falsified medicines from the Congo KW - impurity profiling KW - capillary zone electrophoresis KW - naphthylisoquinoline alkaloids KW - Antimalariamittel KW - Demokratische Republik Kongo KW - Ancistrocladaceae KW - Phytochemie Y1 - 2019 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-192382 ER - TY - THES A1 - Faber, Johan Henrik T1 - Naphthylisoquinoline Alkaloids : Structural Elucidation, Metabolism and Functional Analysis of their Bioactivities T1 - Naphthylisochinolinalkaloide: Strukturaufklärung, Metabolismus und Untersuchungen zu Wirkmechanismen N2 - 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 -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. N2 - • Aus Blättern der ostafrikanischen Lianenart Ancistrocladus tanzaniensis wurden sechs Naphthylischinolin-Alkaloide isoliert, darunter Ancistrotectorilin die bereits aus A. tectorius isoliert wurde. Von einer botanisch bisher unbeschriebenen Ancistrocladus Art, gesammelt von Prof. Dr. V. Mudogo in der Demokratischen Republik Kongo bei Yeteto, in der Nähe der Stadt Ikela, wurden die Blätter i auf ihren Inhalt an Naphthylischinolin-Alkloiden phytochemisch untersucht. Dabei konnte das erste N,C gekuppelte Naphthyldihydroisochinolin-Alkaloid, Ancistrocladinium B. • Die phytochemische Untersuchung der Wurzeln der Kongolesischen Ancistrocladus Art (Fundort Yeteto) wurde ausgeführt und ergab die Isolierung von fünf unbekannten Derivaten bereits bekannter Naphthylisochinolin-Alkaloide: 5'-O-Demethylhamatin , 5'-O-Demethylhamatinin, 6-O-Demethylancistroealain A, 6,5'-O,O-Didemethylancistroealain A und 5-epi-6-O-Methylancistrobertsonine A. Parallel dazu wurden sechs bereits bekannte Naphthylisochinolin-Alkaloide identifiziert. Die bioaktivitätsgeleitete Reinigung antiplasmodialer 60Co bestrahlter Proben –kommerziel verfügbarer Naphthylisochinolin abgeleiteter Substanzen – führte zur Isolierung verschiedener Bestrahlungs-Produkte, nämlich 3,4-Dihydro-1-Isochinolinon, 3,4-Dihydro-1-isochinolineamin, und 1,2,3,4-Tetrahydro-1,2-Diazirino-Isochinolin. Die isolierten Substanzen waren jeweils aktiver als die Edukte, zeigten aber trotzdem nur antiplasmodiale Wirksamkeit im mittleren Berreich. • Die Auswirkung der Komplexbildung unterschiedlicher Naphthylisochinolin-Alkloide – Dioncophylline A und C, Dioncopeltin A, Korupensamin A, und Ancistrocladin – auf das Absorptions-Spektrum von FPIX wurde mittels eines Titrationsexperimentes, unter Anwendung von UV Spektroskopie, untersucht. Durch Job's Plot Analysen konnte so die Stöchiometrie der Komplex-Bildung zwischen FPIX und Naphthylisochinolin-Alkaloide zu 2:1 bestimmt werden. Weiterhin konnten die einzelnen Dissoziationskonstanten für die Komplexierung von FPIX mit den untersuchten Naphthylisochinolin-Alkaloiden errechnet werden. Die für Dioncophyllin C und Dioncopeltin A bestimmten Dissoziationskonstanten sind mit der in der Literatur für das antimalariale Arzneitmittel Chloroquine vergleichbar. Die Möglichkeit durch ESI nicht kovalent gelöste Komponenten intakt in die Gas-Phase zu transferieren, wurden auf Lösungs-Gemische von Naphthylischinolin-Alkaloiden und FPIX sowie auf Lösungs-Gemische von Chloroquine und FPIX angewandt. Die massenspektroskopischen Analysen ergaben mehrere Peaks, die der Komplex-Bildung von FPIX mit den einzeln untersuchten Liganden entsprachen. Die interessantesten Ergebnisse waren dabei die Entdeckung von Peaks, die die Komplex-Bildung zwischen einem chelatisierten Dimer von FPIX mit Dioncophyllin C, sowie zwischen einem doppelt protonierten Tetramer von FPIX – bestehend aus zwei chelatisierten -oxo Dimeren von FPIX – mit zwei Molkülen Chloroquine entsprachen. Zwei Phase 1 Metabolite von Dioncophyllin A konnten in Kooperation mit M. Sieber identifiziert werden. Die Struktur des Haupt-Metabolismus-Produktes konnte durch Koelution, HPLC-MS/MS, NMR und CD Untersuchungen als 5'-O-demethyldioncophyllin A bestätigt werden. KW - Naphthylisochinolinalkaloide KW - Strukturaufklärung KW - Naturstoffe KW - Naphthylisochinoline KW - Metabolismus KW - Strukturaufklärung KW - Wirkmechanismus KW - Natural products KW - naphthylisoquinoline alkaloids KW - metabolism KW - structural elucidation KW - mode of action Y1 - 2007 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-22789 ER -