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Institute
- Institut für Pharmazie und Lebensmittelchemie (399) (remove)
Sonstige beteiligte Institutionen
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Identifizierung und Strukturaufklärung von Anthocyanen und ihrer Metabolite erfolgten mit Hilfe der mittels Hochleistungsflüssigchromatographie-Diodenarray-Detektion-Elektro-spray-Tan¬dem¬massen¬spektrometrie (HPLC-DAD-ESI-MS/MS). Quantitative Analysen wurden via HPLC-DAD durchgeführt. Die hierzu erforderlichen Referenzverbindungen wurden mittels präparativer HPLC aus Heidelbeeren isoliert (Reinheit zwischen 85,8% und 99,4%). Der Gehalt an Anthocyanen in den untersuchten Heidelbeerfrüchten lag bei 6 g/kg. Bezüglich der mengen¬mäßigen Verteilung dominierten Delphinidin- und Cyanidin¬glykoside vor den Glykosiden von Malvidin, Petunidin und Peonidin. Als konjugierte Zucker¬reste kamen vor allem Glukose und Galaktose vor, der Gehalt an Arabinosiden war weit geringer. Bei oraler Aufnahme erfolgt ein erster Kontakt der Anthocyane mit Speichel. Daher wurde dessen Wirkung auf die Heidelbeeranthocyane in ex vivo-Studien über einen (unphysio-logisch langen) Zeitraum von bis zu 30 Minuten untersucht. Dabei konnte wurde ins-besondere der Einfluß des pH-Wertes auf die Stabilität der Anthocyane aufgezeigt werden. Zur Simulation des Verhaltens von Anthocyanen im Magen wurden die einzelnen Heidelbeeranthocyane mit künstlichem Magensaft (pH 1,81) über vier Stunden inkubiert. Hier erwiesen sich alle untersuchten Verbindungen als stabil. Die anschließend von uns mit simuliertem Duodenalsekret (pH 7,2) über einen Zeitraum von 24 Stunden durchgeführten Studien zeigten, dass die Anthocyane unterschiedlich starken Modifizierungen unterlagen. Unter den schwach alkalischen Bedingungen wurden vor allem die Glykoside des Delphinidins schnell abgebaut, aber auch die übrigen Anthocyane erwiesen sich unter diesen Bedingungen als nicht stabil; nach 24 h war kein Anthocyan mehr nachweisbar. Um die Metabolisierungsvorgänge der Anthocyane im Dünn- und Dickdarm zu untersuchen, wurden ex vivo-Inkubationen jeweils mit frischem Ileo- bzw. Kolo¬stoma-beutel¬inhalt durchgeführt. Während die Abbaugeschwindigkeit in der ilealen Flüssigkeit vor allem von der pH-Stabilität des Aglykons abhänig war, konnten im Dickdarm einzig die Arabinoside nach einer Stunde noch alle in geringen Konzentrationen identifiziert werden. Die meisten Glukoside und Galaktoside waren zu diesem Zeitpunkt schon vollständig abgebaut. Da im Darm von einer hydrolytischen Spaltung der Anthocyane in Anthocyanidin und Zucker ausgegangen wird, wurde die Metabolisierung von Anthocyanidinen unter physio-logischen pH-Bedingungen untersucht. Neben der jeweiligen Spaltung in das Benzoe¬säure-derivat des B-Ringes sowie Phloroglucinessigsäure traten verschiedene Poly¬merisierungs¬-produkte auf, deren Strukturen nicht aufgeklärt werden konnten. In einer weiteren Versuchsreihe wurde die renale Ausscheidung von Anthocyanen bei Ileostomieprobanden nach oraler Applikation von 300 g Heidelbeeren über einen Zeitraum von acht Stunden untersucht. Es zeigte sich, dass ein Stoma des terminalen Ileums keinen Einfluss auf die Absorption und Metabolisierung der Anthocyane hatte. Die Bilanzierung der Anthocyane im Urin erfolgte als Äquvalente von Malvidin-3-O-glukosid, da nicht alle Anthocyanmetabolite zur Verfügung standen. Der Zeitpunkt der maximalen renalen Anthocyanausscheidung sowie die Menge der ausgeschiedenen Anthocyane waren starken interindividuellen Schwankungen unterworfen. Das Aus¬sscheidungs¬maximum (tmax) lag zwischen 0,5 und zwei Stunden. Bei der ausge¬schiedenen Menge wurden Werte zwischen 0,007% und 0.019% der auf¬ge¬nommenen Anthocyane ermittelt. Aufgrund der literaturbekannten Unterschiede zwischen den in Serum und Urin gefunden Anthocyanmengen ist davon auszugehen, dass es nach Anthocyanverzehr zu Inter-aktionen mit Proteinen in Blut oder Geweben kommt. Mittels Blutfraktionierung wurde das humane Serumalbumin (HSA) als wichtigster Bindungspartner der Anthocyane im Blut identifiziert. Anhand spektroskopischer Methoden war es möglich, die Bindungs¬parameter zu berechnen. Als Bindungsort wurde der hydrophile Eingang der lipophilen Warfarin-Bindungstasche in der Subdomäne IIA des HSA-Moleküls mittels "molecular modelling" identifiziert. Nasschemische Untersuchungen ergaben, dass die Bindung der Anthocyane an HSA diese vor ihrem pH-abhängigen Abbau schützt. Eine signifikante Herab¬setzung der chemischen Abbaugeschwindig¬keit konnte auch für bovines Serumalbumin beobachtet werden. Diese Erkenntnis ließ sich auf andere, mit dem HSA-Molekül nicht strukurverwandte lebensmittelrelevante Albumine übertragen. So zeigten Anthocyane große Stabilität in Milch und Eiklar, wobei die Stabilisierung auf eine Wechselwirkung mit den Proteinen Laktalbumin und Ovalbumin zurückgeführt werden konnte. Die in dieser Arbeit erlangten Erkenntnisse hinsichtlich Absorption, Metabolisierung und systemischer Verfügbarkeit im menschlichen Organismus leisten einen Beitrag zum besseren Verständnis der Wirkungen von Anthocyanen. Die neuen Erkenntnisse der Protein¬bindung sind vor allem für die Bewertung der Verfügbarkeit der Anthocyane in humanem Gewebe relevant.
The high failure rate of new drug candidates in preclinical or clinical studies due to hepatotoxicity represents a considerable problem in the drug development. Hence, there is an urgent need to develop new approaches for early and reliable prediction of drug-induced hepatotoxicity that enables a better identification of drug candidates with high potential for toxicity at early stages of drug development. Therefore, the aim of this work was to improve the prediction of drug-induced liver injury in preclinical studies through evaluation of more reliable and sensitive biomarkers of hepatotoxicity and a better understanding of the underlying mechanistic basis for drug-induced toxicity. First, the ability of a set of potential markers (NGAL, thiostatin, clusterin, PON1) to detect early signs of liver injury was assessed in rats treated with drug candidates that were dropped from further development, in part due to toxic adverse effects in the liver. In summary, PON1 and clusterin were not consistently altered in response to liver injury and thus provide no additive information to the traditional liver enzymes in detecting drug-induced hepatotoxicity. In contrast, thiostatin and NGAL were increased in serum and urine of treated animals in a time- and dose-dependent manner. These changes correlated well with mRNA expression in the target organ and generally reflected the onset and degree of drug-induced liver injury. Receiver-operating characteristics analyses supported serum thiostatin, but not NGAL, as a better indicator of drug-induced hepatobiliary injury than conventional clinical chemistry parameters, such as ALP, ALT and AST. Although thiostatin, an acute phase protein expressed in a range of tissues, may not be specific for liver injury, our results indicate that thiostatin may serve as a sensitive, minimally-invasive diagnostic marker of inflammation and tissue damage in preclinical safety assessment. In the second part of this work, combined application of genomics profiling technology and RNAi to inhibit the pharmacological target of a drug candidate BAY16, a glucagon receptor (GCGR) antagonist, was used to determine if interference with the pharmacological target plays a role in the toxic response to BAY16, and to narrow down those molecular changes that are associated with toxicity, and not the pharmacological action of BAY16. In contrast to Bay 16, which was found to be cytotoxic at concentrations of 75 µM, silencing of the glucagon receptor did not affect cell viability in primary rat hepatocytes. Thus, it can be concluded that hepatotoxicity of Bay 16 was not related to the drugs inhibitory effect on the glucagon receptor in vitro and in vivo. These findings were supported by the fact that most of BAY16-induced changes in gene expression occurred independently of the pharmacological modulation of GCGR. These off-target effects include altered xenobiotic metabolism, oxidative stress, increased fatty acid synthesis, and alterations in cholesterol and bile acid metabolic processes. Although it was not possible to draw a final conclusion about the mechanism of BAY16 hepatotoxicity, changes in these molecular mechanisms appear contribute to progression of hepatic injury. With regard to drug safety assessment in preclinical studies, the utilization of siRNA technology in vitro represents a new approach to improve mechanistic understanding of the nature of drug’s toxicity, being either chemically mediated or due to primary or secondary pharmacological mode of action.
The aim of the present study was to design different dosage forms as carrier systems to deliver sorafenib to the lung of BXB-23 transgenic mice using different routes of administration. Three dosage forms were used one of them was an oil-in-water emulsion and the oral route was chosen for this experiment. The other delivery system was a liposome preparation for intratracheal instillation. In this case the oral route was considered as a control experiment. The last dosage form was PLGA microspheres. Before sorafenib administration it was important to develop a HPLC method to assess sorafenib absorption after its administration and to determine its concentrations in mouse serum. The HPLC method allowed sorafenib quantification in small volumes (30 µl) of mouse serum and tissues. The developed HPLC method was validated resulting in satisfactory selectivity, good linearity, good accuracy and precision over the concentration range examined. Sorafenib was successfully incorporated in a fat emulsion (o/w) using a traditional method resulting in a white homogenous emulsion and no particle aggregation was observed. Sorafenib exhibited antitumor activity on the lung adenoma in BXB-23 transgenic mice when administered orally (2 mg sorafenib per mouse) in the emulsion preparation. The determined effect was an approximately 29 % reduction in the tumor area of the adenoma foci and a proliferation reduction. In order to improve the pharmacological effects of sorafenib on the lung adenoma in BXB-23 mice, the targeting of sorafenib directly to the site of action (the lung) was an attractive concept. For this purpose the intratracheal route was used. Since sorafenib administration by instillation required incorporation of sorafenib in a dosage form suitable for its lipophilic nature, a liposome suspension was the second dosage form used. A lyophilization method was employed for sorafenib liposome preparation utilizing dilauroylphosphatidylcholine (DLPC) which is safe and tolerable for the lung. Incorporation of sorafenib in the liposomes did not influence the particle size and its distribution. The sorafenib liposomes showed high encapsulation efficiency, good stability at 4 °C for one month and satisfactory in vitro release properties and inhibited Raf-1 mediated activation of ERK in cell culture assay. In a pharmacokinetic experiment sorafenib loaded liposomes were instilled directly into the lung. The results revealed that a significant level of sorafenib was achieved in the lung tissues after 2 hours and then reduced after 48 h and remained nearly constant for one week. On the other hand, only traces of sorafenib were found in the mice serum up to 48 h. Subsequently, the pharmacological activity of sorafenib (1 mg per mouse) was studied when delivered in a liposomal suspension intratracheally to treat the lung adenoma of BXB-23 mice. The data of this experiment demonstrated that sorafenib intratracheal instillation resulted in a reduction of tumor area of adenoma foci (67 %) and an elevation of the percent of apoptotic cells. In contrast, prolongation of the treatment period did not further enhance sorafenib activity on the lung adenoma. This previous finding suggested a development of multidrug resistance (MDR) by the adenoma foci cells against sorafenib instillation, which was examined by immunohistochemistry staining. The percent of MDR positive cells was higher after two and three weeks sorafenib liposome instillation treatment than that after one week treatment. The last dosage form used for sorafenib was microspheres, which were prepared by emulsion-diffusion-evaporation method using biodegradable PLGA 50:50 resulting in a white lyophilized powder. The system was characterized physicochemically and revealed a good microspheres yield, high encapsulation efficiency, a homogenous particle size distribution and slow in vitro release of sorafenib. The other strategy studied in the present research project was gene delivery to target the lung bearing tumor of BXB-23 mice using a non-viral vector (polyethylenimine). Polyethylenimine (PEI) was used to investigate its efficiency in transfecting lung bearing tumor of BXB-23 mice model and its ability to transfect the adenoma foci cells. LacZ, which encodes Beta-galactosidase was used in the present study as a reporter gene and was complexed with PEI before delivered intravenously. A high LacZ expression in the alveolar region with some expression in the adenoma foci was observed. On contrary, a low LacZ expression in the alveoli and in the adenoma foci was achieved after instillation of the same polyplex intratracheally.
A liquid chromatography tandem mass spectrometry method for the analysis of ten kinase inhibitors (afatinib, axitinib, bosutinib,cabozantinib, dabrafenib, lenvatinib, nilotinib, osimertinib, ruxolitinib, and trametinib) in human serum and plasma for theapplication in daily clinical routine has been developed and validated according to the US Food and Drug Administration andEuropean Medicines Agency validation guidelines for bioanalytical methods. After protein precipitation of plasma samples withacetonitrile, chromatographic separation was performed at ambient temperature using a Waters XBridge® Phenyl 3.5μm(2.1×50 mm) column. The mobile phases consisted of water-methanol (9:1, v/v) with 10 mM ammonium bicarbonate as phase A andmethanol-water (9:1, v/v) with 10 mM ammonium bicarbonate as phase B. Gradient elution was applied at a flow rate of 400μL/min. Analytes were detected and quantified using multiple reaction monitoring in electrospray ionization positive mode. Stableisotopically labeled compounds of each kinase inhibitor were used as internal standards. The acquisition time was 7.0 min perrun. All analytes and internal standards eluted within 3.0 min. The calibration curves were linear over the range of 2–500 ng/mLfor afatinib, axitinib, bosutinib, lenvatinib, ruxolitinib, and trametinib, and 6–1500 ng/mL for cabozantinib, dabrafenib, nilotinib,and osimertinib (coefficients of correlation≥0.99). Validation assays for accuracy and precision, matrix effect, recovery,carryover, and stability were appropriate according to regulatory agencies. The rapid and sensitive assay ensures high throughputand was successfully applied to monitor concentrations of kinase inhibitors in patients.
Das Ausmaß der Proteinbindung eines Arzneistoffs wirkt sich auf viele unterschiedliche pharmakokinetische Parameter aus. So wird beispielsweise das Verteilungsvolumen, die Metabolisierung oder die Elimination des entsprechenden Stoffes durch die Höhe seiner Proteinbindung beeinflusst. Da nur der im Plasma frei vorliegende Anteil eines Arzneistoffs in der Lage ist biologische Membranen zu überwinden, können auch nur die freien Arzneistoffmoleküle eine pharmakologische Wirkung an Rezeptoren oder Enzymen auslösen. Dementsprechend ist auch die Intensität der hervorgerufenen Wirkung von der Größe des ungebundenen Anteils eines Arzneistoffs abhängig. Aufgrund dieser Zusammenhänge ist klar, dass die Proteinbindung eines Arzneistoffes letztendlich Einfluss auf die Dosisfindung hat. Zur Ermittlung der Proteinbindung stehen viele unterschiedliche Methoden, wie beispielsweise die HPLC, Kapillarelektrophorese, Ultrazentrifugation, Gleichgewichtsdialyse und Ultrafiltration zur Verfügung. In der vorliegenden Arbeit wurde die kontinuierliche Ultrafiltration zur Ermittlung der Proteinbindung von Arzneistoffen angewendet. Hier wird die Proteinbindung nicht nur anhand einer bestimmten Arzneistoff- bzw. Albuminkonzentration gemessen, sondern über einen weiteren Bereich von Wirkstoff-Protein-Verhältnissen beobachtet. Des Weiteren ist der apparative Aufwand im Vergleich zu vielen anderen Methoden als geringer einzustufen. Im Rahmen dieser Arbeit wurde, die auf der von Heinze[122] entwickelte Messanlage weiter optimiert und eine zweite Anlage mit einem Diodenarraydetektor aufgebaut. Für letztere musste eine Software-Anpassung vorgenommen werden. Folgende Projekte wurden durchgeführt: 1) Um den In-vivo-Bedingungen nahe zu kommen, wurde bei der Bestimmung der Proteinbindung der Sartane nicht nur BSA und HSA verwendet, sondern erstmals auch humanes Plasma. Die Plasmamessungen der Sartane verliefen insgesamt problemlos, allerdings ist eine erfolgreiche Messung stark von der Qualität des eingesetzten Plasmas abhängig, wie Messungen der Naphthylisochinoline gezeigt haben. Im Vergleich mit HSA und Plasma ergaben die Messungen der Sartane mit bovinem Serumalbumin geringfügig erniedrigte Proteinbindungswerte. Insgesamt sind alle Ergebnisse sehr gut mit den Literaturwerten vergleichbar. 2) Das Ausmaß der Proteinbindung von Naphthylisochinolinen war bislang unbekannt und lag im Bereich von ca. 30-70%. Erneut waren die Resultate aus den Messungen von BSA und HSA nahezu gleich. 3) Am Beispiel der Interaktion zwischen Phenprocoumon und Phenylbutazon wurden zwei unterschiedliche Ansätze getestet, um die Verdrängung aus der Proteinbindung zu simulieren. Die erste Methode entsprach hierbei einer Konkurrenz der beiden interagierenden Stoffe um die Proteinbindungsstellen. Durch den Einfluss des Phenylbutazon verringerte sich die Proteinbindung des Phenprocoumon um 1%, was allerdings als statistisch nicht signifikant betrachtet werden kann. Im zweiten Ansatz, der eine direktere Verdrängung aus der Proteinbindung simulieren sollte, fiel die Proteinbindung des Phenprocoumon gegenüber den Einzelmessungen um 2,5% ab. Unter physiologischen Konzentrationsverhältnissen sank sich die Proteinbindung des Phenprocoumon auf 93,3%. Der freie Anteil erhöhte sich dementsprechend von 1% auf 6,7%. Somit konnte der Einfluss des Phenylbutazon auf die Proteinbindung des Phenprocoumon erfolgreich nachgewiesen werden. Die unveränderte Proteinbindung des Phenylbutazon im inversen Ansatz und die ermittelten pK-Werte bestätigen diese Interaktion. Grundsätzlich ist es also möglich mit der kontinuierlichen Ultrafiltration solche Interaktionen zu simulieren. 4) Zuletzt sollte der Frage nachgegangen werden, ob es mit der kontinuierlichen Ultrafiltration auch möglich ist die Proteinbindung von wasserunlöslichen Stoffen, nämlich den Aziridinen, in Gegenwart steigender Mengen DMSO, zu bestimmen. Die erhaltenen Ergebnisse wurden mit Literaturwerten ohne DMSO-Zusatz verglichen. Abgesehen von Candesartan, das eine lineare Korrelation zwischen DMSO-Gehalt der Wirkstofflösung und Absinken der Proteinbindung zeigte, konnte kein Zusammenhang zwischen der DMSO-Konzentration und der gemessenen Proteinbindung festgestellt werden. Die Mittelwerte lagen im Bereich der Literaturwerte. Insgesamt zeigten alle Versuchsreihen, dass die kontinuierliche Ultrafiltration eine ausgezeichnete, schnelle und robuste Screeningmethode zur Bestimmung des Ausmaßes der Proteinbindung bekannter und neuer Wirkstoffe darstellt.
The work presented in this thesis was mainly targeted at exploring the capabilities of evaporation based LC detectors as well as further alternatives for the control of impurities in substances not exhibiting a suitable chromophore for UV-detection. In the course of the work carried out, several new methods for the identification, impurities control and composition testing of APIs were elaborated. An evaporation based detector that entered into the field of pharmaceutical analysis in the recent years was the Evaporative Light Scattering Detector (ELSD). However, non-reproducible spikes were reported when injecting concentrated test solutions as they are usually required for the control of impurities. The reasons, for the appearance of these spikes as well as possibilities for their avoidance were explored in a systematic study. Moreover, the dependence of the detector sensitivity on different eluent composition, eluent flow-rate and ELSD settings was investigated. In the course of the revision of the Ph.Eur. monographs for aspartic acid and alanine, a C18 reversed phase ion-pair LC method using 1 mmol/L of perfluoroheptanoic acid as an ion-pair reagent and a charged aerosol detector (CAD) was developed and fully validated for the purity control of Asp. The method was capable of separating the organic acids and major amino acids known to occur as process related impurities. With a slight modification, the method was also applicable for the purity control of Ala. Based on the developed LC-CAD method for the impurity control of alanine, a comparative study of the performance characteristics of different evaporation based LC detectors, i.e. ELSD, CAD and the recently developed Nano Quantity Analyte Detector (NQAD) was carried out. Additionally, an MS detector and qNMR were included in this study. It was found that the control of impurities in Alanine at an ICH conform level could be ensured using LC coupled to CAD, MSD and NQAD detection as well as by the use of qNMR. In terms of performance, prize and ease of use CAD and NQAD were found to be the most suitable alternatives. In terms of repeatability and sensitivity, the CAD appeared slightly superior to the NQAD. The quality of streptomycin sulfate is not sufficiently controlled by the current Ph.Eur. monograph in that an appropriate test for the control of the related substances is missing. A study was carried out to develop a C18 reversed phase ion-pair LC method using pentafluoropropionic acid as an ion-pair reagent and a CAD for the identification and control of the related substances. The developed method allowed the separation of 21 impurities from streptomycin. Moreover, coupling of the method to MS allowed the identification of the separated impurities. The method was shown to be sufficiently sensitive to control the related substances with a disregard limit of 0.1% as it is normally applied in the Ph.Eur. for products derived from fermentation. Currently, the aescin content of horse-chestnut standardized dry extract is determined using a complex and laborious photometric determination. A more selective LC-UV assay determination for beta-aescin has been proposed for the Ph.Eur. draft monograph of horse-chestnut standardized dry extract. Possibilities were explored to further improve the LC-method using detection by CAD. It was demonstrated that by the use of a modified LC-CAD method several problems related to the differences in the UV-response of the various components contained in the active aescin fraction could be eliminated. Moreover the proposed reference standard strategy was reviewed. Eventually, it was demonstrated on the example of two different clusters of pharmacologically active peptides how low energy collision induced dissociation mass spectrometry (low energy CID-MS) can successfully be used for identification testing in pharmacopoeial monographs. In this respect, the combination of a direct confirmation of the molecular mass via the m/z-ratio of the molecule ions with structural sequence information obtained by low energy CID-MS experiments was found to deliver a higher degree of certainty of the identity of a given substance than the set of tests currently described in the monographs. A significant gain in efficiency and throughput and important reduction of the amount of sample consumed during testing were identified as being additional advantages of this approach. Taken together, it could be demonstrated on various examples how recent technological advancements in the field of analytical chemistry can contribute to improve the quality control of APIs.
Basierend auf dem Auslauftrichter nach DIN ISO 4324 wurde ein neuartiges Gerät zur Bestimmung der Fließeigenschaften von Schüttgütern entwickelt. Der modifizierte Auslauftrichter zerstört mit Hilfe eines speziellen Rührwerkzeuges ausflussverhindernde Schüttgutbrücken. Durch Charakterisierung des Ausflussverhaltens eines Modellschüttgutes (Aerosil 200/Maisstärke) konnten verschiedene Prozessparameter identifiziert werden, die eine Abhängigkeit von unterschiedlichen Fließeigenschaften des Modellschüttgutes aufweisen. Mit Hilfe des modifizierten Auslauftrichters wurden im weiteren Teil dieser Arbeit binäre Mischungen aus einem Fließregulierungsmittel und Maisstärke auf ihr Fließverhalten untersucht. Hierdurch konnte eine Aussage über das fließregulierende Potential der Nanomaterialien erhalten werden. Es zeigte sich, dass die Primärpartikelgröße, die Aggregatfestigkeit und der hydrophile/hydrophobe Charakter der jeweiligen Nanomaterialien einen entscheidenden Einfluss auf das fließregulierende Potential der Nanomaterialien besitzten.
Metabolic glycoengineering enables a directed modification of cell surfaces by introducing target molecules to surface proteins displaying new features. Biochemical pathways involving glycans differ in dependence on the cell type; therefore, this technique should be tailored for the best results. We characterized metabolic glycoengineering in telomerase-immortalized human mesenchymal stromal cells (hMSC-TERT) as a model for primary hMSC, to investigate its applicability in TERT-modified cell lines. The metabolic incorporation of N-azidoacetylmannosamine (Ac\(_4\)ManNAz) and N-alkyneacetylmannosamine (Ac\(_4\)ManNAl) into the glycocalyx as a first step in the glycoengineering process revealed no adverse effects on cell viability or gene expression, and the in vitro multipotency (osteogenic and adipogenic differentiation potential) was maintained under these adapted culture conditions. In the second step, glycoengineered cells were modified with fluorescent dyes using Cu-mediated click chemistry. In these analyses, the two mannose derivatives showed superior incorporation efficiencies compared to glucose and galactose isomers. In time-dependent experiments, the incorporation of Ac\(_4\)ManNAz was detectable for up to six days while Ac\(_4\)ManNAl-derived metabolites were absent after two days. Taken together, these findings demonstrate the successful metabolic glycoengineering of immortalized hMSC resulting in transient cell surface modifications, and thus present a useful model to address different scientific questions regarding glycosylation processes in skeletal precursors.
Untersuchungen zur 2H/1H- und 13C/12C-Isotopenfraktionierung bei der Biogenese von Aromastoffen
(2008)
Für die Authentizitätsbewertung achiraler Aromastoffe ist die gaschromatographische Isotopenverhältnismessung mittels massenspektrometrischer Analyse ein etabliertes Verfahren. Diese Technik ermöglicht es, über geeignete Datenbanken authentischer Referenzproben gesicherte Aussagen hinsichtlich deren Herkunft aus natürlicher oder synthetischer Quelle zu treffen. Zunehmend ins Interesse rückt allerdings auch die Frage, ob es mittels Techniken der Stabilisotopenanalytik ebenso möglich ist, das breite Feld der legislativ als „natürlich“ deklarierten Aromastoffe analytisch weiter in deren Herkunft aus biotechnologischer oder natürlicher („ex plant“) Quelle aufzutrennen. Zwar kann dieser Fragestellung prinzipiell über die Erweiterung bestehender Stabilisotopen-Datenbanken mit authentischen Proben nachgegangen werden, sie scheitert jedoch häufig an der limitierten Verfügbarkeit authentischer biotechnologischer Referenzen oder der eingeschränkten Kenntnis über die der Produktion „natürlicher“ Aromastoffe zugrundeliegenden Verfahrenstechniken. Eine mögliche Vorgehensweise zur Umgehung dieses Sachverhalts stellt daher die in Anlehnung an beschriebene biotechnologische Verfahren im Labormaßstab durchgeführte Produktion ausgewählter und somit auch authentischer Referenz-Aromastoffe dar. Diese Methode hat zudem den Vorteil, dass gegebenenfalls zusätzliche Informationen über mögliche Isotopenfraktionierungen in solchen Systemen ermittelt werden können, welche sich nicht nur zur Authentizitätsprüfung als nützlich erweisen können, sondern auch zur stetig wachsenden Grunderkenntnis über Isotopenfraktionierungen in biologischen Systemen beitragen. Ziel der vorliegenden Arbeit war es daher, der geschilderten Fragestellung bezüglich ausgewählter Aromastoffe aus den Gruppen der C6-Aldehyde und -Alkohole („Grünnoten“) sowie der Gärungsalkohole nachzugehen. Zu diesem Zweck erfolgten zum einen im Labormaßstab die biogenetische Bildung von C6-Aldehyden und -Alkoholen ausgehend von den ungesättigten Fettsäuren Linol- und Linolensäure, ferner wurden parallel Edukte, Intermediate und Produkte isoliert und hinsichtlich ihrer Stabilisotopengehalte durch Bestimmung der Delta-2H(V-SMOW)- und Delta-13C(V-PDB)-Werte untersucht. Zum anderen sind auf fermentativem Wege ausgehend von unterschiedlichen Kohlenhydratquellen die Gärungsalkohole 2-Phenylethanol und 2-Methyl-1-propanol dargestellt worden. Des weiteren galt es, die bei den Gärungsalkoholen resultierende Datenlage dahingehend zu prüfen, ob sich diese über eine Korrelation der Delta-2H(V-SMOW)- und Delta-13C(V-PDB)-Werte dazu eignet, eine Authentizitätsbewertung dieser Aromastoffe hinsichtlich natürlicher oder synthetischer Herkunft zu ermöglichen.
Bei N-Acyl-Ethanolaminphosphaten handelt es sich um eine bislang wenig untersuchte Klasse polarer Substanzen, deren Erforschung aufgrund ihrer strukturellen Analogie zu apolaren, physiologisch wirksamen N-Acyl-Ethanolaminen von Interesse ist. Zu bear-beiten waren analytische Fragestellungen, die auch synthetische Aufgaben beinhalteten, wie Methodenentwicklung und Versuche zur Erfassung von N-Acyl-Ethanolamin-phosphaten in ausgewählten Lebensmitteln sowie strukturelle Studien zur „Bioaktivität“ der Verbindungen. Erstes Ziel der vorliegenden Arbeit war es demzufolge, eine geeig-nete Methode für deren qualitative und quantitative Analytik zu entwickeln. Gleichzei-tig wurden ausgewählte N-Acyl-Ethanolaminphosphate synthetisiert. Aufgrund des literaturbekannten Vorkommens von N-Acyl-Ethanolaminen in Wein wurden für die Lebensmitteluntersuchungen fermentierte Produkte, d.h. drei verschie-dene Sake (Japanischer Reiswein) und ein fermentierter Rotkohl verwendet. Parallel zu diesen Untersuchungen erfolgten auch Studien zur Stabilität der N-Acyl-Ethanolamin-phosphate. Versuchsreihen zur Überprüfung potentieller „Bioaktivität“ umfassten Studien mit al-kalischer Phosphatase, PhospholipaseA2, Lipoxygenase, Xanthinoxidase, β-N-Acetyl-hexosaminidase und dem Cannabinoidrezeptor-1.