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In der Dissertation wird das Antwortverhalten von Kindern bei der Koordination von Theorie und Evidenz untersucht. Diese Fähigkeit ist besonders beim naturwissenschaftlichen Lernen relevant. Dazu werden zwei Studien vorgestellt. In der ersten Studie, der Querschnittsstudie wird das Antwortverhalten von Kindern im Alter von fünf bis neun Jahren am Beispiel der Leitfrage: „Warum springt ein Ball?“ untersucht. Verschiedene Vermutungen wie zum Beispiel „Dinge, die rund sind, springen“, werden geprüft. In der zweiten Studie, dem Kernstück der Arbeit werden zwei Fördermaßnahmen zum Training der Koordination von Theorie und Evidenz bei fünf- bis sechsjährigen Kindern vorgestellt.
Ubiquitin and the ubiquitin-like protein ATG8 are covalently attached to their respective targets via a coordinated cascade involving E1 activating, E2 conjugating and E3 ligating enzymes. Whereas ubiquitin is conferred to proteins as mono- and/or polymer(s) to alter their stability, localization and/or activity, the ubiquitin-like modifier (UBL) ATG8 is conjugated to the phospholipid phosphatidylethanolamine (PE). The best understood function of ATG8 is during autophagy where ATG8-PE conjugates are incorporated into both layers of incipient autophagosomes and serve as multipurpose docking sites for autophagosomal cargo receptors as well as regulatory factors (termed adaptors) that drive formation and maturation of autophagosomes. Mammalian cells harbor six ATG8 family members that can be subclassified into the LC3- and GABARAP-family and that can all be lipidated. However, it is currently unclear to what extent these proteins are functionally redundant or fulfil unique roles.
Cullin-RING ligase complexes (CRLs) are modular E3 ubiquitin ligases that comprise a RING-finger protein that associates with the ubiquitin-charged E2 enzyme, a substrate recruiting module as well as a cullin scaffold as a linker between RING protein and substrate adaptor. Whereas SCF (SKP1-CUL1-F-box protein) complexes, the most studied CRLs, harbor cullin-1 (CUL1) as scaffold and F-box proteins as substrate binding modules, CUL3-containing CRL complexes employ cullin-3 (CUL3), RING-box protein 1 (RBX1) and BTB proteins as substrate adaptors. Here, the BTB domain serves as binding interface for CUL3 and is usually complemented by an additional protein-protein interaction domain such as MATH or Kelch that mediates binding to the substrate of the E3 ligase complex.
Besides ubiquitylation, guanine nucleotide binding is another common way to regulate protein activity and signaling in cells. Here, small Rho GTPases cycle between active and inactive states by binding of the guanine nucleotides GTP or GDP with the help of regulatory proteins. Whereas GTPase-activating proteins (GAP) render RAC1 inactive by facilitating GTP hydrolysis, guanine exchange factors (GEF) such as T-lymphoma invasion and metastasis-inducing protein 1 (TIAM1) activate RAC1 by stimulating the exchange of GDP to GTP. Local control of RAC1 activity is essential to allow a specific cellular response to stimuli such as growth factors or migratory impulses.
This study reports an unexpected link between the GABARAP subfamily of mammalian ATG8 proteins, the ubiquitin proteasome system and RAC1 through the ubiquitylation of the RAC1 GEF TIAM1. The Kelch repeat and BTB domain-containing proteins 6 (KBTBD6) and 7 (KBTBD7) were established as heterodimeric substrate adaptors for CUL3. Interestingly, a thorough proteomic analysis revealed a number of putative substrates but, out of 11 substrate candidates tested, only the RAC1 GEF TIAM1 appeared to be influenced by depletion of CUL3KBTBD6/KBTBD7. Binding studies showed that KBTBD7 binds TIAM1 via the Kelch repeats and that this binding was markedly enhanced when CUL3 activation was abolished upon treatment with the neddylation inhibitor MLN4924. Also, total TIAM1 abundance was increased upon CUL3KBTBD6/KBTBD7 depletion and accumulation of TIAM1 upon proteasome inhibition suggested that TIAM1 is degraded via the proteasome. In vivo ubiquitylation assays and denaturing immunoprecipitations as well as mass spectrometrical analysis confirmed that CUL3KBTBD6/KBTBD7 ubiquitylates TIAM1 at two distinct lysines (K1404 and K1420) close to its C-terminus.
Previously, KBTBD6 and KBTBD7 were found as interactors of several members of the human ATG8 family of proteins in a proteomic study analyzing the human autophagy network. This association was confirmed in the present work. Furthermore, peptide array technology and mutational analysis revealed that KBTBD6 and KBTBD7 employ a classical ATG8-family interacting motif (AIM; also referred to as LC3-interacting region or LIR) as binding interface. The AIMs of KBTBD6 (W-V-R-V) and KBTBD7 (W-V-Q-V) fulfil the consensus AIM sequence motif (F/W/Y1-X2-X3-I/L/V4) and are preceded by several acidic residues and serines. A series of structural and cell biological experiments revealed a binding preference for the GABARAP subfamily of human ATG8 proteins and most importantly, a requirement of the GABARAP-KBTBD6 and -KBTBD7 interaction for TIAM1 ubiquitylation. The finding that TIAM1 binding to KBTBD6 and KBTBD7 AIM mutants was diminished raised the possibility that GABARAP binding mediates the recruitment of CUL3KBTBD6/KBTBD7 to membranes where TIAM1 is localized. Interestingly, colocalization of KBTBD6, GABARAPL1 and TIAM1 in punctuate structures could be observed. Since only a very small fraction of GABARAPL1 colocalized with LC3B, and colocalization between KBTBD6 and LC3B was not observed, these vesicular structures are most likely distinct from autophagosomes. Furthermore, TIAM1 ubiquitylation was reduced when GABARAP, but not LC3B, was depleted or when lipidation of GABARAP was prevented.
Stabilization of TIAM1 upon KBTBD6 and/or KBTBD7 depletion led to elevated TIAM1-dependent RAC1 activity, altered actin morphology with increased cortical actin and loss of vinculin foci. Re-introduction of wild-type KBTBD6 or KBTBD7 but not AIM mutants reverted all these phenotypes. Moreover, depletion of KBTBD6 or KBTBD7 in human breast cancer cells massively increased their invasiveness, whereas TIAM1 knockdown had the opposite outcome. All physiological effects of KBTBD6 and KBTBD7 depletion were inhibited by additional depletion of TIAM1 or RAC1 confirming that the phenotypes observed are indeed mediated by the CUL3KBTBD6/KBTBD7-TIAM1-RAC1 signaling pathway. Intriguingly, KBTBD6 and KBTBD7 were not subject to autophagosomal degradation, thereby establishing a new function for GABARAP proteins beyond autophagosomal degradation in providing a signaling platform for recruitment of the E3 ligase CUL3KBTBD6/KBTBD7 in close proximity to its substrate TIAM1, enabling localized ubiquitylation.
Local restricted control of RAC1 activity by ubiquitylation has been described for TIAM1-RAC1 signaling previously. Examples are HECT, UBA and WWE domain-containing protein 1 (HUWE1)-mediated TIAM1 ubiquitylation that occurs predominantly at cell-cell-junctions in response to hepatocyte growth factor stimulation in MDCKII cells or inhibition of RAC1 activity by the RAC1 GAP protein BCR (breakpoint cluster region) at the leading edge of astrocytes through binding to the TIAM1-Par (polarity) complex. SCFBTRC mediates ubiquitylation of TIAM1 in response to mitogens or DNA damage, though it has not been explored whether this regulation is spatially restricted. Thus, this study adds a novel layer of complexity to the spatial regulation of RAC1 signaling by implicating membrane-bound human ATG8 proteins in this process.
Also, this study is the first report specifically implicating the GABARAP proteins in cellular signaling events. It will be interesting to explore whether the concept of localized signaling mediated by GABARAPs applies to other substrates of CUL3KBTBD6/KBTBD7 and membranerelated signaling processes in which GABARAP proteins are involved. Controlling RAC1 activity at GABARAP-decorated membranes might also be important for trafficking events or autophagy since it was described that RAC1 has an inhibitory function on autophagy. Therefore, spatial restricted ubiquitylation of TIAM1 resulting in specific deactivation of RAC1 could promote the autophagic process when locally needed. Although the catalytic mTOR inhibitor Torin1 and the lysosomal H+ ATPase inhibitor BafilomycinA1 promoted TIAM1 ubiquitylation by increasing the pool of membrane-conjugated GABARAP, but other signals that stimulate GABARAP-KBTBD6/KBTBD7 association and subsequent TIAM1 ubiquitylation are to be identified. Besides, determining the KBTBD6/KBTBD7 binding site in TIAM1 or uncovering a deubiquitylating enzyme (DUB) that locally counteracts the ubiquitylation of TIAM1 will enable a better comprehension of the complete localized signaling cascade.
Ziel der vorliegenden Arbeit ist der Aufbau von koaxialen Plasmabeschleunigern und deren Verwendung für die Untersuchung der Eigenschaften von kollidierenden Plasmen. Zukünftig sollen diese kollidierenden Plasmen als intensive Strahlungsquelle im Bereich der ultravioletten (UV-) und vakuumultravioletten (VUV-)Strahlung sowie in der Grundlagenforschung als Target zur Ionenstrahl-Plasma-Wechselwirkung Verwendung finden. Für diese Anwendungen steht dabei eine Betrachtung der physikalischen Grundlagen im Vordergrund. So sind neben der Kenntnis der Plasmadynamik auch Aussagen bezüglich der Elektronendichte, der Elektronentemperatur und der Strahlungsintensität von Bedeutung. Im Einzelnen konnte gezeigt werden, dass es möglich ist, durch eine Plasmakollision die Elektronendichte des Plasmas im Vergleich zu der eines einzelnen Plasmas deutlich zu erhöhen - im Maximalfall um den Faktor vier. Gleichzeitig stieg durch die Plasmakollision die Lichtintensität im Wellenlängenbereich der UV- und VUV-Strahlung um den Faktor drei an...
The metabolome of any live cell consists of several hundred, if not thousands of different molecules at any given moment, be it a relatively small bacterial cell or a whole multicellular organism. Although there are continuous attempts to differentiate between primary and secondary metabolites, the borders often blur in the eye of almost perfect interconvertability of all such matter. With chemistry and physics dominating this domain of biology it is an interdisciplinary endeavor to tackle the questions surrounding the workings of the metabolic pathways involved, searching for answers that ultimately help us to better understand life and find solutions to problems that affect us humans. One area of biochemistry that serves as a formidable example of the intertwined primary and secondary metabolic pathways are fatty acids, essential components of bacterial membranes, sources of energy and carbon but also important building blocks of several natural products. The second area to be mentioned is the metabolism of amino acids, the basic components of proteins and enzymes, which also serve as precursors to a diverse set of metabolites with many biological purposes.
This work focuses on these two areas of biochemistry, as several intermediates of their metabolism serve as building blocks for complex secondary metabolites whence many interesting and bioactive natural products are derived. The powerful and relatively novel tool of click-chemistry is employed to track azide-labeled precursors of primary and secondary metabolism in various bacterial strains to observe biochemistry at work and adds to the knowledge gained through other methods. The methods presented in this work serve the observation of fatty acid biosynthesis, degradation, modification and transport through direct ligation of azido fatty acids with cyclooctynes on one hand, leading to a revision of fatty acid transport in general. On the other hand a cleavable azide-reactive resin is devised to generally track the fate of azidated compounds through the myriads of metabolic pathways offered by entomopathogenic bacteria possessing a rich secondary metabolism. The resulting findings led to the identification of several antimicrobial peptides, amides and other compounds of which many had remained so far undetected in the strains that underwent investigation, underlining the worth of this method for future metabolomic research and beyond.
Diabetes-assoziierte Fußulzerationen (diabetic foot ulcerations, DFU) repräsentieren eine schwerwiegende klinische Komplikation der Wundheilung. Bislang sind pharmakologische Behandlungsansätze diabetischer Wundheilungsstörung unzureichend und limitiert. Der Erkenntnismangel der zugrundeliegenden zellulären und molekularen Mechanismen gestörter Wundheilung ergänzt die unzufrieden stellende klinische Situation. In den vergangenen Jahren sind vermehrt zelluläre Wundverbände in den klinischen Fokus gerückt. Sie ermöglichen eine individuelle, dynamische Wundbehandlung und haben in den ersten klinischen Studien vielversprechende Ergebnisse gezeigt.
In der vorliegenden Arbeit ist ein zellulärer Wundverband der Firma Boehringer Ingelheim genutzt worden, um die Wundheilung in diabetischen db/db-Tieren zu analysieren. Der Wundverband (BAWD; biological active wound dressing) besteht aus humanen Keratinozyten, die auf einer Hyaluronsäure-haltigen Matrix kultiviert werden.
Nach topischer Anwendung der lebenden Wundauflage war eine Interaktion humaner Keratinozyten mit murinem Wundgewebe zu beobachten. Die gestörte diabetische Wundheilung in der db/db-Maus war nach BAWD-Behandlung in einem um 30 % verbesserten Wundverschluss und dem Aufbau qualitativ neuen Gewebes deutlich verbessert.
Aufgrund der unverändert hohen Expression von Zyto- und Chemokinen in der frühen und späten Heilungsphase wurde eine Dämpfung der Immunantwort ausgeschlossen. Vielmehr war eine BAWD-vermittelte differenzielle Immunzellverteilung festzuhalten. Zudem zeigten Whole-Genom-Sequenzanalysen eine BAWD-induzierte Expression von Genen auf, die regenerative M2-ähnliche M[Phi] charakterisieren.
Außerdem scheint die BAWD-Anwendung nach Auswertung immunhistochemischer Daten und über die signifikant erhöhte CD29-, CD44- und Sca1-mRNA-Expression die Rekrutierung heilungsfördernder MSCs zu begünstigen, denen ein potentiell anti-entzündlicher Charakter zugesprochen wird.
In dieser Arbeit konnte zudem ein neuer Regelkreis kutaner Wundheilung beschrieben werden, der auf Basis der Expression muskelspezifischer Faktoren und der transienten Ausbildung kontraktiler Elemente in der Wunde normal heilender Tiere beruht, die bislang nicht beschrieben wurden. Interessanterweise induzierte eine BAWD-Anwendung die Expression muskelspezifischer Gene und Proteine in der Wundheilung diabetischer Tiere. Möglicherweise stellt die Ausbildung kontraktiler Elemente neben der Differenzierung von Fibroblasten zu Myofibroblasten eine ergänzende Komponente für einen beschleunigten Wundverschluss dar. Diese Befunde eröffnen neue Möglichkeiten zu Verständnis und Therapie diabetischer gestörter Wundheilung im humanen Organismus.
Die Kephalometrie stellt einen bedeutenden Diagnostikbestandteil der kieferorthopädischen Diagnostik und Behandlungsplanung dar, mit deren Hilfe es möglich ist, skelettale Ursachen dentaler Befunde zu evaluieren. Üblicherweise erfolgt die kephalometrische Analyse anhand eines Fernröntgenseitenbildes, das jedoch neben der unausweichlichen Strahlenbelastung des Patienten, der sich zumeist im jugendlichen Alter und im Wachstum befindet und damit besonders vulnerabel bezüglich ionisierender Strahlung ist, auch geometrische Verzerrungen und Verzeichnungen aufweist, die eine kephalometrische Analyse erschweren. Zudem erfolgt beim FRS eine dreidimensionale Analyse, die auf einer zweidimensionalen Ansicht basiert und daher nicht die Exaktheit einer 1:1 Analyse besitzen kann. Die Kephalometrie mittels Magnetinduktion stellt eine strahlenfreie Alternative zur Verfügung. Im Rahmen der vorliegenden Studie ist untersucht worden, inwieweit Untersucher mit dem auf einer elektromagnetischen Induktion basierenden noXrayCeph®- Gerätes in der Lage sind, genaue Messdaten zu generieren und zu reproduzieren. Beim noXrayCeph®-Gerät handelt es sich um eine Weiterentwicklung des 3-Space®-Isotrak®- Gerätes der Firma POLHEMUS. Im Rahmen der hier durchgeführten Studie konnte die Messgenauigkeit der kephalometrischen Messung auf Basis der Magnetinduktion sowie die Reproduzierbarkeit durch verschiedene Untersucher statistisch belegt werden. Weiterhin sollten mit der Durchführung einer Anwenderschulung die Anwenderfreundlichkeit des Gerätes und das einfache Erlernen der Handhabung eruiert werden. Hierfür wurden insgesamt drei differente Versuchsreihen aufgebaut. Die Messgenauigkeit des noXrayCeph®-Gerätes wurde anhand eines normierten Abstands von exakt 100 mm nachgewiesen. Außerdem konnten fünf unterschiedliche Untersucher jeweils 15mal eine kephalometrische Analyse mit dem noXrayCeph®-Gerät reproduzierbar durchführen. Dabei waren die Messergebnisse sowohl Untersucher sowie zeitunabhängig. Diese kephalometrischen Untersuchungen erfolgten hierbei an einem Kunststoffschädel, auf den 55 Messpunkte als kephalometrische Variablen übertragen worden waren. In einer nachfolgenden Anwenderschulung konnten sechs männliche und vier weibliche Probanden nachweisen, dass auch ohne eine Anwenderschulung eine hohe Reproduzierbarkeit der ermittelten Werte erreicht werden konnte. Ebenfalls wurde der Einfluss des Geschlechts, des Winkels des angesetzten 103 Messstiftes, der Handhabung dieses Messstiftes sowie des physiologischen Tremors auf die Messgenauigkeit und die Reproduzierbarkeit der Daten geprüft. Es ließ sich wiederholt zeigen, dass mit dem noXrayCeph®-System genaue und reproduzierbare Werte einer kephalometrischen Analyse gewonnen werden, die bei den unterschiedlichen Untersuchern in einem Rahmen tolerierbarer Schwankungen vergleichbar sind. Auch intraindividuell weisen die ermittelten Daten eine hohe Reproduzierbarkeit auf. In dieser Studie sind Einflüsse des Geschlechts, der Handhabung des Messstiftes sowie des Winkels dieses Stiftes ebenso wenig nachweisbar wie ein positiver Einfluss einer Vorab-Schulung der Probanden. Der bei den Probanden vorhandene, unterschiedlich ausgeprägte physiologische Tremor und die unterschiedliche Haltung der Messspitze hatten keinerlei Auswirkung auf die Reproduzierbarkeit der Messergebnisse. Zusammenfassend lässt sich aus der durchgeführten Studie somit ableiten, dass das noXrayCeph®-Verfahren geeignet ist für eine exakte kephalometrische Analyse. Die Patienten sind keiner Strahlenexposition wie bei einer Röntgenaufnahme ausgesetzt. Die Anwenderschulung zeigte außerdem, dass das Verfahren und der Umgang mit dem noXrayCeph®-Gerät bei der Messung einfach erlernbar und gut durchführbar ist. Die aus dem Röntgenverfahren resultierenden Probleme wie Verzerrungen und Überlagerungsfehler sowie die Strahlenexposition gerade bei jungen Patienten können mit diesem Verfahren umgangen und eliminiert werden. Somit stellt die Kephalometrie mit dem noXrayCeph®-Gerät eine fundierte Alternative in der Kieferorthopädie dar.
International society consists of states and the rules and institutions they share. Although international society has become a mundane feature of the world and the principal research focus of International Relations, it has become meaningless. More specifically, the technical rules that determine what states are and how they relate to other features of the world are units of semantic meaning, but their rampant, unprincipled proliferation has corroded their capacity to contain existential meaning. This deterioration is to be deplored because it alienates subjects from each other, it is totalising and excludes alternatives, and it is theoretically irreversible. To connect the two kinds of meaning, the first step is to reconceptualise international society as consisting strictly of constitutive rules whose meaning depends on the context they jointly compose, which implies that these rules can in turn be represented as signs in a semiotic structure. In order to evaluate the capacity of the signs to contain existential meaning, the next step is to adapt Baudrillard’s hierarchical typology of semiotic systems, ranging from the most meaningful systems based on symbolic exchange value to the vapid terminus of hyperreality based on sign value, in which semantic meaning is without value and existential meaning is impossible. The narrative traces the history of the signs of international law from the premodern period, when Christendom was understood as an approximation of the divine kingdom and a vehicle for salvation, to the present postmodern period, in which hundreds of articles of international maritime law make the decision to go to war over isolated rocks intelligible – even rational – and international trade law catalogues potato products to six digits. Three cases in particular exemplify this devolution in international law: the laws determining the territorial sea, the most-favoured national principle of international trade law, and nationality as a normative basis for statehood.
The small leucine-rich proteoglycan biglycan (Bgn) is a part of the extracellular matrix providing structure and enhancing fibril stability. In its soluble form, biglycan is able to bind and signal via the innate immune receptors Toll-like receptor (TLR) 2 and 4, thereby activating MAP-kinases and the NF-κB pathway. In macrophages soluble biglycan induces the secretion of several cytokines and chemokines, including TNF-α, CCL2, CXCL5 and CXCL13. A unique feature of biglycan is its ability to stimulate the secretion of mature IL-1β. By orchestrating TLR2 and 4 with the purinergic P2X4 and P2X7 receptor signalling biglycan triggers the activation of the NLRP3/ASC inflammasome, which in turn activates caspase-1 to cleave pro-IL-1β to mature IL-1β. Furthermore, in several inflammatory diseases an upregulated biglycan expression is found. Enhanced levels of biglycan could be measured in plasma and inflamed tissue. In mouse models of sepsis, lupus nephritis and renal ischemic reperfusion injury, biglycan-deficiency improved the disease outcome. Overexpression of soluble biglycan on the other hand increased immune cell infiltration into the kidney by inducing cytokine and chemokine expression in a TLR2/4-dependent manner. These studies emphasise its importance in inflammatory processes, especially in the kidney. Furthermore, the pro-inflammatory effects on macrophages and diseases established biglycan as a danger signalling molecule, yet its role as a soluble molecule in plasma was not further investigated.
Although an increase of soluble biglycan in the circulation could be seen in several inflammatory diseases, the source is not fully unravelled. Previously it could be shown that macrophages and dendritic cells secrete soluble biglycan after stimulation with IL-6 and TGF-β1. However, since these cell are resident in organs and do not circulate in the blood stream their contribution to soluble biglycan levels in plasma is likely minor. Therefore, monocytes as precursor of both macrophages and dendritic cells were investigated as a possible source of circulating biglycan. Analysis of blood from septic patients revealed elevated soluble biglycan levels as well as an increased number of monocytes. Isolated monocytes from healthy volunteers incubated with the inflammatory cytokines IL-1β, IL-6 and TGF-β1 displayed increased biglycan mRNA expression and secretion of soluble biglycan into the supernatant, revealing monocytes as a producer of soluble biglycan in blood. Therefore this work was directed to further investigate the influence of soluble biglycan on circulating monocytes, with regard to sepsis.
Monocytes can be classified into three subtypes, while the classical monocytes express CD14 (CD14++CD16low), intermediate monocytes express both CD14 and CD16 (CD14++CD16+) and non-classical monocytes express mainly CD16 (CD14lowCD16++). The intermediate and non-classical monocytes make up about 10 % of all monocytes and are referred to as CD16-positive subtypes. The CD16-positive monocytes express higher levels of TNF-α and IL-1β upon stimulation and display different migration behaviour. In most inflammatory diseases an expansion of CD16-positive monocytes is observed, especially an increased number of intermediate monocytes frequently correlate with disease severity and mortality. Since septic patients had increased circulating biglycan levels and augmented CD16-positive monocytes, a possible correlation between these two parameters was investigated. Using FACS analysis of biglycan-stimulated monocytes from healthy donors revealed a significant shift from classical to intermediate and non-classical monocytes. This shift was mediated by increased expression of CD14 and CD16 on mRNA and protein levels upon biglycan treatment. Furthermore, biglycan induced the mRNA expression of the adhesion molecules ICAM-1, VCAM-1 and ELAM-1 in CD14-positive monocytes. Four hours after biglycan stimulation an increased ICAM-1 protein expression on the cell surface of classical and intermediate monocytes was observed. Additionally, biglycan-treated CD14-positive monocytes rolled and attached to pre-stimulated endothelial cells to a greater extent compared to untreated monocytes. This demonstrates that biglycan not only triggers the expression of CD14 and CD16 but also induces a functional shift of monocytes. ...
The presented work inside this thesis aims to raise the degree of automation in analog circuit design. Therefore, a framework was developed to provide the necessary mechanisms in order to carry out a fully automated analog circuit synthesis, i.e., the construction of an analog circuit fulfilling all previously defined (electrical) specifications. Nowadays, analog circuit design in general is a very time consuming process compared to a digital design flow. Due to its discrete nature, the digital design process is highly automated and thus very efficient compared to analog circuit design. In modern Very-Large-Scale integration (VLSI) circuits the analog parts are mostly just a small portion of the overall chip area. Although this small portion is known to consume a major part of the needed workforce. Paired with product cycles which constantly get shorter, the time needed to develop the analog parts of an integrated circuit (IC) becomes a determinant factor. Apart from this, the ongoing progress in semiconductor processing technologies promises more speed with less power consumption on smaller areas, forcing the IC developers to keep track with the technology nodes in order to maintain competitiveness. Analog circuitry exhibits the inherent property of being hard to reuse, as porting from one technology node to another imposes critical changes for operating conditions (e.g., supply voltage) - mostly leading to a full redesign for most of the analog modules. This productivity gap between digital and analog design resembles the primary motivation for this thesis. Due to the availability of commercial sizing tools, this work deliberately focuses on the construction of circuit topologies in distinction to parameter synthesis, which can be obtained with a dedicated sizing tool. The focus on circuit construction allows the development of a framework which allows a full design space exploration. This thesis describes the needed concepts and methods to realize a deterministic, explorative analog synthesis framework. Despite this, a reference implementation is presented, which demonstrates the applicability in current analog design flows.