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Literatur für erwachsene Menschen mit geistiger Behinderung? Gibt es die? Braucht es die überhaupt? Das ist das Thema dieser Arbeit. Ausgegangen wird dabei von einer Annäherung an den Literaturbegriff und der Darstellung von kultureller sowie individueller Bedeutung von Literatur in unserer Gesellschaft. Dabei werden sowohl historische Aspekte des literarischen Lesens aufgegriffen, wie auch aktuelle Erkenntnisse zu unterschiedlichen Funktionen des Lesens sowie des Leseverhaltens in Deutschland dargestellt. Im ersten Teil der Arbeit wird die Bedeutung, die das Lesen von Literatur hat, aus unterschiedlichen Perspektiven beleuchtet. Es umfasst Ebenen, die das Individuum persönlich betreffen, die soziale Gemeinschaft sowie auch die gesamte Kultur der Gesellschaft. Menschen, die vom Lesen ausgeschlossen sind oder an der Welt der Literatur, sei es zur Unterhaltung oder zur Informationsgewinnung nicht teilhaben, entgehen viele wichtige Vorteile, die die Teilhabe an der Gesellschaft und Kultur (zumindest in Deutschland) ermöglichen oder zumindest wesentlich mit bestimmen. Im zweiten Teil der Arbeit liegt der Schwerpunkt auf Erwachsenen mit einer geistigen Behinderung sowie deren erschwerten Möglichkeiten im Zusammenhang mit Lesen und Literatur. Es werden der Bereich der Freizeit sowie die Erwachsenenbildung als mögliche Bereiche, in denen Lesen und Literatur eine Rolle spielen können, dargestellt. Des Weiteren wird auf den Aspekt der Teilhabe eingegangen, welcher auch eine Teilhabe an kulturellen Gütern wie Literatur beinhaltet. Dass es bisher im Bereich der Literatur eher wenig Möglichkeiten für Menschen mit geistiger Behinderung gibt, ist schade - jeder Bereich der Kultur, der so wenig zugänglich erscheint und in dem Menschen ausgeschlossen werden, verhindert weitere Teilhabe an der Gesellschaft, bzw. erschwert sie. Unter diesem Gesichtspunkt stellt der dritte Teil der Arbeit den Versuch dar, aufzuzeigen, in welcher Weise Zugangsmöglichkeiten für Menschen mit geistiger Behinderung geschaffen werden können und welche Ansätze und Ideen in dieser Richtung bereits bestehen.
'Märchen' in der Werbung
(2014)
Eine korpusbasierte sprachwissenschaftliche Analyse über die Verwendung des Wortes ‚Märchen‘ sowie verschiedener Märchenmotive, -charaktere und –requisiten in der deutschsprachigen Werbung auf Basis der Märchen der Brüder Grimm. Ein besonderer Fokus liegt dabei auf den zahlreichen Formen von Intertextualität.
Diese Dissertationsarbeit konzentriert sich in ihrer Untersuchung auf englischsprachige Romane, die von zeitgenössischen Autorinnen arabischer Herkunft verfasst worden sind, und stellt sie in den Kontext postkolonialer und feministischer Literatur. Ahdaf Soueifs Roman In the Eye of the Sun (1992), Fadia Faqirs Roman Pillars of Salt (1997) und Leila Aboulelas zwei Romane The Translator (1999) und Minaret (2005) sind Gegenstand der Untersuchung. Zum Vergleich werden auch zwei deutschsprachige Romane von Autoren arabischer Herkunft miteinbezogen: Jusuf Naoums Nura. Eine Libanesin in Deutschland (1996) und Rafik Schamis Die dunkle Seite der Liebe (2004). Obwohl der Grad kolonialer Herrschaft Großbritanniens im arabischen Nahen Osten nicht so stark ausgeprägt war wie in den ehemaligen Kolonien, die nun Mitglieder des Commonwealth sind, und deswegen die untersuchten Romane nicht als Widerstandsliteratur wie viele andere Beispiele postkolonialer Literatur charakterisiert werden können, sind die Suche nach und Konstruktion von kulturellen Identitäten wichtiger Bestandteil der untersuchten Romane. Diese Literatur kann als Beispiel eines neuen Forschungsgebietes innerhalb des weiten Spektrums postkolonialer Literatur angeführt werden, die sich mit den Erfahrungen von Angehörigen ehemaliger britischer Kolonien befasst, die niemals Teil des Commonwealth waren. Als analytisches Hilfsmittel wird in der Arbeit der Begriff intermediacy verwendet, wie er von der amerikanischen Feministin und Ethnologin Sherry Ortner in ihrem grundlegenden Artikel zur Sexualisierung der Natur/Kultur Dichotomie definiert wird. Intermediacy wird als Zustand des Dazwischenseins verstanden, in dem klare geschlechtliche, kulturelle, ethnische und nationale Identitätsabgrenzungen dekonstruiert werden. Dieser Begriff ist besonders nützlich, die Konstruktion von literarischen Subjekten in den untersuchten Romanen zu verstehen, deren Protagonisten zwischen verschiedenen Kulturen, geographischen Räumen und Konstruktionen von geschlechtlichen und kulturellen Identitäten oszillieren. Gesellschaften des arabischen Nahen Ostens werden dargestellt, in denen traditionelle Geschlechterrollenverständnisse durch den Einfluss von Kolonialismus, Modernisierung und Globalisierung unterwandert worden sind. Die Protagonisten erscheinen verwirrt über ihre gesellschaftlichen Rollen, die zum großen Teil von traditionellen Werten bestimmt werden aber zugleich auch aufgrund verschiedener interner und externer Faktoren ausgehöhlt worden sind. Die Untersuchung wendet den Begriff intermediacy nicht nur im Bezug auf gender an, wie es Ortner tut, sondern auch auf die Fluidität kultureller Identitäten in einer globalisierten und postkolonialen Welt. Die untersuchten Romane porträtieren Individuen, die nach verlässlichen Markierungen ihrer kulturellen Identitäten suchen, wie z.B. in Form einer transnationalen und transkulturellen islamischen Identitätsstiftung, und zugleich das Scheitern dieser Sinnstiftungen erfahren müssen. Somit stellt diese Arbeit die behandelten Romane nicht nur in den Themenkomplex der Identitätskonstruktionen postkolonialer Literatur, sondern setzt sie auch mit der allgemeinen Dekonstruktion des Subjekts in postmodernen Romanen in Verbindung.
Chapter 1
Thermally activated delayed fluorescence (TADF) materials provide a strategy to improve external quantum efficiencies of organic light emitting diodes (OLEDs). Because of spin-statistics, 25% singlet and 75% triplet excitons are generated in an electronic device. Conventional organic emitters cannot harvest the triplet excitons, due to low spin orbit coupling, and exhibit low external quantum efficiencies. TADF materials have to be designed in such a way, that the energy gap between the lowest singlet and triplet states (ΔES-T) is sufficiently small to allow reverse intersystem crossing (rISC) in organic systems. An established structure property relationship for the generation of TADF materials is the spatial separation of HOMO and LUMO via an orthogonal arrangement of donor and acceptor in donor-π-acceptor (D-π-A) compounds. This is achieved by increasing the steric bulk of the π-bridge. However, this is not always the most efficient method and electronic parameters have to be considered. In a combined experimental and theoretical study, a computational protocol to predict the excited states in D-π-A compounds containing the B(FXyl)2 (FXyl = 2,6-bis(trifluoromethyl)phenyl) acceptor group for the design of new TADF emitters is presented. To this end, the effect of different donor and π-bridge moieties on the energy gaps between local and charge-transfer singlet and triplet states was examined. To prove the computationally aided design concept, the D-π-B(FXyl)2 compounds Cbz-π (1), Cbz-Meπ (2), Phox-Meπ (3), Phox-MeOπ (4), and MeO₃Ph-FMeπ (5) were synthesized and fully characterized. The photophysical properties of these compounds in various solvents, polymeric film and in a frozen matrix were investigated in detail and show excellent agreement with the computationally obtained data (Figure 5.1). A simple structure-property relationship based on the molecular fragment orbitals of the donor and the π-bridge which minimize the relevant singlet-triplet gaps to achieve efficient TADF emitters is presented.
Chapter 2
Three-coordinate boron is widely used as an acceptor in conjugated materials. In recent years the employment of trifluoromethylated aryls was shown to improve the acceptor properties of such boranes. Astonishingly, the use of ortho-trifluoromethylated aryls in boron containing systems also improves the stability of those systems in regard to their inherent reactivity towards nucleophiles. Borafluorenes are stronger acceptors than their non-annulated triarylborane derivatives. In previous studies, the effect of trifluoromethylated aryls as the exo-aryl moieties in borafluorenes, as well as the effect of fluorination on the backbone, were examined. As the latter suffers from a very low stability, systems using trifluoromethyl groups, both on the exo-aryl as well as the borafluorene backbone were designed in order to maximize both the stability as well as the acceptor strength.
Three different perfluoroalkylated borafluorenes were prepared and their electronic and photophysical properties were investigated. The systems have four trifluoromethyl moieties on the borafluorene moiety as well as two trifluoromethyl groups at the ortho positions of their exo-aryl moieties. They differ with regard to the para-substituents on their exo-aryl moieties, being a proton (FXylFBf), a trifluoromethyl group (FMesFBf) or a dimethylamino group (p NMe2-FXylFBf), respectively. Furthermore, an acetonitrile adduct of FMesFBf was obtained and characterized. All derivatives exhibit extraordinarily low reduction potentials, comparable to those of perylenediimides. The most electron deficient derivative FMesFBf was also chemically reduced and its radical anion isolated and characterized. Furthermore, the photophysical properties of all compounds were investigated. All compounds exhibit weakly allowed lowest energy absorptions and very long fluorescent lifetimes of ca. 250 ns up to 1.6 μs; however, the underlying mechanisms differ. The donor substituted derivative p-NMe2-FXylFBf exhibits thermally activated delayed fluorescence from a charge transfer (CT) state, while the FMesFBf and FXylFBf borafluorenes exhibit only weakly allowed locally excited (LE) transitions due to their symmetry and low transition dipole moments, as suggested by DFT and TD-DFT calculations.
Chapter 3
Conjugated dendrimers find wide application in various fields, such as charge transport/storage or emitter materials in organic solar cells or OLEDs. Previous studies on boron containing conjugated dendrimers are scarce and mostly employ a convergent synthesis approach, lacking a simple, generally applicable synthetic access. A new divergent approach was designed and conjugated triarylborane dendrimers were synthesized up to the 2nd generation. The synthetic strategy consists of three steps:
1) functionalization, via iridium catalyzed C–H borylation;
2) activation, via fluorination of the generated boronate ester with K[HF2] or [N(nBu)4][HF2]; and
3) expansion, via reaction of the trifluoroborate salts with aryl Grignard reagents.
The concept was also shown to be viable for a convergent approach. All but one of the conjugated borane dendrimers exhibit multiple, distinct and reversible reduction potentials, making them potentially interesting materials for applications in molecular accumulators (Figure 5.7).
Based on their photophysical properties, the 1st generation dendrimers exhibit good conjugation over the whole system. The conjugation does not further increase upon expansion to the 2nd generation, but the molar extinction coefficients increase linearly with the number of triarylborane sub-units, suggesting a potential application as photonic antennas.
Chapter 4
A surprisingly high electronically-driven regioselectivity for the iridium-catalyzed C–H borylation using [Ir(COD)OMe]2 (COD = 1,5-cyclooctadiene) as the precatalytic species, bis(pinacolato)diboron (B2pin2) as the boron source and 4,4’-ditertbutyl-2,2’-bipyridin (dtbpy) as the ligand of D-π-A systems with diphenylamino (1) or carbazolyl (2) moieties as the donor, bis(2,6-bis(trifluoromethyl)phenyl)boryl (B(FXyl)2) as the acceptor, and 1,4-phenylene as the π-bridge was observed. Under these conditions, borylation was observed only at the sterically least encumbered para-positions of the acceptor groups. As boronate esters are versatile building blocks for organic synthesis (C–C coupling, functional group transformations), the C–H borylation represents a simple potential method for post-functionalization by which electronic or other properties of D-π-A systems can be fine-tuned for specific applications. The photophysical and electrochemical properties of the borylated (1-(Bpin)2) and unborylated (1) diphenylamino-substituted D-π-A systems were investigated. Interestingly, the borylated derivative exhibits coordination of THF to the boronate ester moieties, influencing the photophysical properties and exemplifying the non-innocence of boronate esters.
Die vorliegende Arbeit beschäftigte sich mit der Entwicklung und Synthese von Inhibitoren der Deoxyhypusin-Hydroxylase (DOHH), die einen wichtigen Schritt in der Aktivierung des eukaryotischen Translationsinitiations-Faktors-5A (eIF-5A) katalysiert. Die Hemmung dieses Metalloenzyms durch kleine Moleküle, die mit dem katalytischen Eisenatom im aktiven Zentrum der DOHH einen Chelatkomplex bilden, hat einen antiproliferativen Effekt auf parasitäre Erreger, wie Plasmodien, Trypanosomen und Leishmanien zur Folge. Ausgehend von den antiplasmodial wirksamen Eisenkomplexbildnern und Pyridon-Derivaten Ciclopirox und Mimosin wurden besser wirksame 2,6-Diaryl-4-oxopiperidincarbonsäuremono- und -diester-Derivate abgeleitet, deren 4-Piperidon-Grundgerüst als Leitstruktur für die Entwicklung von antiplasmodialen und antitrypanosomalen Wirkstoffen fungierte. Entsprechend dieser Leitstrukturen gelang im Zuge dieser Arbeit durch verschiedene Modifikationen der Doppel-Mannich-Reaktion die Erstellung einer weitreichenden Bibliothek 52 strukturell diverser 4-Hydroxytetrahydropyridin-3,5-dicarbonsäurediester 1 – 6, darunter auch erstmals Derivate mit t-Butyl-esterfunktionen und 4-Hydroxytetrahydropyridin-3-carbonsäuremonoester 7 – 8. Dabei konnten vor allem Derivate mit der gewünschten nitroaromatischen Substitution in den Positionen 2 und 6 synthetisiert werden. Darüber hinaus wurden vielfältige Strukturabwandlungen dieser Substanzen in Form von verschiedenen 4-Piperidonderivaten ohne Esterfunktionen, deren Oximen sowie von 4-Hydroxychinoloncarbonsäureestern syn-thetisiert. Die hergestellten Derivate wurden In-vitro-Testungen an Plasmodium falciparum, Trypanosoma brucei brucei und Leishmania major unterzogen. Zusätzlich wurde die Zytotoxizität an der Makrophagen-Zelllinie J774.1 ermittelt.
Chlamydia trachomatis (Ct) is an obligate intracellular human pathogen. It causes blinding trachoma and sexually transmitted disease such as chlamydia, pelvic inflammatory disease and lymphogranuloma venereum. Ct has a unique biphasic development cycle and replicates in an intracellular vacuole called inclusion. Normally it has two forms: the infectious form, elementary body (EB); and the non-infectious form, reticulate body (RB). Ct is not easily amenable to genetic manipulation. Hence, to understand the infection process, it is crucial to study how the metabolic activity of Ct exactly evolves in the host cell and what roles of EB and RB play differentially in Ct metabolism during infection. In addition, Ct was found regularly coinfected with other pathogens in patients who got sexually transmitted diseases (STDs). A lack of powerful methods to culture Ct outside of the host cell makes the detailed molecular mechanisms of coinfection difficult to study.
In this work, a genome-scale metabolic model with 321 metabolites and 277 reactions was first reconstructed by me to study Ct metabolic adaptation in the host cell during infection. This model was calculated to yield 84 extreme pathways, and metabolic flux strength was then modelled regarding 20hpi, 40hpi and later based on a published proteomics dataset. Activities of key enzymes involved in target pathways were further validated by RT-qPCR in both HeLa229 and HUVEC cell lines. This study suggests that Ct's major active pathways involve glycolysis, gluconeogenesis, glycerolphospholipid biosynthesis and pentose phosphate pathway, while Ct's incomplete tricarboxylic acid cycle and fatty acid biosynthesis are less active. EB is more activated in almost all these carbohydrate pathways than RB. Result suggests the survival of Ct generally requires a lot of acetyl-CoA from the host. Besides, both EB and RB can utilize folate biosynthesis to generate NAD(P)H but may use different pathways depending on the demands of ATP. When more ATP is available from both host cell and Ct itself, RB is more activated by utilizing energy providing chemicals generated by enzymes associated in the nucleic acid metabolism. The forming of folate also suggests large glutamate consumption, which is supposed to be converted from glutamine by the glutamine-fructose-6-phosphate transaminase (glmS) and CTP synthase (pyrG).
Then, RNA sequencing (RNA-seq) data analysis was performed by me in a coinfection study. Metatranscriptome from patient RNA-seq data provides a realistic overview. Thirteen patient samples were collected and sequenced by our collaborators. Six male samples were obtained by urethral swab, and seven female samples were collected by cervicovaginal lavage. All the samples were Neisseria gonorrhoeae (GC) positive, and half of them had coinfection with Ct. HISAT2 and Stringtie were used for transcriptomic mapping and assembly respectively, and differential expression analysis by DESeq2, Ballgown and Cuffdiff2 are parallelly processed for comparison. Although the measured transcripts were not sufficient to assemble Ct's transcriptome, the differential expression of genes in both the host and GC were analyzed by comparing Ct positive group (Ct+) against Ct-uninfected group. The results show that in the Ct+ group, the host MHC class II immune response was highly induced. Ct infection is associated with the regulation of DNA methylation, DNA double-strand damage and ubiquitination. The analysis also shows Ct infection enhances host fatty acid beta oxidation, thereby inducing mROS, and the host responds to reduce ceramide production and glycolysis. The coinfection upregulates GC's own ion transporters and amino acid uptake, while it downregulates GC's restriction and modification systems. Meanwhile, GC has the nitrosative and oxidative stress response and also increases the ability for ferric uptake especially in the Ct+ group compared to Ct-uninfected group.
In conclusion, methods in bioinformatics were used here in analyzing the metabolism of Ct itself, and the responses of the host and GC respectively in a coinfection study with and without Ct. These methods provide metabolic and metatranscriptomic details to study Ct metabolism during infection and Ct associated coinfection in the human microbiota.
Growth and Differentiation Factor 5 (GDF5) is a secreted growth factor that belongs to the Bone Morphogenetic Protein (BMP) family and plays a pivotal role during limb development. GDF5 is a susceptibility gene for osteoarthritis (OA) and mutations in GDF5 are associated with a wide variety of skeletal malformations ranging from complex syndromes such as acromesomelic chondrodysplasias to isolated forms of brachydactylies or multiple synostoses syndrome 2 (SYNS2). Here, we report on a family with an autosomal dominant inherited combination of SYNS2 and additional brachydactyly type A1 (BDA1) caused by a single point mutation in GDF5 (p.W414R). Functional studies, including chondrogenesis assays with primary mesenchymal cells, luciferase reporter gene assays and Surface Plasmon Resonance analysis, of the GDF5 W-414R variant in comparison to other GDF5 mutations associated with isolated BDA1 (p.R399C) or SYNS2 (p.E491K) revealed a dual pathomechanism characterized by a gain-and loss-of-function at the same time. On the one hand insensitivity to the main GDF5 antagonist NOGGIN (NOG) leads to a GDF5 gain of function and subsequent SYNS2 phenotype. Whereas on the other hand, a reduced signaling activity, specifically via the BMP receptor type IA (BMPR1A), is likely responsible for the BDA1 phenotype. These results demonstrate that one mutation in the overlapping interface of antagonist and receptor binding site in GDF5 can lead to a GDF5 variant with pathophysiological relevance for both, BDA1 and SYNS2 development. Consequently, our study assembles another part of the molecular puzzle of how loss and gain of function mutations in GDF5 affect bone development in hands and feet resulting in specific types of brachydactyly and SYNS2. These novel insights into the biology of GDF5 might also provide further clues on the pathophysiology of OA.
Investigation of processes that contribute to the maintenance of genomic stability is one crucial factor in the attempt to understand mechanisms that facilitate ageing. The DNA damage response (DDR) and DNA repair mechanisms are crucial to safeguard the integrity of DNA and to prevent accumulation of persistent DNA damage. Among them, base excision repair (BER) plays a decisive role. BER is the major repair pathway for small oxidative base modifications and apurinic/apyrimidinic (AP) sites. We established a highly sensitive non-radioactive assay to measure BER incision activity in murine liver samples. Incision activity can be assessed towards the three DNA lesions 8-oxo-2'-deoxyguanosine (8-oxodG), 5-hydroxy-2'-deoxyuracil (5-OHdU), and an AP site analogue. We applied the established assay to murine livers of adult and old mice of both sexes. Furthermore, poly(ADP-ribosyl)ation (PARylation) was assessed, which is an important determinant in DDR and BER. Additionally, DNA damage levels were measured to examine the overall damage levels. No impact of ageing on the investigated endpoints in liver tissue were found. However, animal sex seems to be a significant impact factor, as evident by sex-dependent alterations in all endpoints investigated. Moreover, our results revealed interrelationships between the investigated endpoints indicative for the synergetic mode of action of the cellular DNA integrity maintaining machinery.
The Wuertual Reality XR Meeting 2023 was initiated to bring together researchers from many fields who use VR/AR/XR. There was a focus on applied XR and social VR.
In this conference band, you can find the abstracts of the two keynotes, the 34 posters and poster pitches, the 29 talks and the four workshops.
In order to mimic the extracellular matrix for tissue engineering, recent research approaches often involve 3D printing or electrospinning of fibres to scaffolds as cell carrier material. Within this thesis, a micron fibre printing process, called melt electrospinning writing (MEW), combining both additive manufacturing and electrospinning, has been investigated and improved. Thus, a unique device was developed for accurate process control and manufacturing of high quality constructs. Thereby, different studies could be conducted in order to understand the electrohydrodynamic printing behaviour of different medically relevant thermoplastics as well as to characterise the influence of MEW on the resulting scaffold performance.
For reproducible scaffold printing, a commonly occurring processing instability was investigated and defined as pulsing, or in extreme cases as long beading. Here, processing analysis could be performed with the aim to overcome those instabilities and prevent the resulting manufacturing issues. Two different biocompatible polymers were utilised for this study: poly(ε-caprolactone) (PCL) as the only material available for MEW until then and poly(2-ethyl-2-oxazoline) for the first time. A hypothesis including the dependency of pulsing regarding involved mass flows regulated by the feeding pressure and the electrical field strength could be presented. Further, a guide via fibre diameter quantification was established to assess and accomplish high quality printing of scaffolds for subsequent research tasks.
By following a combined approach including small sized spinnerets, small flow rates and high field strengths, PCL fibres with submicron-sized fibre diameters (fØ = 817 ± 165 nm) were deposited to defined scaffolds. The resulting material characteristics could be investigated regarding molecular orientation and morphological aspects. Thereby, an alignment and isotropic crystallinity was observed that can be attributed to the distinct acceleration of the solidifying jet in the electrical field and by the collector uptake. Resulting submicron fibres formed accurate but mechanically sensitive structures requiring further preparation for a suitable use in cell biology. To overcome this handling issue, a coating procedure, by using hydrophilic and cross-linkable star-shaped molecules for preparing fibre adhesive but cell repellent collector surfaces, was used.
Printing PCL fibre patterns below the critical translation speed (CTS) revealed the opportunity to manufacture sinusoidal shaped fibres analogously to those observed using purely viscous fluids falling on a moving belt. No significant influence of the high voltage field during MEW processing could be observed on the buckling phenomenon. A study on the sinusoidal geometry revealed increasing peak-to-peak values and decreasing wavelengths as a function of decreasing collector speeds sc between CTS > sc ≥ 2/3 CTS independent of feeding pressures. Resulting scaffolds printed at 100 %, 90 %, 80 % and 70 % of CTS exhibited significantly different tensile properties, foremost regarding Young’s moduli (E = 42 ± 7 MPa to 173 ± 22 MPa at 1 – 3 % strain). As known from literature, a changed morphology and mechanical environment can impact cell performance substantially leading to a new opportunity of tailoring TE scaffolds.
Further, poly(L-lactide-co-ε-caprolactone-co-acryloyl carbonate) as well as poly(ε-caprolactone-co-acryloyl carbonate) (PCLAC) copolymers could be used for MEW printing. Those exhibit the opportunity for UV-initiated radical cross-linking in a post-processing step leading to significantly increased mechanical characteristics. Here, single fibres of the polymer composed of 90 mol.% CL and 10 mol.% AC showed a considerable maximum tensile strength of σmax = 53 ± 16 MPa. Furthermore, sinusoidal meanders made of PCLAC yielded a specific tensile stress-strain characteristic mimicking the qualitative behaviour of tendons or ligaments. Cell viability by L929 murine fibroblasts and live/dead staining with human mesenchymal stem cells revealed a promising biomaterial behaviour pointing out MEW printed PCLAC scaffolds as promising choice for medical repair of load-bearing soft tissue.
Indeed, one apparent drawback, the small throughput similar to other AM methods, may still prevent MEW’s industrial application yet. However, ongoing research focusses on enlargement of manufacturing speed with the clear perspective of relevant improvement. Thereby, the utilisation of large spinneret sizes may enable printing of high volume rates, while downsizing the resulting fibre diameter via electrical field and mechanical stretching by the collector uptake. Using this approach, limitations of FDM by small nozzle sizes could be overcome. Thinking visionary, such printing devices could be placed in hospitals for patient-specific printing-on-demand therapies one day. Taking the evolved high deposition precision combined with the unique small fibre diameter sizes into account, technical processing of high performance membranes, filters or functional surface finishes also stands to reason.