2 resultados para Functional Capacity Index
em ArchiMeD - Elektronische Publikationen der Universität Mainz - Alemanha
Resumo:
Um einen positiven Einfluss auf den Krankheitsverlauf bei Patienten mit Rheumatoider Arthritis zu nehmen, ist die Compliance mit dem Basistherapeutikum Methotrexat unerlässlich. Therapietreue mit Methotrexat kann die Krankheitsprogression verhindern und irreversiblen Knochenerosionen vorbeugen. Methotrexat wird sowohl in subkutaner als auch in peroraler Applikationsform verordnet. Im Rahmen der vorliegenden Arbeit wurde die Compliance mit der Anwendung von Methotrexat Fertigspritzen und Tabletten mit einer elektronischen Messmethode (MEMS™) bestimmt. Hauptziel der Studie war die Bestimmung der Taking Compliance mit Methotrexat. Untersucht wurde hinsichtlich eines Unterschieds zwischen der Applikationsform und der Erkrankungsdauer. Daneben wurde die Dosing Compliance mit peroralem Methotrexat erfasst, sowie Einschätzungen der Patienten bezüglich der Compliance, Funktionskapazität, Lebensqualität und Zufriedenheit erhoben. Die Compliancestudie erfolgte in Kooperation mit dem Netzwerk ADAPTHERA. 74 Studienpatienten wurden 3 Gruppen zugeteilt: Gruppe 1 Methotrexat p.o.; Gruppe 2 Methotrexat s.c. und Erkrankungsdauer <24 Monate; Gruppe 3 Methotrexat s.c. und Erkrankungsdauer >24 Monate. Die Beobachtungsdauer betrug bei peroraler Applikationsform 9 Monate und bei subkutaner 6 Monate. Im Median wurde eine Taking und Dosing Compliance von 100% gemessen. Anhand der subjektiven Einschätzung der Patienten zur Funktionskapazität konnten geringe Einschränkungen für die Patienten im Alltag verzeichnet werden. 25% des Studienkollektivs litt unter einem reduzierten Wohlbefinden. Die Studie konnte zeigen, dass Patienten von einer frühzeitigen Therapie und einer hohen Compliancerate profitieren.
Resumo:
Dextran-based polymers are versatile hydrophilic materials, which can provide functionalized surfaces in various areas including biological and medical applications. Functional, responsive, dextran based hydrogels are crosslinked, dextran based polymers allowing the modulation of response towards external stimuli. The controlled modulation of hydrogel properties towards specific applications and the detailed characterization of the optical, mechanical, and chemical properties are of strong interest in science and further applications. Especially, the structural characteristics of swollen hydrogel matrices and the characterization of their variations upon environmental changes are challenging. Depending on their properties hydrogels are applied as actuators, biosensors, in drug delivery, tissue engineering, or for medical coatings. However, the field of possible applications still shows potential to be expanded. rnSurface attached hydrogel films with a thickness of several micrometers can serve as waveguiding matrix for leaky optical waveguide modes. On the basis of highly swelling and waveguiding dextran based hydrogel films an optical biosensor concept was developed. The synthesis of a dextran based hydrogel matrix, its functionalization to modulate its response towards external stimuli, and the characterization of the swollen hydrogel films were main interests within this biosensor project. A second focus was the optimization of the hydrogel characteristics for cell growth with the aim of creating scaffolds for bone regeneration. Matrix modification towards successful cell growth experiments with endothelial cells and osteoblasts was achieved.rnA photo crosslinkable, carboxymethylated dextran based hydrogel (PCMD) was synthesized and characterized in terms of swelling behaviour and structural properties. Further functionalization was carried out before and after crosslinking. This functionalization aimed towards external manipulation of the swelling degree and the charge of the hydrogel matrix important for biosensor experiments as well as for cell adhesion. The modulation of functionalized PCMD hydrogel responses to pH, ion concentration, electrochemical switching, or a magnetic force was investigated. rnThe PCMD hydrogel films were optically characterized by combining surface plasmon resonance (SPR) and optical waveguide mode spectroscopy (OWS). This technique allows a detailed analysis of the refractive index profile perpendicular to the substrate surface by applying the Wentzel Kramers Brillouin (WKB) approximation. rnIn order to perform biosensor experiments, analyte capturing units such as proteins or antibodies were covalently coupled to the crosslinked hydrogel backbone by applying active ester chemistry. Consequently, target analytes could be located inside the waveguiding matrix. By using labeled analytes, fluorescence enhancement was achieved by fluorescence excitation with the electromagnetic field in the center of the optical waveguide modes. The fluorescence excited by the evanescent electromagnetic field of the surface plasmon was 2 3 orders of magnitude lower. Furthermore, the signal to noise ratio was improved by the fluorescence excitation with leaky optical waveguide modes.rnThe applicability of the PCMD hydrogel sensor matrix for clinically relevant samples was proofed in a cooperation project for the detection of PSA in serum with long range surface plasmon spectroscopy (LRSP) and fluorescence excitation by LRSP (LR SPFS). rn