12 results match your criteria: "GKSS-Research Centre Geesthacht GmbH[Affiliation]"

Comparative studies on osteogenic potential of micro- and nanofibre scaffolds prepared by electrospinning of poly(ε-caprolactone).

Prog Biomater

November 2013

Department Pharmaceutics and Biopharmaceutics, Biomedical Materials Group, Martin Luther University Halle-Wittenberg, Institute of Pharmacy, Heinrich-Damerow-Strasse 4, Halle (Saale), 06120, Germany.

The biocompatibility and osteogenic potential of four fibrous scaffolds prepared by electrospinning of poly(ε-caprolactone) (PCL) was studied with MG-63 osteoblast cells. Two different kinds of scaffolds were obtained by adjustment of spinning conditions, which were characterized as nano- or microfibrous. In addition of one nanofibrous, scaffold was made more hydrophilic by blending PCL with Pluronics F 68.

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Multiblock copolymers with shape-memory capability attracted tremendous interest as promising candidate materials for smart, degradable implants. In the present study the hen's egg-chorioallantoic membrane test (HET-CAM test) was used to investigate the angiogenic properties of a thermoplastic, biodegradable multiblock copolymer PDC composed of poly(p-dioxanone) hard segments (PPDO) and crystallizable poly(ε-caprolactone) switching segments (PCL), whereby PPDO and PCL homopolymers were investigated as controls. According to our HET-CAM test data, only PDC induced significant microvessel attraction and formation in the contact area of the test specimen after 48 hours of incubation showing newly formed blood vessels along the outer edge of the material.

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The establishment of a stable endothelial layer on a biomaterial suture is a well known strategy to achieve hemocompatibility. The endothelialisation is supported by factors as e.g.

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Large-scale distribution of dechlorane plus in air and seawater from the Arctic to Antarctica.

Environ Sci Technol

December 2010

GKSS Research Centre Geesthacht GmbH, Institute for Coastal Research, Max-Planck-Strasse 1, 21502 Geesthacht, Germany.

Dechlorane Plus (DP), a highly chlorinated flame retardant, was investigated in marine boundary layer air and surface seawater from East Greenland Sea and in the Northern and Southern Atlantic toward Antarctica. The concentrations of DP ranged from 0.05 to 4.

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Article Synopsis
  • Miniaturizing and controlling materials at the nanoscale is essential in nanoscience and nanotechnology, especially for creating ultra-thin polymer films with uniform thickness.
  • By utilizing a custom-designed polymer and precise nanofabrication techniques, researchers produced defect-free membranes with high carbon dioxide permeance, exceeding 5 m³ (STP) m⁻² h⁻¹ bar⁻¹.
  • These ultra-thin membranes, being only a few tens of nanometers thick and made from CO₂-philic materials, have significant potential for applications like separating carbon dioxide from flue gas in large-scale gas treatment.
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The concentration profile of 40 polyfluoroalkyl substances (PFAS) in surface water along the River Rhine watershed from the Lake Constance to the North Sea was investigated. The aim of the study was to investigate the influence of point as well as diffuse sources, to estimate fluxes of PFAS into the North Sea and to identify replacement compounds of perfluorooctane sulfonate (PFOS) and perfluorooctanoic acid (PFOA). In addition, an interlaboratory comparison of the method performance was conducted.

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Shape-memory polymers as a technology platform for biomedical applications.

Expert Rev Med Devices

May 2010

Centre for Biomaterial Development, Institute of Polymer Research, GKSS Research Centre Geesthacht GmbH, Kantstr. 55, Teltow, Germany.

Polymeric materials are clinically required for medical devices, as well as controlled drug delivery systems. Depending on the application, the polymer has to provide suitable functionalities, for example, mechanical functions or the capability to actively move, so that an implant can be inserted in a compact shape through key-hole incisions and unfold to its functional shape in the body. Shape-memory polymers, as described herein regarding their general principle, compositions and architectures, have developed to a technology platform that allows the tailored design of such multifunctionality.

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Monitoring of Liver Cell Transplantation in a Preclinical Swine Model Using Magnetic Resonance Imaging.

Cell Med

March 2016

General, Visceral, and Transplantation Surgery, Experimental Surgery and Regenerative Medicine, Charité-Campus Virchow, Universitätsmedizin Berlin, Berlin , Germany.

Liver cell transplantation (LCT) is a promising treatment approach for certain liver diseases, but clinical implementation requires methods for noninvasive follow-up. Labeling with superparamagnetic iron oxide particles can enable the detection of cells with magnetic resonance imaging (MRI). We investigated the feasibility of monitoring transplanted liver cells by MRI in a preclinical swine model and used this approach to evaluate different routes for cell application.

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Development and application of a simplified sampling method for volatile polyfluorinated alkyl substances in indoor and environmental air.

J Chromatogr A

September 2007

GKSS Research Centre Geesthacht GmbH, Institute for Coastal Research, Department of Environmental Chemistry, Max-Planck-Str 1, DE-21502, Geesthacht, Germany.

A new, fast and simple sampling method using commercially available Isolute ENV+ solid-phase extraction (SPE) cartridges for the enrichment of neutral, volatile polyfluorinated alkyl substances (PFAS) was developed and applied to selected air samples. The SPE cartridges showed good retention capacity for the target analytes, and most of the investigated compounds could be quantified in 20m(3) indoor air. Employing the developed method, it was shown that high levels of selected fluorotelomer alcohols (FTOHs) and N-alkyl fluorooctane sulfonamides/-ethanols (FOSAs/FOSEs) evaporated from a paraglider.

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The catalytic mechanisms of transition-metal compounds during the hydrogen sorption reaction of magnesium-based hydrides were investigated through relevant experiments. Catalytic activity was found to be influenced by four distinct physico-thermodynamic properties of the transition-metal compound: a high number of structural defects, a low stability of the compound, which however has to be high enough to avoid complete reduction of the transition metal under operating conditions, a high valence state of the transition-metal ion within the compound, and a high affinity of the transition-metal ion to hydrogen. On the basis of these results, further optimization of the selection of catalysts for improving sorption properties of magnesium-based hydrides is possible.

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An analytical method has been developed for the determination of five naturally occurring estrogens (estradiol, estriol, estrone, genistein, daidzein), one synthetic hormone (ethynylestradiol) and three xenoestrogens (4-nonylphenol (NP), 4-tert-octylphenol (4-tert-OP), bisphenol A (BPA)) in coastal marine waters. The procedure includes a solid-phase extraction of approx. fifty litres of water samples on the solid-phase copolymer Oasis HLB followed by a clean-up on silica.

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Transport processes through track-etch membrane filters in a reagent delivery cell.

Fresenius J Anal Chem

February 2000

Institute of Physical and Chemical Analysis, GKSS Research Centre Geesthacht GmbH, Germany.

A reagent delivery cell with a track-etch membrane filter for on-line dilution of concentrated salt solutions is described. The influence of several system parameters such as concentration of the stock solution, temperature. transmembrane pressure and the dependence on the diffusion coefficients of several salt components on the dilution was evaluated.

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