Publications by authors named "U Steinfeld"

Cell-mediated transport of therapeutics has emerged as promising alternative to classical drug delivery approaches. To preserve viability and functions of carrier cells, encapsulation of active drugs in protective nanoparticles or the use of inducible therapeutics has been proposed. Here, we compared the effects of novel polymeric formulations of an active and a stimulus-sensitive anti-cancer drug on human T lymphocytes to identify suitable drug preparations for cell-mediated drug delivery.

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Pharyngeal collapsibility during sleep is believed to increase due to a decline in dilator muscle activity. However, genioglossus electromyogram (EMG) often increases during apnoeas and hypopnoeas, often without mechanical effect. 17 patients with obstructive sleep apnoea were anaesthetised and evaluated from termination of propofol administration to awakening.

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The relative impact of mechanical factors on pharyngeal patency in patients with obstructive sleep apnea is poorly understood. The present study was designed to evaluate parameters of the "tube law" on pharyngeal pressure-flow relationships and collapsibility in patients with obstructive sleep apnea. We developed a mathematical model that considered the collapsible segment of the pharynx to represent an orifice of varying diameter.

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Contraction of the geniogtossus (GG) has been shown to improve upper airway patency in patients with sleep apnea during sleep and anesthesia. However, a large variability in response exists, requiring selection of adequate patients if GG stimulation should be used as a treatment modality. In the present study, we compared responses in upper airway pressure-flow relationships to electrical stimulation of the GG in patients with obstructive sleep apnea during sleep and mild anesthesia.

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Sulfamethoxazole (SMX) is an antibiotic of growing environmental concern. As specific filter material for the extraction of SMX from waters, a series of SMX-imprinted polymers have been synthesised varying their composition parameters, and their efficiency to selectively remove the contaminant SMX from complex polluted water was tested. Most of the developed materials exhibited an excellent uptake of the target pollutant SMX of more than 80% or even 90% and effective separation from selected easily degradable accompanying substances even in complex wastewater mixtures.

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