Eleonore Fröhlich
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Recent Grants
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Nano-EHS: Nano-LunCH
Open Date: 2019-10-01
Close Date: 2021-01-01
Grant: Close
protectedTOUCH
Open Date: 2016-10-01
Close Date: 2018-09-01
Grant: Close
CONQUER: Contrast by Nuclear Quadrupole Enhanced Relaxation
Open Date: 2015-10-01
Close Date: 2018-09-01
Grant: Close
Innovationscheck plus, toxicity testing
Open Date: 2015-01-01
Close Date: 2016-01-01
Grant: Close
Biofunctional_MedSensor_Packaging
Open Date: 2012-07-01
Close Date: 2014-12-01
Articles (17)
Year:
2024
Pars Distalis and Pars Tuberalis Thyroid-Stimulating Hormones and Their Roles in Macro-Thyroid-Stimulating Hormone Formation
Thyroid-stimulating hormone (TSH) and thyroid hormone levels are standard parameters in blood analysis. However, the immunoassays employed may lead to false-positive or false-negative results when the sample contains certain materials that interfere with the assay. Macro-TSH, a complex of TSH with immunoglobulin or albumin, may cause apparently increased TSH concentrations. TSH is produced in the pars tuberalis (PT) of the pituitary gland and by thyrotrophs of the pars distalis (PD). It was found that variable glycosylation can render the molecule more strongly bound to antibodies or albumin in the blood, leading to the hypothesis that macro-TSH consists mainly of PT-TSH. Although less known than PD-TSH, PT-TSH plays an important role in the central regulation of thyroid metabolism. The present review summarizes the physiological function of human PT-TSH and its role in macro-TSH formation. The prevalence of macro-hyperthyrotropinemia, the structure of PT-TSH and macro-TSH, problems in the measurement of TSH, and the action of PT-TSH in animals with seasonal breeding are discussed. Despite the absence of a specific function of macro-TSH in the organism, the identification of macro-TSH is important for avoiding unnecessary treatment based on a falsified readout of increased TSH concentrations as numerous individual case reports describe.
Year:
2023
Assessment of Carbon Nanotubes on Barrier Function, Ciliary Beating Frequency and Cytokine Release in In Vitro Models of the Respiratory Tract
The exposure to inhaled carbon nanotubes (CNT) may have adverse effects on workers upon chronic exposure. In order to assess the toxicity of inhaled nanoparticles in a physiologically relevant manner, an air–liquid interface culture of mono and cocultures of respiratory cells and assessment in reconstructed bronchial and alveolar tissues was used. The effect of CNT4003 reference particles applied in simulated lung fluid was studied in bronchial (Calu-3 cells, EpiAirway™ and MucilAir™ tissues) and alveolar (A549 +/−THP-1 and EpiAlveolar™ +/−THP-1) models. Cytotoxicity, transepithelial electrical resistance, interleukin 6 and 8 secretion, mucociliary clearance and ciliary beating frequency were used as readout parameters. With the exception of increased secretion of interleukin 6 in the EpiAlveolar™ tissues, no adverse effects of CNT4003 particles, applied at doses corresponding to the maximum estimated lifetime exposure of workers, in the bronchial and alveolar models were noted, suggesting no marked differences between the models. Since the doses for whole-life exposure were applied over a shorter time, it is not clear if the interleukin 6 increase in the EpiAlveolar™ tissues has physiological relevance.
Year:
2023
Collaborators (11)
Anna-Laurence Schachner-Nedherer
Lecturer
Karl-Franzens-Universität Graz
Laura Francés-Soriano
-
Julian Quehenberger
TU Wien
Oliver Spadiut
Universität Wien
Stefan Mitsche
Graz University of Technology (90000)
Richard Wahl
University Hospital Tübingen
Andreas Zimmer
Graz University of Technology
Ruth Prassl
Assoc. Prof
Medical University of Graz
Martin Wabitsch
-
Jorge González‐García
-
Eva Roblegg
Graz University of Technology

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