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Andrea Wagner

Researcher at Paracelsus Private Medical University of Salzburg

Publications -  29
Citations -  651

Andrea Wagner is an academic researcher from Paracelsus Private Medical University of Salzburg. The author has contributed to research in topics: Tendon & Tendinopathy. The author has an hindex of 11, co-authored 25 publications receiving 455 citations. Previous affiliations of Andrea Wagner include University of Salzburg.

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Perivascular cells of the supraspinatus tendon express both tendon- and stem cell-related markers

TL;DR: It is shown for the first time that perivascular cells within tendon tissue express both tendon- and stem/precursor cell-like characteristics, which suggests that the periv vascular niche may be considered a source for tendon precursor cells.
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Effects of crystalline glucocorticoid triamcinolone acetonide on cultered human supraspinatus tendon cells.

TL;DR: The results may indicate that the use of TAA is one reason for weaker mechanical tendon properties and for the high rate of re-rupture after supraspinatus tendon repair.
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Molecular characterisation of transport mechanisms at the developing mouse blood-CSF interface: a transcriptome approach

TL;DR: A model of the cellular mechanism in which SPARC and GYPA, together with identified vesicle-associated membrane proteins (VAMPs) may act as receptors/transporters in developmentally regulated transfer of plasma proteins at the blood–CSF interface is proposed.
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Limiting angiogenesis to modulate scar formation.

TL;DR: To elucidate targetable factors to promote functional tissue regeneration the authors need to understand the molecular and cellular underpinnings of physiological angiogenesis, ranging from induction to resolution of blood vessels.
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Interaction of Bestrophin-1 and Ca2+ Channel β-Subunits: Identification of New Binding Domains on the Bestrophin-1 C-Terminus

TL;DR: New proline-rich motifs on bestrophin-1 C-terminus are described, which help to maintain the ability of β-subunits to regulate surface expression of pore-forming CaV Ca2+-channel subunits.