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    <title>Establishment of a human 3D kidney tissue model using decellularized rat kidney slices</title>
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    <namePart>Peters, Kirsten</namePart>
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    <namePart>Amann, Kerstin</namePart>
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  <abstract type="Summary">This study explores physical pretreatments to improve kidney decellularization, addressing the need for a bioartificial kidney as an alternative treatment for end-stage renal disease. Freezing-thawing cycles (FTC) and high hydrostatic pressure (HHP) were compared to chemical decellularization. FTC was the most effective in removing DNA and preserving the extracellular matrix (ECM), and showed better scaffold recellularization with kidney cells. Analysis with artificial intelligence revealed insights into the instructive memory of the ECM, guiding cells to avoid attachment to nonspecific sites.&lt;eng&gt;</abstract>
  <abstract type="Summary">Diese Studie untersucht physikalische Methoden zur Optimierung der Dezellularisierung von Nieren um die Entwicklung einer biokünstlichen Niere als Therapie für Niereninsuffizienz zu fördern. FTC (Freezing Thawing Cycles) und High Hydrostatic Pressure (HHP) wurden mit der chemischen Dezellularisierung verglichen. FTC war effektiver bei der Entfernung von DNA und Erhaltung der extrazellulären Matrix (ECM) und ermöglichte bessere Rezellularisierung. Eine KI-gestützte Analyse lieferte wertvolle Erkenntnisse über das ECM-Gedächtnis, die die Zellmigration steuert um unspezifische Anhaftungen zu vermeiden.&lt;ger&gt;</abstract>
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  <note type="statement of responsibility">vorgelegt von Haitham Salti</note>
  <note>GutachterInnen: Steffen Mitzner (Universitätsmedizin Rostock, Zentrum für Innere Medizin, Sektion Nephrologie) ; Kirsten Peters (Universitätsmedizin Rostock, Zentrum für Medizinische Forschung, Institut für Zellbiologie) ; Kerstin Amann (Uniklinik Erlangen, Nephropathologische Abteilung)</note>
  <note type="thesis">Dissertation Universität Rostock 2024</note>
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      <title>Establishment of a human 3D kidney tissue model using decellularized rat kidney slices</title>
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      <publisher>Rostock : Universität Rostock, 2024</publisher>
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      <namePart>Salti, Haitham, 1987 - </namePart>
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