Now showing items 1-5 of 5

  • Wilson, Steven Ray Haakon; Krauss, Stefan Johannes Karl; Lundanes, Elsa; Skottvoll, Frøydis Sved; Bogen, Inger Lise; Pedersen-Bjergaard, Stig; Hansen, Frederik; Aizenshtadt, Aleksandra; Kutter, Jörg P.; Andersen, Jannike Mørch; Martinez, Mikel Amirola (Journal article / Tidsskriftartikkel / PublishedVersion, 2021)
    This work introduces a strategy for organoid analysis - direct Electromembrane Extraction based Mass Spectrometry (dEME-MS) – for coupling liver organoids with mass spectrometry (MS). dEME-MS comprises electrophoresis of ...
  • Bergh, Marianne Skov-Skov; Bogen, Inger Lise; Wohlfarth, Ariane; Wilson, Steven Ray Haakon; Øiestad, Åse Marit Leere (Journal article / Tidsskriftartikkel / SubmittedVersion, 2019)
    Background: The opioid analgesic fentanyl and its analogues pose a major health concern due to its high potency and the increasing number of overdose deaths worldwide. The analogues of fentanyl may differ in potency, ...
  • Skottvoll, Frøydis Sved; Hansen, Frederik; Harrison, Sean; Boger, Ida Caroline Sneis; Mrsa, Ago; Restan, Magnus Saed; Stein, Matthias; Lundanes, Elsa; Pedersen-Bjergaard, Stig; Aizenshtadt, Aleksandra; Krauss, Stefan; Sullivan, Gareth; Bogen, Inger Lise; Wilson, Steven Ray Haakon (Journal article / Tidsskriftartikkel / PublishedVersion; Peer reviewed, 2021)
    Liver organoids are emerging tools for precision drug development and toxicity screening. We demonstrate that electromembrane extraction (EME) based on electrophoresis across an oil membrane is suited for segregating ...
  • Kogler, Stian; Aizenshtadt, Aleksandra; Harrison, Sean; Skottvoll, Frøydis Sved; Berg, Henriette Engen; Abadpour, Shadab; Scholz, Hanne; Sullivan, Gareth John; Thiede, Bernd; Lundanes, Elsa; Bogen, Inger Lise; Krauss, Stefan Johannes Karl; Røberg-Larsen, Hanne; Wilson, Steven Ray Haakon (Journal article / Tidsskriftartikkel / PublishedVersion; Peer reviewed, 2022)
    Organoids, i.e., laboratory-grown organ models developed from stem cells, are emerging tools for studying organ physiology, disease modeling, and drug development. On-line analysis of organoids with mass spectrometry would ...
  • Harrison, Sean Philip; Siller, Richard; Tanaka, Yoshiaki; Chollet Dugarte, Maria Eugenia; de la Morena-Barrio, María Eugenia; Xiang, Yangfei; Patterson, Benjamin; Andersen, Elisabeth; Bravo-Pérez, Carlos; Kempf, Henning; Nordhus, Kathrine Sivertsen; Lunov, Oleg; Dejneka, Alexandr; Mowinckel, Marie-Christine; Stavik, Benedicte; Sandset, Per Morten; Melum, Espen; Baumgarten, Saphira Felicitas; Bonanini, Flavio; Kurek, Dorota; Mathapati, Santosh Sadashiv; Almaas, Runar; Sharma, Kulbhushan; Wilson, Steven Ray Haakon; Skottvoll, Frøydis Sved; Boger, Ida Caroline Sneis; Bogen, Inger Lise; Nyman, Tuula Anneli; Wu, Jun Jie; Bezrouk, Ales; Cizkova, Dana; Corral, Javier; Mokry, Jaroslav; Zweigerdt, Robert; Park, In-Hyun; Sullivan, Gareth John (Journal article / Tidsskriftartikkel / PublishedVersion; Peer reviewed, 2023)
    Abstract The lack of physiological parity between 2D cell culture and in vivo culture has led to the development of more organotypic models, such as organoids. Organoid models have been developed for a number of tissues, ...