The gastrointestinal (GI) tract's primary role is food digestion, relying on coordinated fluid secretion and bowel movements triggered by mechanosensation. Enteroendocrine cells (EECs) are specialized mechanosensitive cells that convert mechanical forces into electrochemical signals, culminating in serotonin release to regulate GI motility. Despite their pivotal role, knowledge of EEC mechanical properties has been lacking due to their rarity and limited accessibility. In this brief report, we present the first single-cell mechanical characterization of human ECCs isolated from healthy intestinal organoids. Using single-cell optical tweezers, we measured EEC stiffness profiles at the physiological temperature and investigated changes following tryptophan metabolism inhibition. Our findings not only shed light on EEC mechanics but also highlight the potential of adult stem cell-derived organoids for studying these elusive cells.
Joep Beumer, Julia Bauzá‐Martinez, Tim S. Veth, Veerle Geurts, Charelle Boot, Hannah Gilliam‐Vigh, Steen Seier Poulsen, Filip K. Knop, Wei Wu, Hans Clevers
Joep Beumer, Maarten H. Geurts, Veerle Geurts, Amanda Andersson-Rolf, Ninouk Akkerman, Franziska Voellmy, Daniel Krueger, Georg Busslinger, Adriana Martínez-Silgado, Charelle Boot, Fjodor A. Yousef Yengej, Jens Puschhof, Willine J. van de Wetering, Kèvin Knoops, Carmen López‐Iglesias, Peter J. Peters, Judith Vivié, Dylan Mooijman, Johan H. van Es, Hans Clevers
Lin Lin, Jeff DeMartino, Daisong Wang, Gijs J. F. van Son, Reinier van der Linden, Harry Begthel, Jeroen Korving, Amanda Andersson-Rolf, Stieneke van den Brink, Carmen López‐Iglesias, Willine J. van de Wetering, Aleksandra Balwierz, Thanasis Margaritis, Marc van de Wetering, Peter J. Peters, Jarno Drost, Johan H. van Es, Hans Clevers
Lihua Ye, Munhyung Bae, Chelsi D. Cassilly, Sairam V. Jabba, Daniel Thorpe, Alyce M. Martin, Hsiu-Yi Lu, Jinhu Wang, John D Thompson, Colin R. Lickwar, Kenneth D. Poss, Damien J. Keating, Sven‐Eric Jordt, Jon Clardy, Rodger A. Liddle, John F. Rawls
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