TY - JOUR
T1 - Ex vivo drug sensitivity profiling to complement molecular profiling in pediatric precision oncology
AU - Schoonbeek, Marlinde C.
AU - Gestraud, Pierre
AU - Vernooij, Lindy
AU - Boltjes, Arjan
AU - Amo-Addae, Vicky
AU - van Luik, Marloes
AU - Del Nery, Elaine
AU - Bellini, Angela
AU - Chua, Ellora
AU - Swaak, Sarah
AU - Looze, Eleonora J.
AU - Pietiäinen, Vilja M.
AU - Turunen, Laura L.
AU - Saarela, Jani S.
AU - Schueler, Julia
AU - Indersie, Emilie
AU - Gürgen, Dennis
AU - Scotlandi, Katia
AU - Eggert, Angelika
AU - Bouarich-Bourimi, Rachida
AU - Bourdeaut, Franck
AU - Zaidi, Sakina
AU - Surdez, Didier
AU - Carcaboso, Ángel M.
AU - Geoerger, Birgit
AU - Federico, Aniello
AU - Kool, Marcel
AU - Iddir, Yasmine
AU - Saint-Charles, Alexandra
AU - Saberi-Ansari, Elnaz
AU - Cavalli, Florence
AU - Gopisetty, Apurva
AU - Rief, Eva Maria
AU - Caron, Hubert N.
AU - Stancato, Lou
AU - Vassal, Gilles
AU - Pfister, Stefan
AU - Koster, Jan
AU - Eising, Selma
AU - van Hooff, Sander R.
AU - van den Boogaard, Marlinde L.
AU - Schleiermacher, Gudrun
AU - Molenaar, Jan J.
N1 - Publisher Copyright:
© The Author(s) 2026.
PY - 2026/12
Y1 - 2026/12
N2 - Pediatric patients with high-risk extra-cranial solid tumors face a 5-year survival rate below 50%. As molecular profiling alone is insufficient to guide treatment at relapse, complementary strategies like drug screening are urgently needed. We evaluated short-term drug screening as a rapid, reliable method to assess drug sensitivities in pediatric solid tumors using ex vivo cultures from previously established patient-derived xenograft (PDX) models. Ex vivo drug screening was performed within 14 days of receipt across two institutes, testing 77-224 compounds depending on cell availability. Drug responses were consistent across institutes (n = 6), and effective compounds were reproducibly identified in a replicate model. Tumor type-specific responses were observed. In neuroblastoma, ALK-mutation status did not correlate with ALK-inhibitor response, whereas correlations with transcriptomic changes were observed. Timepoint-specific drug sensitivities were observed in serial Ewing sarcoma models. Overall, drug hits were identified in 94% of screens (n = 63), broadening treatment options for 88% of cases without targetable alterations (n = 11). In case of a targetable event, drug screening refined compound choice. Ex vivo drug screening is a fast and feasible method, providing insights into compound efficacy and enabling quick identification of functional treatment suggestions. Ex vivo drug screening should be integrated into a future next-generation diagnostic platform for pediatric solid tumors, combined with genomics and transcriptomics.
AB - Pediatric patients with high-risk extra-cranial solid tumors face a 5-year survival rate below 50%. As molecular profiling alone is insufficient to guide treatment at relapse, complementary strategies like drug screening are urgently needed. We evaluated short-term drug screening as a rapid, reliable method to assess drug sensitivities in pediatric solid tumors using ex vivo cultures from previously established patient-derived xenograft (PDX) models. Ex vivo drug screening was performed within 14 days of receipt across two institutes, testing 77-224 compounds depending on cell availability. Drug responses were consistent across institutes (n = 6), and effective compounds were reproducibly identified in a replicate model. Tumor type-specific responses were observed. In neuroblastoma, ALK-mutation status did not correlate with ALK-inhibitor response, whereas correlations with transcriptomic changes were observed. Timepoint-specific drug sensitivities were observed in serial Ewing sarcoma models. Overall, drug hits were identified in 94% of screens (n = 63), broadening treatment options for 88% of cases without targetable alterations (n = 11). In case of a targetable event, drug screening refined compound choice. Ex vivo drug screening is a fast and feasible method, providing insights into compound efficacy and enabling quick identification of functional treatment suggestions. Ex vivo drug screening should be integrated into a future next-generation diagnostic platform for pediatric solid tumors, combined with genomics and transcriptomics.
UR - https://www.scopus.com/pages/publications/105043020941
U2 - 10.1038/s41698-025-01266-0
DO - 10.1038/s41698-025-01266-0
M3 - Article
AN - SCOPUS:105043020941
SN - 2397-768X
VL - 10
JO - NPJ precision oncology
JF - NPJ precision oncology
IS - 1
M1 - 246
ER -