TY - JOUR
T1 - Predicting therapeutic responses in metastatic colorectal cancer through personalized functional profiling of patient-derived spheroids
AU - El-Khoury, Victoria
AU - Smajović, Lejla Nur
AU - Mgrditchian, Takouhie
AU - Barthelemy, Vanessa
AU - Torigny, Pauline
AU - Kim, Hichul
AU - Gerardy, Jean Jacques
AU - Nazarov, Petr V.
AU - Graas, Jérôme
AU - Menster, Myriam
AU - Frauenknecht, Katrin B.M.
AU - Edon, Bob
AU - Meuter, Boris
AU - Faber, Bernard
AU - Krahn, Jan Friedrich
AU - Abi-Khalil, Samer
AU - Klink, Barbara
AU - Stieber, Daniel
AU - Kleine Borgmann, Felix Bruno
AU - Berchem, Guy
AU - Mittelbronn, Michel
AU - Berna, Marc
AU - Kwon, Yong Jun
N1 - © 2026. The Author(s).
PY - 2026/3/19
Y1 - 2026/3/19
N2 - Drug resistance of metastatic colorectal cancer (mCRC) remains a major therapeutic challenge. Screening patient-derived tumor cells with diverse compounds in 3D models may overcome the limitations of genomics-based drug response predictions. We describe a personalized functional profiling (PFP) approach in mCRC using patient-derived spheroids (PDS) and assess its utility in predicting drug responses. PDS were established from twelve patients’ tumors and validated by immunohisto(cyto)chemistry and genomic sequencing. Forty-two small molecule anti-cancer drugs, along with five standard-of-care (SOC) drugs in CRC were screened as single agents or in combination, and cell viability was measured using calcein staining or ATP-based assay. Ex vivo results were compared with clinical treatment responses. PDS closely mirrored histopathological and genetic features of the original tumors, supporting their use in PFP. Sensitivity to anti-EGFR drugs distinguished responsive from resistant patients and revealed candidates for anti-ERBB2 therapy, whereas anti-VEGFR screening failed to recapitulate clinical outcomes. SOC drug screening results correlated with clinical outcomes or tumor genetic features in a subset of PDS. This work underscores the predictive value of PFP, its complementarity with genomic sequencing, and the need for refinement to enhance its clinical applicability.
AB - Drug resistance of metastatic colorectal cancer (mCRC) remains a major therapeutic challenge. Screening patient-derived tumor cells with diverse compounds in 3D models may overcome the limitations of genomics-based drug response predictions. We describe a personalized functional profiling (PFP) approach in mCRC using patient-derived spheroids (PDS) and assess its utility in predicting drug responses. PDS were established from twelve patients’ tumors and validated by immunohisto(cyto)chemistry and genomic sequencing. Forty-two small molecule anti-cancer drugs, along with five standard-of-care (SOC) drugs in CRC were screened as single agents or in combination, and cell viability was measured using calcein staining or ATP-based assay. Ex vivo results were compared with clinical treatment responses. PDS closely mirrored histopathological and genetic features of the original tumors, supporting their use in PFP. Sensitivity to anti-EGFR drugs distinguished responsive from resistant patients and revealed candidates for anti-ERBB2 therapy, whereas anti-VEGFR screening failed to recapitulate clinical outcomes. SOC drug screening results correlated with clinical outcomes or tumor genetic features in a subset of PDS. This work underscores the predictive value of PFP, its complementarity with genomic sequencing, and the need for refinement to enhance its clinical applicability.
UR - https://www.scopus.com/pages/publications/105039300158
UR - https://pubmed.ncbi.nlm.nih.gov/41857173/
U2 - 10.1038/s41698-026-01356-7
DO - 10.1038/s41698-026-01356-7
M3 - Article
C2 - 41857173
AN - SCOPUS:105039300158
SN - 2397-768X
VL - 10
JO - npj Precision Oncology
JF - npj Precision Oncology
IS - 1
M1 - 181
ER -