TY - JOUR
T1 - Multi-layered molecular profiling informs the diagnosis and targeted therapy of desmoplastic small round cell tumor
AU - Renner, Marcus
AU - Oleś, Małgorzata
AU - Paramasivam, Nagarajan
AU - Heilig, Christoph E.
AU - Schneider, Annika
AU - Modugno, Caroline
AU - Herremans, Catherine
AU - Hüllein, Jennifer
AU - Hutter, Barbara
AU - Erkut, Cihan
AU - Mock, Andreas
AU - Krieghoff-Henning, Eva
AU - Jensen, Cecilia B.
AU - Sakhteman, Amirhossein
AU - The, Matthew
AU - Prinz, Tony
AU - Lajer, Panna
AU - Baude-Müller, Annika
AU - Beck, Katja
AU - Beuthien-Baumann, Bettina
AU - Apostolidis, Leonidas
AU - Bauer, Sebastian
AU - Boerries, Melanie
AU - Brandts, Christian H.
AU - Rieke, Damian T.
AU - Kindler, Thomas
AU - Klauschen, Frederick
AU - Schulze-Osthoff, Klaus
AU - Schlenk, Richard F.
AU - Berchem, Guy
AU - Allgäuer, Michael
AU - Mechtersheimer, Gunhild
AU - Stenzinger, Albrecht
AU - Lipka, Daniel B.
AU - Schlesner, Matthias
AU - Kuster, Bernhard
AU - Jahn, Arne
AU - Schröck, Evelin
AU - Heining, Christoph
AU - Teleanu, Maria Veronica
AU - Horak, Peter
AU - Kreutzfeldt, Simon
AU - Hübschmann, Daniel
AU - Hartmann, Wolfgang
AU - Glimm, Hanno
AU - Fröhling, Stefan
N1 - © 2026. The Author(s).
PY - 2026/4/9
Y1 - 2026/4/9
N2 - Desmoplastic small round cell tumor (DSRCT) is an ultra-rare sarcoma with limited treatment options. Here, we show that comprehensive molecular profiling informs diagnosis and individualized therapy in this disease. We report the results of whole-genome/exome, transcriptome, and DNA methylome analyses performed in 30 refractory DSRCT patients, complemented by (phospho)proteomic profiling in nine, within a nationwide precision oncology program. In eight patients (27%), DSRCT was diagnosed only after molecular profiling. Although DSRCTs have “quiet” genomes, 28 patients (93%) received 107 molecular-based management recommendations, including assessment of clinical trial eligibility in 17 (57%). Most recommendations are informed by overexpression of tyrosine kinases, SSTR3/5, and CLDN6, detected in 45%, 33%, and 20% of cases, respectively. Thirteen patients (46%) received recommended therapies, yielding disease control in eight (62%), including three long-lasting responses to pazopanib and trastuzumab deruxtecan, the latter administered based on ERBB2 overexpression in the absence of aberrant ERBB2 kinase activation. These findings demonstrate that multi-omics profiling provides clinically actionable insights for DSRCT management.
AB - Desmoplastic small round cell tumor (DSRCT) is an ultra-rare sarcoma with limited treatment options. Here, we show that comprehensive molecular profiling informs diagnosis and individualized therapy in this disease. We report the results of whole-genome/exome, transcriptome, and DNA methylome analyses performed in 30 refractory DSRCT patients, complemented by (phospho)proteomic profiling in nine, within a nationwide precision oncology program. In eight patients (27%), DSRCT was diagnosed only after molecular profiling. Although DSRCTs have “quiet” genomes, 28 patients (93%) received 107 molecular-based management recommendations, including assessment of clinical trial eligibility in 17 (57%). Most recommendations are informed by overexpression of tyrosine kinases, SSTR3/5, and CLDN6, detected in 45%, 33%, and 20% of cases, respectively. Thirteen patients (46%) received recommended therapies, yielding disease control in eight (62%), including three long-lasting responses to pazopanib and trastuzumab deruxtecan, the latter administered based on ERBB2 overexpression in the absence of aberrant ERBB2 kinase activation. These findings demonstrate that multi-omics profiling provides clinically actionable insights for DSRCT management.
KW - Humans
KW - Desmoplastic Small Round Cell Tumor/genetics
KW - Female
KW - Male
KW - Adult
KW - Middle Aged
KW - Young Adult
KW - Adolescent
KW - Pyrimidines/therapeutic use
KW - Molecular Targeted Therapy
KW - DNA Methylation
KW - Proteomics/methods
KW - Gene Expression Profiling
KW - Sulfonamides/therapeutic use
KW - Transcriptome
KW - Trastuzumab/therapeutic use
KW - Receptors, Somatostatin/genetics
KW - Erb-b2 Receptor Tyrosine Kinases/metabolism
KW - Indazoles
UR - https://www.scopus.com/pages/publications/105035331164
U2 - 10.1038/s41467-026-71636-0
DO - 10.1038/s41467-026-71636-0
M3 - Article
C2 - 41957002
AN - SCOPUS:105035331164
SN - 2041-1723
VL - 17
JO - Nature Communications
JF - Nature Communications
IS - 1
M1 - 3397
ER -