Arends, Christopher Maximilian; Kopp, Klara; Hablesreiter, Raphael; Estrada, Natalia; Christen, Friederike; Moll, Ute Martha; Zeillinger, Robert; Schmitt, Wolfgang Daniel; Sehouli, Jalid; Kulbe, Hagen; Fleischmann, Maximilian; Ray-Coquard, Isabelle; Zeimet, Alain; Raspagliesi, Francesco; Zamagni, Claudio; Damm, Frederik et al:
Dynamics of clonal hematopoiesis under DNA-damaging treatment in patients with ovarian cancer
In: Leukemia : the journal of normal and malignant hemopoiese, Jg. 38 (2024), Heft 6, S. 1378 - 1389
2024Artikel/Aufsatz in ZeitschriftOA Hybrid
Medizinische Fakultät » Kliniken » Klinik für Innere Medizin II (Hämatologie und Internistische Onkologie, Palliativmedizin)
Titel in Englisch:
Dynamics of clonal hematopoiesis under DNA-damaging treatment in patients with ovarian cancer
Autor*in:
Arends, Christopher Maximilian
SCOPUS
57193137056
;
Kopp, Klara
SCOPUS
58991101900
;
Hablesreiter, Raphael
SCOPUS
57205691921
;
Estrada, Natalia
SCOPUS
58990547300
;
Christen, Friederike
SCOPUS
56604945600
;
Moll, Ute Martha
SCOPUS
7006085118
;
Zeillinger, Robert
SCOPUS
56234789700
;
Schmitt, Wolfgang Daniel
SCOPUS
57197314618
;
Sehouli, Jalid
SCOPUS
7003518921
;
Kulbe, Hagen
SCOPUS
8748453900
;
Fleischmann, MaximilianFSU
GND
1189105306
ORCID
0009-0000-2423-3237ORCID iD
SCOPUS
57191631733
Sonstiges
der Hochschule zugeordnet
;
Ray-Coquard, Isabelle
SCOPUS
7003673738
;
Zeimet, Alain
SCOPUS
7006038361
;
Raspagliesi, Francesco
SCOPUS
7003933742
;
Zamagni, Claudio
SCOPUS
6603283993
;
Vergote, Ignace
SCOPUS
7006066615
;
Lorusso, Domenica
SCOPUS
57192342135
;
Concin, Nicole
SCOPUS
6603208686
;
Bullinger, Lars
SCOPUS
6506340561
;
Braicu, Elena Ioana
SCOPUS
12808239100
;
Damm, Frederik
SCOPUS
35744598100
Sonstiges
korrespondierende*r Autor*in
Erscheinungsjahr:
2024
Open-Access-Publikationsweg:
OA Hybrid
Scopus ID
Sprache des Textes:
Englisch
Datenträgertyp:
Online-Ressource
Ressourcentyp:
Text
Lizenztyp:
CC BY 4.0
Access Rights:
Open Access
Peer Reviewed:
Ja
Teil der Statistik:
Ja

Abstract in Englisch:

Clonal hematopoiesis (CH) driven by mutations in the DNA damage response (DDR) pathway is frequent in patients with cancer and is associated with a higher risk of therapy-related myeloid neoplasms (t-MNs). Here, we analyzed 423 serial whole blood and plasma samples from 103 patients with relapsed high-grade ovarian cancer receiving carboplatin, poly(ADP-ribose) polymerase inhibitor (PARPi) and heat shock protein 90 inhibitor (HSP90i) treatment within the phase II EUDARIO trial using error-corrected sequencing of 72 genes. DDR-driven CH was detected in 35% of patients and was associated with longer duration of prior PARPi treatment. TP53- and PPM1D-mutated clones exhibited substantially higher clonal expansion rates than DNMT3A- or TET2-mutated clones during treatment. Expansion of DDR clones correlated with HSP90i exposure across the three study arms and was partially abrogated by the presence of germline mutations related to homologous recombination deficiency. Single-cell DNA sequencing of selected samples revealed clonal exclusivity of DDR mutations, and identified DDR-mutated clones as the origin of t-MN in two investigated cases. Together, these results provide unique insights into the architecture and the preferential selection of DDR-mutated hematopoietic clones under intense DNA-damaging treatment. Specifically, PARPi and HSP90i therapies pose an independent risk for the expansion of DDR-CH in a dose-dependent manner.