Validation of the Clinical Use of GIScar, an Academic-developed Genomic Instability Score Predicting Sensitivity to Maintenance Olaparib for Ovarian Cancer

Raphaël Leman(Inserm), Etienne Müller(Inserm), Angélina Legros(Centre François Baclesse), Nicolas Goardon(Inserm), Imène Chentli(Centre François Baclesse), Alexandre Atkinson(Inserm), Aurore Tranchant(Centre François Baclesse), Laurent Castéra(Inserm), Sophie Krieger(Inserm), Agathe Ricou(Inserm), Flavie Boulouard(Inserm), Florence Joly(Centre François Baclesse), Romain Boucly(Centre Oscar Lambret), Aurélie Dumont(Centre Oscar Lambret), Noémie Basset(Université Sorbonne Nouvelle), Florence Coulet(Université Sorbonne Nouvelle), Louise-Marie Chevalier(Centre National de la Recherche Scientifique), Étienne Rouleau(Institut Gustave Roussy), Katharina Leitner(Statistics Austria), Antonio González-Martı́n(Universidad de Cádiz), Piera Gargiulo(Bundeskriminalamt), Hans‐Joachim Lück(Bundeskriminalamt), Catherine Genestie(Institut Gustave Roussy), the PAOLA-1 investigators, Gerhard Bogner, Christian Marth, Edgar Petru, Alexander Reinthaller, Christian Schauer, P. Sevelda, Lionel D’Hondt, Ignace Vergote, Peter Vuylsteke, Sakari Hietanen, Gabriel Lindahl, Johanna Mäenpää, Trine Jakobi Nøttrup(Inserm), Ulla Puistola(Inserm), Sophie Abadie‐Lacourtoisie, Jérôme Alexandre, Émilie Boissier, Hugues Bourgeois, Annick Chevalier-Place, Pierre Combe, Cristina Costan(Inserm), Jérôme Dauba, Laure De Cock, Christophe Desauw, Raymond Despax, Nadine Dohollou, Coraline Dubot(Inserm), Michel Fabbro, Laure Favier, Anne Floquet, Philippe Follana, Claire Garnier Tixidre, Georges Garnier, Laurence Gladieff, Julien Grenier, Cécile Guillemet(Centre François Baclesse), Anne‐Claire Hardy‐Bessard, Florence Joly(Centre François Baclesse), Elsa Kalbacher, Marie‐Christine Kaminsky, Jean‐Emmanuel Kurtz, Rémy Largillier, Claudia Lefeuvre‐Plesse, Anne Lesoin, Charles-Briac Levaché, Tifenn L’Haridon, Alain Lortholary, Jean‐Pierre Lotz, Jérôme Meunier, M Mousseau, Marie‐Ange Mouret‐Reynier, Patricia Pautier, Thierry Petit(Eau de Paris (France)), Magali Provansal, Éric Pujade-Lauraine(Eau de Paris (France)), Nadia Raban, Isabelle Ray‐Coquard(Arcagy Gineco), Manuel Rodrigues, Frédèric Selle, Robert Sverdlin, Youssef Tazi, Benoît You, Bahriye Aktas, Dirk Bauerschlag, Thomas Beck, Antje Belau, Holger Bronger, Stefan Buchholz, Paul Buderath, Alexander Burges, Ulrich Canzler, Nikolaus de Gregorio, Dominik Denschlag, Max Dieterich, Michael Eichbaum, Ayşe Balat, Günter Emons, Peter A. Fasching, Gabriele Feisel-Schwickardi, Matthias Frank, Michael Friedrich, Eva‐Maria Grischke, Martina Gropp‐Meier, Lars Hanker, Carla Hannig, Philipp Harter(Clinica Universidad de Navarra), Annette Hasenburg, Martin Hellriegel(Clinica Universidad de Navarra), Uwe Herwig(Arbeitsgemeinschaft Gynäkologische Onkologie Studiengruppe), Martin Heubner, Joachim Hulde, Christian Jackisch(Inserm), Matthias Kögel, Peter Krieger, Thorsten Kühn(Arbeitsgemeinschaft Gynäkologische Onkologie Studiengruppe), Clemens Liebrich, Hans‐Joachim Lück(Bundeskriminalamt), Peter Mallmann, Frederik Marmé, Werner Meier, Voker Möbus, Omar Farag Mohamed, Carolin Nestle-Krämling, Tanja Neunhöffer, Gülten Oskay-Özcelik, Tjoung‐Won Park‐Simon, Beate Rautenberg, Daniel Rein, Wencke Ruhwedel, Ingo B. Runnebaum, Jacqueline Sagasser, Barbara Schmalfeldt, Andreas Schneeweiß, Andreas Schnelzer, Heinz Scholz, Jalid Sehouli, Antje Sperfeld, Annette Steckkönig, Hans‐Georg Strauß, Oliver Tomé, Jörn Treustedt, Hermann Voß, A. Wischnik(Arbeitsgemeinschaft Gynäkologische Onkologie Studiengruppe), Ralf Witteler, Achim Wöckel, Hans-Heinrich Woeltjen, Andreas Zorr, Alessandra Bologna, Nicoletta Colombo, Germana Tognon, Saverio Cinieri, Domenica Lorusso, Anna Maria Mosconi, Sandro Pignata, Antonella Savarese, Giovanni Scambia, Roberto Sorio, Claudio Zamagni, Keiichi Fujiwara, Hiroyuki Fujiwara, Hiroaki Kobayashi, Takashi Matsumoto, Shoji Nagao, Toyomi Satoh, Kan Yonemori, Hiroyuki Yoshida, Raquel Bratos, Cristina Caballero(Clinica Universidad de Navarra), Yolanda Garica, Antonio González-Martı́n(Universidad de Cádiz), Eva María Guerra Alia, Susana Hernando, Ana Herrero, Núria Laínez(Clinica Universidad de Navarra), Luís Manso, Cristina Martín, Eleonor Murata(Eau de Paris (France)), Eugenia Ortega, Isabel Palacio, Andrés Poveda, Ignacio Romero(Eau de Paris (France)), María Jesús Rubio(Eau de Paris (France)), Isabelle Ray‐Coquard(Inserm), Éric Pujade-Lauraine(Eau de Paris (France)), Dominique Vaur(Inserm)
Clinical Cancer Research
September 26, 2023
Cited by 25Open Access
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Abstract

PURPOSE: The optimal application of maintenance PARP inhibitor therapy for ovarian cancer requires accessible, robust, and rapid testing of homologous recombination deficiency (HRD). However, in many countries, access to HRD testing is problematic and the failure rate is high. We developed an academic HRD test to support treatment decision-making. EXPERIMENTAL DESIGN: Genomic Instability Scar (GIScar) was developed through targeted sequencing of a 127-gene panel to determine HRD status. GIScar was trained from a noninterventional study with 250 prospectively collected ovarian tumor samples. GIScar was validated on 469 DNA tumor samples from the PAOLA-1 trial evaluating maintenance olaparib for newly diagnosed ovarian cancer, and its predictive value was compared with Myriad Genetics MyChoice (MGMC). RESULTS: GIScar showed significant correlation with MGMC HRD classification (kappa statistics: 0.780). From PAOLA-1 samples, more HRD-positive tumors were identified by GIScar (258) than MGMC (242), with a lower proportion of inconclusive results (1% vs. 9%, respectively). The HRs for progression-free survival (PFS) with olaparib versus placebo were 0.45 [95% confidence interval (CI), 0.33-0.62] in GIScar-identified HRD-positive BRCA-mutated tumors, 0.50 (95% CI, 0.31-0.80) in HRD-positive BRCA-wild-type tumors, and 1.02 (95% CI, 0.74-1.40) in HRD-negative tumors. Tumors identified as HRD positive by GIScar but HRD negative by MGMC had better PFS with olaparib (HR, 0.23; 95% CI, 0.07-0.72). CONCLUSIONS: GIScar is a valuable diagnostic tool, reliably detecting HRD and predicting sensitivity to olaparib for ovarian cancer. GIScar showed high analytic concordance with MGMC test and fewer inconclusive results. GIScar is easily implemented into diagnostic laboratories with a rapid turnaround.


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