A multicenter phase 1 study of γ -secretase inhibitor RO4929097 in combination with capecitabine in refractory solid

Noelle K LoConte1, Albiruni R A Razak, Percy Ivy

  • 1University of Wisconsin Carbone Cancer Center, 600 Highland Ave, CSC K4/548, Madison, WI, 53792, USA, ns3@medicine.wisc.edu.

Investigational New Drugs
|October 17, 2014
PubMed
Abstract

Insights

This study investigated RO4929097 and capecitabine for advanced solid tumors. The combination showed clinical benefit in colon and cervical cancers, with a recommended Phase 2 dose established.

Area of Science:

  • Oncology
  • Pharmacology
  • Cancer Therapeutics

Background:

  • RO4929097 is an oral γ-secretase inhibitor targeting Notch signaling.
  • Notch inhibition is known to enhance cancer chemotherapy sensitivity.
  • This study evaluated RO4929097 combined with capecitabine in advanced solid tumors.

Purpose of the Study:

  • Determine the maximum tolerated dose (MTD) of RO4929097 and capecitabine.
  • Assess the toxicities associated with the combination therapy.
  • Evaluate the efficacy of RO4929097 and capecitabine in patients with advanced solid tumors.

Main Methods:

  • A Phase I, 3+3 dose-escalation study design was employed.
  • Patients received fixed-dose capecitabine (1,000 mg/m² BID) with escalating RO4929097 doses.
  • Treatment cycles were 21 days, with capecitabine for 14 days and RO4929097 intermittently.

Main Results:

  • Thirty patients were treated across six dose levels (20-150 mg); MTD was not reached.
  • Dose-limiting toxicities included hypophosphatemia, fatigue, and nausea/vomiting.
  • Three partial responses were observed: two in fluoropyrimidine-refractory colon cancer and one in cervical cancer. RO4929097 autoinduction was noted.

Conclusions:

  • The recommended Phase 2 dose is capecitabine 1,000 mg/m² (days 1-14) with RO4929097 20 mg (intermittently) every 21 days.
  • Clinical benefit was observed in cervical and colon cancers.
  • RO4929097 demonstrated autoinduction, and plasma concentrations exceeded those required for Notch inhibition.