First-in-Human Phase I Study of the Activin A Inhibitor, STM 434, in Patients with Granulosa Cell Ovarian Cancer and

Jessica J Tao1, Nicholas A Cangemi1, Vicky Makker2

  • 1Early Drug Development Service, Department of Medicine, Memorial Sloan Kettering Cancer Center, New York, New York.

Abstract

Insights

STM 434, a novel activin A inhibitor, showed promising metabolic benefits like increased lean body mass in advanced cancer patients. Further research is needed for activin A inhibitors that avoid BMP9 inhibition.

Area of Science:

  • Oncology
  • Pharmacology
  • Metabolism

Background:

  • Activin A, a TGFβ family protein, influences growth, differentiation, and cancer cachexia.
  • STM 434 is a soluble receptor ligand trap designed to target activin A.
  • Understanding activin A's role is crucial for developing novel cancer therapies.

Purpose of the Study:

  • To evaluate the safety, antitumor activity, and metabolic effects of STM 434.
  • To determine the maximum tolerated dose (MTD) in a phase I clinical trial.
  • To explore STM 434's impact on metabolic parameters in patients with advanced solid tumors.

Main Methods:

  • A multicenter, phase I, 3+3 dose-escalation trial (NCT02262455) enrolled patients with advanced solid tumors.
  • Dose cohorts ranged from 0.25 mg/kg to 8 mg/kg, with safety and pharmacokinetics assessed.
  • Metabolic parameters, including lean body mass and 6-minute walk test, were serially measured.

Main Results:

  • Thirty-two patients were treated; common adverse events included fatigue and mucocutaneous bleeding, linked to BMP9 inhibition.
  • STM 434 decreased follicle-stimulating hormone levels and increased lean body mass and 6-minute walk test distance.
  • No objective antitumor responses were observed, but 80% stable disease rate in granulosa cell ovarian cancer patients.

Conclusions:

  • STM 434 demonstrated dose-related metabolic effects, suggesting potential for cancer cachexia treatment.
  • Further development of activin A inhibitors should aim to mitigate BMP9 blockade.
  • The study supports further exploration of targeted therapies modulating the TGFβ pathway.

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