Phase 1 study of rogocekib in patients with relapsed or refractory hematologic malignancies

Hisayuki Yokoyama1, Noriko Fukuhara2, Koji Ando3

  • 1Department of Hematology and Cell Therapy, Yamagata University Hospital, Yamagata, Japan.

Blood Advances
|October 7, 2025
PubMed

Insights

Rogocekib, a novel RNA splicing inhibitor, shows promise in treating relapsed acute myeloid leukemia and myelodysplastic syndrome. Early phase 1 trials indicate manageable safety and preliminary efficacy, warranting further investigation.

Area of Science:

  • Oncology
  • Pharmacology
  • Molecular Biology

Background:

  • Rogocekib is a first-in-class, orally available inhibitor of CDC2-like kinase, targeting RNA splicing.
  • Preclinical studies showed rogocekib's antiproliferative effects in hematologic malignancies.
  • A Phase 1 study evaluated rogocekib in relapsed/refractory acute myeloid leukemia (AML) and higher-risk myelodysplastic syndrome (MDS).

Purpose of the Study:

  • To assess the safety and preliminary efficacy of rogocekib in patients with relapsed or refractory AML and higher-risk MDS.
  • To determine dose-limiting toxicities and pharmacokinetic/pharmacodynamic profiles of rogocekib.

Main Methods:

  • A Phase 1, 3+3 dose-escalation study using rogocekib capsules at 70 mg or 105 mg twice weekly.
  • Safety was assessed via adverse events; efficacy was evaluated by complete remission (CR) rates.
  • Pharmacokinetic (PK) and pharmacodynamic (PD) analyses were performed.

Main Results:

  • One dose-limiting toxicity (Grade 4 pneumonia) occurred at 105 mg twice weekly.
  • In AML patients (n=12), CR was 25.0% and CR with incomplete hematologic recovery was 8.3%.
  • In MDS patients (n=2), CR was 50.0%. Higher rogocekib exposure correlated with increased exon skipping.

Conclusions:

  • Rogocekib demonstrated a manageable safety profile and preliminary efficacy in patients with relapsed/refractory AML and higher-risk MDS.
  • Further investigation in an ongoing Phase 1/2 study is warranted.
  • Rogocekib's mechanism of action involves modulating RNA splicing, as evidenced by exon skipping in peripheral blood cells.

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