Phase I study of sequence-selective minor groove DNA binding agent SJG-136 in patients with advanced solid tumors

Daniel Hochhauser1, Timothy Meyer, Victoria J Spanswick

  • 1Drug Development Office, Cancer Research UK, Cancer Research UK Drug DNA Interactions Research Group, and University College London Cancer Institute, London, United Kingdom. d.hochhauser@ucl.ac.uk

Abstract

Insights

The maximum tolerated dose of SJG-136 was 45 microg/m(2), with vascular leak syndrome and hepatotoxicity observed. DNA damage was detected in lymphocytes, prompting further research into toxicity and alternative dosing strategies for this DNA binding agent.

Area of Science:

  • Oncology
  • Pharmacology
  • Molecular Biology

Background:

  • SJG-136 is a sequence-selective minor groove DNA binding agent.
  • Advanced solid tumors represent a significant challenge in cancer treatment.

Purpose of the Study:

  • To determine the maximum tolerated dose (MTD) of SJG-136 in patients with advanced solid tumors.
  • To assess the antitumor activity, pharmacokinetics, and pharmacodynamics of SJG-136.

Main Methods:

  • Phase I dose-escalation study involving 16 patients.
  • Sequential assignment to escalating doses of SJG-136 (15-240 microg/m(2)) via i.v. infusion every 21 days.
  • Dose reduction to 45 microg/m(2) due to toxicity.

Main Results:

  • The MTD of SJG-136 was established at 45 microg/m(2).
  • Dose-limiting toxicities included vascular leak syndrome (VLS) and hepatotoxicity, with delayed onset and increased severity.
  • Disease stabilization was observed in 10 patients (>6 weeks), with 2 patients maintaining it for >12 weeks.
  • Evidence of DNA damage in lymphocytes and tumor cells was confirmed via gamma-H2AX assay.

Conclusions:

  • SJG-136 administration at short injection intervals (every 21 days) is associated with dose-limiting VLS and hepatotoxicity.
  • DNA damage was observed in circulating lymphocytes across all dose levels.
  • The underlying causes of toxicity require further preclinical investigation, and alternative dosing strategies are under evaluation.

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