Targeting the interleukin-11 receptor α in metastatic prostate cancer: A first-in-man study

Renata Pasqualini1,2, Randall E Millikan1,2, Dawn R Christianson1,2

  • 1David H. Koch Center for Applied Research of Genitourinary Cancers, The University of Texas MD Anderson Cancer Center, Houston, Texas.

Cancer
|April 3, 2015
PubMed
Abstract

Insights

Researchers developed bone metastasis-targeting peptidomimetic-11 (BMTP-11) for targeting interleukin-11 receptor alpha (IL-11Rα) in cancer. Clinical trials showed BMTP-11 localized to tumors and induced apoptosis, establishing it as a targeted drug candidate.

Area of Science:

  • Oncology
  • Pharmacology
  • Vascular Biology

Background:

  • Tumor vasculature presents attractive targets for ligand-directed drug discovery.
  • Systematic mapping of human endothelial receptors (
  • vascular zip codes
  • ) within tumors has been performed using direct peptide library selection in cancer patients.
  • A ligand-binding motif to interleukin-11 receptor alpha (IL-11Rα) was previously identified in the human vasculature.

Purpose of the Study:

  • To develop a ligand-directed, peptidomimetic drug (BMTP-11) for IL-11Rα-based human tumor vascular targeting.
  • To evaluate the efficacy, toxicity, and pharmacokinetics of BMTP-11 in preclinical models and early-phase clinical trials.
  • To establish BMTP-11 as a targeted drug candidate for metastatic, castrate-resistant prostate cancer.

Main Methods:

  • Generation of BMTP-11, a peptidomimetic drug targeting IL-11Rα.
  • Preclinical evaluation in prostate cancer xenograft models, including drug localization, apoptosis induction, and pharmacokinetic/pharmacodynamic analyses.
  • Formal GLP toxicity studies in rodents and nonhuman primates.
  • A single-institution, open-label, first-in-man clinical trial (NCT00872157) in patients with metastatic, castrate-resistant prostate cancer.

Main Results:

  • BMTP-11 demonstrated preclinical promise and was advanced to clinical development.
  • Biopsy-verified localization of BMTP-11 to bone marrow tumors was confirmed in patients.
  • Drug-induced apoptosis was observed in all treated patients.
  • The maximum tolerated dose was identified as 20-30 mg/m(2) on a weekly schedule.
  • Dose-dependent, reversible nephrotoxicity was identified as the dose-limiting toxicity.

Conclusions:

  • Biologic endpoints confirm BMTP-11's potential as a targeted drug candidate for metastatic, castrate-resistant prostate cancer.
  • Functional tumor vascular ligand-receptor targeting systems can be identified through direct combinatorial selection of peptide libraries in cancer patients.

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