Dominant effect of antiangiogenesis in combination therapy involving cyclophosphamide and axitinib

Jie Ma1, David J Waxman

  • 1Division of Cell and Molecular Biology, Department of Biology, Boston University, Boston, Massachusetts 02215, USA.

Abstract

Insights

Axitinib, an antiangiogenic drug, enhances chemotherapy by starving tumors, even with reduced drug uptake. This combination therapy shows improved antitumor activity in preclinical models.

Area of Science:

  • Oncology
  • Pharmacology
  • Cancer Biology

Background:

  • Antiangiogenic therapy inhibits tumor growth by reducing tumor vascularization.
  • This reduction in blood supply can impede the delivery of chemotherapy drugs.
  • Understanding the interplay between antiangiogenic agents and chemotherapy is crucial for optimizing cancer treatment.

Purpose of the Study:

  • To investigate the effects of axitinib, a VEGFR tyrosine kinase inhibitor, on tumor vascular patency and chemotherapeutic uptake.
  • To evaluate the impact of axitinib on the antitumor activity of combination therapy with cyclophosphamide.

Main Methods:

  • PC-3 prostate cancer xenografts were used to assess axitinib's effects on tumor vascular morphology, perfusion, hypoxia, and 4-hydroxycyclophosphamide uptake.
  • Sequential and simultaneous administration schedules of axitinib and cyclophosphamide were tested in PC-3 and 9L gliosarcoma models.

Main Results:

  • Axitinib monotherapy led to tumor growth stasis and increased apoptosis in PC-3 xenografts.
  • Axitinib significantly reduced tumor vascular patency, leading to decreased perfusion and increased tumor hypoxia.
  • Optimized sequential axitinib-cyclophosphamide therapy enhanced antitumor activity in both PC-3 and 9L models, despite reduced uptake of 4-hydroxycyclophosphamide.

Conclusions:

  • Enhanced anticancer activity in axitinib-cyclophosphamide combination therapy can result from antiangiogenesis-induced tumor cell starvation, compensating for reduced drug exposure.
  • This effect is particularly pronounced in models like PC-3 xenografts where blood flow deprivation is a dominant factor in the therapeutic response.

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