Sequential application of a cytotoxic nanoparticle and a PI3K inhibitor enhances antitumor efficacy

Ambarish Pandey1, Ashish Kulkarni1, Bhaskar Roy1

  • 1Laboratory for Nanomedicine, Division of Biomedical Engineering, Department of Medicine, Brigham and Women's Hospital. Department of Medicine, Harvard Medical School. Boston, MA, USA.

Cancer Research
|October 15, 2013
PubMed

Insights

Sequencing nanomedicine and targeted therapy matters for breast cancer treatment. Administering a PI3K inhibitor after cis-platinum nanoparticles enhances anti-tumor effects, offering a new therapeutic strategy.

Area of Science:

  • Oncology
  • Nanomedicine
  • Pharmacology

Background:

  • Nanomedicines and molecular targeted therapeutics are key cancer treatment strategies.
  • Few studies explore combining nanomedicines with targeted therapeutics.
  • The impact of sequencing these treatments on outcomes is largely unknown.

Purpose of the Study:

  • To investigate the impact of drug sequencing on the efficacy of combining nanomedicine with targeted therapy in breast cancer.
  • To evaluate a supramolecular cis-platinum nanoparticle combined with a PI3K inhibitor (PI828).

Main Methods:

  • Engineered a supramolecular cis-platinum nanoparticle.
  • Utilized mathematical modeling for treatment sequencing.
  • Conducted in vitro and in vivo validation of treatment sequences.

Main Results:

  • The cis-platinum nanoparticle induced apoptosis but activated prosurvival signaling via the EGF receptor/PI3K pathway.
  • Administering PI828 after the cis-platinum nanoparticle significantly enhanced anti-tumor efficacy.
  • This sequential treatment was superior to reversed sequencing or simultaneous administration.

Conclusions:

  • Drug sequencing is critical when combining nanomedicines and targeted therapeutics.
  • A rational combination of cis-platinum nanoparticles and PI3K inhibitors shows potential for breast cancer therapy.