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.
Abstract:
Nanomedicines that preferentially deploy cytotoxic agents to tumors and molecular targeted therapeutics that inhibit specific aberrant oncogenic drivers are emerging as the new paradigm for the management of cancer. While combination therapies are a mainstay of cancer chemotherapy, few studies have addressed the combination of nanomedicines and molecular targeted therapeutics. Furthermore, limited knowledge exists on the impact of sequencing of such therapeutics and nanomedicines on the antitumor outcome. Here, we engineered a supramolecular cis-platinum nanoparticle, which induced apoptosis in breast cancer cells but also elicited prosurvival signaling via an EGF receptor/phosphoinositide 3-kinase (PI3K) pathway. A combination of mathematical modeling and in vitro and in vivo validation using a pharmacologic inhibitor of PI3K, PI828, demonstrate that administration of PI828 following treatment with the supramolecular cis-platinum nanoparticle results in enhanced antitumor efficacy in breast cancer as compared with when the sequence is reversed or when the two treatments are administered simultaneously. This study addresses, for the first time, the impact of drug sequencing in the case of a combination of a nanomedicine and a targeted therapeutic. Furthermore, our results indicate that a rational combination of cis-platinum nanoparticles and a PI3K-targeted therapeutic can emerge as a potential therapy for breast cancer.
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.
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