Targeted Nanoparticle for Co-delivery of HER2 siRNA and a Taxane to Mirror the Standard Treatment of HER2+ Breast Cancer: Efficacy in Breast Tumor and Brain Metastasis.
Authors: Ngamcherdtrakul W, Bejan DS, Cruz-Muñoz W, Reda M, Zaidan HY, Siriwon N, Marshall S, Wang R, Nelson MA, Rehwaldt JPC, Gray JW, Hynynen K, Yantasee W
The first-line treatment of advanced and metastatic human epidermal growth factor receptor type 2 (HER2+) breast cancer requires two HER2-targeting antibodies (trastuzumab and pertuzumab) and a taxane (docetaxel or paclitaxel). The three-drug regimen costs over $320,000 per treatment course, requires a 4 h infusion time, and has many adverse side effects, while achieving only 18 months of progression-free survival. To replace this regimen, reduce infusion time, and enhance efficacy, a single therapeutic is developed based on trastuzumab-conjugated nanoparticles for co-delivering docetaxel and siRNA against HER2 (siHER2). The optimal nanoconstruct has a hydrodynamic size of 100 nm and specifically treats HER2+ breast cancer cells over organ-derived normal cells. In a drug-resistant orthotopic HER2+ HCC1954 tumor mouse model, the nanoconstruct inhibits tumor growth more effectively than the docetaxel and trastuzumab combination. When coupled with microbubble-assisted focused ultrasound that transiently disrupts the blood brain barrier, the nanoconstruct inhibits the growth of trastuzumab-resistant HER2+ BT474 tumors residing in the brains of mice. The nanoconstruct has a favorable safety profile in cells and in mice. Combination therapies have become the cornerstone of cancer treatment and this versatile nanoparticle platform can co-deliver multiple therapeutic types to ensure that they reach the target cells at the same time to realize their synergy.
Introduction
Purpose
Drug delivery with BBB opening
Study Objective
Develop and evaluate a trastuzumab-targeted nanoparticle co-delivering docetaxel and siRNA against HER2 to replace the current three-drug regimen and improve efficacy and safety against HER2+ (including drug-resistant and brain) breast cancer.
Animal model / Human subject
Mouse (Mus musculus); strain: not specified; age: not specified; sex: not specified
Disease model
HER2-positive breast cancer (including trastuzumab-resistant tumors and brain metastases)
Cargo name and characteristics
Trastuzumab-conjugated nanoparticles (nanoparticle platform, ~100 nm hydrodynamic size) co-delivering docetaxel (small-molecule taxane chemotherapeutic) and siRNA targeting HER2 (siHER2, nucleic acid therapeutic)
Outcomes and Safety
Summary of Outcomes
A trastuzumab‑conjugated ~100 nm nanoparticle co-delivering docetaxel and siHER2 selectively targets HER2+ cells and inhibits tumor growth more effectively than docetaxel+trastuzumab in a drug‑resistant orthotopic HCC1954 mouse model; when combined with microbubble‑assisted focused ultrasound to transiently open the blood–brain barrier, it also suppressed growth of trastuzumab‑resistant BT474 brain tumors and showed a favorable safety profile in cells and mice.
Safety-related matter
The standard three-drug regimen (trastuzumab, pertuzumab, and a taxane) is reported to have many adverse side effects; by contrast, the trastuzumab-conjugated nanoparticle demonstrated a favorable safety profile in cells and in mice.
Brain Region
Ultrasound Parameters
Focal Characteristics
focal depth: None; focal length: None; aperture size: None
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