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Polymalic Acid-based Nano Biopolymers for Targeting of Multiple Tumor Markers: An Opportunity for Personalized Medicine?
Published on: June 13, 2014
Peptide-Targeted High-Density Lipoprotein Nanoparticles for Combinatorial Treatment against Metastatic Breast Cancer
Chuli Jiang1, Xingyue Wang2, Biyun Teng1
1Department of Vascular Surgery, The First Affiliated Hospital of Chongqing Medical University, Chongqing 400016, China.
Abstract:
The sonic hedgehog (SHH) signaling pathway exhibits aberrant activation in triple-negative breast cancer (TNBC), wherein it regulates several malignant phenotypes related to tumor metastasis. GANT61, an inhibitor of the SHH signaling pathway, may offer promise when administered in combination with conventional chemotherapy to treat metastatic TNBC. However, poor bioavailability and substantial off-target toxicity limit its clinical application. To address these limitations, we designed a peptide-functionalized dual-targeting delivery system encapsulating paclitaxel and GANT61 in tLyP-1 peptide-modified reconstituted high-density lipoprotein nanoparticle (tLyP-1-rHDL-PTX/GANT61 NP) for metastatic TNBC treatment. The apolipoprotein A-1 and tLyP-1 peptide modified on the surface of nanoparticles enable the delivery system to target tumor cells by binding to the overexpressed scavenger receptor B type I and neuropilin-1 receptor. Moreover, the tLyP-1 peptide also enables the deep tumor penetration of nanoparticles further facilitating paclitaxel and GANT61 delivery. Increased cellular uptake of the nanoparticles was observed in both MDA-MB-231, BT-549 tumor cells, and their 3D tumor spheroids. A series of in vitro experiments reveal that GANT61 was able to suppress key metastasis-related tumor cell activities including angiogenesis, migration, invasion, and stemness. Owing to more effective drug administration, the metastasis suppression efficiency of GANT61 was significantly enhanced by the dual-targeting tLyP-1-rHDL delivery system. Meanwhile, the codelivery of paclitaxel and GANT61 by dual-targeting tLyP-1-rHDL nanoparticles demonstrated superior efficiency of disrupting proliferation and inducing apoptosis in tumor cells compared with drug solutions. In a spontaneous metastasis breast cancer NCG mice model, the tLyP-1-rHDL-PTX/GANT61 nanoparticles exhibited highly tumor-specific distribution and result in significant inhibition of the primary tumor growth and dramatic reduction of lung metastasis without obvious side effects. The present work suggests that a combination of the SHH signaling pathway suppression and chemotherapy assisted by peptide-functionalized targeting tLyP-1-rHDL nanoparticles may provide a promising strategy for metastatic TNBC treatment.
Insights
A novel nanoparticle system effectively delivers GANT61 and paclitaxel to treat metastatic triple-negative breast cancer (TNBC). This dual-targeting approach enhances drug delivery, suppresses metastasis, and reduces tumor growth with minimal side effects.
Area of Science:
- Biomedical Engineering
- Nanotechnology
- Oncology
Background:
- Aberrant sonic hedgehog (SHH) signaling drives metastasis in triple-negative breast cancer (TNBC).
- GANT61, an SHH inhibitor, shows therapeutic potential but suffers from poor bioavailability and toxicity.
- Targeted delivery systems are needed to improve GANT61 efficacy and safety for TNBC treatment.
Purpose of the Study:
- To develop a peptide-functionalized dual-targeting nanoparticle system for co-delivering GANT61 and paclitaxel to metastatic TNBC.
- To evaluate the efficacy of this system in suppressing tumor metastasis and growth both in vitro and in vivo.
Main Methods:
- Designed tLyP-1 peptide-modified reconstituted high-density lipoprotein nanoparticles (tLyP-1-rHDL-PTX/GANT61 NP) for co-delivery.
- Utilized dual targeting via apolipoprotein A-1 and tLyP-1 peptides binding to scavenger receptor B type I and neuropilin-1.
- Assessed nanoparticle uptake, in vitro anti-metastatic effects (angiogenesis, migration, invasion, stemness), and in vivo tumor growth and metastasis in a mouse model.
Main Results:
- Nanoparticles showed increased uptake in TNBC cells and 3D spheroids.
- GANT61 delivered via nanoparticles significantly enhanced suppression of metastasis-related activities.
- Co-delivery of paclitaxel and GANT61 via nanoparticles demonstrated superior anti-proliferative and pro-apoptotic effects.
- In vivo studies showed tumor-specific distribution, significant primary tumor growth inhibition, and reduced lung metastasis with no obvious side effects.
Conclusions:
- Peptide-functionalized dual-targeting nanoparticles offer a promising strategy for enhancing GANT61 and paclitaxel delivery in metastatic TNBC.
- This approach effectively suppresses tumor metastasis and growth while mitigating off-target toxicity.
- Combination therapy with SHH inhibition and chemotherapy via targeted nanoparticles represents a potential breakthrough for TNBC treatment.
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