ASGPR-targeted micelles co-delivering lenvatinib and COP1 siRNA for hepatocellular carcinoma via dual-targeting
Kailibinuer Aobuliaisan1, Qian Li1, Chengcheng Deng1
1Department of Pharmacy, General Hospital of Xinjiang Military Command, Urumqi, Xinjiang, China.
Abstract:
Hepatocellular carcinoma (HCC) therapy faces significant challenges including poor drug bioavailability and limited gene delivery efficiency. This study developed N-acetylgalactosamine (GalNAc)-functionalized polymeric micelles co-loaded with Lenvatinib (LFT) and small interfering RNA (siRNA) targeting E3 ligase COP1 (RFWD2) (GalNAc@LFT/siRNA-MMs) for the co-delivering of LFT and COP1 siRNA. This combinatory strategy aims to enhance HCC treatment by simultaneously enabling chemotherapy and gene silencing. The nanoplatform was constructed using low-molecular-weight polyethyleneimine (PEI) cross-linked with Pluronic copolymers and surface-modified with GalNAc for asialoglycoprotein receptor (ASGPR)-mediated targeting. Physicochemical characterization revealed spherical nanoparticles (∼187 nm; PDI ∼0.41) with sustained drug release properties. In vitro studies demonstrated preferential uptake in ASGPR-positive HCC cells with enhanced cytotoxicity through apoptosis induction and S-phase cell cycle arrest. COP1 silencing was confirmed at both mRNA and protein levels, sensitizing HCC cells to LFT treatment. In an orthotopic HCC model (n = 5 mice/group), GalNAc@LFT/siRNA-MMs exhibited superior tumor targeting and remarkable antitumor efficacy (73% tumor reduction versus 31% with free LFT). Immunohistochemical (IHC) analysis revealed comprehensive tumor suppression through reduced proliferation (Ki-67), inhibited angiogenesis (CD31), and enhanced apoptosis (Caspase-3), while maintaining excellent biocompatibility. This rationally designed co-delivery system overcomes key limitations of conventional HCC therapy by integrating targeted delivery with combined therapeutic actions, offering a promising approach for improving treatment outcomes in this challenging malignancy.
Insights
This study developed targeted nanoparticles combining Lenvatinib (LFT) chemotherapy and COP1 siRNA gene silencing to improve hepatocellular carcinoma (HCC) treatment, showing significant tumor reduction and enhanced efficacy.
Area of Science:
- Biomedical Engineering
- Nanotechnology
- Oncology
Background:
- Hepatocellular carcinoma (HCC) therapy is challenged by poor drug bioavailability and inefficient gene delivery.
- Current treatments often lack targeted delivery and combined therapeutic strategies.
Purpose of the Study:
- To develop N-acetylgalactosamine (GalNAc)-functionalized polymeric micelles for co-delivery of Lenvatinib (LFT) and COP1 siRNA (GalNAc@LFT/siRNA-MMs).
- To enhance HCC treatment through combined chemotherapy and gene silencing via targeted delivery.
Main Methods:
- Constructed nanoparticles using polyethyleneimine (PEI) and Pluronic copolymers, surface-modified with GalNAc for ASGPR targeting.
- Characterized nanoparticles for size, PDI, and drug release.
- Evaluated in vitro efficacy in HCC cells and in vivo efficacy in an orthotopic HCC mouse model.
Main Results:
- Nanoparticles (∼187 nm) showed sustained release and preferential uptake in ASGPR-positive HCC cells.
- In vitro studies demonstrated enhanced cytotoxicity, apoptosis, cell cycle arrest, and COP1 silencing.
- In vivo studies showed superior tumor targeting, 73% tumor reduction, inhibited proliferation and angiogenesis, and enhanced apoptosis.
Conclusions:
- The GalNAc@LFT/siRNA-MMs system effectively co-delivers LFT and COP1 siRNA for synergistic HCC treatment.
- This targeted nanoplatform overcomes limitations of conventional HCC therapy, offering a promising strategy for improved patient outcomes.
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