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Updated: Apr 3, 2026

Polymalic Acid-based Nano Biopolymers for Targeting of Multiple Tumor Markers: An Opportunity for Personalized Medicine?
Published on: June 13, 2014
Aptamer-Mediated Dual-Loaded Liposomal Nanosystem for Synergistic Therapy in Hepatocellular Carcinoma via
Aiqiu Wei1, Ziyi Zhong1, Yiming Zhang1
1School of Pharmacy, Hunan University of Chinese Medicine, Changsha, 410208, People's Republic of China.
Purpose:
Cantharidin (CTD) is a natural anticancer compound whose clinical application is limited by poor water solubility, low bioavailability, and significant toxicity. To develop a more effective and safer therapeutic strategy, we proposed a synergistic combination therapy by integrating CTD with staurosporine (STS), a protein kinase inhibitor that shares complementary mechanisms of action targeting the mTOR/HIF-1α/VEGF pathway. We further developed an aptamer-guided liposomal nanosystem for the co-delivery of CTD and STS (Apt/CTD-STS/NL), aiming to enhance tumor targeting, improve bioavailability, and reduce the systemic toxicity of both drugs.
Methods:
We constructed aptamer-guided co-delivery nanoliposomes encapsulating CTD and STS (Apt/CTD-STS/NL). The targeted delivery efficiency, synergistic antitumor efficacy, and biocompatibility of this nanosystem were comprehensively evaluated through both in vitro and in vivo experiments.
Results:
Apt/CTD-STS/NL achieved approximately 1.3-fold higher cellular uptake in HCC cells compared to non-targeted liposomes in vitro. In vivo, it demonstrated superior tumor accumulation. In a murine HCC model, Apt/CTD-STS/NL exhibited the strongest tumor growth inhibition (79.50 ± 4.39%), significantly outperforming free CTD, STS, or single-drug loaded liposomes. Mechanistic studies revealed that the core synergy between CTD and STS enabled simultaneous inhibition of the key oncoproteins mTOR, HIF-1α, and VEGF, thereby disrupting tumor proliferation, survival, and angiogenesis.
Conclusion:
This study demonstrates a novel targeted nanoplatform that combines an active ingredient from traditional Chinese medicine with a modern kinase inhibitor. This strategy achieves a synergistic anti-HCC effect through multi-pathway inhibition and offers a promising approach for cancer therapy with enhanced efficacy and reduced toxicity.
Insights
This study developed an aptamer-guided liposomal nanosystem for co-delivering cantharidin and staurosporine. This novel approach enhances targeted cancer therapy, showing significant tumor growth inhibition and reduced toxicity for hepatocellular carcinoma (HCC).
Area of Science:
- Nanomedicine
- Pharmacology
- Oncology
Background:
- Cantharidin (CTD) is a natural anticancer compound with limitations including poor solubility, low bioavailability, and toxicity.
- Staurosporine (STS), a protein kinase inhibitor, targets the mTOR/HIF-1α/VEGF pathway, offering complementary mechanisms to CTD.
- Synergistic combination therapy and targeted drug delivery are crucial for improving cancer treatment efficacy and safety.
Purpose of the Study:
- To develop a synergistic combination therapy for hepatocellular carcinoma (HCC) using CTD and STS.
- To create an aptamer-guided liposomal nanosystem for co-delivery of CTD and STS (Apt/CTD-STS/NL).
- To enhance tumor targeting, improve bioavailability, and reduce systemic toxicity of CTD and STS.
Main Methods:
- Construction of aptamer-guided co-delivery nanoliposomes encapsulating CTD and STS.
- In vitro evaluation of cellular uptake in HCC cells compared to non-targeted liposomes.
- In vivo assessment of tumor accumulation, antitumor efficacy, and biocompatibility in a murine HCC model.
Main Results:
- Apt/CTD-STS/NL showed 1.3-fold higher cellular uptake in HCC cells compared to non-targeted liposomes.
- In vivo studies demonstrated superior tumor accumulation and significant tumor growth inhibition (79.50 ± 4.39%) in a murine HCC model.
- Mechanistic studies confirmed synergistic inhibition of mTOR, HIF-1α, and VEGF, disrupting tumor proliferation, survival, and angiogenesis.
Conclusions:
- A novel targeted nanoplatform combining CTD and STS demonstrates synergistic anti-HCC effects.
- The Apt/CTD-STS/NL system achieves multi-pathway inhibition, enhancing therapeutic efficacy.
- This approach offers a promising strategy for cancer therapy with improved efficacy and reduced toxicity.
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