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Linoleate-pazopanib conjugation as active pharmacological ingredient to abolish hepatocellular carcinoma growth
Ke Wang1,2, Pei-Yin Liao1, Wei-Chun Chang2
1Graduate Institute of Biomedical Sciences, and Ph.D. Program for Health Science and Industry, School of Medicine, China Medical University, Taichung, Taiwan.
Abstract:
Small molecule compounds targeting multiple kinases involved in neoangiogenesis have shown survival benefits in patients with unresectable hepatocellular carcinoma (HCC). Nonetheless, despite the beneficial effects of multikinase inhibitors (MKIs), a lack of boosting adjuvant limits their objective response rate. Lipid conjugates have been used to improve delivery efficacy or pharmaceutical benefits for decades. However, the feasibility of utilizing lipid-drug conjugates (LDCs) in HCC regimens remains untested. In this study, oral feeding of linoleate-fluorescein isothiocyanate conjugates showed that the compound was well distributed in a spontaneous HCC mouse model. Therefore, a rationale design was developed for chemically synthesizing a linoleate-pazopanib conjugate (LAPC). The LAPC showed a significantly improved cytotoxicity compared to the parental drug pazopanib. Pazopanib's angiogenic suppressing signals were not observed in LAPC-treated HCC cells, potentially suggesting an altered mechanism of action (MOA). In an efficacy trial comparing placebo, oral pazopanib, and LAPC treatments in the hepatitis B virus transgene-related spontaneous HCC mouse model (HBVtg-HCC), the LAPC treatment demonstrated superior tumor ablating capacity in comparison to both placebo and pazopanib treatments, without any discernible systemic toxicity. The LAPC exposure is associated with an apoptosis marker (Terminal deoxynucleotidyl transferase dUTP nick end labeling [TUNEL]) and an enhanced ferroptosis (glutathione peroxidase 4 [GPX4]) potential in HBVtg-HCC tumors. Therefore, the LAPC showed excellent HCC ablative efficacy with altered MOA. The molecular mechanisms of the LAPC and LDCs for HCC therapeutics are of great academic interest. Further comprehensive preclinical trials (e.g., chemical-manufacture-control, toxicity, distribution, and pharmacokinetics/pharmacodynamics) are expected.
Insights
Researchers developed a novel lipid-drug conjugate (LDC) called linoleate-pazopanib conjugate (LAPC) for treating hepatocellular carcinoma (HCC). LAPC demonstrated superior tumor ablation and improved cytotoxicity in mice, suggesting a new therapeutic approach for HCC.
Area of Science:
- Oncology
- Pharmacology
- Drug Delivery
Background:
- Multikinase inhibitors (MKIs) show survival benefits for unresectable hepatocellular carcinoma (HCC) but have limited objective response rates.
- Lipid-drug conjugates (LDCs) are known to enhance drug delivery and efficacy, but their use in HCC treatment is unexplored.
Purpose of the Study:
- To investigate the feasibility and efficacy of LDCs in HCC treatment.
- To synthesize and evaluate a novel linoleate-pazopanib conjugate (LAPC) for HCC therapy.
Main Methods:
- Oral administration of linoleate-fluorescein isothiocyanate conjugates in a spontaneous HCC mouse model to assess distribution.
- Chemical synthesis of linoleate-pazopanib conjugate (LAPC).
- In vitro cytotoxicity assays and in vivo efficacy trials in a hepatitis B virus transgene-related spontaneous HCC mouse model (HBVtg-HCC).
Main Results:
- LAPC exhibited significantly improved cytotoxicity compared to pazopanib.
- LAPC demonstrated superior tumor ablating capacity in the HBVtg-HCC mouse model versus placebo and pazopanib, with no discernible systemic toxicity.
- LAPC treatment was associated with apoptosis (TUNEL) and enhanced ferroptosis (GPX4) in tumors, suggesting an altered mechanism of action.
Conclusions:
- LAPC is a promising LDC for HCC therapy, showing potent tumor-ablative efficacy.
- The altered mechanism of action involving apoptosis and ferroptosis warrants further investigation.
- Comprehensive preclinical studies are needed to advance LAPC and LDCs for HCC treatment.
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