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Aptamer-Functionalized Drug Nanocarrier Improves Hepatocellular Carcinoma toward Normal by Targeting Neoplastic
Samrat Chakraborty1, Zewdu Yilma Dlie1, Somdyuti Chakraborty1
1Pharmaceutics Research Laboratory, Department of Pharmaceutical Technology, Jadavpur University, Kolkata, India.
Abstract:
Site-specific delivery of chemotherapeutics specifically to neoplastic hepatocytes without affecting normal hepatocytes should be a focus for potential therapeutic management of hepatocellular carcinoma (HCC). The aptamer TLS 9a with phosphorothioate backbone modifications (L5) has not been explored so far for preferential delivery of therapeutics in neoplastic hepatocytes to induce apoptosis. Thus, the objective of the present investigation was to compare the therapeutic potential of L5-functionalized drug nanocarrier (PTX-NPL5) with those of the other experimental drug nanocarriers functionalized by previously reported HCC cell-targeting aptamers and non-aptamer ligands, such as galactosamine and apotransferrin. A myriad of well-defined investigations such as cell cycle analysis, TUNEL (terminal deoxynucleotidyltransferase-mediated deoxyuridine triphosphate nick end labeling) assay, and studies related to apoptosis, histopathology, and immunoblotting substantiated that PTX-NPL5 had the highest potency among the different ligand-attached experimental formulations in inducing selective apoptosis in neoplastic hepatocytes via a mitochondrial-dependent apoptotic pathway. PTX-NPL5 did not produce any notable toxic effects in healthy hepatocytes, thus unveiling a new and a safer option in targeted therapy for HCC. Molecular modeling study identified two cell-surface biomarker proteins (tumor-associated glycoprotein 72 [TAG-72] and heat shock protein 70 [HSP70]) responsible for ligand-receptor interaction of L5 and preferential internalization of PTX-NPL5 via clathrin-mediated endocytosis in neoplastic hepatocytes. The potential of PTX-NPL5 has provided enough impetus for its rapid translation from the pre-clinical to clinical domain to establish itself as a targeted therapeutic to significantly prolong survival in HCC.
Insights
A novel drug nanocarrier, PTX-NPL5, functionalized with the L5 aptamer, selectively induces apoptosis in neoplastic hepatocytes for hepatocellular carcinoma (HCC) treatment. This targeted therapy demonstrates high potency and safety, offering a promising new option for HCC patients.
Area of Science:
- Hepatocellular Carcinoma (HCC) Therapeutics
- Nanomedicine
- Targeted Drug Delivery
Background:
- Hepatocellular carcinoma (HCC) treatment requires site-specific delivery of chemotherapeutics to neoplastic hepatocytes.
- Current therapeutic strategies lack targeted delivery, leading to off-target effects on normal hepatocytes.
- The aptamer TLS 9a (L5) has not been previously investigated for targeted delivery in HCC.
Purpose of the Study:
- To evaluate the therapeutic potential of L5-functionalized drug nanocarriers (PTX-NPL5) for HCC.
- To compare PTX-NPL5 with other HCC cell-targeting ligands (galactosamine, apotransferrin).
- To assess the selective induction of apoptosis in neoplastic hepatocytes by PTX-NPL5.
Main Methods:
- Cell cycle analysis
- TUNEL assay
- Apoptosis studies
- Histopathology
- Immunoblotting
- Molecular modeling
Main Results:
- PTX-NPL5 demonstrated the highest potency in inducing selective apoptosis in neoplastic hepatocytes via a mitochondrial-dependent pathway.
- PTX-NPL5 showed no significant toxicity in healthy hepatocytes.
- Molecular modeling identified TAG-72 and HSP70 as key receptors for L5 interaction and clathrin-mediated endocytosis.
Conclusions:
- PTX-NPL5 represents a novel and safer targeted therapeutic option for HCC.
- The L5 aptamer facilitates selective uptake and apoptosis induction in neoplastic HCC cells.
- PTX-NPL5 shows significant potential for clinical translation in HCC treatment.
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