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Published on: December 1, 2016
Synergistic Effects of Green Nanoparticles on Antitumor Drug Efficacy in Hepatocellular Cancer
Mirela Claudia Rîmbu1, Liliana Popescu2, Mirela Mihăilă2,3
1Medical Doctoral School, Titu Maiorescu University of Bucharest, 040317 Bucharest, Romania.
Abstract:
Background/Objectives: Cancer remains one of the leading causes of mortality worldwide. Despite significant advancements in treatment strategies and drug development, survival rates remain low and the adverse effects of conventional therapies severely impact patients' quality of life. This study evaluates the therapeutic potential of plant-derived extracts in hepatocellular carcinoma treatment, with a focus on minimizing side effects while enhancing efficacy. Methods: This research investigates the in vitro synergistic effect of silver bio-nanoparticles synthesized from Clematis vitalba, Melissa officinalis, and Taraxacum officinale extracts (Clematis vitalbae extractum-CVE, Melissae extractum-ME, Taraxaci extractum-TE) in combination with liver cancer drugs, sunitinib (SNTB) and imatinib (IMTB), on HepG2 (human hepatocellular carcinoma) and HUVEC (human umbilical vein endothelial) cell lines. The silver nanoparticles (AgNPs) were characterized using UV-Vis spectroscopy, dynamic light scattering (DLS), zeta potential analysis, and scanning electron microscopy (SEM). The antitumor effects were evaluated through cell viability assays after 24 and 48 h of exposure, with additional cytotoxicity tests on HUVEC cells. Results: Results indicated that Melissa officinalis-derived silver nanoparticles (ME AgNPs) and Clematis vitalba extract with silver nanoparticles (CVE AgNPs) significantly reduced HepG2 cell viability. Their efficacy improved when combined with conventional therapies (SNTB + ME AgNPs 1:1 vs. SNTB: 20.01% vs. 25.73%, p = 0.002; IMTB + ME AgNPs 1:1 vs. IMTB: 17.80% vs. 18.08%, p = 0.036; SNTB + CVE AgNPs 1:1 vs. SNTB: 18.73% vs. 25.73%, p = 0.000; SNTB + CVE AgNPs 1:2 vs. SNTB: 26.62% vs. 41.00%, p = 0.018; IMTB + CVE AgNPs 1:1 vs. IMTB: 12.99% vs. 18.08%, p = 0.001). Taraxacum extract exhibited similar cytotoxicity to its nanoparticle formulation but did not exceed the efficacy of the extract alone at 24 h. Selectivity index assessments confirmed that AgNPs-based formulations significantly improve cytotoxicity and selectivity to HepG2 cells. Among the tested extracts, CVE demonstrated the strongest antitumor effect, enhancing the efficacy of synthetic drugs (CI < 1). SNTB + TE AgNPs (5% EtOH) also demonstrated consistent synergy at high doses, while SNTB + CVE AgNPs provided broad-range synergy, making it suitable for dose-escalation strategies. Conclusions: These findings underscore the potential of nanoparticle-based formulations in combination therapies with targeted kinase inhibitors such as sunitinib and imatinib. Future research should focus on in vivo validation and clinical trials to confirm these findings.
Insights
Plant-derived silver nanoparticles, particularly from Clematis vitalba and Melissa officinalis, show promise in enhancing liver cancer treatment. These novel formulations improve the efficacy of sunitinib and imatinib, offering a potential strategy to minimize side effects in cancer therapy.
Area of Science:
- Biotechnology and Nanomedicine
- Pharmacology and Toxicology
- Oncology
Background:
- Hepatocellular carcinoma (HCC) remains a leading cause of cancer mortality globally, with limited treatment options and significant side effects from conventional therapies.
- There is a critical need for novel therapeutic strategies that enhance efficacy while minimizing adverse effects in cancer treatment.
Purpose of the Study:
- To evaluate the in vitro synergistic potential of silver bio-nanoparticles derived from plant extracts in combination with established liver cancer drugs.
- To assess the impact of these novel formulations on hepatocellular carcinoma cell viability and cytotoxicity.
Main Methods:
- Synthesis and characterization of silver nanoparticles (AgNPs) from Clematis vitalba (CVE), Melissa officinalis (ME), and Taraxacum officinale (TE) extracts.
- In vitro evaluation of synergistic effects of AgNPs combined with sunitinib (SNTB) and imatinib (IMTB) on HepG2 and HUVEC cell lines.
- Assessment of cell viability, cytotoxicity, and selectivity index of the AgNP-based formulations.
Main Results:
- ME AgNPs and CVE AgNPs significantly reduced HepG2 cell viability, with enhanced efficacy when combined with SNTB and IMTB.
- CVE AgNPs demonstrated the strongest antitumor effect, showing broad-range synergy with SNTB, suitable for dose-escalation strategies.
- AgNP-based formulations improved cytotoxicity and selectivity towards HepG2 cells compared to conventional treatments alone.
Conclusions:
- Nanoparticle-based formulations, particularly those derived from CVE and ME, hold significant therapeutic potential for combination therapy in hepatocellular carcinoma treatment.
- These findings support the use of plant-derived AgNPs with targeted kinase inhibitors like sunitinib and imatinib to improve treatment outcomes.
- Further in vivo validation and clinical trials are warranted to confirm the efficacy and safety of these novel therapeutic strategies.
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