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Targeting CHEK1: Ginsenosides-Rh2 and Cu2O@G-Rh2 nanoparticles in thyroid cancer
Lidong Wang1, Xin Wu1, XinLu Wang2
1Department of General Surgery, Shengjing Hospital of China Medical University, Shenyang, 110004, People's Republic of China.
Abstract:
Thyroid cancer (THCA) is an increasingly common malignant tumor of the endocrine system, with its incidence rising steadily in recent years. For patients who experience recurrence or metastasis, treatment options are relatively limited, and the prognosis is poor. Therefore, exploring new therapeutic strategies has become particularly urgent. This study confirmed that effective suppression of THCA cell proliferation and stimulation of apoptosis can be achieved through the application of Ginsenosides-Rh2. Through network pharmacology screening, the molecular target of Ginsenosides-Rh2 in THCA was identified as CHEK1, and its inhibitory effect was confirmed by downregulating CHEK1 protein expression. Furthermore, demonstrations conducted both in vitro and in vivo showcased that delivering Ginsenosides-Rh2 using nanoparticle carriers significantly reduced cell viability by approximately 50%, regulated DNA damage levels, apoptosis-related protein expression, and cell cycle control. The IC50 of the nanoparticle formulation was determined (B-CPAP IC50 = 88.24 μM), TPC IC50 = 79.52 μM). This study confirmed that Cu2O@G-Rh2 is effective in suppressing tumors and exhibits a significant inhibitory effect on tumor recurrence and metastasis while maintaining good safety. Cu2O@G-Rh2 nanoparticles possess excellent stability and anti-tumor efficacy. This research offers new perspectives for the treatment of THCA and demonstrates potential clinical applications.
Insights
Ginsenosides-Rh2 nanoparticles effectively suppress thyroid cancer (THCA) by targeting CHEK1, reducing cell viability, and inhibiting tumor recurrence. This novel approach shows promise for improved THCA treatment and clinical application.
Area of Science:
- Endocrinology
- Oncology
- Nanotechnology
Background:
- Thyroid cancer (THCA) incidence is rising, with limited options for recurrent or metastatic disease.
- Developing novel therapeutic strategies for THCA is crucial due to poor prognosis in advanced stages.
Purpose of the Study:
- To investigate the anti-cancer effects of Ginsenosides-Rh2 (G-Rh2) on thyroid cancer.
- To identify the molecular target of G-Rh2 in THCA and evaluate nanoparticle delivery systems.
Main Methods:
- Network pharmacology identified CHEK1 as the molecular target of G-Rh2.
- In vitro and in vivo studies assessed G-Rh2 loaded in Cu2O nanoparticles (Cu2O@G-Rh2).
- Evaluated cell viability, apoptosis, DNA damage, and cell cycle control.
Main Results:
- Ginsenosides-Rh2 significantly suppressed THCA cell proliferation and induced apoptosis.
- Cu2O@G-Rh2 nanoparticles reduced cell viability by ~50% and regulated key cancer-related pathways.
- The nanoparticle formulation demonstrated stability, anti-tumor efficacy, and safety, with determined IC50 values.
Conclusions:
- Cu2O@G-Rh2 nanoparticles offer a promising therapeutic strategy for thyroid cancer treatment.
- This approach shows potential for inhibiting tumor recurrence and metastasis with good safety.
- The study provides new perspectives and potential clinical applications for THCA therapy.
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