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Cytotoxic Efficacy of Photodynamic Therapy in Osteosarcoma Cells In Vitro
Published on: March 18, 2014
Investigating the synergy of Shikonin and Valproic acid in inducing apoptosis of osteosarcoma cells via ROS-mediated
Zhuo Chen1, Feng-Feng Wu2, Jing Li3
1The Second Affiliated Hospital, Zhejiang University School of Medicine, Hangzhou, Zhejiang, PR China; Huzhou Central Hospital, Affiliated Huzhou Hospital, Zhejiang University School of Medicine, Huzhou, Zhejiang, PR China.
Background:
Osteosarcoma is the most prevalent malignant bone tumour with a poor prognosis. Shikonin (SHK) is derived from the traditional Chinese medicine Lithospermum that has been extensively studied for its notable anti-tumour effects, including for osteosarcoma. However, its application has certain limitations. Valproic acid (VPA) is a histone deacetylase inhibitor (HDACI) that has recently been employed as an adjunctive therapeutic agent that allows chromatin to assume a more relaxed state, thereby enhancing anti-tumour efficacy.
Purpose:
This study was aimed to investigate the synergistic anti-tumour efficacy of SHK in combination with VPA and elucidate its underlying mechanism.
Methods/Study Design:
CCK-8 assays were utilized to calculate the combination index. Additional assays, including colony formation, acridine orange/ethidium bromide double fluorescent staining, and flow cytometry, were employed to evaluate the effects on osteosarcoma cells. Wound healing and transwell assays were utilized to assess cell mobility. RNA sequencing, PCR, and Western blot analyses were conducted to uncover the underlying mechanism. Rescue experiments were performed to validate the mechanism of apoptotic induction. The impact of SHK and VPA combination treatment on primary osteosarcoma cells was also assessed. Finally, in vivo experiments were conducted to validate its anti-tumour effects and mechanism.
Results:
The combination of SHK and VPA synergistically inhibited the proliferation and migration of osteosarcoma cells in vitro and induced apoptosis in these cells. Through a comprehensive analysis involving RNA sequencing, PCR, Western blot, and rescue experiments, we have substantiated our hypothesis that the combination of SHK and VPA induced apoptosis via the ROS-EGR1-Bax axis. Importantly, our in vivo experiments corroborated these findings, demonstrating the potential of the SHK and VPA combination as a promising therapeutic approach for osteosarcoma.
Conclusion:
The combination of SHK and VPA exerted an anti-tumour effect by inducing apoptosis through the ROS-EGR1-Bax pathway. Repurposing the old drug VPA demonstrated its effectiveness as an adjunctive therapeutic agent for SHK, enhancing its anti-tumour efficacy and revealing its potential value. Furthermore, our study expanded the application of natural compounds in the anti-tumour field and overcame some of their limitations through combination therapy. Finally, we enhanced the understanding of the mechanistic pathways linking reactive oxygen species (ROS) accumulation and apoptosis in osteosarcoma cells. Additionally, we elucidated the role of EGR1 in osteosarcoma cells, offering novel strategies and concepts for the treatment of osteosarcoma.
Insights
Combining shikonin (SHK) and valproic acid (VPA) synergistically inhibits osteosarcoma growth and migration. This combination therapy induces apoptosis via the reactive oxygen species (ROS)-early growth response 1 (EGR1)-Bax pathway, offering a promising new treatment strategy.
Area of Science:
- Oncology
- Pharmacology
- Molecular Biology
Background:
- Osteosarcoma is a prevalent bone cancer with a poor prognosis.
- Shikonin (SHK), a natural compound, shows anti-tumour effects but has limitations.
- Valproic acid (VPA), a histone deacetylase inhibitor (HDACI), enhances anti-tumour efficacy by relaxing chromatin.
Purpose of the Study:
- To investigate the synergistic anti-tumour efficacy of SHK combined with VPA.
- To elucidate the underlying molecular mechanisms of this combination therapy.
Main Methods:
- In vitro assays (CCK-8, colony formation, apoptosis staining, flow cytometry, wound healing, Transwell) evaluated proliferation, migration, and apoptosis.
- RNA sequencing, PCR, and Western blot identified the molecular pathway.
- In vivo experiments validated therapeutic effects and mechanisms.
Main Results:
- SHK and VPA synergistically inhibited osteosarcoma cell proliferation and migration in vitro.
- The combination induced apoptosis through the reactive oxygen species (ROS)-early growth response 1 (EGR1)-Bax axis.
- In vivo studies confirmed the anti-tumour potential of the SHK-VPA combination.
Conclusions:
- The SHK-VPA combination induces osteosarcoma cell apoptosis via the ROS-EGR1-Bax pathway.
- VPA effectively enhances SHK's anti-tumour activity, repurposing it as an adjunctive therapy.
- This study provides novel insights into ROS-mediated apoptosis and EGR1's role in osteosarcoma treatment.
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