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Exploring the Potential of Mesenchymal Stem Cell Sheet on The Development of Hepatocellular Carcinoma In Vivo
Published on: September 11, 2018
Anti‑cancer effects of a novel Pan‑RAF inhibitor in a hepatocellular carcinoma cell line
Wei Wang1, Bo Xu2, Qixiang Li3
1Department of Pharmacy, Xuanwu Hospital, Capital Medical University, Beijing 100053, P.R. China.
Abstract:
The RAF/mitogen-activated protein kinase (MAPK)/extracellular signal-regulated kinase (ERK) kinase (MEK)/ERK (RAF/MEK/ERK) signaling cascade serves a prominent role in hepatocellular carcinoma (HCC) proliferation. Sorafenib (BAY 43‑9006) is a potent multikinase inhibitor of RAF kinases and a few receptor tyrosine kinases. Additionally, sorafenib causes apoptosis in a number of human tumor cell lines such as leukemia cell lines. Sorafenib is the first targeted drug to prolong the overall survival of patients with advanced HCC. However, sorafenib activity is less favorable in certain cancers, including sarcomas and melanomas, due to patient insensitivity and drug resistance. In the present study, a novel bi‑aryl urea, N‑(3‑trifluoromethylphenyl)‑N'-(2-methyl-4-(6‑cyclopropanecarboxamido-pyrimidin-4-yl) oxyphenyl) urea (CBI‑5725), is shown to be a potential candidate for the treatment of liver cancer. In the present study, the in vitro activities of CBI‑5725 and sorafenib in PLC/PRF/5 HCC cells were examined and the corresponding in vivo antitumor activities in PLC/PRF/5 human tumor xenografts. An alamar blue assay confirmed that CBI‑5725 was more cytotoxic than sorafenib to PLC/PRF/5 cells, suggesting that CBI‑5725 inhibited tumor cell proliferation more potently than sorafenib. CBI‑5725 inhibited the RAF/MEK/ERK signaling pathway to the same extent as sorafenib. In addition, CBI‑5725 elicited cell cycle arrest in the G2/M phase, while sorafenib did not markedly alter the cell cycle. Furthermore, CBI‑5725 induced apoptosis more strongly than sorafenib in a dose‑dependent manner, which may be attributed to greater caspase‑3 and poly(adenosine 5'‑diphosphate‑ribose) polymerase activation by CBI‑5725. In the PLC/PRF/5 xenograft model, 2 mg/kg CBI‑5725 inhibited tumor growth by 73%. At doses ranging from 6 to 18 mg/kg, CBI‑5725 nearly completely prevented tumor growth. These results imply that the antitumor efficacy of CBI‑5725 in HCC models may result from the suppression of the RAF/MEK/ERK signaling pathway, the induction of cell cycle arrest in the G2/M phase, and the initiation of caspase‑3‑dependent apoptosis. These observations suggested that CBI‑5725 may be a potent novel compound for the treatment of HCC.
Insights
A novel compound, CBI-5725, demonstrates superior efficacy over sorafenib in treating hepatocellular carcinoma (HCC) by inhibiting tumor cell proliferation, inducing cell cycle arrest, and promoting apoptosis. This makes CBI-5725 a promising candidate for liver cancer treatment.
Area of Science:
- Oncology
- Molecular Biology
- Pharmacology
Background:
- The RAF/MEK/ERK signaling pathway is crucial for hepatocellular carcinoma (HCC) proliferation.
- Sorafenib is a targeted therapy for advanced HCC but faces challenges with drug resistance and limited efficacy in some cancers.
- There is a need for novel therapeutic agents with improved activity against HCC.
Purpose of the Study:
- To evaluate the in vitro and in vivo antitumor activities of a novel bi-aryl urea, CBI-5725, in comparison to sorafenib for the treatment of HCC.
- To investigate the mechanisms underlying the potential antitumor effects of CBI-5725.
Main Methods:
- In vitro cytotoxicity assays (alamar blue) using PLC/PRF/5 HCC cells.
- Western blot analysis to assess the inhibition of the RAF/MEK/ERK signaling pathway.
- Cell cycle analysis.
- Apoptosis assays measuring caspase-3 and PARP activation.
- In vivo antitumor activity assessment in PLC/PRF/5 human tumor xenografts.
Main Results:
- CBI-5725 exhibited greater cytotoxicity than sorafenib against PLC/PRF/5 HCC cells.
- Both CBI-5725 and sorafenib inhibited the RAF/MEK/ERK signaling pathway.
- CBI-5725 induced G2/M phase cell cycle arrest and stronger apoptosis compared to sorafenib.
- In vivo, CBI-5725 significantly inhibited tumor growth in a xenograft model, with near-complete prevention at higher doses.
Conclusions:
- CBI-5725 demonstrates potent antitumor activity against HCC in vitro and in vivo.
- The efficacy of CBI-5725 may be attributed to RAF/MEK/ERK pathway suppression, G2/M cell cycle arrest, and enhanced apoptosis.
- CBI-5725 represents a promising novel therapeutic candidate for hepatocellular carcinoma treatment.
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