Licochalcone B Induces ROS-Dependent Apoptosis in Oxaliplatin-Resistant Colorectal Cancer Cells via p38/JNK MAPK Signaling

Author:

Kwak Ah-Won1,Kim Woo-Keun1,Lee Seung-On2,Yoon Goo3ORCID,Cho Seung-Sik3ORCID,Kim Ki-Taek23,Lee Mee-Hyun4ORCID,Choi Yung Hyun5ORCID,Lee Jin-Young6,Park Jin Woo23ORCID,Shim Jung-Hyun237ORCID

Affiliation:

1. Biosystem Research Group, Department of Predictive Toxicology, Korea Institute of Toxicology, Daejeon 34114, Republic of Korea

2. Department of Biomedicine, Health & Life Convergence Sciences, BK21 Four, College of Pharmacy, Mokpo National University, Muan 58554, Republic of Korea

3. Department of Pharmacy, College of Pharmacy, Mokpo National University, Muan 58554, Republic of Korea

4. College of Korean Medicine, Dongshin University, Naju 58245, Republic of Korea

5. Department of Biochemistry, College of Korean Medicine, Dong-Eui University, Busan 47227, Republic of Korea

6. Department of Biological Sciences, Keimyung University, Daegu 42601, Republic of Korea

7. The China-US (Henan) Hormel Cancer Institute, Zhengzhou 450008, China

Abstract

Licochalcone B (LCB) exhibits anticancer activity in oral cancer, lung cancer, and hepatocellular carcinoma cells. However, little is known about its antitumor mechanisms in human oxaliplatin-sensitive and -resistant colorectal cancer (CRC) cells. The purpose of the present study was to investigate the antitumor potential of LCB against human colorectal cancer in vitro and analyze its molecular mechanism of action. The viability of CRC cell lines was evaluated using the MTT assay. Flow cytometric analyses were performed to investigate the effects of LCB on apoptosis, cell cycle distribution, reactive oxygen species (ROS), mitochondrial membrane potential (MMP) dysfunction, and multi-caspase activity in CRC cells. The results demonstrated that LCB induced a reduction in cell viability, apoptosis, G2/M cell cycle arrest, ROS generation, MMP depolarization, activation of multi-caspase, and JNK/p38 MAPK. However, p38 (SB203580) and JNK (SP600125) inhibitors prevented the LCB-induced reduction in cell viability. The ROS scavenger N-acetylcysteine (NAC) inhibited LCB-induced reduction in cell viability, apoptosis, cell cycle arrest, ROS generation, MMP depolarization, and multi-caspase and JNK/p38 MAPK activities. Taken together, LCB has a potential therapeutic effect against CRC cells through the ROS-mediated JNK/p38 MAPK signaling pathway. Therefore, we expect LCB to have promising potential as an anticancer therapeutic and prophylactic agent.

Funder

Basic Science Research Program of the National Research Foundation Korea

Korean government

Publisher

MDPI AG

Subject

Cell Biology,Clinical Biochemistry,Molecular Biology,Biochemistry,Physiology

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