1. Academic Validation
  2. Osthole induces necroptosis via ROS overproduction in glioma cells

Osthole induces necroptosis via ROS overproduction in glioma cells

  • FEBS Open Bio. 2021 Feb;11(2):456-467. doi: 10.1002/2211-5463.13069.
Mengjie Huangfu 1 Riming Wei 2 Juan Wang 1 3 Jianli Qin 1 Dan Yu 1 Xiao Guan 1 4 Xumei Li 1 Minglei Fu 5 Haiping Liu 6 Xu Chen 1
Affiliations

Affiliations

  • 1 College of Pharmacy, Guilin Medical University, China.
  • 2 Institute of Biotechnology, Guilin Medical University, China.
  • 3 School of Basic Medical Sciences, Guilin Medical University, China.
  • 4 Xiangya Hospital, Central South University, Changsha, China.
  • 5 The Second Affiliated Hospital of Guilin Medical University, China.
  • 6 Science and Technology Department, Guilin Medical University, China.
Abstract

Glioma is a common primary malignant tumor that has a poor prognosis and often develops drug resistance. The coumarin derivative osthole has previously been reported to induce Cancer cell Apoptosis. Recently, we found that it could also trigger glioma cell Necroptosis, a type of cell death that is usually accompanied with Reactive Oxygen Species (ROS) production. However, the relationship between ROS production and Necroptosis induced by osthole has not been fully elucidated. In this study, we found that osthole could induce Necroptosis of glioma cell lines U87 and C6; such cell death was distinct from Apoptosis induced by MG-132. Expression of Necroptosis Inhibitor caspase-8 was decreased, and levels of Necroptosis proteins receptor-interacting protein 1 (RIP1), RIP3 and Mixed Lineage Kinase domain-like protein were increased in U87 and C6 cells after treatment with osthole, whereas levels of apoptosis-related proteins Caspase-3, caspase-7, and caspase-9 were not increased. Lactate Dehydrogenase release and flow cytometry assays confirmed that cell death induced by osthole was primarily necrosis. In addition, Necroptosis induced by osthole was accompanied by excessive production of ROS, as observed for other necroptosis-inducing reagents. Pretreatment with the RIP1 inhibitor necrostatin-1 attenuated both osthole-induced Necroptosis and the production of ROS in U87 cells. Furthermore, the ROS inhibitor N-acetylcysteine decreased osthole-induced Necroptosis and growth inhibition. Overall, these findings suggest that osthole induces Necroptosis of glioma cells via ROS production and thus may have potential for development into a therapeutic drug for glioma therapy.

Keywords

ROS production; cell necroptosis; glioma; osthole.

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