Enhancement of Radiosensitivity by Eurycomalactone in Human NSCLC Cells Through G2/M Cell Cycle Arrest and Delayed DNA Double-Strand Break Repair

Author:

Dukaew Nahathai1,Konishi Teruaki2,Chairatvit Kongthawat3,Autsavapromporn Narongchai4,Soonthornchareonnon Noppamas5,Wongnoppavich Ariyaphong6

Affiliation:

1. Graduate/PhD’s Degree Program in Biochemistry, Faculty of Medicine, Chiang Mai UniversityChiang MaiThailand

2. Single Cell Radiation Biology Group, Institute for Quantum Life Science, National Institutes for Quantum and Radiological Science and Technology (QST)ChibaJapan

3. Department of Oral Biology, Faculty of Dentistry, Mahidol UniversityBangkokThailand

4. Division of Radiation Oncology, Department of Radiology, Faculty of Medicine, Chiang Mai UniversityChiang MaiThailand

5. Department of Pharmacognosy, Faculty of Pharmacy, Mahidol UniversityBangkokThailand

6. Department of Biochemistry, Faculty of Medicine, Chiang Mai UniversityChiang MaiThailand

Abstract

Radiotherapy (RT) is an important treatment for non-small cell lung cancer (NSCLC). However, the major obstacles to successful RT include the low radiosensitivity of cancer cells and the restricted radiation dose, which is given without damaging normal tissues. Therefore, the sensitizer that increases RT efficacy without dose escalation will be beneficial for NSCLC treatment. Eurycomalactone (ECL), an active quassinoid isolated from Eurycoma longifolia Jack, has been demonstrated to possess anticancer activity. In this study, we aimed to investigate the effect of ECL on sensitizing NSCLC cells to X-radiation (X-ray) as well as the underlying mechanisms. The results showed that ECL exhibited selective cytotoxicity against the NSCLC cells A549 and COR-L23 compared to the normal lung fibroblast. Clonogenic survival results indicated that ECL treatment prior to irradiation synergistically decreased the A549 and COR-L23 colony number. ECL treatment reduced the expression of cyclin B1 and CDK1/2 leading to induce cell cycle arrest at the radiosensitive G2/M phase. Moreover, ECL markedly delayed the repair of radiation-induced DNA double-strand breaks (DSBs). In A549 cells, pretreatment with ECL not only delayed the resolving of radiation-induced γ-H2AX foci but also blocked the formation of 53BP1 foci at the DSB sites. In addition, ECL pretreatment attenuated the expression of DNA repair proteins Ku-80 and KDM4D in both NSCLC cells. Consequently, these effects led to an increase in apoptosis in irradiated cells. Thus, ECL radiosensitized the NSCLC cells to X-ray via G2/M arrest induction and delayed the repair of X-ray-induced DSBs. This study offers a great potential for ECL as an alternative safer radiosensitizer for increasing the RT efficiency against NSCLC.

Publisher

Cognizant, LLC

Subject

Cancer Research,Oncology,General Medicine

Reference33 articles.

1. Global cancer statistics 2018: GLOBOCAN estimates of incidence and mortality worldwide for 36 cancers in 185 countries;CA Cancer J Clin.,2018

2. Non-small cell lung cancer: Current treatment and future advances;Transl Lung Cancer Res.,2016

3. Improving radiotherapy planning, delivery accuracy, and normal tissue sparing using cutting edge technologies;J Thorac Dis.,2014

4. DNA double-strand break repair as determinant of cellular radiosensitivity to killing and target in radiation therapy;Front Oncol.,2013

5. Role of cell cycle in mediating sensitivity to radiotherapy;Int J Radiat Oncol Biol Phys.,2004

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