Protective Effects of Nypa fruticans Wurmb against Oxidative DNA Damage and UVB-induced DNA Damage

  • So-Yeon Han (Medicinal Plant Science, Jungwon University) ;
  • Tae-Won Jang (Pharmaceutical Science, Jungwon University) ;
  • Da-Yoon Lee (Medicinal Plant Science, Jungwon University) ;
  • Seo-Yoon Park (Pharmaceutical Science, Jungwon University) ;
  • Woo-Jin Oh (Pharmaceutical Science, Jungwon University) ;
  • Se Chul Hong (Test and Analysis Research Center, Gumi Electronics & Information Technology Research Institute) ;
  • Jae-Ho Park (Pharmaceutical Science, Jungwon University)
  • Published : 2023.04.27

Abstract

Nypa fruticans Wurmb (N. fruticans) is a plant that belongs to Araceae and N. fruticans is mainly found in tropical mangrove systems. The parts (leaves, stems, and roots) of N. fruticans are traditionally used for asthma, sore throat, and liver disease. N. fruticans contains flavonoids and polyphenols, which are substances that have inhibitory effects on cancer and oxidant. In previous studies, some pharmaceutical effects of N. fruticans on melanogenesis and inflammation have been reported. The present study is conducted to investigate the effect of the ethyl acetate fraction of N. fruticans (ENF) on oxidative DNA damage and UVB-induced DNA damage. DNA damage response (DDR) pathway is important in research on cancer, apoptosis, and so on. DDR pathways are considered a crucial factor affecting the alleviation of cellular damage. ENF could reduce oxidative DNA damage derived from reactive oxygen species by the Fenton reaction. Also, ENF reduced the intensity of intracellular ROS in the live cell image by DCFDA assay. UVB is known to cause skin and cellular damage, then finally contribute to causing the formation of tumors. As for the strategies of reducing DNA damage by UVB, inhibition of p53, H2AX, and Chk2 can be important indexes to protect the human body from DNA damage. As a result of confirming the protective effect of ENF for UVB damage, MMPs significantly decreased, and the expression of apoptosis-related factors tended to decrease. In conclusion, ENF can provide protective effects against double-stranded DNA break (DSB) caused by oxidative DNA damage and UVB-induced DNA damage. These results are considered to be closely related to the protective effect against radicals based on catechin, epicatechin, and isoquercitrin contained in ENF. Based on these results, it is thought that additional mechanism studies for inhibiting cell damage are needed.

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Acknowledgement

본 연구는 중소벤처기업부의 지역주력산업육성(세종)사업의 일환인 ICT기반 스마트팜에서 재배된 지역자원을 활용한 바이오헬스케어 소재 개발 및 제품화(사업번호: S3270662)의 지원에 의해 이루어진 결과로 이에 감사드립니다.