Production of antioxidant compounds from tissue culture of Artemisia annua

被引:0
|
作者
Prihantini, Amalia Indah [1 ]
Sukito, Agus [1 ]
Tachibana, Sanro [2 ]
机构
[1] Minist Forestry, Forest Res & Dev Agcy FORDA, Manggala Wanabhakti Bldg,Jl Jend Gatot, Jakarta, Indonesia
[2] Ehime Univ, Fac Agr, Dept Appl Biosci, 3-5-7 Tarumi, Matsuyama, Ehime 7908566, Japan
关键词
Antioxidant; Artemisia annua; caffeic acid; plant growth regulator; tissue culture;
D O I
10.13057/nusbiosci/n100409
中图分类号
Q [生物科学];
学科分类号
07 ; 0710 ; 09 ;
摘要
Prihantini AI, Sukito A, Tachibana S. 2018. Production of antioxidant compound from tissue culture of Artemisia annua. Nusantara Bioscience 10: 251-255. Phenolic compounds have attracted much attention because of their role in some oxidative diseases. Therefore, the study aimed to investigate the production of antioxidant compound from tissue culture of A. annua. The callus were developed on solid MS medium treated with four combination of plant growth regulators: NAA 0.5 mg/L + BA 0.5 mg/L; NAA 0.5 mg/L + kinetin 0.5 mg/L; 2,4-D 0.5 mg/L + BA 0.5 mg/L; and 2,4-D 0.5 mg/L+ kinetin 0.5 mg/L. The callus extracts were evaluated their antioxidant activity and were analyzed the content of phenolic content. Furthermore, detection and quantification of phenolic compound were investigated. Combination of NAA 0.5 mg/L + BA 0.5 mg/L showed the highest DPPH radical scavenging activity and total phenolic content. GCMS analysis also revealed that the combination also showed the highest content of caffeic acid, a phenolic compound known as an antioxidant agent. Furthermore, the callus extract treated with NAA 0.5 mg/L + BA 0.5 mg/L increased both the antioxidant activity and caffeic acid content compared with A. annua leaf extract. In conclusion, plant tissue culture enhanced pharmaceutical properties of A. annua. Moreover, the study suggested that the treated callus extract of A. annua is potential to be further developed for production of antioxidant compound.
引用
收藏
页码:251 / 255
页数:5
相关论文
共 50 条
  • [31] Antibacterial, Antioxidant and Toxicological Properties of Artemisia annua Essential Oil
    Wendan C.
    Yuying B.
    Chenghu G.
    Yuhong C.
    Fengjun W.
    Conglin H.
    Hua L.
    Science and Technology of Food Industry, 2024, 45 (07) : 44 - 50
  • [32] Enhanced Production of Bioactive Isoprenoid Compounds from Cell Suspension Cultures of Artemisia annua L. Using β-Cyclodextrins
    Rizzello, Francesca
    De Paolis, Angelo
    Durante, Miriana
    Blando, Federica
    Mita, Giovanni
    Caretto, Sofia
    INTERNATIONAL JOURNAL OF MOLECULAR SCIENCES, 2014, 15 (10): : 19092 - 19105
  • [33] STUDIES ON IMPROVED ARTEMISININ PRODUCTION IN ARTEMISIA-ANNUA
    CHEN, PK
    CHILDS, R
    ACTON, N
    KLAYMAN, DL
    IN VITRO CELLULAR & DEVELOPMENTAL BIOLOGY, 1987, 23 (03): : A71 - A71
  • [34] PRODUCTION OF ARTEMISININ (QINGHAOSU) IN ARTEMISIA-ANNUA L
    CROOM, EM
    PHARMACEUTISCH WEEKBLAD-SCIENTIFIC EDITION, 1987, 9 (04) : 220 - 220
  • [35] Artemisia annua genetically engineered to double artemisinin production
    不详
    INTERNATIONAL SUGAR JOURNAL, 2017, 119 (1421): : 350 - 350
  • [36] ARTEMISININ PRODUCTION BY TRANSFORMED ROOTS OF ARTEMISIA-ANNUA
    WEATHERS, PJ
    CHEETHAM, RD
    FOLLANSBEE, E
    TEOH, K
    BIOTECHNOLOGY LETTERS, 1994, 16 (12) : 1281 - 1286
  • [37] PRODUCTION OF TERPENOID FROM ARTEMISIA-ANNUA L PLANTLET CULTURES IN BIOREACTOR
    FULZELE, DP
    HEBLE, MR
    RAO, PS
    JOURNAL OF BIOTECHNOLOGY, 1995, 40 (02) : 139 - 143
  • [38] Antifungal coumarins and lignans from Artemisia annua
    Li, Ke-Ming
    Dong, Xian
    Ma, Yu-Nan
    Wu, Ze-Hong
    Yan, Yong-Ming
    Cheng, Yong-Xian
    FITOTERAPIA, 2019, 134 : 323 - 328
  • [39] PHENOLIC CONSTITUENTS FROM ARTEMISIA-ANNUA
    MARCO, JA
    SANZ, JF
    BEA, JF
    BARBERA, O
    PHARMAZIE, 1990, 45 (05): : 382 - 383
  • [40] Two new sesquiterpenoids from Artemisia annua
    Li, Hai-bo
    Yu, Yang
    Wang, Zhen-zhong
    Yang, Jun
    Xiao, Wei
    Yao, Xin-sheng
    MAGNETIC RESONANCE IN CHEMISTRY, 2015, 53 (03) : 244 - 247