Production of Oligoalginate via Solution Plasma Process and Its Capability of Biological Growth Enhancement

被引:8
|
作者
MubarakAli, Davoodbasha [1 ,2 ,3 ]
Lee, Minho [2 ]
Manzoor, Muhammed Allipara [4 ]
Lee, Sang-Yul [3 ]
Kim, Jung-Wan [2 ,3 ]
机构
[1] BS Abdur Rahman Crescent Inst Sci & Technol, Sch Life Sci, Chennai, Tamil Nadu, India
[2] Incheon Natl Univ, Div Bioengn, Incheon, South Korea
[3] Korea Aerosp Univ, Ctr Surface Technol & Applicat CeSTA, Dept Mat Engn, Goyang, South Korea
[4] Yenepoya Univ, Yenepoya Res Ctr, Mangalore, India
关键词
Solution plasma process; Oligoalginate; Eco-friendly; Biocompatibility; Growth enhancer; RADIATION-INDUCED DEGRADATION; ALGINATE OLIGOSACCHARIDES; SODIUM ALGINATE; DEPOLYMERIZATION;
D O I
10.1007/s12010-021-03640-7
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
The objective of the study was to depolymerize alginate into short-length oligoalginates, adopting the simple solution plasma process (SPP) technique, for successful use in free radical scavenging and growth promotion in cell culture and agricultural practices. Alginate at various concentrations was depolymerized to oligoalginates using SPP by discharging for various times. The depolymerization into oligoalginates was proved by DNS, TLC, FT-IR, and HPAEC analyses and caused decrease in viscosity. Oligoalginates derived from 0.5% alginate (100 mg center dot mL(-1)) showed the highest antioxidant activities in vitro. The oligoalginates enhanced growth of the human embryonic kidney (HEK293) cells to significant levels in a concentration-dependent manner without any extent of toxicity. The oligoalginates also promoted growth of lettuce. Thus, SPP is a powerful technique to break down alginate into oligoalginates that can be utilized as a free radical scavenger and as a growth promoter of animal cells and agricultural plants.
引用
收藏
页码:4097 / 4112
页数:16
相关论文
共 50 条
  • [1] Production of Oligoalginate via Solution Plasma Process and Its Capability of Biological Growth Enhancement
    Davoodbasha MubarakAli
    Minho Lee
    Muhammed Allipara Manzoor
    Sang-Yul Lee
    Jung-Wan Kim
    Applied Biochemistry and Biotechnology, 2021, 193 : 4097 - 4112
  • [2] Polybutadiene production via a solution process
    Jenkins, Scott
    Chemical Engineering (United States), 2019, 126 (06):
  • [3] Enhancement of conductivity in nano carbon balls by the addition of carbon tetrachloride via room temperature solution plasma process
    Li, Oi Lun
    Hayashi, Hiroki
    Ishizaki, Takahiro
    Saito, Nagahiro
    RSC ADVANCES, 2016, 6 (57) : 51864 - 51870
  • [5] Assessing the Efficiency of Sodium Ferrate Production by Solution Plasma Process
    Sina Samimi-Sedeh
    Ehsan Saebnoori
    Amirreza Talaiekhozani
    Mohamad Ali Fulazzaky
    Martin Roestamy
    Ali Mohammad Amani
    Plasma Chemistry and Plasma Processing, 2019, 39 : 769 - 786
  • [6] Assessing the Efficiency of Sodium Ferrate Production by Solution Plasma Process
    Samimi-Sedeh, Sina
    Saebnoori, Ehsan
    Talaiekhozani, Amirreza
    Fulazzaky, Mohamad Ali
    Roestamy, Martin
    Amani, Ali Mohammad
    PLASMA CHEMISTRY AND PLASMA PROCESSING, 2019, 39 (04) : 769 - 786
  • [7] Enhancement of paclitaxel production by Neopestalotiopsis vitis via optimization of growth conditions
    Rezazadeh, Hamzeh
    Ghanati, Faezeh
    Bonfill, Mercedes
    Nasibi, Fatemeh
    Ballakuti, Narjes Mohammadi
    PLOS ONE, 2024, 19 (10):
  • [8] Hydrogen production from a solution plasma process of bio-oil
    Lee, Heejin
    Park, Young-Kwon
    INTERNATIONAL JOURNAL OF HYDROGEN ENERGY, 2020, 45 (39) : 20210 - 20215
  • [9] Fullerene and carbon nanoparticle production via continuous AC plasma process
    Gruenberger, T
    Probst, N
    Fulchéri, L
    CHIMICA OGGI-CHEMISTRY TODAY, 2004, 22 (11-12) : 48 - +
  • [10] Electromagnetic Enhancement of Carbon Transport in SiC Solution Growth Process: A Numerical Modeling Approach
    Ariyawong, Kanaparin
    Dedulle, Jean-Marc
    Chaussende, Didier
    SILICON CARBIDE AND RELATED MATERIALS 2013, PTS 1 AND 2, 2014, 778-780 : 71 - 74