Advances in glucosamine production from waste biomass and microbial fermentation technology and its applications

被引:12
|
作者
Ahuja, Vishal [1 ]
Bhatt, Arvind Kumar [1 ]
Sharma, Vaishali [1 ]
Rathour, Ranju Kumari [1 ]
Rana, Nidhi [1 ]
Bhatia, Ravi Kant [1 ]
Varjani, Sunita [2 ]
Kumar, Manu [3 ]
Magdouli, Sara [4 ]
Yung-HunYang [5 ,6 ]
Bhatia, Shashi Kant [5 ,6 ]
机构
[1] Himachal Pradesh Univ, Dept Biotechnol, Shimla 171005, India
[2] Gujarat Pollut Control Board, Gandhinagar 382010, Gujarat, India
[3] Dongguk Univ Seoul, Dept Life Sci, 32 Dongguk Ro, Goyang Si 10326, Gyeonggi Do, South Korea
[4] York Univ, Lassonde Sch Engn, Dept Civil Engn, Toronto, ON M3J 1P3, Canada
[5] Konkuk Univ, Dept Biol Engn, Coll Engn, Seoul 05029, South Korea
[6] Inst Ubiquitous Informat Technol & Applicat, Seoul 05029, South Korea
基金
新加坡国家研究基金会;
关键词
Glucosamine; N-acetyl glucosamine; Chitin; Fungal biomass; Fermentation; ACETYL-D-GLUCOSAMINE; N-ACETYLGLUCOSAMINE PRODUCTION; DIETARY-SUPPLEMENTS; CANCER-CELLS; ENZYMATIC-HYDROLYSIS; MOLECULAR-MECHANISMS; CHONDROITIN SULFATE; CHITIN EXTRACTION; ESCHERICHIA-COLI; UP-REGULATION;
D O I
10.1007/s13399-021-01968-y
中图分类号
TE [石油、天然气工业]; TK [能源与动力工程];
学科分类号
0807 ; 0820 ;
摘要
Glucosamine (Gln) is a universal amino sugar, present in animals, plants, and microbes as a major component of various structural polymers, i.e. chitin, chitosan, and peptidoglycans. Besides structural applications, several experimental and clinical trials have shown its tremendous applications in the health sector especially in the case of cancer, osteoarthritis (OA), allergy, and inflammation-associated complications. Wider and safer applications for Gln increased its volumetric demand and market share exponentially. Different methods of Gln production such as direct extraction from sea waste (chitin) and plants biomass have been reported. However, phytoextraction and chemical hydrolysis of chitinous wastes are suffered from limited yield and high production costs. In recent years, microbial/enzymatic hydrolysis has taken over the market due to economic and eco-friendly production. In addition, genetically modified bacterial fermentation is also under development stage. In this review, recent progress related to Gln production from different resources and its various applications is reviewed in detail.
引用
收藏
页数:23
相关论文
共 50 条
  • [1] Lactic acid production from food waste: Advances in microbial fermentation and separation technologies
    Song, Liang
    Cai, Chenhang
    Chen, Zengpeng
    Lin, Chunxiang
    Lv, Yuancai
    Ye, Xiaoxia
    Liu, Yifan
    Dai, Xiaohu
    Liu, Minghua
    [J]. Bioresource Technology, 2024, 414
  • [2] States and challenges for high-value biohythane production from waste biomass by dark fermentation technology
    Liu, Zhidan
    Zhang, Chong
    Lu, Yuan
    Wu, Xiao
    Wang, Lang
    Wang, Linjun
    Han, Bing
    Xing, Xin-Hui
    [J]. BIORESOURCE TECHNOLOGY, 2013, 135 : 292 - 303
  • [3] Microbial activities during composting of waste microbial biomass from the antibiotic production
    Glavica, J.
    Friedrich, J.
    Pavko, A.
    [J]. Kemija u industriji/Journal of Chemists and Chemical Engineers, 2003, 52 (12): : 573 - 576
  • [4] Microbial production of glucosamine and N-acetylglucosamine: advances and perspectives
    Long Liu
    Yanfeng Liu
    Hyun-dong Shin
    Rachel Chen
    Jianghua Li
    Guocheng Du
    Jian Chen
    [J]. Applied Microbiology and Biotechnology, 2013, 97 : 6149 - 6158
  • [5] Microbial production of glucosamine and N-acetylglucosamine: advances and perspectives
    Liu, Long
    Liu, Yanfeng
    Shin, Hyun-dong
    Chen, Rachel
    Li, Jianghua
    Du, Guocheng
    Chen, Jian
    [J]. APPLIED MICROBIOLOGY AND BIOTECHNOLOGY, 2013, 97 (14) : 6149 - 6158
  • [6] Technology Advances in the Bioethanol Production from Eucalyptus Wood Biomass
    Valente, Isabela de L.
    Wancura, Joao H. C.
    de Freitas, Anderson J.
    Lutke, Sabrina F.
    dos Santos, Maicon S. N.
    Mori, Fabio A.
    [J]. BIOENERGY RESEARCH, 2024, 17 (02) : 769 - 789
  • [7] Technology Advances in the Bioethanol Production from Eucalyptus Wood Biomass
    Isabela de L. Valente
    João H. C. Wancura
    Anderson J. de Freitas
    Sabrina F. Lütke
    Maicon S. N. dos Santos
    Fábio A. Mori
    [J]. BioEnergy Research, 2024, 17 : 769 - 789
  • [8] Biological production of chitobiose from crab shell waste by microbial fermentation
    Jo, Gyung-Hyun
    Ju, Wan-Taek
    Park, Ro-Dong
    [J]. JOURNAL OF BIOTECHNOLOGY, 2008, 136 : S467 - S467
  • [9] Microbial electrolysis: Novel technology for hydrogen production from biomass
    Liu, Hong
    Hu, Hongqiang
    Chignell, Jeremy
    Fan, Yanzhen
    [J]. Biofuels, 2010, 1 (01) : 129 - 142
  • [10] Microbial electrolysis: novel technology for hydrogen production from biomass
    Liu, Hong
    Hu, Hongqiang
    Chignell, Jeremy
    Fan, Yanzhen
    [J]. BIOFUELS-UK, 2010, 1 (01): : 129 - 142