Technology optimization of chitosan production from Aspergillus niger biomass and its functional activities

被引:76
作者
Abdel-Gawad, Khayria M. [1 ]
Hifney, Awatief F. [1 ]
Fawzy, Mustafa A. [1 ]
Gomaa, Mohamed [1 ]
机构
[1] Assiut Univ, Fac Sci, Dept Bot & Microbiol, Assiut 71516, Egypt
关键词
Alkaline deproteinization; Response surface methodology; Desirability functions; Antioxidant activity; Emulsifying activity; ANTIOXIDANT PROPERTIES; FUNGAL CHITOSAN; EXTRACTION; CHITIN; WASTES;
D O I
10.1016/j.foodhyd.2016.10.001
中图分类号
O69 [应用化学];
学科分类号
081704 ;
摘要
There is a growing demand for chitosan production from fungi as it provides superior physico-chemical properties over traditional crustacean sources. Chitosan was recovered from Aspergillus niger biomass using different conditions of alkali deproteinization and Box-Benhken experimental design was evaluated to study the influence of alkali concentration, temperature and time on chitosan yield, degree of deacetylation (DD) and molecular weight (MW). Chitosan with different physico-chemical properties was obtained under different combinations of extraction factors. Desirability function was then used to predict the best overall combinations of responses. The most desirable compromise allowed for the recovery of chitosan with a yield of 7.0% (w/w), DD 83.64% and MW 2.70 x 10(4) Da, which were in good agreement with the predicted values. The recovered chitosan exhibited a good hydroxyl radical scavenging activity and ferrous ions chelating ability reached to 82.40% and 87.23%, respectively. Additionally, it demonstrated good emulsion stabilizing capacities with different vegetable oils. The results suggest that fungal mycelia can be used as a promising source of chitosan with important physico-chemical properties suitable for several applications such as food, pharmaceutical, and cosmetic industries. (C) 2016 Elsevier Ltd. All rights reserved.
引用
收藏
页码:593 / 601
页数:9
相关论文
共 28 条
  • [1] Abdel-Salam H.A., 2013, Int. J. Nutr. Food Sci., V2, P160, DOI [10.11648/j.ijnfs.20130204.11, DOI 10.11648/j.ijnfs.20130204.11, DOI 10.11648/J.IJNFS.20130204.11]
  • [2] Integrated process for fungal citric acid fermentation using apple processing wastes and sequential extraction of chitosan from waste stream
    Dhillon, Gurpreet Singh
    Kaur, Surinder
    Sarma, Saurabh Jyoti
    Brar, Satinder Kaur
    [J]. INDUSTRIAL CROPS AND PRODUCTS, 2013, 50 : 346 - 351
  • [3] Green synthesis approach: extraction of chitosan from fungus mycelia
    Dhillon, Gurpreet Singh
    Kaur, Surinder
    Brar, Satinder Kaur
    Verma, Mausam
    [J]. CRITICAL REVIEWS IN BIOTECHNOLOGY, 2013, 33 (04) : 379 - 403
  • [4] Developmental change of the composition and content of the chitin-glucan complex in the fungus Aspergillus niger
    Feofilova, E. P.
    Nemtsev, D. V.
    Tereschina, V. M.
    Memorskaya, A. S.
    [J]. APPLIED BIOCHEMISTRY AND MICROBIOLOGY, 2006, 42 (06) : 545 - 549
  • [5] Biodegradation of Palisada perforata (Rhodophyceae) and Sargassum sp (Phaeophyceae) biomass by crude enzyme preparations from algicolous fungi
    Gomaa, Mohamed
    Hifney, Awatief F.
    Fawzy, Mustafa A.
    Issa, Ahmed A.
    Abdel-Gawad, Khayria M.
    [J]. JOURNAL OF APPLIED PHYCOLOGY, 2015, 27 (06) : 2395 - 2404
  • [6] Industrial optimization of fucoidan extraction from Sargassum sp and its potential antioxidant and emulsifying activities
    Hifney, Awatief F.
    Fawzy, Mustafa A.
    Abdel-Gawad, Khayria M.
    Gomaa, Mohamed
    [J]. FOOD HYDROCOLLOIDS, 2016, 54 : 77 - 88
  • [7] Ji N. Y., 2016, MYCOCHEMISTRY MARINE
  • [8] Kannan M., 2010, ADV BIOL RES, V4, P10
  • [9] Extraction and characterization of chitin and chitosan with antimicrobial and antioxidant activities from cosmopolitan Orthoptera species (Insecta)
    Kaya, Murat
    Baran, Talat
    Asan-Ozusaglam, Meltem
    Cakmak, Yavuz Selim
    Tozak, Kabil Ozcan
    Mol, Abbas
    Mentes, Ayfer
    Sezen, Goksal
    [J]. BIOTECHNOLOGY AND BIOPROCESS ENGINEERING, 2015, 20 (01) : 168 - 179
  • [10] Khor E., 2001, CHITIN FULFILLLING B