Development of alginate/inulin carrier systems containing non-conventional Amazonian berry extracts

被引:15
|
作者
Mar, Josiana Moreira [1 ]
da Silva, Laiane Souza [1 ]
Rabello, Maxwaldo da S. [1 ]
Biondo, Matheus Moraes [1 ]
Kinupp, Valdely Ferreira [2 ]
Campelo, Pedro Henrique [1 ,3 ]
Bruginski, Estevan [4 ]
Campos, Francinete Ramos [4 ]
Bezerra, Jaqueline de Araujo [2 ]
Sanches, Edgar Aparecido [1 ]
机构
[1] Univ Fed Amazonas, Lab Nanostruct Polymers NANOPOL Nanopol Ufam, Manaus, Amazonas, Brazil
[2] Fed Inst Educ Sci & Technol Amazonas, Manaus, Amazonas, Brazil
[3] Univ Fed Amazonas, Sch Agr Sci, Manaus, Amazonas, Brazil
[4] Univ Fed Parana, Dept Pharm Biosci Lab & Mass Spectrometry, Curitiba, Parana, Brazil
关键词
Clidemia rubra; Amazonian berries; Alginate beads; Bioactive compounds; Simulated digestibility;
D O I
10.1016/j.foodres.2020.109838
中图分类号
TS2 [食品工业];
学科分类号
0832 ;
摘要
Different carriers, such as the combination of sodium alginate and inulin, have been employed to protect foods against environmental effects. The goal of this work was to use the ionic gelation encapsulation process to produce microparticles containing Clidemia rubra extract, ranging the concentration of inulin from 1.5 to 3.5 g inulin.100 g(-1) of solution. Characteristic signals of sugars, organic acids and phenolic compounds were identified in the extract using the H-1 NMR technique. The carriers containing inulin presented significant difference in the moisture content when compared to the pure sodium alginate beads. The produced beads were found in the range of 0.81-1.06 mm. The addition of inulin to sodium alginate was significant for the encapsulation efficiency (EE) of the antioxidant compounds when compared to the beads formed only using pure sodium alginate. The microspheres presenting inulin and sodium alginate presented higher content of spherical particles. The addition of 2.5 g inulin.100 g(-1) of solution allowed its incorporation into the pores of the beads, favoring a possible chemical interaction between inulin and sodium alginate. This interaction resulted in a different crystal structure and better EE. Furthermore, beads containing inulin presented higher protection of the encapsulated bioactive compounds during the gastric phase.
引用
下载
收藏
页数:10
相关论文
共 50 条
  • [41] FREAR,DEH - SURVEY OF EUROPEAN NON-CONVENTIONAL CHEMICAL NOTATION SYSTEMS
    UHLEIN, E
    KOLLOID-ZEITSCHRIFT AND ZEITSCHRIFT FUR POLYMERE, 1967, 219 (02): : 175 - +
  • [43] Methodology to perform a non-conventional evaluation of cooling, heating, and power systems
    Mago, P. J.
    Fumo, N.
    Chamra, L. M.
    PROCEEDINGS OF THE INSTITUTION OF MECHANICAL ENGINEERS PART A-JOURNAL OF POWER AND ENERGY, 2007, 221 (A8) : 1075 - 1087
  • [44] Synthesis of a non-conventional monolithic catalyst for continuous flow reaction systems
    Ogino, Isao
    Ando, Daiki
    Satoh, Yoshitaka
    Takahashi, Shunpei
    Mukai, Shin R.
    ABSTRACTS OF PAPERS OF THE AMERICAN CHEMICAL SOCIETY, 2014, 247
  • [45] Non-conventional solvents in liquid phase microextraction and aqueous biphasic systems
    An, Jiwoo
    Trujillo-Rodriguez, Maria J.
    Pino, Veronica
    Anderson, Jared L.
    JOURNAL OF CHROMATOGRAPHY A, 2017, 1500 : 1 - 23
  • [46] Non-conventional means used in metallic systems corrosion rate measurements
    Ivascan, S
    Matza, G
    Gavrila, L
    Gavrila, D
    REVISTA DE CHIMIE, 1995, 46 (11): : 1029 - 1034
  • [47] Implementation of algebraic controllers for non-conventional sampled-data systems
    Ángel Cuenca
    Julián Salt
    Pedro Albertos
    Real-Time Systems, 2007, 35 : 59 - 89
  • [48] Development of a System for the Calibration of Digital Bridges for Non-Conventional Instrument Transformers
    Djokic, Branislav
    Parks, Harold
    2016 CONFERENCE ON PRECISION ELECTROMAGNETIC MEASUREMENTS (CPEM 2016), 2016,
  • [49] Development of non-conventional instrument transformers (NCIT) using smart materials
    Nikolic, Bojan
    Khan, Sanowar
    Gabdullin, Nikita
    2016 JOINT IMEKO TC1-TC7-TC13 SYMPOSIUM: METROLOGY ACROSS THE SCIENCES: WISHFUL THINKING?, 2016, 772
  • [50] Conventional and Non-Conventional Roles of Non-Muscle Myosin II-Actin in Neuronal Development and Degeneration
    Javier-Torrent, Miriam
    Saura, Carlos A.
    CELLS, 2020, 9 (09)