Preparation and characterisation of wheat starch-based aerogels for procyanidin encapsulation to enhance stability
Literature Information
Yu Gao, Hong-Ning Lv, Sheng-Hua Zha, Xiao-Li Sun
Procyanidins (PC) are formed by the polymerisation of flavan-3-ol monomers, which have excellent bioactivity and present great health benefits. However, the application range of the PC is greatly limited due to their poor stability. Therefore, in this study, starch aerogels were used as carriers to encapsulate PC. After screening, wheat starch aerogel (WSA) was finally chosen to encapsulate PC. Afterward, characterization (SEM, XRD, FT-IR, TGA and BET), stability testing, investigations on antioxidant activity, and in vitro tests simulating digestion were carried out. The results of relevant characterization showed that the micro surface structure of the procyanidin wheat starch aerogel (PC-WSA) presented a network structure, and PC were encapsulated in WSA. In addition, PC-WSA allows PC to be released in the final stage of simulated digestion. Meanwhile, the results of antioxidant experiments indicate that PC-WSA exhibits antioxidant activity after encapsulating PC. Moreover, the retention of PC in PC-WSA was still 53.63 ± 3.23% when stored at 70 °C for 20 days. After 6 days of light exposure, the retention of PC in PC-WSA under different light sources was all above 85%, which was higher than that of PC. In conclusion, the wheat starch aerogel could improve the stability of PC and has great potential for application.
Related Literature
Wavelength resolved specific optical rotations and homochiral equilibria
P. L. Polavarapu, C. L. Covington
DOI: 10.1039/C5CP01834J
Effect of cation substitution on structural transition: synthesis, characterization and theoretical studies of NaCa4B3O9, NaCaBO3, NaSrBO3 and Li4CaB2O6
Yun Yang, Shilie Pan, Zhihua Yang
DOI: 10.1039/C5CP04420K
Far- and near-field properties of gold nanoshells studied by photoacoustic and surface-enhanced Raman spectroscopies
V. Weber, A. Feis, C. Gellini, R. Pilot, P. R. Salvi, R. Signorini
DOI: 10.1039/C4CP05054A
Improved Raman and photoluminescence sensitivity achieved using bifunctional Ag@SiO2 nanocubes
Nguyen Minh Kha, Ching-Hsiang Chen, Wei-Nien Su, John Rick
DOI: 10.1039/C4CP05217J
Enhanced-fluorescence correlation spectroscopy at micro-molar dye concentration around a single gold nanorod
Saumyakanti Khatua, Haifeng Yuan, Michel Orrit
DOI: 10.1039/C4CP03057E
Gold and silver nanoparticle monomers are non-SERS-active: a negative experimental study with silica-encapsulated Raman-reporter-coated metal colloids
Yuying Zhang, Bernd Walkenfort, Jun Hee Yoon, Sebastian Schlücker, Wei Xie
DOI: 10.1039/C4CP05073H
Surface-enhanced spectroscopies
Rudolf Holze, Sebastian Schlücker
DOI: 10.1039/C5CP90032H
High performance surface-enhanced Raman scattering from molecular imprinting polymer capsulated silver spheres
Yan Guo, Leilei Kang, Shaona Chen
DOI: 10.1039/C5CP00206K
Subpicosecond surface dynamics in genomic DNA from in vitro-grown plant species: a SERS assessment
Cristina M. Muntean, Ioan Bratu, Nicolae Leopold, Cristian Morari, Luiza Buimaga-Iarinca, Monica A. P. Purcaru
DOI: 10.1039/C4CP05425C
You might also like
Is 6-(3-Fluorophenyl)picolinic acid (CAS: 887982-40-3) safe?
6-(3-Fluorophenyl)picolinic acid is generally considered safe for laboratory use...
What industries use (3R)-3-Pyrrolidinol (CAS: 2799-21-5)?
(3R)-3-Pyrrolidinol is used in the pharmaceutical industry as a precursor for dr...
What precautions should be taken when handling (4R,5R)-4,5-Diethoxycarbonyl-2,2-dimethyldioxolane (CAS: 59779-75-8)?
When handling (4R,5R)-4,5-Diethoxycarbonyl-2,2-dimethyldioxolane (CAS: 59779-75-...
How is 1-(6-Chloroimidazo[1,2-b]pyridazin-3-yl)ethanone (CAS: 90734-71-7) typically synthesized?
1-(6-Chloroimidazo[1,2-b]pyridazin-3-yl)ethanone is often synthesized via a mult...
What is the market or research trend for N-Ethyl-3,4-dimethylbenzylamine (CAS: 39180-83-1)?
The market for N-Ethyl-3,4-dimethylbenzylamine (CAS: 39180-83-1) remains steady,...
What is Tert-butyl 3-(pyrrolidin-1-yl)azetidine-1-carboxylate (CAS: 1019008-21-9)?
Tert-butyl 3-(pyrrolidin-1-yl)azetidine-1-carboxylate is a chemical compound wit...
What regulatory guidelines apply to 1-Bromo-3-chloro-2,4-dimethoxybenzene (CAS: 1228956-93-1)?
1-Bromo-3-chloro-2,4-dimethoxybenzene (CAS: 1228956-93-1) falls under the classi...
Is 8-Bromo-2-methyl-3,4-dihydroisoquinolin-1(2H)-one (CAS: 1368622-07-4) safe?
The safety of 8-Bromo-2-methyl-3,4-dihydroisoquinolin-1(2H)-one (CAS: 1368622-07...
Is Benzyl [(3S)-2,6-dioxo-3-piperidinyl]carbamate (CAS: 22785-43-9) safe?
Benzyl [(3S)-2,6-dioxo-3-piperidinyl]carbamate is generally safe when handled wi...
How should 1-{[4-(4,4,5,5-Tetramethyl-1,3,2-dioxaborolan-2-yl)phenyl]sulfonyl}pyrrolidine (CAS: 928657-21-0) be stored?
1-{[4-(4,4,5,5-Tetramethyl-1,3,2-dioxaborolan-2-yl)phenyl]sulfonyl}pyrrolidine s...
Source Journal
New Journal of Chemistry

NJC (New Journal of Chemistry) is a broad-based primary journal encompassing all branches of chemistry and its sub-disciplines. It contains full research articles, communications, perspectives and focus articles. This well-established journal, owned by the Centre National de la Recherche Scientifique (CNRS) of France, has been co-published with the Royal Society of Chemistry since January 1998. NJC is the forum for the publication of high-quality, original and significant work that opens new directions in chemistry or other scientific disciplines. In addition to having a significant chemical component, work published in NJC must demonstrate that it will have an impact on areas of research other than that of the reported work.










![1-Benzyl-1,7-diazaspiro[4.4]nonane dihydrochloride structure 1-Benzyl-1,7-diazaspiro[4.4]nonane dihydrochloride structure](https://static.chemtradehub.com/structs/115/1159822-71-5-0320.webp)


![1H-Imidazo[4,5-c]pyridine-7-carboxylic acid structure 1H-Imidazo[4,5-c]pyridine-7-carboxylic acid structure](https://static.chemtradehub.com/structs/123/1234616-39-7-1344.webp)
