Počet záznamů: 1  

Structure, dynamics, and functional properties of hybrid alginate-pectin gels dually crosslinked by Ca2+ and Zn2+ ions designed as a delivery device for self-emulsifying systems for lipophilic phytotherapeutics

  1. 1.
    SYSNO ASEP0581912
    Druh ASEPJ - Článek v odborném periodiku
    Zařazení RIVJ - Článek v odborném periodiku
    Poddruh JČlánek ve SCOPUS
    NázevStructure, dynamics, and functional properties of hybrid alginate-pectin gels dually crosslinked by Ca2+ and Zn2+ ions designed as a delivery device for self-emulsifying systems for lipophilic phytotherapeutics
    Tvůrce(i) Urbanová, Martina (UMCH-V) RID, ORCID
    Macků, Jan (UMCH-V) RID
    Kubová, K. (CZ)
    Vyslouzil, J. (CZ)
    Muselík, J. (CZ)
    Šlouf, Miroslav (UMCH-V) RID, ORCID
    Šeděnková, Ivana (UMCH-V) RID
    Kočková, Olga (UMCH-V) RID, ORCID
    Janisova, Larisa (UMCH-V) RID, ORCID
    Masek, J. (CZ)
    Mašková, E. (CZ)
    Novobilský, A. (CZ)
    Parenicova, M. (CZ)
    Konefal, Rafal (UMCH-V) RID, ORCID
    Czernek, Jiří (UMCH-V) RID
    Vetchy, D. (CZ)
    Pavelková, M. (CZ)
    Brus, Jiří (UMCH-V) RID, ORCID
    Číslo článku109693
    Zdroj.dok.Food Hydrocolloids. - : Elsevier - ISSN 0268-005X
    Roč. 150, May (2024)
    Poč.str.16 s.
    Jazyk dok.eng - angličtina
    Země vyd.GB - Velká Británie
    Klíč. slovaalginate-pectin gels ; dual crosslinking ; structure
    Vědní obor RIVCD - Makromolekulární chemie
    Obor OECDPolymer science
    CEPGA22-03187S GA ČR - Grantová agentura ČR
    Způsob publikováníOmezený přístup
    Institucionální podporaUMCH-V - RVO:61389013
    EID SCOPUS85182024378
    DOI10.1016/j.foodhyd.2023.109693
    AnotaceAlginate gels are outstanding biomaterials widely applicable in food and pharmaceutical industries. This contribution provides comprehensive insight into the design of advanced hybrid alginate/pectin co-networks double crosslinked by Ca2+/Zn2+ ions encapsulating self-emulsifying systems (SES). The tunable mucoadhesive properties, structural stability, integrity, dissolution profiles, and enhanced in-vivo bioavailability make the synthesized hybrid systems ideal vehicles for the delivery of lipophilic phytotherapeutics, allowing the long-term site-specific treatment of intestinal inflammation. This work also provides a thorough understanding of the structure-property relationships of alginate-pectin gels at the atomic resolution level. It was found out that SES molecules form well-distributed, phase-separated microparticles that interact with the polysaccharide matrix through a well-defined interface. The hybrid alginate-pectin gel is highly cross-linked, with both types of polysaccharides participating in the network formation. The observed surface interactions of SES droplets increase the intrinsic mobility of the network. The plasticizing effect can be regulated by the amount of pectin macromolecules, whose interaction with alginate chains enables a strengthening of the polysaccharide network. Overall, the domain-like architecture of hybrid alginate-pectin gels synthesized by external ionic gelation is revealed, the key structural motifs responsible for their properties are discovered, and the pathways allowing their regulation are identified. Biological in-vivo tests then confirmed positive effects of the synthesized systems in living organisms. The strategy presented thus offers a new perspective for the rational design of alginate-based materials for the microencapsulation of bioactive compounds for advanced orally administered delivery systems or controlled-release decontaminators applicable in the food and nutraceutical processing industries.
    PracovištěÚstav makromolekulární chemie
    KontaktEva Čechová, cechova@imc.cas.cz ; Tel.: 296 809 358
    Rok sběru2025
    Elektronická adresahttps://www.sciencedirect.com/science/article/pii/S0268005X23012390?via%3Dihub
Počet záznamů: 1  

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