TY - JOUR
T1 - Resveratrol and cyclodextrins, an easy alliance
T2 - Applications in nanomedicine, green chemistry and biotechnology
AU - Jeandet, Philippe
AU - Sobarzo-Sánchez, Eduardo
AU - Uddin, Md Sahab
AU - Bru, Roque
AU - Clément, Christophe
AU - Jacquard, Cédric
AU - Nabavi, Seyed Fazel
AU - Khayatkashani, Maryam
AU - Batiha, Gaber El Saber
AU - Khan, Haroon
AU - Morkunas, Iwona
AU - Trotta, Franscesco
AU - Matencio, Adrian
AU - Nabavi, Seyed Mohammad
N1 - Publisher Copyright:
© 2021 Elsevier Inc.
PY - 2021/12
Y1 - 2021/12
N2 - Most drugs or the natural substances reputed to display some biological activity are hydrophobic molecules that demonstrate low bioavailability regardless of their mode of absorption. Resveratrol and its derivatives belong to the chemical group of stilbenes; while stilbenes are known to possess very interesting properties, these are limited by their poor aqueous solubility as well as low bioavailability in animals and humans. Among the substances capable of forming nanomolecular inclusion complexes which can be used for drug delivery, cyclodextrins show spectacular physicochemical and biomedical implications in stilbene chemistry for their possible application in nanomedicine. By virtue of their properties, cyclodextrins have also demonstrated their possible use in green chemistry for the synthesis of stilbene glucosylated derivatives with potential applications in dermatology and cosmetics. Compared to chemical synthesis and genetically modified microorganisms, plant cell or tissue systems provide excellent models for obtaining stilbenes in few g/L quantities, making feasible the production of these compounds at a large scale. However, the biosynthesis of stilbenes is only possible in the presence of the so-called elicitor compounds, the most commonly used of which are cyclodextrins. We also report here on the induction of resveratrol production by cyclodextrins or combinatory elicitation with methyljasmonate in plant cell systems as well as the mechanisms by which they are able to trigger a stilbene response. The present article therefore discusses the role of cyclodextrins in stilbene chemistry both at the physico-chemical level as well as the biomedical and biotechnological levels, emphasizing the notion of “easy alliance” between these compounds and stilbenes.
AB - Most drugs or the natural substances reputed to display some biological activity are hydrophobic molecules that demonstrate low bioavailability regardless of their mode of absorption. Resveratrol and its derivatives belong to the chemical group of stilbenes; while stilbenes are known to possess very interesting properties, these are limited by their poor aqueous solubility as well as low bioavailability in animals and humans. Among the substances capable of forming nanomolecular inclusion complexes which can be used for drug delivery, cyclodextrins show spectacular physicochemical and biomedical implications in stilbene chemistry for their possible application in nanomedicine. By virtue of their properties, cyclodextrins have also demonstrated their possible use in green chemistry for the synthesis of stilbene glucosylated derivatives with potential applications in dermatology and cosmetics. Compared to chemical synthesis and genetically modified microorganisms, plant cell or tissue systems provide excellent models for obtaining stilbenes in few g/L quantities, making feasible the production of these compounds at a large scale. However, the biosynthesis of stilbenes is only possible in the presence of the so-called elicitor compounds, the most commonly used of which are cyclodextrins. We also report here on the induction of resveratrol production by cyclodextrins or combinatory elicitation with methyljasmonate in plant cell systems as well as the mechanisms by which they are able to trigger a stilbene response. The present article therefore discusses the role of cyclodextrins in stilbene chemistry both at the physico-chemical level as well as the biomedical and biotechnological levels, emphasizing the notion of “easy alliance” between these compounds and stilbenes.
KW - Bioproduction by plant cell systems
KW - Cyclodextrins
KW - Green chemistry
KW - Nanobiotechnology
KW - Nanotransporters
KW - Resveratrol
KW - Stilbenes
UR - https://www.scopus.com/pages/publications/85116933998
U2 - 10.1016/j.biotechadv.2021.107844
DO - 10.1016/j.biotechadv.2021.107844
M3 - Review article
C2 - 34626788
AN - SCOPUS:85116933998
SN - 0734-9750
VL - 53
JO - Biotechnology Advances
JF - Biotechnology Advances
M1 - 107844
ER -