4.7 Article

In vitro characterization of iridoid and phenylethanoid glycosides from Cistanche phelypaea for nutraceutical and pharmacological applications

Journal

PHYTOTHERAPY RESEARCH
Volume 36, Issue 11, Pages 4155-4166

Publisher

WILEY
DOI: 10.1002/ptr.7548

Keywords

antioxidants; Cistanche; Cistanche phelypaea; iridoid glycosides; phenylethanoid glycosides; nutraceuticals

Funding

  1. Universita degli Studi di Napoli Federico II within the CRUI-CARE Agreement

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This manuscript reports the isolation and identification of compounds from C. phelypaea and their potential applications in antioxidant activity and cell proliferation and differentiation. The results showed that these compounds have strong antioxidant potential and can preserve cell proliferation and stem cell characteristics, which are important for tissue engineering and regenerative medicine.
Desert hyacinths are a remarkable group of parasitic plants belonging to genus Cistanche, including more than 20 accepted species typically occurring in deserts or coastal dunes parasitizing roots of shrubs. Several Cistanche species have long been a source of traditional herbal medicine or food, being C. deserticola and C. tubulosa the most used in China. This manuscript reports the isolation and identification of some phenylethanoid and iridoid glycosides, obtained from the hydroalcoholic extract of C. phelypaea collected in Spain. The present study aims to characterize the antioxidant activity of C. phelypaea metabolites in the light of their application in nutraceutical and cosmeceutical industries and the effect of acetoside, the most abundant metabolite in C. phelypaea extract, on human keratinocyte and pluripotent stem cell proliferation and differentiation. Our study demonstrated that acetoside, besides its strong antioxidant potential, can preserve the proliferative potential of human basal keratinocytes and the stemness of mesenchymal progenitors necessary for tissue morphogenesis and renewal. Therefore, acetoside can be of practical relevance for the clinical application of human stem cell cultures in tissue engineering and regenerative medicine.

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