Literature DB >> 17111071

A horse chestnut extract, which induces contraction forces in fibroblasts, is a potent anti-aging ingredient.

Tsutomu Fujimura1, Kazue Tsukahara, Shigeru Moriwaki, Mitsuyuki Hotta, Takashi Kitahara, Yoshinori Takema.   

Abstract

Contraction forces generated by non-muscle cells, such as fibroblasts, play important roles in determining cell morphology, vasoconstriction, and/or wound healing. We have searched among various plant extracts for ingredients that generate cell contraction forces using fibroblast-populated collagen gels. Using that model, we found that an extract of horse chestnuts (Aesculus hippocastanum) is able to generate such contraction forces in fibroblasts. The involvement of stress fiber formation in that response is suggested by the inhibition of such force generation by cytochalasin D and rhodamine phalloidin stain. Clinical testing of the extract was carried out using 40 healthy female volunteers. A gel formulation that included 3% of the extract was applied topically to the skin around the eye three times daily for nine weeks. The efficacy of the extract to diminish wrinkles was evaluated by visual scoring based on photo scales. After six weeks, significant decreases in the wrinkle scores at the corners of the eye or in the lower eyelid skin were observed compared with controls. After nine weeks, similar results were obtained. Taken together, our results suggest that an extract of horse chestnuts can generate contraction forces in fibroblasts and is a potent anti-aging ingredient.

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Year:  2006        PMID: 17111071

Source DB:  PubMed          Journal:  J Cosmet Sci        ISSN: 1525-7886            Impact factor:   0.948


  2 in total

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Journal:  Clin Cosmet Investig Dermatol       Date:  2014-02-20

2.  Aesculus hippocastanum L. Extract Does Not Induce Fibroblast to Myofibroblast Conversion but Increases Extracellular Matrix Production In Vitro Leading to Increased Wound Tensile Strength in Rats.

Authors:  Ivan Kováč; Nikola Melegová; Matúš Čoma; Peter Takáč; Katarína Kováčová; Martin Hollý; Ján Ďurkáč; Lukáš Urban; Miriam Gurbáľová; Emil Švajdlenka; Gabriela Mojžišová; Robert Zajíček; Pavol Szabo; Pavel Mučaji; Peter Gál
Journal:  Molecules       Date:  2020-04-22       Impact factor: 4.411

  2 in total

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