Dichloromethane fraction of Cimicifuga heracleifolia decreases the level of melanin synthesis by activating the ERK or AKT signaling pathway in B16F10 cells

:  Cimicifuga rhizoma has long been used in traditional Korean medicine. In particular, a Cimicifuga heracleifolia extract (CHE) was reported to inhibit the formation of glutamate and the glutamate dehydrogenase activity in cultured rat islet. Glutamate activates melanogenesis by activating tyrosina...

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Veröffentlicht in:Experimental dermatology 2009-03, Vol.18 (3), p.232-237
Hauptverfasser: Jang, Ji Yeon, Lee, Jun Hyuk, Kang, Byoung Won, Chung, Kyung Tae, Choi, Yung Hyun, Choi, Byung Tae
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Sprache:eng
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Zusammenfassung::  Cimicifuga rhizoma has long been used in traditional Korean medicine. In particular, a Cimicifuga heracleifolia extract (CHE) was reported to inhibit the formation of glutamate and the glutamate dehydrogenase activity in cultured rat islet. Glutamate activates melanogenesis by activating tyrosinase. Accordingly, it was hypothesized that a CHE might inhibit the melanogenesis‐related signal pathways including the inhibition of microphthalmia‐associated transcription factor (MITF)‐tyrosinase signaling and/or the activation of extracellular signal‐regulated kinase (ERK)‐Akt signaling. The results showed that CHE inhibits the cellular melanin contents, tyrosinase activity and expression of melanogenesis‐related proteins including MITF, tyrosinase and tyrosinase‐related protein (TRP)s in α‐melanocyte‐stimulating hormone‐stimulated B16 cells. Moreover, CHE phosphorylates MEK, ERK1/2 and Akt, which are melanogenesis inhibitory proteins. The data suggest that CHE inhibits melanogenesis signaling by both inhibiting the tyrosinase directly and activating the MEK‐ERK or Akt signal pathways‐mediated suppression of MITF and its downstream signal pathway, including tyrosinase and TRPs. Therefore, C. heracleifolia would be a useful therapeutic agent for treating hyperpigmentation and an effective component in whitening and/or lightening cosmetics.
ISSN:0906-6705
1600-0625
DOI:10.1111/j.1600-0625.2008.00794.x