Keishibukuryogankayokuinin (KBY) is a traditional Japanese herbal medicine widely used to treat skin pigmentation. The scientific basis for its use is, however, unclear, and studies evaluating its mechanism and effectiveness are sparse. In this study, we compared the tyrosinase inhibitory effects of KBY and Keishibukuryogan (KB, which has the same composition of KBY, except Coix Seed [CS]) and CS under exposure to UV radiation as well as under non-exposure conditions. Neonatal human epidermal melanocytes obtained from a darkly pigmented donor were used. These cells were cultured in a final concentration of 500 μg/ml or 1000 μg/ml, to which KBY, KB, and CS were added. After incubation for 72 h, cells were stained with Fontana-Masson stain and counted. Tyrosinase activity was measured by its dopa oxidase activity, and tyrosinase expression was estimated using real-time PCR. For UV radiation, cells were exposed to UVB radiation for 90 s per day for 3 days. Under non-exposure conditions, tyrosinase activity significantly increased with both KBY and KB but significantly decreased with CS, regardless of the concentration. In addition, tyrosinase expression significantly decreased but only with KBY at both concentrations. Under UV radiation exposure, tyrosinase activity significantly increased with KBY and KB at both concentrations while tyrosinase expression significantly decreased with KBY and KB; a significant increase was, however, observed with CS at both concentrations. These results suggest that taking KBY after sunburn is effective against skin pigmentation, and the combination of KB and CS is useful for skin depigmentation.
Arai, Y., Iinuma, T., Takayama, M., Takayama, M., Abe, Y., Fukuda, R., et al. (2010) The Tokyo Oldest Old survey on Total Health (TOOTH): A Longitudinal Cohort Study of Multidimensional Components of Health and Longitudinal Cohort Study of Multidimensional Components of Health and Well-Being. BMC Geriatrics, 10, 35. https://doi.org/10.1186/1471-2318-10-35
Uto, N.S., Amitani, H., Atobe, Y., Sameshima, Y., Sakaki, M., Rokot, N., et al. (2018) Herbal Medicine Ninjin’yoeito in the Treatment of Sarcopenia and Frailty. Frontiers in Nutrition, 5, 126. https://doi.org/10.3389/fnut.2018.00126
Diamanti-Kandarakis, E., Dattilo, M., Macut, D., Duntas, L., Gonos, E.S., Goulis, D.G., et al. (2017) Aging and Anti-Aging: A Combo-Endocrinology Overview. European Journal of Endocrinology, 176, 283-308. https://doi.org/10.1530/EJE-16-1061
Cavinato, M., Waltenberger, B., Baraldo, G., Grade, C.V.C., Stuppner, H. and Jansen-Durr, P. (2017) Plant Extracts and Natural Compounds Used against UVB-Induced Photoaging. Biogerontology, 18, 499-516. https://doi.org/10.1007/s10522-017-9715-7
Rexbye, H., Petersen, I., Johansens, M., Klitkou, L., Jeune, B. and Christensen, K. (2006) Influence of Environmental Factors on Facial Ageing. Age and Ageing, 35, 110-115. https://doi.org/10.1093/ageing/afj031
Rapp, S.R., Feldman, S.R., Exum, M.L., Fleischer, A.B. and Reboussin, D.M. (1999) Psoriasis Causes as Much Disability as Other Major Medical Diseases. Journal of the American Academy of Dermatology, 41, 401-407. https://doi.org/10.1016/S0190-9622(99)70112-X
Krasuska, M., Lavda, A.C., Thompson, A.R. and Millings, A. (2018) The Role of Adult Attachment Orientation and Coping in Psychological Adjustment to Living with Skin Conditions. The British Journal of Dermatology, 178, 1396-1403. https://doi.org/10.1111/bjd.16268
Asakura, K., Nishiwaki, Y., Milojevic, A., Michikawa, T., Kikuchi, Y., Nakano, M., et al. (2009) Lifestyle Factors and Visible Skin Aging in a Population of Japanese Elders. Journal of Epidemiology, 19, 251-259. https://doi.org/10.2188/jea.JE20090031
Davinelli, S., Bertoglio, J.C., Polimeni, A. and Scapagnini, G. (2018) Cytoprotective Polyphenols against Chronological Skin Aging and Cutaneous Photodamage. Current Pharmaceutical Design, 24, 99-105. https://doi.org/10.2174/1381612823666171109102426
Castanedo-Cazares, J.P., Hernandez-Blanco, D., Garcia-Cortes, J.D., Medina-Aguilar, L. and Torres-Alvarez, B. (2018) Analysis of Cutaneous Pigmentation in a Sample. GacetaMedica de Mexico, 154, 68-73. https://doi.org/10.24875/GMM.M18000114
Suga, Y. (2006) Hifukaga Kangaeru Anti-Aging. Juntendo Igaku, 52, 429-436. (In Japanese) https://doi.org/10.14789/pjmj.52.429
Numata, T., Kobayashi, Y., Ito, T., Harada, K., Tsuboi, R. and Okubo, Y. (2015) Two Cases of Allergic Contact Dermatitis Due to Skin-Whitening Cosmetics. Allergology International, 64, 194-195. https://doi.org/10.1016/j.alit.2014.10.007
Tatebayashi, M., Oiso, N., Wada, T., Suzuki, K., Matsunaga, K. and Kawada, A. (2014) Possible Allergic Contact Dermatitis with Reticulate Postinflammatory Pigmentation Caused by Hydroquinone. The Journal of Dermatology, 41, 669-670. https://doi.org/10.1111/1346-8138.12526
Kurokawa, I. (2015) Keishibukuryogankayokuinin to Seiyouyaku, Chemical Peeling, Ion Donyu no HeiyouniyotteEnsyogosikisochincyaku no Kaizen gaMitomeraretaJinjyoseizaso no Ichirei. KampoIgaku, 49, 197-198. (In Japanese)
Kita, T. (2011) Basic Knowledge of the Kampo Medicine for Obstertrician and Gynecologist. Sanfujinka Chiryou, 103, 449-454. (In Japanese)
Fujiwara, H., Ishikawa, S., Saito, H., Fukushima, M., Watanabe, K., Yoshida, Y., et al. (2012) Effect of Angelica Furcijuga on Melanin Production. Yakuri to Chiryo, 40, 587-593. (In Japanese)
Chang, Y.-H., Kim, C.T., Jung, M., Lim, Y.-H., Lee, S. and Kang, S. (2007) Inhibition of Melanogenesis by Selina-4(14),7(11)-dien-8-one Isolated from Atractylodis Rhizoma Alba. Biological & Pharmaceutical Bulletin, 30, 719-723. https://doi.org/10.1248/bpb.30.719
Ohguchi, K., Nakajima, C., Oyama, M., Iinuma, M., Itoh, T., Akao, Y., et al. (2010) Inhibitory Effects of Flavonoid Glycosides Isolated from the Peel of Japanese Persimmon (Diospyros Kaki “Fuyu”) on Melanin Biosynthesis. Biological & Pharmaceutical Bulletin, 33, 122-124. https://doi.org/10.1248/bpb.33.122
Kim, K.S., Kim, J.A., Eom, S.Y., Lee, S.H., Min, K.R. and Kim, Y. (2006) Inhibitory Effect of Piperlonguminine on Melanin Production in Melanoma B16 Cell Line by Downregulation of Tyrosinase Expression. Pigment Cell Research, 19, 90-98. https://doi.org/10.1111/j.1600-0749.2005.00281.x
Lee, W.J., Rhee, D.Y., Bang, S.H., Kim, S.Y., Won, C.H., Lee, M.W., et al. (2015) The Natural Yeast Extract Isolated by Ethanol Precipitation Inhibits Melanin Synthesis by Modulating Tyrosinase Activity and Downregulating Melanosome Transfer. Bioscience, Biotechnology, and Biochemistry, 79, 1504-1511. https://doi.org/10.1080/09168451.2015.1032880
Kim, H., Choi, H.R., Kim, D.S. and Park, K.C. (2012) Topical Hypopigmenting Agents for Pigmentary Disorders and Their Mechanisms of Action. Annals of Dermatology, 24, 1-6. https://doi.org/10.5021/ad.2012.24.1.1
Penney, K.B., Smith, C.J. and Allen, J.C. (1984) Depigmenting Action of Hydroquinone Depends on Disruption of Fundamental Cell Processes. The Journal of Investigative Dermatology, 82, 308-310. https://doi.org/10.1111/1523-1747.ep12260588
Otake, N. (2016) Ibo no KampoChiryo. Child Health, 19, 420-424. (In Japanese)
Matsubara, Y., Matsumoto, T., Sekiguchi, K., Koseki, J., Kaneko, A., Yamaguchi, T., et al. (2017) Oral Administration of the Japanese Traditional Medicine Keishibukuryogan-ka-yokuinin Decreases Reactive Oxygen Metabolites in Rat Plasma: Identification of Chemical Constituents Contributing to Antioxidant Activity. Molecules, 22, 256. https://doi.org/10.3390/molecules22020256
Yokoi, H., Mizukami, H., Nagatsu, A., Ohno T., Tanabe, H. and Inoue, M. (2009) Peroxisome Proliferator-Activated Receptor γ Ligands Isolated from Adlay Seed (Coixlacryma jobi L. var. ma-yuen STAPF.). Biological & Pharmaceutical Bulletin, 32, 735-740. https://doi.org/10.1248/bpb.32.735
Hearing, V.J. (2005) Biogenesis of Pigment Granules: A Sensitive Way to Regulate Melanocyte Function. Journal of Dermatological Science, 37, 3-14. https://doi.org/10.1016/j.jdermsci.2004.08.014
Cha, S.-H., Ko, S.-C., Kim, D. and Jeon, Y.-J. (2011) Screening of Marine Algae for Potential Tyrosinase Inhibitor: Those Inhibitors Reduced Tyrosinase Activity and Melanin Synthesis in Zebrafish. The Journal of Dermatology, 38, 354-363. https://doi.org/10.1111/j.1346-8138.2010.00983.x
Kim, Y.J. and Uyama, H. (2005) Tyrosinase Inhibitors from Natural and Synthetic Sources: Structure, Inhibition Mechanism and Perspective for the Future. Cellular and Molecular Life Sciences, 62, 1707-1723. https://doi.org/10.1007/s00018-005-5054-y
Hearing, V.J. and Tsukamoto, K. (1991) Enzymatic Control of Pigmentation in Mammals. The FASEB Journal, 5, 2902-2909. https://doi.org/10.1096/fasebj.5.14.1752358
Miyata, T. (2007) Pharmacological Basis of Traditional Medicines and Health Supplements as Curatives. Journal of Pharmacological Sciences, 103, 127-131. https://doi.org/10.1254/jphs.CPJ06016X
Yokozawa, T., Sekiya, M., Rhyu, D.Y., Hattori, M. and Chung, H.Y. (2000) Radical-Scavenging Activity of Wen-Pi-Tang and Its Component Crude Drugs: With Special Reference to the Effects on Nitric Oxide, Superoxide and Peroxynitrite. Journal of Traditional Medicines, 17, 41-47.