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第 2 期 谷炎培,等: 植物提取物延缓皮肤光老化作用的研究进展 ·221·
[15] Mccart E A, Thangapazham R L, Lombardini E D, et al. Accelerated in skin cells[J]. Biotechnology and Bioprocess Engineering, 2013,
senescence in skin in a murine model of radiation-induced multi- 18(1): 185-193.
organ injury [J]. Journal of Radiation Research, 2017 58(5): 636-646. [35] Kim J A, Ahn B N, Kong C S, et al. Chitooligomers inhibit UVA-
[16] Wang A S, Ong P F, Chojnowski A, et al. Loss of lamin B1 is a induced photoaging of skin by regulating TGF-β/Smad signaling
biomarker to quantify cellular senescence in photoaged skin[J]. cascade[J]. Carbohydrate Polymers, 2012, 88(2): 490-495.
Scientific Reports, 2017, 7(1): 15678. [36] Sun Z, Hwang E, Park S Y, et al. Angelica archangelia prevented
[17] Kanaki T, Makrantonaki E, Zouboulis C C. Biomarkers of skin aging collagen degradation by blocking production of matrix metalloproteinases
[J]. Reviews in Endocrine & Metabolic Disorders, 2016, 17(3): 1-10. in UVB-exposed dermal fibroblasts[J]. Photochemistry and
[18] Pillai S, Oresajo C, Hayward J. Ultraviolet radiation and skin aging: Photobiology, 2016, 92(4): 604-610.
Roles of reactive oxygen species, inflammation and protease [37] Lim J Y, Kim O K, Lee J, et al. Protective effect of the standardized
activation, and strategies for prevention of inflammation-induced green tea seed extract on UVB-induced skin photoaging in hairless
matrix degradation-a review[J]. International Journal of Cosmetic mice[J]. Nutrition Research and Practice, 2014, 8(4): 398-403.
Science, 2005, 27(1): 17-34. [38] Lim C Y, Moon J M, Kim B Y, et al. Comparative study of Korean
[19] Sardy M. Role of matrix metalloproteinases in skin ageing[J]. White Ginseng and Korean Red Ginseng on efficacies of OVA-
Connective Tissue Research, 2009, 50(2): 132-138. induced asthma model in mice[J]. Journal of Ginseng Research,
[20] Hall M C, Young D A, Waters J G, et al. The comparative role of 2015, 39(1): 38-45.
activator protein 1 and Smad factors in the regulation of Timp-1 and [39] Hwang E, Sun Z W, Lee T H, et al. Enzyme-processed Korean Red
MMP-1 gene expression by transforming growth factor-beta 1[J]. Ginseng extracts protects against skin damage induced by UVB
Journal of Biological Chemistry, 2003, 278(12): 10304-10313. irradiation in hairless mice[J]. Journal of Ginseng Research, 2013,
[21] Quan T, He T, Kang S, et al. Solar ultraviolet irradiation reduces 37(4): 425-434.
collagen in photoaged human skin by blocking transforming growth [40] Hwang E, Lee T H, Park S Y, et al. Enzyme-modified Panax ginseng
factor-β type Ⅱ receptor/smad signaling[J]. American Journal of inhibits UVB-induced skin aging through the regulation of procollagen
Pathology, 2004, 165(3): 741-751. type I and MMP-1 expression[J]. Food & Function, 2014, 5(2): 265-
[22] Talwar H S, Griffiths C E M, Fisher G J, et al. Reduced type Ⅰ and 274.
type Ⅲ procollagens in photodamaged adult human skin[J]. Journal [41] Markus B, Hill H Z. Ultraviolet B, melanin and mitochondrial DNA:
of Investigative Dermatology, 1995, 105(2): 285-290. Photo-damage in human epidermal keratinocytes and melanocytes
[23] Ajmala Shireen P, Abdul Mujeeb V M, Muraleedharan K. Theoretical modulated by alpha-melanocyte-stimulating hormone[J]. F1000
insights on flavanones as antioxidants and UV filters: A TDDFT and Research, 2016, 5: 881.
NLMO study[J]. Journal of Photochemistry and Photobiology B: [42] Gruijl D, Frank R. UV adaptation: Pigmentation and protection
Biology, 2017, 170: 286-294. against overexposure[J]. Experimental Dermatology, 2017, 26(7):
[24] Lee S C, Tran T M T, Choi J W, et al. Lignin for white natural 557-562.
sunscreens[J]. International Journal of Biological Macromolecules, [43] Wicks N, Chan J, Najera J, et al. UVA phototransduction drives early
2019, 122: 549-554. melanin synthesis in human melanocytes[J]. Current Biology, 2011,
[25] Gregoris E, Fabris S, Bertelle M, et al. Propolis as potential 21(22): 1906-1911.
cosmeceutical sunscreen agent for its combined photoprotective and [44] Pillaiyar T, Manickam M, Jung S H. Recent development of signaling
antioxidant properties[J]. International Journal of Pharmaceutics, pathways inhibitors of melanogenesis[J]. Cell Signal, 2017, 40: 99-
2011, 405(1/2): 97-101. 115.
[26] Masaki H. Role of antioxidants in the skin: Anti-aging effects[J]. [45] Jeong E T, Jin M H, Kim M S, et al. Inhibition of melanogenesis by
Journal of Dermatological Science, 2010, 58(2): 85-90. piceid isolated from Polygonum cuspidatum[J]. Archives of
[27] Petruk G, Del Giudice R, Rigano M M, et al. Antioxidants from Pharmacal Research, 2010, 33(9): 1331-1338.
plants protect against skin photoaging[J]. Oxidative Medicine and [46] Chiang H M, Chien Y C, Wu C H, et al. Hydroalcoholic extract of
Cellular Longevity, 2018, 2018: 1-11. Rhodiolarosea L. (Crassulaceae) and its hydrolysate inhibit melanogenesis
[28] Alonso C, Martí, M, Barba C, et al. Skin permeation and antioxidant in B16F0 cells by regulating the CREB/MITF/tyrosinase pathway
efficacy of topically applied resveratrol[J]. Archives of Dermatological [J]. Food & Chemical Toxicology, 2014, 65(2): 129-139.
Research, 2017, 309(6): 423-431. [47] Wu X, Yin S, Zhong J, et al. Mushroom tyrosinase inhibitors from
[29] Vincenzo N, Angela M, Enza C, et al. Skin photoprotective and Aloe barbadensis Miller[J]. Fitoterapia, 2012, 83(8): 1706-1711.
antiageing effects of a combination of rosemary (Rosmarinus officinalis) [48] Kim H J, Seo S H, Lee B, et al. Identification of tyrosinase inhibitors
and grapefruit (Citrus paradisi) polyphenols[J]. Food & Nutrition from Glycyrrhiza uralensis[J]. Planta Medica, 2005, 71(8): 785-787.
Research, 2016, 60: 31871. [49] Zhang J, Wang C, Wang C, et al. Understanding the role of extracts
[30] Pérez-Sánchez, A, Barrajón-Catalán E, Caturla N, et al. Protective from sea buckthorn seed residues in anti-melanogenesis properties on
effects of citrus and rosemary extracts on UV-induced damage in skin B16F10 melanoma cells[J]. Food & Function, 2018, 9(10): 5402-
cell model and human volunteers[J]. Journal of Photochemistry & 5416.
Photobiology B Biology, 2014, 136(7): 12-18. [50] Zhu W, Gao J. The use of botanical extracts as topical skin-lightening
[31] Sun Z, Park S Y, Hwang E, et al. Dietary Foeniculum vulgare Mill agents for the improvement of skin pigmentation disorders[J]. Journal
extract attenuated UVB irradiation-induced skin photoaging by of Investigative Dermatology Symposium Proceedings, 2008, 13(1):
activating of Nrf2 and inhibiting MAPK pathways[J]. Phytomedicine, 20-24.
2016, 23(12): 1273-1284. [51] Ortiz-Ruiz C V, Berna J, Tudela J, et al. Action of ellagic acid on the
[32] Sun Y, Yang K, Cao Q, et al. Homogenate-assisted vacuum-powered melanin biosynthesis pathway[J]. Journal of Dermatological Science,
bubble extraction of moso bamboo flavonoids for on-line scavenging 2016, 82(2): 115-122.
free radical capacity analysis[J]. Molecules, 2017, 22(7): 1156. [52] Roh E, Kim J E, Kwon J Y, et al. Molecular mechanisms of green tea
[33] Mohamed E S, El-Moneim A E A. Ginkgo biloba extract alleviates polyphenols with protective effects against skin photoaging[J].
oxidative stress and some neurotransmitters changes induced by Critical Reviews in Food Science and Nutrition, 2017, 57(8): 1631-
aluminum chloride in rats[J]. Nutrition, 2016, 35: 93-99. 1637.
[34] Hasham R, Choi H K, Sarmidi M, et al. Protective effects of a
Ficusdeltoidea (Mas cotek) extract against UVB-induced photoageing (下转第 241 页)