[1] Ke Y, Wang XJ. TGFβ Signaling in
Photoaging and UV-Induced Skin Cancer[J]. J Invest Dermatol,
2021,141(4S):1104-1110. DOI: 10.1016/j.jid.2020.11.007.
[2] Zhang J, Wang X, Vikash V, et al. ROS
and ROS-mediated cellular signaling[J]. Oxid Med Cell Longev,
2016,2016:4350965. DOI: 10.1155/2016/4350965.
[3] Katoh Y, Iida K, Kang MI, et al.
Evolutionary conserved N-terminal domain of Nrf2 is essential for the
Keap1-mediated degradation of the protein by proteasome[J]. Arch Biochem
Biophys, 2005,433(2):342-350. DOI: 10.1016/j.abb.2004.10.012.
[4] Wakabayashi N, Dinkova-Kostova AT,
Holtzclaw WD, et al. Protection against electrophile and oxidant stress by
induction of the phase 2 response: fate of cysteines of the Keap1 sensor
modified by inducers[J]. Proc Natl Acad Sci U S A, 2004,101(7):2040-2045. DOI:
10.1073/pnas. 0307301101.
[5] Wakabayashi N, Itoh K, Wakabayashi J, et
al. Keap1-null mutation leads to postnatal lethality due to constitutive Nrf2
activation[J]. Nat Genet, 2003,35(3):238-245. DOI: 10.1038/ng1248.
[6] Dinkova-Kostova AT, Holtzclaw WD, Cole
RN, et al. Direct evidence that sulfhydryl groups of Keap1 are the sensors
regulating induction of phase 2 enzymes that protect against carcinogens and
oxidants[J]. Proc Natl Acad Sci U S A, 2002,99(18):11908-11913. DOI:
10.1073/pnas.172398899.
[7] Baird L, Dinkova-Kostova AT. The
cytoprotective role of the Keap1-Nrf2 pathway[J]. Arch Toxicol,
2011,85(4):241-272. DOI: 10.1007/s00204-011-0674-5.
[8] Suzuki T, Yamamoto M. Molecular basis of
the Keap1-Nrf2 system[J]. Free Radic Biol Med, 2015,88(Pt B):93-100. DOI:
10.1016/j.freeradbiomed.2015.06.006. E
[9] Dhakshinamoorthy S, Long DJ, Jaiswal AK.
Antioxidant regulation of genes encoding enzymes that detoxify xenobiotics and
carcinogens[J]. Curr Top Cell Regul, 2000,36:201-216. DOI:
10.1016/s0070-2137(01)80009-1.
[10] Guo Y, Yu S, Zhang C, et al. Epigenetic
regulation of Keap1-Nrf2 signaling[J]. Free Radic Biol Med, 2015,88(Pt
B):337-349. DOI: 10.1016/j.freeradbiomed.2015.06.013.
[11] Ishii T, Itoh K, Yamamoto M. Roles of
Nrf2 in activation of antioxidant enzyme genes via antioxidant responsive
elements[J]. Methods Enzymol, 2002,348:182-190. DOI:
10.1016/s0076-6879(02)48637-5.
[12] Wakabayashi N, Slocum SL, Skoko JJ, et
al. When NRF2 talks, who's listening[J]. Antioxid Redox Signal, 2010, 13(11):
1649-1663. DOI: 10.1089/ars.2010.3216.
[13] Suzuki T, Motohashi H, Yamamoto M.
Toward clinical application of the Keap1-Nrf2 pathway[J]. Trends in
Pharmacological Sciences, 2013, 34(6): 340-346. DOI:10.1016/j.tips.2013.04.005.
[14] Zhang DD. Mechanistic studies of the
Nrf2-Keap1 signaling pathway[J]. Drug Metabolism Reviews, 2006, 38(4): 769-789.
DOI: 10.1080/03602530600971974.
[15] Kensler TW, Wakabayashi N. Nrf2: friend
or foe for chemoprevention?[J]. Carcinogenesis, 2010, 31(1): 90-99. DOI:
10.1093/carcin/bgp231.
[16] Saw CL, Huang MT, Liu Y, et al. Impact
of Nrf2 on UVB-induced skin inflammation/ photoprotection and photoprotective
effect of sulforaphane[J]. Molecular Carcinogenesis, 2011, 50(6): 479-486. DOI:
10.1002/mc.20725.
[17] Hirota A, Kawachi Y, Yamamoto M, et al.
Acceleration of UVB-induced photoageing in nrf2 gene-deficient mice[J].
Department of Dermatology, 2011, 20(8): 664-668. DOI:
10.1111/j.1600-0625.2011.01292.x.
[18] Kawachi Y, Xu X, Taguchi S, et al.
Attenuation of UVB-induced sunburn reaction and oxidative DNA damage with no
alterations in UVB-induced skin carcinogenesis in Nrf2 gene-deficient mice[J].
J Invest Dermatol, 2008, 128(7): 1773-1779. DOI: 10.1038/sj.jid.5701245.
[19] Thangapandiyan S, Miltonprabu S.
Epigallocatechin gallate supplementation protects against renal injury induced
by fluoride intoxication in rats: Role of Nrf2/HO-1 signaling[J]. Toxicol Rep,
2014,1: 12-30.DOI:10.1016/j.toxrep.2014.01.002.
[20] Gazaryan IG, Thomas B. The status of
Nrf2-based therapeutics: current perspectives and future prospects[J]. Neural
Regen Res, 2016, 11(11): 1708-1711. DOI: 10.4103/1673-5374.194706.
[21] Huerta C, Jiang X,Trevino I, et al.
Characterization of novel small-molecule NRF2 activators: Structural and
biochemical validation of stereospecific KEAP1 binding[J]. Biochimica Biophy
Acta, 2016, 1860(11 PtA): 2537-2552. DOI: 10.1016/j.bbagen.2016.07.026.
[22] Kullavanijaya P, Lim HW.
Photoprotection[J]. J Am Acad Dermatol, 2005, 52(6): 937-958.DOI:
10.1016/j.jaad. 2004.07.063.
[23] Lautenschlager S, Wulf HC, Pittelkow MR.
Photoprotection[J]. Lancet, 2007, 370(9586): 528-537. DOI:
10.1016/S0140-6736(07)60638-2.
[24] Lamore SD, Qiao S, Horn D, et al.
Proteomic identification of cathepsin B and nucleophosmin as novel UVA-targets
in human skin fibroblasts[J]. Photochem Photobiol, 2010, 86(6): 1307-1317. DOI:
10.1111/j.1751-1097.2010. 00818.x.
[25] Svobodová A, Vostálová J. Solar
radiation induced skin damage: review of protective and preventive options[J].
Int J Radiat Biol, 2010, 86(12): 999-1030. DOI: 10.3109/09553002.2010.501842.
[26] Lieder F, Reisen F, Geppert T, et al.
Identification of UV-protective activators of nuclear factor erythroid-derived
2-related factor 2 (Nrf2) by combining a chemical library screen with
computer-based virtual screening[J]. J Biol Chem, 2012,287(39):33001-33013.
DOI: 10.1074/jbc.M112.383430.
[27] Chaiprasongsuk A, Lohakul J, Soontrapa K,
et al. Activation of Nrf2 reduces UVA-Mediated MMP-1 Upregulation via MAPK/AP-1
signaling cascades: the photoprotective effects of sulforaphane and
hispidulin[J]. J Pharmacol Exp Ther, 2017,360(3):388-398. DOI:
10.1124/jpet.116.238048.
[28] Park M, Han J, Lee CS, et al. Carnosic
acid, a phenolic diterpene from rosemary, prevents UV-induced expression of
matrix metalloproteinases in human skin fibroblasts and keratinocytes[J]. Exp
Dermatol, 2013,22(5):336-341. DOI: 10.1111/exd.12138.
[29] Pluemsamran T, Tripatara P,
Phadungrakwittaya R, et al. Redox mechanisms of AVS022, an oriental polyherbal
formula, and its component herbs in protection against induction of matrix
metalloproteinase-1 in UVA-Irradiated keratinocyte HaCaT cells[J]. Evid Based
Complement Alternat Med, 2013,2013:739473. DOI: 10.1155/2013/739473.
[30] Park G, Kim HG, Sim Y, et al.
Sauchinone, a lignan from Saururus chinensis, protects human skin keratinocytes
against ultraviolet B-induced photoaging by regulating the oxidative defense
system[J]. Biol Pharm Bull,2013,36(7):1134-1139. DOI: 10.1248/bpb.b13-00101.
[31] Tao S, Justiniano R, Zhang DD, et al.
The Nrf2-inducers tanshinone I and dihydrotanshinone protect human skin cells
and reconstructed human skin against solar simulated UV[J]. Redox Biol,
2013,1(1):532-541. DOI: 10.1016/j.redox.2013.10.004.
[32] Saito Y, Tsuruma K, Ichihara K, et al.
Brazilian green propolis water extract up-regulates the early expression level
of HO-1 and accelerates Nrf2 after UVA irradiation[J]. BMC Complement Altern
Med, 2015,15(1):421. DOI: 10.1186/s12906-015-0945-4.
[33] Tao S, Park SL, Rojo de la Vega M, et
al. Systemic administration of the apocarotenoid bixin protects skin against
solar UV-induced damage through activation of NRF2[J]. Free Radic Biol Med,
2015,89:690-700. DOI: 10.1016/j.freeradbiomed.2015.08.028.
[34] Li H, Gao A, Jiang N, et al. Protective
effect of curcumin against acute ultraviolet B irradiation-induced
photo-damage[J]. Photochem Photobiol, 2016,92(6):808-815. DOI:
10.1111/php.12628.
[35] Patwardhan J, Bhatt P. Flavonoids
derived from abelmoschus esculentus attenuates UV-B induced cell damage in
human dermal fibroblasts through Nrf2-ARE pathway[J]. Pharmacogn Mag,
2016,12(Suppl 2):S129-38. DOI: 10.4103/0973-1296.182175.
[36] Li H, Li Z, Peng L, et al. Lycium
barbarum polysaccharide protects human keratinocytes against UVB-induced
photo-damage[J]. Free Radic Res, 2017,51(2):200-210. DOI:
10.1080/10715762.2017.1294755.
[37] Myung DB, Han HS, Shin JS, et al.
Hydrangenol isolated from the leaves of hydrangea serrata attenuates wrinkle
formation and repairs skin moisture in UVB-irradiated hairless mice[J].
Nutrients, 2019,11(10):2354. DOI: 10.3390/nu11102354.
[38] Diniyah N, Alam MB, Choi HJ, et al.
Lablab purpureus protects HaCaT cells from oxidative stress-induced cell death
through Nrf2-mediated heme oxygenase-1 expression via the activation of p38 and
ERK1/2[J]. Int J Mol Sci, 2020,21(22):8583. DOI: 10.3390/ijms21228583.
[39] Wang ML, Zhong QY, Lin BQ, et al.
Andrographolide sodium bisulfate attenuates UV‑induced photo‑damage by
activating the keap1/Nrf2 pathway and downregulating the NF‑κB pathway in HaCaT
keratinocytes[J]. Int J Mol Med, 2020,45(2):343-352. DOI:
10.3892/ijmm.2019.4415.
|