Natural products and their mechanisms in potential photoprotection of the skin

Aguilar E and Bonilla P 2009 Antioxidant activity and immunological of flavonoids isolated from leaves of Smallanthus sonchifolius (yacon). Cienc. Invest. 12 15–23

Google Scholar 

Al-Niaimi F and Zhen Chiang NY 2017 Topical vitamin C and the skin: Mechanisms of action and clinical applications. J. Clin. Aesthet. Dermatol. 10 14–17

Google Scholar 

Ando H, Niki Y, Ito M, et al. 2012 Melanosomes are transferred from melanocytes to keratinocytes through the processes of packaging, release, uptake, and dispersion. J. Invest. Dermatol. 132 1222–1229

Article  Google Scholar 

Arulselvan P, Fard MT, Tan WS, et al. 2016 Role of antioxidants and natural products in inflammation. Oxid. Med. Cell. Longev. 2016 5276130

Article  Google Scholar 

Ashley NT, Weil ZM and Nelson RJ 2012 Inflammation: Mechanisms, costs, and natural variation. Annu. Rev. Ecol. Evol. Syst. 43 385–406

Article  Google Scholar 

Barclay LRC, Basque MC, Stephenson VC and Vinqvist MR 2007 Photooxidations initiated or sensitized by biological molecules: singlet oxygen versus radical peroxidation in micelles and human blood plasma. Photochem. Photobiol. 78 248–255

Article  Google Scholar 

Benavente-García O, Castillo J, Marin FR, Ortuño A and Del Río JA 1997 Uses and properties of citrus flavonoids. J. Agric. Food Chem. 45 4505–4515

Article  Google Scholar 

Bernstein C, Bernstein H, Payne CM and Garewal H 2002 DNA repair/pro-apoptotic dual-role proteins in five major DNA repair pathways: Fail-safe protection against carcinogenesis. Mutat. Res. Rev. Mutat. Res. 511 145–178

Article  Google Scholar 

Biesalski HK 2007 Polyphenols and inflammation: Basic interactions. Curr. Opin. Clin. Nutr. Metab. Care 10 724–728

Article  Google Scholar 

Bilaç C, Şahin MT and Öztürkcan S 2014 Chronic actinic damage of facial skin. Clin. Dermatol. 32 752–762

Article  Google Scholar 

BrglezMojzer E, KnezHrnčič M, Škerget M, Knez Ž and Bren U 2016 Polyphenols: Extraction methods, antioxidative action, bioavailability and anticarcinogenic effects. Molecules 21 901

Article  Google Scholar 

Bultel-Poncé V, Felix-Theodore F, Sarthon C, Ponge JF and Bodo B 2004 New pigments from the terrestrial cyanobacterium Scytonema sp. collected on the Mitaraka Inselberg, French Guyana. J. Nat. Prod. 67 678–681

Article  Google Scholar 

Calixto JB, Campos MM, Otuki MF and Santos ARS 2004 Anti-inflammatory compounds of plant origin. Part II. Modulation of proinflammatory cytokines, chemokines and adhesion molecules. Planta Med. 70 93–103

Article  Google Scholar 

Carletti G, Nervo G and Cattivelli L 2014 Flavonoids and melanins: A common strategy across two kingdoms. Int. J. Biol. Sci. 10 1159

Article  Google Scholar 

Chinembiri TN, Du Plessis LH, Gerber M, Hamman JH and Du Plessis J 2014 Review of natural compounds for potential skin cancer treatment. Molecules 19 11679–11721

Article  Google Scholar 

Chompoo J, Upadhyay A, Fukuta M and Tawata S 2012 Effect of Alpinia zerumbet components on antioxidant and skin diseases-related enzymes. BMC Complement. Altern. Med. 12 1058

Article  Google Scholar 

Cuevas A, Saavedra N, Salazar LA and Abdalla DSP 2013 Modulation of immune function by polyphenols: Possible contribution of epigenetic factors. Nutrients 5 2314–2332

Article  Google Scholar 

Dangles O and Dufour C 2006 Flavonoids: chemistry, biochemistry, and applications (Taylor & Francis)

DeBuys HV, Levy SB, Murray JC, Madey DL and Pinnell SR 2000 Modern approaches to photoprotection. Dermatol. Clin. 18 577–590

Article  Google Scholar 

Ding S, Jiang H and Fang J 2018 Regulation of immune function by polyphenols. J. Immunol. Res. 2018 1264074

Article  Google Scholar 

Epstein H 2009 Cosmeceuticals and polyphenols. Clin. Dermatol. 27 475–478

Article  Google Scholar 

Fagundo E, Rodríguez-García C, Rodríguez C, et al. 2011 Estudio de las características fenotípicas y exposición a radiación ultravioleta en pacientes diagnosticados de melanoma cutáneo. Actas Dermosifiliogr. 102 599–604

Article  Google Scholar 

FigueiredoKopke LF and Schmidt SM 2002 Carcinoma basocelular. An. Bras. Dermatol. 77 249–285

Google Scholar 

Franco GN 2003 Histología de la piel. MG. Rev. Fac. Med. UNAM 46 130–133

Google Scholar 

Fresco P, Borges F, Diniz C and Marques MPM 2006 New insights on the anticancer properties of dietary polyphenols. Med. Res. Rev. 26 747–766

Article  Google Scholar 

Garg A, Garg S, Zaneveld LJD and Singla AK 2001 Chemistry and pharmacology of the Citrus bioflavonoid hesperidin. Phyther. Res. 15 655–669

Article  Google Scholar 

Gaspar LR and Campos PMBG 2007 Photostability and efficacy studies of topical formulations containing UV-filters combination and vitamins A, C and E. Int. J. Pharm. 343 181–189

Article  Google Scholar 

Ghersetich I, Troiano M, De Giorgi V and Lotti T 2007 Receptors in skin ageing and antiageing agents. Dermatol. Clin. 25 655–662

Article  Google Scholar 

Giampieri F, Alvarez-Suarez JM, Tulipani S, et al. 2012 Photoprotective potential of strawberry (Fragaria × ananassa) extract against UV-A irradiation damage on human fibroblasts. J. Agric. Food Chem. 60 2322–2327

Article  Google Scholar 

Gil EM and Kim TH 2000 UV-induced immune suppression and sunscreen. Photodermatol. Photoimmunol. Photomed. 16 101–110

Article  Google Scholar 

González M, Vernhes M and Sánchez Á 2009 La radiación ultravioleta. Su efecto dañino y consecuencias para la salud humana. Theoria 18 69–80

Google Scholar 

Gregoris E, Fabris S, Bertelle M, Grassato L and Stevanato R 2011 Propolis as potential cosmeceutical sunscreen agent for its combined photoprotective and antioxidant properties. Int. J. Pharm. 405 97–101

Article  Google Scholar 

Guo Q, Li F, Duan Y, et al. 2020 Oxidative stress, nutritional antioxidants and beyond. Sci. China Life Sci. 63 866–874

Article  Google Scholar 

Hanawalt PC 1972 Repair of genetic material in living cells. Endeavour 31 83–87

Google Scholar 

Havsteen BH 2002 The biochemistry and medical significance of the flavonoids. Pharmacol. Ther. 96 67–202

Article  Google Scholar 

Henley SJ, Ward EM, Scott S, et al. 2020 Annual report to the nation on the status of cancer, part I: National cancer statistics. Cancer 126 2225–2249

Article  Google Scholar 

Hernández-Gil Sánchez J, BuendíaEisman A and Serrano Ortega S 2006 Patrones de exposición solar y tipos de cáncer de piel. Piel 21 472–476

Article  Google Scholar 

Ijaz S, Akhtar N, Khan MS, et al. 2018 Plant derived anticancer agents: A green approach towards skin cancers. Biomed. Pharmacother. 103 1643–1651

Article  Google Scholar 

Imokawa G 2008 Recent advances in characterizing biological mechanisms underlying UV-induced wrinkles: a pivotal role of fibrobrast-derived elastase. Arch. Dermatol. Res. 300 7–20

Article  Google Scholar 

Iqbal J, Abbasi BA, Ahmad R, et al. 2019 Potential phytochemicals in the fight against skin cancer: Current landscape and future perspectives. Biomed. Pharmacother. 109 1381–1393

Article  Google Scholar 

Jafarinia M, Sadat Hosseini M, Kasiri N, et al. 2020 Quercetin with the potential effect on allergic diseases. Allergy, Asthma Clin. Immunol. 16 36

Article  Google Scholar 

Janakiram NB, Mohammed A, Madka V, Kumar G and Rao CV 2016 Prevention and treatment of cancers by immune modulating nutrients. Mol. Nutr. Food Res. 60 1275–1294

Article  Google Scholar 

Janisch KM, Milde J, Schempp H and Elstner EF 2005 Vitamin C, vitamin E and flavonoids. Dev. Ophthalmol. 38 59–69

Article  Google Scholar 

Jemal A, Tiwari RC, Murray T, et al. 2004 Cancer Statistics 2004. CA. Cancer J. Clin. 54 8–29

Article  Google Scholar 

Kashif M, Akhtar N and Mustafa R 2017 An overview of dermatological and cosmeceutical benefits of Diospyros kaki and its phytoconstituents. Rev. Bras. Farmacogn. 27 650–662

Article  Google Scholar 

Kelly C, Hunter K, Crosbie L, Gordon MJ and Dutta-Roy AK 1996 Modulation of human platelet function by food flavonoids. Biochem. Soc. Trans. 24 197S-197S

Article  Google Scholar 

Khaidakov M, Bishop ME, Manjanatha MG, et al. 2001 Influence of dietary antioxidants on the mutagenicity of 7,12-dimethylbenz[a]anthracene and bleomycin in female rats. Mutat. Res. Fundam. Mol. Mech. Mutagen. 480–481 163–170

Article  Google Scholar 

Kielbassa C and Epe B 2000 DNA damage induced by ultraviolet and visible light and its wavelength dependence. Methods Enzymol. 319 436–445

Article  Google Scholar 

Kielbassa C, Roza L and Epe B 1997 Wavelength dependence of oxidative DNA damage induced by UV and visible light. Carcinogenesis 18 811–816

Article  Google Scholar 

Kobzar G, Mardla V and Samel N 2005 Effects of α-tocopherol, L-arginine, and quercetin on aggregation of human platelets. Nutr. Res. 25 569–575

Article  Google Scholar 

Kostelac D, Rechkemmer G and Briviba K 2003 Phytoestrogens modulate binding response of estrogen receptors α and β to the estrogen response element. J. Agric. Food Chem. 51 7632–7635

Article  Google Scholar 

Kuiper GG, Lemmen JG, Carlsson B, et al. 1998 Interaction of estrogenic chemicals and phytoestrogens with estrogen receptor β. Endocrinology 139 4252–4263

Article  Google Scholar 

Kullavanijaya P and Lim HW 2005 Photoprotection. J. Am. Acad. Dermatol. 52 937–958

Article  Google Scholar 

Kumar JP and Mandal BB 2019 Inhibitory role of silk cocoon extract against elastase, hyaluronidase and UV radiation-induced matrix metalloproteinase expression in human dermal fibroblasts and keratinocytes. Photochem. Photobiol. Sci. 18 1259–1274

Article  Google Scholar 

Larsen GL and Henson PM 1983 Mediators of inflammation. Annu. Rev. Immunol. 1 335–359

Article  Google Scholar 

Lee KA, Lee YJ, Ban JO, et al. 2012 The flavonoid resveratrol suppresses growth of human malignant pleural mesothelioma cells through direct inhibition of specificity protein 1. Int. J. Mol. Med. 30 21–27

留言 (0)

沒有登入
gif