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Page 12 of 14                                  Vandiver et al. Plast Aesthet Res 2020;7:63  I  http://dx.doi.org/10.20517/2347-9264.2020.159

               52.  Kwak MK, Wakabayashi N, Greenlaw JL, Yamamoto M, Kensler TW. Antioxidants enhance mammalian proteasome expression through
                   the Keap1-Nrf2 signaling pathway. Mol Cell Biol 2003;23:8786-94.
               53.  Wu Y, Zheng X, Xu XG, et al. Protective effects of a topical antioxidant complex containing vitamins C and E and ferulic acid against
                   ultraviolet irradiation-induced photodamage in Chinese women. J Drugs Dermatol 2013;12:464-8.
               54.  Darr D, Dunston S, Faust H, Pinnell S. Effectiveness of antioxidants (vitamin C and E) with and without sunscreens as topical
                   photoprotectants. Acta Derm Venereol 1996;76:264-8.
               55.  Elmets CA, Singh D, Tubesing K, Matsui M, Katiyar S, Mukhtar H. Cutaneous photoprotection from ultraviolet injury by green tea
                   polyphenols. J Am Acad Dermatol 2001;44:425-32.
               56.  Afaq F, Adhami VM, Ahmad N. Prevention of short-term ultraviolet B radiation-mediated damages by resveratrol in SKH-1 hairless
                   mice. Toxicol Appl Pharmacol 2003;186:28-37.
               57.  Parrado C, Philips N, Gilaberte Y, Juarranz A, González S. Oral photoprotection: effective agents and potential candidates. Front Med
                   (Lausanne) 2018;5:188.
               58.  Bjelakovic G, Nikolova D, Gluud LL, Simonetti RG, Gluud C. Antioxidant supplements for prevention of mortality in healthy
                   participants and patients with various diseases. Sao Paulo Med J 2015;133:164-5.
               59.  Chung JH, Youn SH, Kwon OS, Cho KH, Youn JI, Eun HC. Regulations of collagen synthesis by ascorbic acid, transforming growth
                   factor-beta and interferon-gamma in human dermal fibroblasts cultured in three-dimensional collagen gel are photoaging- and aging-
                   independent. J Dermatol Sci 1997;15:188-200.
               60.  Orringer JS, Hammerberg C, Hamilton T, et al. Molecular effects of photodynamic therapy for photoaging. Arch Dermatol
                   2008;144:1296-302.
               61.  Manuskiatti W, Pattanaprichakul P, Inthasotti S, et al. Thermal response of in vivo human skin to fractional radiofrequency microneedle
                   device. Biomed Res Int 2016;2016:6939018.
               62.  Sajjadi AY, Mitra K, Grace M. Expression of heat shock proteins 70 and 47 in tissues following short-pulse laser irradiation: assessment
                   of thermal damage and healing. Med Eng Phys 2013;35:1406-14.
               63.  Mackanos MA, Contag CH. Pulse duration determines levels of Hsp70 induction in tissues following laser irradiation. J Biomed Opt
                   2011;16:078002.
               64.  McBride HM, Neuspiel M, Wasiak S. Mitochondria: more than just a powerhouse. Curr Biol 2006;16:R551-60.
               65.  Mellem D, Sattler M, Pagel-Wolff S, et al. Fragmentation of the mitochondrial network in skin in vivo. PLoS One 2017;12:e0174469.
               66.  Prahl S, Kueper T, Biernoth T, et al. Aging skin is functionally anaerobic: importance of coenzyme Q10 for anti aging skin care.
                   Biofactors 2008;32:245-55.
               67.  Hamanaka RB, Glasauer A, Hoover P, et al. Mitochondrial reactive oxygen species promote epidermal differentiation and hair follicle
                   development. Sci Signal 2013;6:ra8.
               68.  Velarde MC, Flynn JM, Day NU, Melov S, Campisi J. Mitochondrial oxidative stress caused by Sod2 deficiency promotes cellular
                   senescence and aging phenotypes in the skin. Aging (Albany NY) 2012;4:3-12.
               69.  Singh B, Schoeb TR, Bajpai P, Slominski A, Singh KK. Reversing wrinkled skin and hair loss in mice by restoring mitochondrial
                   function. Cell Death Dis 2018;9:735.
               70.  Kenyon, CJ. The genetics of ageing. Nature 2010;464:504-12.
               71.  Barzilai N, Huffman DM, Muzumdar RH, Bartke A. The critical role of metabolic pathways in aging. Diabetes 2012;61:1315-22.
               72.  Choi YJ, Moon KM, Chung KW, et al. The underlying mechanism of proinflammatory NF-κB activation by the mTORC2/Akt/IKKα
                   pathway during skin aging. Oncotarget 2016;7:52685-94.
               73.  Wu CL, Qiang L, Han W, Ming M, Viollet B, He YY. Role of AMPK in UVB-induced DNA damage repair and growth control. Oncogene
                   2013;32:2682-9.
               74.  Zhao P, Sui BD, Liu N, et al. Anti-aging pharmacology in cutaneous wound healing: effects of metformin, resveratrol, and rapamycin by
                   local application. Aging Cell 2017;16:1083-93.
               75.  Golubtsova NN, Filippov FN, Gunin AG. Age-related changes in the content of sirtuin 1 in fibroblasts of human dermis. Adv Gerontol
                   2017;30:375-80.
               76.  Kalfalah F, Sobek S, Bornholz B, et al. Inadequate mito-biogenesis in primary dermal fibroblasts from old humans is associated with
                   impairment of PGC1A-independent stimulation. Exp Gerontol 2014;56:59-68.
               77.  Kuehne A, Hildebrand J, Soehle J, et al. An integrative metabolomics and transcriptomics study to identify metabolic alterations in aged
                   skin of humans in vivo. BMC Genomics 2017;18:169.
               78.  Randhawa M, Sangar V, Tucker-Samaras S, Southall M. Metabolic signature of sun exposed skin suggests catabolic pathway overweighs
                   anabolic pathway. PLoS One 2014;9:e90367.
               79.  Coppé JP, Patil CK, Rodier F, Sun Y, Muñoz DP, et al. Senescence-associated secretory phenotypes reveal cell-nonautonomous functions
                   of oncogenic RAS and the p53 tumor suppressor. PLoS Biol 2008;6:2853-68.
               80.  Krtolica A, Parrinello S, Lockett S, Desprez PY, Campisi J. Senescent fibroblasts promote epithelial cell growth and tumorigenesis: a link
                   between cancer and aging. Proc Natl Acad Sci U S A 2001;98:12072-7.
               81.  Ressler S, Bartkova J, Niederegger H, et al. p16INK4A is a robust in vivo biomarker of cellular aging in human skin. Aging Cell
                   2006;5:379-89.
               82.  Castilho RM, Squarize CH, Chodosh LA, Williams BO, Gutkind JS. mTOR mediates Wnt-induced epidermal stem cell exhaustion and
                   aging. Cell Stem Cell 2009;5:279-89.
               83.  Malaquin N, Vercamer C, Bouali F, et al. Senescent fibroblasts enhance early skin carcinogenic events via a paracrine MMP-PAR-1 axis.
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