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ANTI-AGEING 137


ingredient for cosmetic applications, particularly suitable to treat and ameliorate skin imperfections caused by the ageing process.


PC


References 1 Mukherjeea PK, Maity N, Nema NK, Sarkar BK.


Bioactive compounds from natural resources against skin aging. Phytomedicine 2011; 19: 64–73.


2 Pinnell SR. Cutaneous photodamage, oxidative stress, and topical antioxidant protection. J. Am. Acad. Dermatol 2003; 48: 1-19.


3 Sakaki-Yumoto M, Katsuno Y, Derynck R. TGF-β family signaling in stem cells. Biochim. Biophys. Acta 2013; 1830: 2280–2296.


4 Walker RG, Czepnik M, Goebel EJ, et al. Structural basis for potency differences between GDF8 and GDF11. BMC Biol, 2017; 15: 19.


5 Oh SP, Yeo CY, Lee Y, Schrewe H, Whitman M, Li E. Activin type IIA and IIB receptors mediate Gdf11 signaling in axial vertebral patterning. Genes Dev 2002; 16: 2749-2754.


6 Conese M, Carbone A, Beccia E, Angiolillo A. The Fountain of Youth: A tale of parabiosis, stem cells, and rejuvenation. Open Med 2017; 12: 376-383.


7 Tito A, Barbulova A, Zappelli C, et al. The Growth Differentiation Factor 11 is Involved in Skin Fibroblast Ageing and is Induced by a Preparation of Peptides and Sugars Derived from Plant Cell Cultures. Mol Biotechnol, 2019; 61(3): 209-220.


8 Sinha M, Jang YJ, Oh J et al. Restoring systemic GDF11 levels reverses age-related dysfunction in mouse skeletal muscle. Science 2014; 344: 649-652.


9 Austin S, St-Pierre J. PGC1α and mitochondrial metabolism—emerging concepts and relevance in ageing and neurodegenerative disorders. J Cell Sci 2012; 125 (Pt 21): 4963-71.


10 Wenz T, Rossi SG, Rotundo RL, Spiegelman BM, Moraes CT. Increased muscle PGC-1alpha expression protects from sarcopenia and metabolic disease during aging. Proc Natl Acad Sci U S A 2009; 106(48): 20405-10.


11 Singh B, Trenton R, Bajpai P, Slominski A, Keshav K. Singh Reversing wrinkled skin and hair loss in mice by restoring mitochondrial function. Cell Death and Disease 2018; 9: 735.


12 Dali-Youcef N, Lagouge M, Froelich B, Koehl C, Schoonjans K, Auwerx J. Sirtuins: the ‘magnificent seven’, function, metabolism and longevity. Annals of Medicine. 2007; 39: 335– 345.


13 Lavu S, Boss O, Elliott PJ, Lambert PD. Sirtuins—novel therapeutic targets to treat age- associated diseases. Nat Rev Drug Discov 2008; 7(10): 841-53.


14 Kumar S, Lombard DB. Mitochondrial sirtuins and their relationships with metabolic disease and cancer. Antioxid Redox Signal. 2015; 22 (12): 1060-77.


15 Apone F, Barbulova A, Zappelli C, Colucci G. Green biotechnology in cosmetics: using plant cell cultures as sources of active ingredients.


April 2020 HPC Today 2017 12(3)


16 Barbulova A, Apone F, Colucci G. Plant Cell Cultures as Source of Cosmetic Active Ingredients. Cosmetics 2014; 1: 94-104.


17 Altamura MM, Della Rovere F, Fattorini L., D’Angeli S., Falasca G. Recent Advances on Genetic and Physiological Bases of In Vitro Somatic Embryo Formation. In: Germana M., Lambardi M. (eds) In Vitro Embryogenesis in Higher Plants. Methods in Molecular Biology, 2016, vol 1359. Humana Press, New York, NY.


18 Zhang X, Wharton W, Yuan Z, Tsai SC, Olashaw N, Seto E. Activation of the Growth- Differentiation Factor 11 Gene by the Histone Deacetylase (HDAC) Inhibitor Trichostatin A and Repression by HDAC3. Mol Cell Biol 2004; 24(12): 5106–5118.


19 Inman GJ, Nicolás FJ, Callahan JF, Harling JD, Gaster LM, Reith AD, Laping NJ, Hill CS. SB- 431542 is a potent and specific inhibitor of transforming growth factor-beta superfamily type I activin receptor-like kinase (ALK) receptors ALK4, ALK5, and ALK7. Mol Pharmacol 2002; 62(1): 65-74.


20 Rasbach KA, Schnellman RG. Isoflavones promote mitochondrial biogenesis. J Pharmacol Exp Ther, 2008; 325(2): 536-43.


21 Zappelli C, Barbulova A, Apone F, Colucci G. Effective Active ingredients obtained through Biotechnology, Cosmetics 2016; 3: 39.


22 Yang X, Zhang X. Regulation of somatic embryogenesis in higher plants. Critical Rev in Plant Sci, 2010; 29: 36-57.


23 Oliveira MM, Ratti BA, Daré RG, et al. Dihydrocaffeic Acid Prevents UVB-Induced Oxidative Stress Leading to the Inhibition of Apoptosis and MMP-1 Expression via p38 Signaling Pathway. Oxid Med Cell Longev, 2019: 2419096.


24 Ratz-Łyko A, Arct J, Majewski S, Pytkowska K. Influence of polyphenols on the physiological processes in the skin. Phytother Res. 2015 Apr; 29(4):509-17.


25 Gachon CMM, Langlois-Meurinne M, Saindrenan P. Plant secondary metabolism glycosyltransferases: the emerging functional analysis. Trends Plant Sci 2005; 10: 542-549.


26 Shin S, Kum H, Ryu D, Kim M, Jung E, Park D. Protective effects of a new phloretin derivative against UVB-induced damage in skin cell model and human volunteers. Int J Mol Sci. 2014; 15(10): 18919-40.


27 Ratz-Łyko A, Arct J. Resveratrol as an active ingredient for cosmetic and dermatological applications: a review. J Cosmet Laser Ther. 2019; 21(2):84-90.


28 Costa A, Facchini G, Pinheiro ALTA, da Silva MS, Bonner MY, Arbiser J, Eberlin S. Honokiol protects skin cells against inflammation, collagenolysis, apoptosis, and senescence caused by cigarette smoke damage. Int J Dermatol. 2017; 56(7):754-761.


29 Gunia-Krzyżak A, Słoczyńska K, Popiół J, Koczurkiewicz P, Marona H, Pękala E. Cinnamic acid derivatives in cosmetics: current use and future prospects. Int J Cosmet Sci. 2018; 40(4):356-366.


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