Safety Assessment of Citrus Plant- and Seed-Derived Ingredients as Used in Cosmetics

1. Nikitakis, J, Lange, B. International Cosmetic Ingredient Dictionary and Handbook. 16 ed. Washington, DC: Personal Care Products Council; 2016.
Google Scholar2. Burnett, CL, Bergfeld, WF, Belsito, D, et al. Safety Assessment of Citrus Fruit-Derived Ingredients as Used in Cosmetics. 1620 L Street NW, Suite 1200. Washington, DC: Cosmetic Ingredient Review; 2015 20036-47022015.
Google Scholar3. Burnett, CL, Fiume, MM, Bergfeld, WF, et al. Safety Assessment of Citrus-Derived Peel Oils as Used in Cosmetics. 1620 L Street NW, Suite 1200. Washington, DC: Cosmetic Ingredient Review; 2014 20036-47022014.
Google Scholar4. Burnett, CL, Bergfeld, WF, Belsito, DV, et al. Safety Assessment of Citrus Peel-Derived Ingredients as Used in Cosmetics. 1620 L Street NW, Suite 1200. Washington, DC: Cosmetic Ingredient Review; 2016 20036-47022016.
Google Scholar5. Burnett, CL, Heldreth, BA, Bergfeld, WF, et al. Safety Assessment of Citrus Flower- and Leaf-Derived Ingredients as Used in Cosmetics. 1620 L St NW, Suite 1200. Washington, DC: Cosmetic Ingredient Review; 2019 20036-47022016.
Google Scholar6. Burnett, CL, Fiume, MM, Bergfeld, WF, et al. Final Report on Plant-Derived Fatty Acid Oils as Used in Cosmetics. Washington, DC. Cosmetic Ingredient Review; 2011.
Google Scholar7. Personal Care Products Council . Review of Citrus Genus Species Names. 6-5-2015
Google Scholar8. Native Extracts . Certificate of Analysis NSO Finger Lime Seed Oil Organic (Citrus Australasica Seed Oil); 2015. Unpublished data submitted by the Personal Care Products Council.
Google Scholar9. Native Extracts . Certificate of Analysis NSO Desert Lime Seed Oil Organic (Citrus Glauca Seed Oil); 2014. Unpublished data submitted by the Personal Care Products Council.
Google Scholar10. Council of Experts, United States Pharmacopeial Convention . Food Chemicals Codex. 8th ed. Rockville, MD: United States Pharmacopeia (USP); 2012.
Google Scholar11. Anonymous . Summary information: Junos Seed Extract; 2016.
Google Scholar12. Greentech Biotechnologies . Manufacturing Process Citrus Paradisi (Grapefruit) Seed Extract; 2015. Unpublished data submitted by the Personal Care Products Council.
Google Scholar13. International Fragrance Association . IFRA Standards for Limonene. http://www.ifraorg.org/en-us/standards-library#.V6JPMDsrK70 Last Updated Date 2016. Accessed March 8, 2016.
Google Scholar14. International Fragrance Association . IFRA Standards for Linalool. http://www.ifraorg.org/en-us/standards-library#.V6JPMDsrK70 Last Updated Date 2016. Accessed May 8, 2016
Google Scholar15. Ford, RA, Api, AM, Letizia, CS . Petitgrain bigarade oil. Food Chem Toxicol. 1992;30(suppl l):101S.
Google Scholar16. Eldahshan, OA, Halim, AF. Comparison of the composition and antimicrobial activities of the essential oils of green branches and leaves of Egyptian navel orange (Citrus sinensis (L.) Osbeck var. Malesy). Chem Biodivers. 2016;13(6):681-685.
Google Scholar | Crossref | Medline17. Akpata, MI, Akubor, PI. Chemical composition and selected functional properties of sweet orange (Citrus sinensis) seed flour. Plant Foods Hum Nutr. 1999;54(4):353-362.
Google Scholar | Crossref | Medline18. Food and Drug Administration (FDA) . Frequency of Use of Cosmetic Ingredients. Washington, DC: FDA Database.FDA; 2016.
Google Scholar19. Personal Care Products Council . Concentration of use by FDA product category: citrus seed- and plant-derived ingredients. 2 15, 2015
Google Scholar20. Rothe, H, Fautz, R, Gerber, E, et al. Special aspects of cosmetic spray safety evaluations: principles on inhalation risk assessment. Toxicol Lett. 2011;205(2):97-104.
Google Scholar | Crossref | Medline | ISI21. Rothe, H . Special Aspects of Cosmetic Spray Evalulation. Washington, DC: Unpublished data presented at the 26 September CIR Expert Panel Meeting. September 26, 2011.
Google Scholar22. Bremmer, HJ, Prud’homme de Lodder, LCH, Engelen, JGM. Cosmetics fact seet: to assess the risks for the consumerreport No. RIVM 320104001/2006; Updated version for ConsExpo 4. 2006. pp. 1-77.
Google Scholar23. Johnsen, MA . The influence of particle size. Spray Technol Mark. 2004;14(11):24-27.
Google Scholar24. CIR Science and Support Committee of the Personal Care Products Council (CIR SSC). 11-3-2015 . Cosmetic Powder Exposure.
Google Scholar25. Aylott, RI, Byrne, GA, Middleton, JD, Roberts, ME. Normal use levels of respirable cosmetic talc: Preliminary study. Int J Cosmet Sci. 1976;1(3):177-186.
Google Scholar | Crossref26. Russell, RS, Merz, RD, Sherman, WT, Sivertson, JN. The determination of respirable particles in talcum powder. Food Chem Toxicol. 1979;17(2):117-122.
Google Scholar | Crossref27. Union European , Regulation (EC) No. 1223/2009 of the European parliament and of the council of 30 November 2009 on cosmetic products; 2009. http://eur-lex.europa.eu/LexUriServ/LexUriServ.do?uri=OJ, 342. en: PDF0059:L:20090209
Google Scholar28. Fujii, T, Furukawa, S, Suzuki, S. Studies on compounded perfumes for toilet goods. On the non-irritative compounded perfumes for soaps. J Jpn Oil Chem Soc. 1972;21(12):904-908.
Google Scholar | Crossref29. Anonymous . Study of acute skin compatibility of a test item (foot gel containing 0.15% citrus grandis (grapefruit) seed extract); 2016:48-hours occlusive patch-test
Google Scholar30. Rudzki, E, Grzywa, Z, Bruo, WS. Sensitivity to 35 essential oils. Contact Dermatitis. 1976;2:196-200.
Google Scholar | Crossref | Medline31. Forbes, PD, Urbach, F, Davies, RE. Phototoxicity testing of fragrance raw materials. Food Chem Toxicol. 1977;15:55-60.
Google Scholar | Crossref32. Tisserand, R, Young, R. Essential Oil Safety. 2nd ed. Churchill Livingston Elsevier; 2014.
Google Scholar33. Kim, TW, Kim, KK, Kang, YH, Kim, DJ, Choe, M. Fatty acid analysis and regulatory effects of citron (Citrus junosSieb. ex TANAKA) seed oil on nitric oxide production, lipid accumulation, and leptin secretion. J Nutr Health. 2014;47(4):221-228. http://synapse.koreamed.org/DOIx.php?id=10.4163/jnh.2014.47.4.221.
Google Scholar | Crossref

留言 (0)

沒有登入
gif