DOI QR코드

DOI QR Code

Application of Polymers in Cosmetics

고분자 물질의 화장품 응용

  • 조완구 (전주대학교 의과학대학 기초의과학과)
  • Received : 2013.08.09
  • Accepted : 2013.09.25
  • Published : 2013.09.30

Abstract

Polymers in cosmetics are used to deliver desired attributes to skin and hair. Precisely constructed block and graft copolymers widen the range of available mechanical properties and compatibilities. Stimuli responsive hydrophobic polymers can be triggered to become hydrophilic by changes in their environment and this can confer waterproof properties at low temperature and easy water removal at higher temperatures. Transfer-resistant cosmetics can be possible due to silicone resins. The control of rheology properties in cosmetics gradually continue to be easy with copolymers. Durability of colors and fragrances for rinse-off products can be enhanced by delivery systems from complex coacervates. Polymeric anti-microbials promise product preservation while minimizing the concern of skin permeation. This article reviews recent trends in the use of polymers in cosmetics.

Keywords

References

  1. L. S. K. Dassanayake, D. R. Kodali, and S. Ueno, Formation of oleogels based on edible lipid materials, Curr. Opin. Colloid Interface Sci., 16, 432 (2011). https://doi.org/10.1016/j.cocis.2011.05.005
  2. S. Angot, D. Taton, and Y. Gnanou, Amphiphilic stars and dendrimer-like architectures based on poly(ethylene oxide) and polystyrene, Macromolecules, 23, 5418 (2000).
  3. I. Ere, I. Cianga, E. Serhatli, and Y. Yagci, Synthesis of block copolymers by combination of photo-induced and atom transfer radical polymerization routes, Eur. Poly. J., 38, 1409 (2002). https://doi.org/10.1016/S0014-3057(02)00006-X
  4. U. S. Patent 4,079,028 (1978).
  5. U. S. Patent 4,384,096 (1983).
  6. U. S. Patent 0155637 A1 (2007).
  7. M. Hulden, Colloids Surf., A, 82, 263 (1996).
  8. C. E. Jones, A Study of the Interaction of Hydrophobically-Modified polyols with surfactants, Proceedings of the 4th World Surfactants Congress, CESIO, Barcelona, 439 (1996).
  9. P. Reeve, Tailoring the properties of polymeric rheology modifiers, Proceedings of International Federation of Society of Cosmetic Chemists, IFSCC Conference, Budapest, (1997).
  10. U. S. Patent 5,292,843 (1994).
  11. U. S. Patent 4,426,485 (1984)
  12. S. Dai, K. C. Tam, and R. D. Jenkins, Dynamic light scattering of semi-dilute hydrophobically modified alkali-soluble emulsion solutions with varying length of hydrophobic alkyl chains, Macromol. Chem. Phys., 203, 2312 (2002). https://doi.org/10.1002/macp.200290004
  13. S. Dai, K. C. Tam, and R. D. Jenkins, Dynamic light scattering of semidilute hydrophobically modified alkali-soluble emulsion solutions with different lengths of poly(ethylene oxide) spacer chain, J. Polym. Sci., Part B: Polym. Phys., 43, 3288 (2005). https://doi.org/10.1002/polb.20588
  14. A. A. Abdala, W. Wu, K. R. Olesen, R. D. Jenkins, A. E. Tonelli, and S. A. Khan, Solution rheology of hydrophobically modified associative polymers: effects of backbone composition and hydrophobe concentration J. Rheol., 48, 979 (2004). https://doi.org/10.1122/1.1773781
  15. U. S. Patent 7,217,752 (2007).
  16. U. S. Patent 6,986,895 (2006).
  17. U. S. Patent Application 0231354 (2007).
  18. U. S. Patent 7,288,476 (2007).
  19. U. S. Patent 5,505,937 (1996).
  20. U. S. Patent Application 0081261 (2009).
  21. U. S. Patent Application 0197704 (2007).
  22. U. S. Patent 7,279,153 (2007).
  23. U. S. Patent Application 0190015 (2007).
  24. U. S. Patent Application 0031362 Al (2007).
  25. U. S. Patent 7,262,157 (2007).
  26. U. S. Patent Application 0207109 (2007).
  27. U. S. Patent 7,279,449 (2007).
  28. O. P. Nautiyal, Hydrocolloids, Modified Hydrocolloids as Food Recipes and Formulating Agents. J Food Process Technol., 2, 111(2011).
  29. I. T. Norton and W. J. Frith, Microstructure design in mixed biopolymer composites, Food Hydrocolloids, 15, 543 (2001). https://doi.org/10.1016/S0268-005X(01)00062-5
  30. S. H. Jeong, C. G. Lee, W. G. Cho, and S. H. Kang, Improvement in availability and stability of LG 106W by inclusion with b-cyclodextrin and its derivatives, J. Soc. Cosmet. Scientists Korea, 25(1), 120 (1999).
  31. U. S. Patent 4,124,526 (1978).
  32. U.S . Patent 6,451,345 (2002).
  33. U. S. Patent Application 0047226 (2009).
  34. U. S. Patent Application 0057021 (2008).
  35. Y. H. Kim and O. W. Webster, Hyperbranched polyphenylenes, Polym. Prepr., 29, 310 (1988).
  36. V. Kanga, Current trends for delivering actives to skin, HAPPI, 1, 10 (2005).
  37. U. S. Patent Application 0062854 (2006).
  38. U. S. Patent 6,306,835 (1998).
  39. World Patent Application 085552 (2007).
  40. U. S. Patent Application 0231291 (2007).
  41. World Patent Application 050700 (2007).

Cited by

  1. 서리태 발효추출물이 탈색을 통해 손상된 모발에 미치는 영향 vol.43, pp.2, 2013, https://doi.org/10.15230/scsk.2017.43.2.149