Nanotechnology-Based Cosmetics for Hair Care

Cosmetics - Tập 2 Số 3 - Trang 211-224
Jamie Rosen1, Angelo Landriscina1, Adam Friedman2
1Division of Dermatology, Department of Medicine, Albert Einstein College of Medicine, Bronx, NY 10467, USA
2Department of Physiology and Biophysics, Albert Einstein College of Medicine, Bronx, NY 10461, USA

Tóm tắt

Hair is a significant indicator of health and can have a major impact on an individual’s cosmetic appearance. Research within the cosmetics industry has revealed that when nanomaterials are engineered into hair care, they can enhance the benefits of active ingredients in order to improve hair cosmesis. Within the cosmetics arena, the unique size and intrinsic properties of nanoparticles can be tailored to target the hair follicle and shaft. This review aims to provide an overview of cosmetic nanocarriers that can be employed to improve the appearance of hair.

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Tài liệu tham khảo

Passchier, 1991, Psychological characteristics of women with androgenetic alopecia: A controlled study, Br. J. Dermatol., 125, 248, 10.1111/j.1365-2133.1991.tb14749.x

Jelen, 2014, Changes in the mechanical parameters of hair in a group of women in reproductive age, Neuroendocrinol. Lett., 35, 481

Haveli, 2012, Hair fiber as a nanoreactor in controlled synthesis of fluorescent gold nanoparticles, Nano lett., 12, 6212, 10.1021/nl303107w

Naik, 2004, Skin penetration and distribution of polymeric nanoparticles, J. Control. Release, 99, 53, 10.1016/j.jconrel.2004.06.015

Souto, 2008, Cosmetic features and applications of lipid nanoparticles (SLN, NLC), Int. J. Cosmet. Sci., 30, 157, 10.1111/j.1468-2494.2008.00433.x

Schneider, 2014, Deciphering the functions of the hair follicle infundibulum in skin physiology and disease, Cell Tissue Res., 358, 697, 10.1007/s00441-014-1999-1

Sanchez, 2002, Laser hair reduction in the hirsute patient: A critical assessment, Hum. Reprod. Update, 8, 169, 10.1093/humupd/8.2.169

Beck, R., Guterres, S., and Pohlmann, A. (2011). Nanocosmetics and Nanomedicines: New Approaches for Skin Care, Springer.

Antonio, 2014, Nanotechnology in dermatology, An. Bras. Dermatol., 89, 126, 10.1590/abd1806-4841.20142228

Otberg, 2004, Variations of hair follicle size and distribution in different body sites, J. Investig. Dermatol., 122, 14, 10.1046/j.0022-202X.2003.22110.x

Vogt, 2005, Follicular targeting—A promising tool in selective dermatotherapy, J. Investig. Dermatol. Symp. Proc., 10, 252, 10.1111/j.1087-0024.2005.10124.x

Tenjarla, 1999, Synthesis and evaluation of N-acetylprolinate esters—Novel skin penetration enhancers, Int. J. Pharm., 192, 147, 10.1016/S0378-5173(99)00300-2

Rancan, F., Afraz, Z., Combadiere, B., Blume-Peytavi, U., and Vogt, A. (2013). Nanotechnology in Dermatology, Springer.

Toll, 2004, Penetration profile of microspheres in follicular targeting of terminal hair follicles, J. Investig. Dermatol., 123, 168, 10.1111/j.0022-202X.2004.22717.x

Vogt, 2006, 40 nm, but not 750 or 1,500 nm, nanoparticles enter epidermal CD1a+ cells after transcutaneous application on human skin, J. Investig. Dermatol., 126, 1316, 10.1038/sj.jid.5700226

Patzelt, 2011, Selective follicular targeting by modification of the particle sizes, J. Control. Release, 150, 45, 10.1016/j.jconrel.2010.11.015

Lademann, 2009, Determination of the cuticula thickness of human and porcine hairs and their potential influence on the penetration of nanoparticles into the hair follicles, J. Biomed. Opt., 14, 021014, 10.1117/1.3078813

Lademann, 2007, Nanoparticles—An efficient carrier for drug delivery into the hair follicles, Eur. J. Pharm. Biopharm., 66, 159, 10.1016/j.ejpb.2006.10.019

Lademann, 1998, Penetration of titanium dioxide microparticles in a sunscreen formulation into the horny layer and the follicular orifice, Skin Pharmacol. Physiol., 12, 247, 10.1159/000066249

Labouta, 2013, Interaction of inorganic nanoparticles with the skin barrier: Current status and critical review, Nanomedicine, 9, 39, 10.1016/j.nano.2012.04.004

Patzelt, 2013, Drug delivery to hair follicles, Expert Opin. Drug Deliv., 10, 787, 10.1517/17425247.2013.776038

Huang, 2010, Co-administration of protein drugs with gold nanoparticles to enable percutaneous delivery, Biomaterials, 31, 9086, 10.1016/j.biomaterials.2010.08.046

Lademann, 2010, Which skin model is the most appropriate for the investigation of topically applied substances into the hair follicles?, Skin Pharmacol. Physiol., 23, 47, 10.1159/000257263

Patzelt, 2008, Differential stripping demonstrates a significant reduction of the hair follicle reservoir in vitro compared to in vivo, Eur. J. Pharm. Biopharm., 70, 234, 10.1016/j.ejpb.2008.02.024

Hinsz, 2001, Does women's hair signal reproductive potential?, J. Exp. Soc. Psychol., 37, 166, 10.1006/jesp.2000.1450

Takahashi, 2008, Growth inhibitory effect on bacteria of chitosan membranes regulated with deacetylation degree, Biochem. Eng. J., 40, 485, 10.1016/j.bej.2008.02.009

Lohani, A., Verma, A., Joshi, H., Yadav, N., and Karki, N. (2014). Nanotechnology-based cosmeceuticals. ISRN Dermatol., 2014.

Gergely, 2009, Nanotechnology in the EU cosmetics regulation, Househ. Pers. Care Today, 3, 28

Hu, 2012, A novel preparation method for silicone oil nanoemulsions and its application for coating hair with silicone, Int. J. Nanomed., 7, 5719

Pereda, M.D.C.V., Polezel, M.A., de Campos Dieamant, G., Nogueira, C., Marcelino, A.G., Rossan, M.R., and Santana, M.H.A. (2012). Sericin Cationic Nanoparticles for Application in Products for Hair and Dyed Hair. (Patent US20120164196 A1).

Simonnet, 2004, Nanoemulsions: A new vehicle for skincare products, Adv. Colloid Interface Sci., 108, 145

Dickhof, S., Franklin, J., Busch, P., Kropf, C., and Fischer, D. (2001). Cosmetic composition, for preventing greasy appearance on hair, contains nanoparticles of oxide, oxide-hydrate, hydroxide, carbonate, silicate or phosphate of calcium, magnesium, aluminum, titanium, zirconium or zinc. (Patent DE19946784 A12001).

Morganti, 2012, Anti-dandruff and anti-oily efficacy of hair formulations with a repairing and restructuring activity. The positive influence of the Zn-chitin nanofibrils complexes, J. Appl. Cosmet., 30, 149

Han, G., Friedman, A.J., and Friedman, J.M. (2011). Nitric Oxide, Springer.

Morel, 2011, Current trends in the chemistry of permanent hair dyeing, Chem. Rev., 111, 2537, 10.1021/cr1000145

Thun, 1994, Hair dye use and risk of fatal cancers in US women, J. Natl. Cancer Inst., 86, 210, 10.1093/jnci/86.3.210

Lee, 2013, Permanent hair dye-incorporated hyaluronic acid nanoparticles, J. Microencapsul., 30, 189, 10.3109/02652048.2012.714412

Sampaio, 2011, Diffusion of coloured silica nanoparticles into human hair, Color. Technol., 127, 55, 10.1111/j.1478-4408.2010.00278.x

Gourlaouen, L., and Lee, K. (2004). Composition and method of dyeing keratin fibers comprising luminescent semiconductive nanoparticles. (Patent US20040253757 A1).

Huang, X., Kobos, R.K., and Xu, G. (2007). Hair coloring and cosmetic compositions comprising carbon nanotubes. (Patent US7276088 B2).

Hoffman, 1998, Topical liposome targeting of dyes, melanins, genes, and proteins selectively to hair follicles, J. Drug Target., 5, 67, 10.3109/10611869808995860

Attia, 2009, Androgenetic alopecia in males: A histopathological and ultrastructural study, J. Cosmet. Dermatol., 8, 83, 10.1111/j.1473-2165.2009.00439.x

Gomes, 2014, Lipid nanoparticles for topical and transdermal application for alopecia treatment: Development, physicochemical characterization, and in vitro release and penetration studies, Int. J. Nanomed., 9, 1231

Williamson, 2001, The effect of hair loss on quality of life, J. Eur. Acad. Dermatol. Venereol., 15, 137, 10.1046/j.1468-3083.2001.00229.x

Cash, 1992, The psychological effects of androgenetic alopecia in men, J. Am. Acad. Dermatol., 26, 926, 10.1016/0190-9622(92)70134-2

Zhou, 2009, Fullerene nanomaterials potentiate hair growth, Nanomed. Nanotechnol. Biol. Med., 5, 202, 10.1016/j.nano.2008.09.005

Padois, 2011, Solid lipid nanoparticles suspension versus commercial solutions for dermal delivery of minoxidil, Int. J. Pharm., 416, 300

Madheswaran, 2013, Design and in vitro evaluation of finasteride-loaded liquid crystalline nanoparticles for topical delivery, AAPS PharmSciTech, 14, 45, 10.1208/s12249-012-9888-y

Tsujimoto, 2007, Evaluation of the permeability of hair growing ingredient encapsulated plga nanospheres to hair follicles and their hair growing effects, Bioorg. Med. Chem. Lett., 17, 4771, 10.1016/j.bmcl.2007.06.057

Hwang, 2008, In vivo hair growth promotion effects of cosmetic preparations containing hinokitiol-loaded poly(epsilon-caprolacton) nanocapsules, J. Microencapsul., 25, 351, 10.1080/02652040802000557

Harris, T.J., and Kim, A.A.C. (2014). Hair removal with nanoparticles. (Patent US8821941 B2).