[2] Rieger M. M., Rhein L.D., Dekker M., "Surfactants in Cosmetics," Flavour and Fragrance Journal. 13(4): 279-281 (1997).
[3] Lorna A.,
Types of Surfactants in Your Shampoo.
Available at: http://www.hairmomentum.com /types-of-surfactants-in-shampoo. Accessed August 19, (2018).
[5] Boss J. D.,
Environmental Working Group: Skin Deep Cosmetic Safety Database:
U.S. Food and Drug Administration, 8(2): (2006).
[6] B. P., "Sodium Lauryl Sulfate", Paula's Choice: Superior Skin Care, Expert Information
[9] Lee C.H., Kim H. W., Han H.J., Park C.W.,
A Comparison Study of Nonanoic Acid and Sodium Lauryl Sulfate in Skin Irritation,
Exogenous Dermatology,
3(1): 19-25 (2004).
[11] “Sodium Lauryl Sulfate”, Available at: https://en.wikipedia.org/wiki/Sodium_laureth_sulfate . Accessed March 4, (2019).
[16] Yun Nian T., Qingxin L,
Microbial Production of Rhamnolipids Using Sugars as Carbon Sources,
Microbial Cell Factories, 17(1): 89-89 (2018).
[17] Mohammed A., Tayel A., Elguindy N.M.,
Production of New Rhamnolipids Rha C16-C16 by Burkholderia sp. through Biodegradation of Diesel and Biodiesel,
Beni-Suef University Journal of Basic and Applied Sciences, 7(4): 492-498 (2018).
[18] Costa S.G., Nitschke M., Haddad R., Eberlin M.N., Contiero J.,
Production of Pseudomonas aeruginosa LBI Rhamnolipids Following Growth on Brazilian Native Oils,
Process Biochemistry, 41(2): 483-488 (2006).
[21] Rikalovic M.G., Déziel E., Gojgic-Cvijovic G.,
Comparative Analysis of Rhamnolipids from Novel Environmental Isolates of Pseudomonas Aeruginosa,
Journal of Surfactants and Detergents, 16(5): 673-682 (2013).
[23] Benincasa M., Contiero J., Manresa M.A., Moraes I.O., "
Rhamnolipid Production by Pseudomonas aeruginosa LBI Growing on Soapstock as the Sole Carbon Source,"
Journal of Food Engineering, 54(4): 283-288 (2002).
[24] Nitschke M., Costa S. G., Contiero J., "
Structure and Applications of a Rhamnolipid Surfactant Produced in Soybean Oil Waste,
Appl. Biochem. Biotechnol., 160(7): 2066-74 ( 2001).
[28] Kleckner V., Kosaric N.,
Biosurfactants. Production. Properties (1993).
[29] Vasileva-Tonkova E., Galabova D., Karpenko E., Shulga A.,
Biosurfactant-Rhamnolipid Effects on Yeast Cells,
(in En.), Lett. Appl. Microbiol., 33(4): 280-4 (2001).
[30] Ishigami Y.G.Y., Nagahora H., Hongu T., Yamaguchi M.,
Rhamnolipid Liposomes,
USP4902512A, (1990).
[32] Ozdemir G, Malayoglu U.,
Wetting Characteristics of Aqueous Rhamnolipids Solutions,
Colloids Surf B Biointerfaces,
39(1): 1-7 (2004).
[34] Piljac P.G.T
., Use of Rhamnolipids as Cosmetics,
EP 1056462 B1 (2007).
[35] DeSanto K. (2011).
U.S.P. 7,985,722. Washington, DC: U.S. Patent and Trademark Office
. (2006).
[37] Aghel N.,
Formulation of a Herbal Shampoo Using Total Saponins of Acanthophyllum squarrosum,
Iranian Journal of Pharmaceutical Research,
6(3): 167-172 (2007).
[39] Sharma P.P., “
Cosmetic Formulation, Manufacturing, and Quality Control”, 3rd ed., Vandana Publications, Lucknow, 644-647 (1998).
[40] Klein K.,
Evaluating Shampoo Foam,
Cosmetics and Toiletries Magazine, 10(119): 32-35 (2004).
[41]
National Iranian Standard No. 1106: “Arsenic Measurement Method in Cosmetic Products” (2001)
[42]
National Iranian Standards No. 3573: “Cosmetic Products - Free Formaldehyde Measurement” (1995).
[43]
Iranian National Standard”, No. 11107; “Cosmetic Products - Measuring Nitrosamine”, (2008).
[44]
National Iranian Standard: “Cosmetic Products - Measurements of Heavy Metals” (2009).
[45]
Association of Detergents, “Cosmetics and Health of Iran” (2012).
[47]
National Iranian Standard No. 18-3178: “Test Methods for Scrapers - Method for Measuring Total Ethanol Extractable Material”.
[48]
National Iranian Standard No. 18-3178: “Test Methods for Scavengers - Method for Measuring Acidity and Water Solubility”.
[49]
National Iranian Standard No. 9607: “Microbiology of Health Products, Cosmetics - Search and Identification of Candida Albicans”.
[50]
National Iranian Standard No. 9933: “Microbiology of Health Products, Cosmetics - Searching for and Identifying Escherichia coli”.
[51]
National Iranian Standard No. 9934: “Microbiology of Health Products, Cosmetic - Search and Identification of Staphylococcus aureus”.
[52]
National Standard of Iran No. 9793: “Microbiology of Health Products, Cosmetics - Search and Identification of Pseudomonas aeruginosa”.
[53]
National Iranian Standard No. 11804: “Microbiology of Health Products, Cosmetics - Search and Identification of Aerobic Mesophyte Bacteria”.
[54] Guihong L., Qiang F., Yongqiang L., Chao C., Guixiang L, Yu L, Xiaobo Y.,
Rhamnolipid Production from Waste Cooking Oil Using Pseudomonas SWP-4,
Biochemical Engineering Journal. 101: 44-54 (2015).
[57] Tahzibi A., Kamal F., Mazaheri Assadi M.,
Improved Production of Rhamnolipids by a Pseudomonas aeruginosa Mutant,
Iranian Biomedical Journal, 8(1): 25- 31 (2004).