Substantiation of the composition of probiotic cosmetic products for the toning of oily skin
DOI:
https://doi.org/10.15587/2312-8372.2017.119392Keywords:
probiotic cosmetics, skin toning, Bifidobacterium, Lactobacillus, water-alcohol extract, Tagetes patula, acid wheyAbstract
The efficiency of using lysates of probiotic cultures of lacto- and bifidobacteria in cosmetics is analyzed, the expediency of using live probiotic cultures in natural cosmetics is shown. The efficacy of using illuminated acid whey and hydroalcoholic extracts of medicinal plants with a high content of bioantioxidants with antiseptic effect (in particular, the extract of dried flowers Tagetes patula) is proved to be effective in the composition of cosmetic means for toning the skin.
The optimal mass proportions of acid whey, obtained with the use of probiotic cultures of lacto- and bifidobacteria in the composition of the direct bacterial concentrate FD DVS ABT-2, are justified. As well as a water-alcohol extract of dried flowers Tagetes patula (59.98 and 40.02 % respectively) as components of a probiotic cosmetic for toning of oily skin. It has been established that the maximum antioxidant activity (45.6 act. units) and the normalized value of active acidity (4.76 pH units), the probiotic cosmetic for toning of oily skin, has the optimum content of raw ingredients in it. Namely: 59.98 % of the acid whey obtained using probiotic cultures of lacto- and bifidobacteria in the composition of the direct bacterial concentrate FD DVS ABT-2, and 40.02 % of the water-alcohol extract of the dry flowers of Tagetes patula.
It is determined that the organoleptic and physicochemical quality indicators of probiotic cosmetic means for toning of oily skin, produced with the use of raw ingredients in the optimal ratio, meet the requirements of DSTU 4093-2002. By the content of ethyl alcohol the developed product can be attributed to cosmetic lotions. Microbiological indices of the developed probiotic cosmetic lotion differ from those in DSTU 4093-2002, therefore, for the introduction of it into production, it is necessary to develop appropriate regulatory documents.
It is proved that the developed probiotic cosmetic lotion is natural and safe due to the improved microbiological characteristics. It is established that the strengths of the product are greater than those of the weak, which indicates its competitiveness in the consumer market. Strategic solutions are proposed for the movement of a new cosmetic product and for reducing the impact of weaknesses on its implementation.
References
- Jeong, J. H., Lee, C. Y., Chung, D. K. (2015). Probiotic Lactic Acid Bacteria and Skin Health. Critical Reviews in Food Science and Nutrition, 56 (14), 2331–2337. doi:10.1080/10408398.2013.834874
- Tonik dlia litsa: sostav, pol'za, populiarnye marki. (2017). MEDPORTAL.SU. Available at: https://medportal.su/tonik-dlya-lica-sostav-polza-populyarnye-marki/
- Fem, O. (2017, September 25). Tonik dlia litsa – o chiom umalchivaiut proizvoditeli. KOSMETOLOGA.NET. Available at: https://kosmetologa.net/tonik-dlya-litsa/
- Chitaem etiketku: tonik dlia litsa. (2017). Medik. Katalog goroda Sumy. Available at: https://www.medik.sumy.ua/articles/chitaem-etiketku-tonik-dlya-lica
- Chto vhodit v sostav tonika? (2017). Zhenskii zhurnal BeautyInfo. Available at: http://beautyinfo.com.ua/m0c3i3109.html
- DSTU 4093-2002. Losiony i toniky kosmetychni. (2002). Introduced: 03.06.2002. Kyiv: Derzhstandart Ukrainy, 8.
- Dreno, B., Araviiskaia, E., Berardesca, E., Gontijo, G., Sanchez Viera, M., Xiang, L. F., Martin, R., Bieber, T. (2016). Microbiome in healthy skin, update for dermatologists. Journal of the European Academy of Dermatology and Venereology, 30 (12), 2038–2047. doi:10.1111/jdv.13965
- Gong, Y., Liu, X., He, W.-H., Xu, H.-G., Yuan, F., Gao, Y.-X. (2012). Investigation into the antioxidant activity and chemical composition of alcoholic extracts from defatted marigold (Tagetes erecta L.) residue. Fitoterapia, 83 (3), 481–489. doi:10.1016/j.fitote.2011.12.013
- DSTU 4554:2006. Syr kyslomolochnyi. Tekhnichni umovy. (2007). Introduced: 01.01.2007. Kyiv: Derzhstandart Ukrainy, 10.
- Fuchs-Tarlovsky, V., Marquez-Barba, M. F., Sriram, K. (2016). Probiotics in dermatologic practice. Nutrition, 32 (3), 289–295. doi:10.1016/j.nut.2015.09.001
- Goto, K., Iwasawa, D., Kamimura, Y., Yasuda, M., Matsumura, M., Shimada, T. (2011). Clinical and Histopathological Evaluation of Dermatophagoides farinae-Induced Dermatitis in NC/Nga Mice Orally Administered Bacillus subtilis. Journal of Veterinary Medical Science, 73 (5), 649–654. doi:10.1292/jvms.10-0457
- Watanabe, T., Hamada, K., Tategaki, A., Kishida, H., Tanaka, H., Kitano, M., Miyamoto, T. (2009). Oral Administration of Lactic Acid Bacteria Isolated from Traditional South Asian Fermented Milk `Dahi’ Inhibits the Development of Atopic Dermatitis in NC/Nga Mice. Journal of Nutritional Science and Vitaminology, 55 (3), 271–278. doi:10.3177/jnsv.55.271
- Rosenfeldt, V., Benfeldt, E., Nielsen, S. D., Michaelsen, K. F., Jeppesen, D. L., Valerius, N. H., Paerregaard, A. (2003). Effect of probiotic Lactobacillus strains in children with atopic dermatitis. Journal of Allergy and Clinical Immunology, 111 (2), 389–395. doi:10.1067/mai.2003.389
- Elbe-Burger, A., Olt, S., Stingl, G., Egyed, A., Klubal, R., Mann, U., Rappersberger, K., Rot, A. (2002). Overexpression of IL-4 Alters the Homeostasis in the Skin. Journal of Investigative Dermatology, 118 (5), 767–778. doi:10.1046/j.1523-1747.2002.01753.x
- Stokes, J. H., Pillsbury, D. H. (1930). The Effect on The Skin of Emotional and Nervous States: Theoretical and Practical Consideration of a Gastrointestinal Mechanism. Archives of Dermatology and Syphilology, 22 (6), 962–993. doi:10.1001/archderm.1930.01440180008002
- Zhu, D. L., Yang, W. X., Yang, H. M. (2010). Meta analysis of lactic acid bacteria as probiotics for the primary prevention of infantile eczema. Chinese Journal of Contemporary Pediatrics, 12 (9), 734–739.
- Kim, H. H., Lee, Y., Eun, H. C., Chung, J. H. (2008). Eicosapentaenoic acid inhibits TNF-α-induced matrix metalloproteinase-9 expression in human keratinocytes, HaCaT cells. Biochemical and Biophysical Research Communications, 368 (2), 343–349. doi:10.1016/j.bbrc.2008.01.062
- Piccardi, N., Manissier, P. (2009). Nutrition and nutritional supplementation. Dermato-Endocrinology, 1 (5), 271–274. doi:10.4161/derm.1.5.9706
- Segawa, S., Hayashi, A., Nakakita, Y., Kaneda, H., Watari, J., Yasui, H. (2008). Oral Administration of Heat-Killed Lactobacillus brevis SBC8803 Ameliorates the Development of Dermatitis and Inhibits Immunoglobulin E Production in Atopic Dermatitis Model NC/Nga Mice. Biological & Pharmaceutical Bulletin, 31 (5), 884–889. doi:10.1248/bpb.31.884
- Gueniche, A., Benyacoub, J., Buetler, T. M., Smola, H., Blum, S. (2006). Supplementation with oral probiotic bacteria maintains cutaneous immune homeostasis after UV exposure. European Journal of Dermatology, 16 (5), 511–517.
- Cinque, B., Di Marzio, L., Della Riccia, D. N., Bizzini, F., Giuliani, M., Fanini, D., De Simone, C., Cifone, M. G. (2006). Effect of Bifidobacteriuminfantis on Interferon- γ-Induced Keratinocyte Apoptosis: A Potential Therapeutic Approach to Skin Immune Abnormalities. International Journal of Immunopathology and Pharmacology, 19 (4), 775–786. doi:10.1177/039463200601900407
- Gagarina, Yu. (2016). Krem: spasibo, chto zhivoi. Kosmetolog, 3, 74–76.
- Faizi, S., Dar, A., Siddiqi, H., Naqvi, S., Naz, A., Bano, S., Lubna, N. (2011). Bioassay-guided isolation of antioxidant agents with analgesic properties from flowers of Tagetes patula. Pharmaceutical Biology, 49 (5), 516–525. doi:10.3109/13880209.2010.523006
- Yasukawa, K., Kasahara, Y. (2013). Effects of Flavonoids from French Marigold (Florets of Tagetes patula L.) on Acute Inflammation Model. International Journal of Inflammation, 2013, 1–5. doi:10.1155/2013/309493
- Politi, F., Watanabe, V., Figueira, G., Pietro, R. (2013). Anti-Candida Activity in Vitro of Tagetes patula L. (Asteraceae) Extracts. Planta Medica, 79 (10). doi:10.1055/s-0033-1348567
- Ali, A., Tabanca, N., Demirci, B., Amin, E., Khan, I. (2015). Chemical composition of Tagetes patula essential oil and its bioactivity against Aedes aegypti. Planta Medica, 81 (05). doi:10.1055/s-0035-1545156
- Zuorro, A., Lavecchia, R. (2010). New functional food products containing lutein and zeaxanthin from marigold (Tagetes erecta L.) flowers. Journal of Biotechnology, 150, 296–296. doi:10.1016/j.jbiotec.2010.09.247
- Manke Natchigal, A., Oliveira Stringheta, A. C., Correa Bertoldi, M., Stringheta, P. C. (2012). Quantification and characterization of lutein from Tagetes (Tagetes patula L.) and Calendula (Calendula officinalis L.) flowers. Acta Horticulturae, 939, 309–314. doi:10.17660/actahortic.2012.939.40
- Khalil, M., Raila, J., Ali, M., Islam, K. M. S., Schenk, R., Krause, J.-P., Schweigert, F. J., Rawel, H. (2012). Stability and bioavailability of lutein ester supplements from Tagetes flower prepared under food processing conditions. Journal of Functional Foods, 4 (3), 602–610. doi:10.1016/j.jff.2012.03.006
- Ramakrishnan, P., Chandrasekhar, T., Muralidharan, P. (2015). Cognitive enhancing, anti-acetylcholinesterase, and antioxidant properties of Tagetes patula on scopolamine-induced amnesia in mice. International Journal of Green Pharmacy, 9 (3), 167. doi:10.4103/0973-8258.161234
- Martinez, R., Diaz, B., Vasquez, L., Compagnone, R. S., Tillett, S., Canelon, D. J., Torrico, F., Suarez, A. I. (2009). Chemical Composition of Essential Oils and Toxicological evaluation of Tagetes erecta and Tagetes patula from Venezuela. Journal of Essential Oil Bearing Plants, 12 (4), 476–481. doi:10.1080/0972060x.2009.10643747
- Tkachenko, N., Nekrasov, P., Vikul, S., Honcharuk, Y. (2017). Modelling formulae of strawberry whey drinks of prophylactic application. Food Science and Technology, 11 (1), 80–88. doi:10.15673/fst.v11i1.303
- In: Myers, R. H., Montgomery, D. C., Anderson-Cook, C. M. (2016). Response Surface Methodology: Process and Product Optimization Using Designed Experiments. Ed. 4. Hoboken, New Jersey: John Wiley & Sons, 856.
- Tkahcenko, N., Nekrasov, P., Vikul, S. (2016). Optimization of formulation composition of health whey–based beverage. Eastern-European Journal of Enterprise Technologies, 1 (10 (79)), 49–57. doi:10.15587/1729-4061.2016.59695
- Khomych, H. P., Vikul, S. I., Kaprel'iants, L. V., Osypova, L. A., Lozovska, T. S.; assignee: Odessa National Academy of Food Technologies. (12.01.2015). Sposib vyznachennia biolohichnoi aktyvnosti obiektiv pryrodnoho pokhodzhennia. Patent UA 107506 C2, IPC G 01 N 33/00 (2015.01). Appl. No. u 201302626. Filed 04.03.2013. Bull. No. 1. Available at: http://uapatents.com/7-107506-sposib-viznachennya-biologichno-aktivnosti-obehktiv-prirodnogo-pokhodzhennya.html
- GOST 26781–85. Moloko. Metody izmereniia рН. (1985). Introduced: 01.01.1986. Moscow: Izdatelstvo standartov, 13.
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Copyright (c) 2017 Svitlana Vikul, Nataliіa Tkachenko, Elena Sevastyanova, Nadiya Dets, Yana Honcharuk
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