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Looking for more biocompatible sunscreen ingredients in pharmaceutical and cosmetic formulations

机译:在制药和化妆品配方中寻找更多生物相容性防晒成分

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Statement of the Problem: Nowadays, cosmetic and pharmaceutical industries are looking for more natural ingredients to prevent the effects of sun damaging radiation (UV light) on skin. Usually, sunscreen formulations contain synthetic organic compounds, which can produce irritant effects on skin. Therefore, there is a need for the use of more natural and biocompatible ingredients. The utilization of a biosurfactant extract obtained from corn in combination with mica, could be an interesting alternative to replace chemical sunscreen ingredients. Additionally, vitamin E could be included as well in these formulations because of its antioxidant capacity. In this work, it is elucidated that the sun protection factor (SPF) and emulsion formation (EV) of different formulations were formed by a biosurfactant aqueous extract (obtained from corn), a mining silicate mineral (mica) and a nonaqueous soluble antioxidant (Vitamin E). Methodology: Different formulations were prepared in presence and absence of biosurfactant, in order to see the effect of it as sunscreen and emulsifier. The SPF of each substance and of the different formulations was measured following the methodology of Mansur et al. using ethanol as solvent. On the other hand, the percentage of emulsion formation (EV) was measured as in previous studies, during one month. Findings: It was shown that all substances tested exerted sun protection capacity. Particularly, the biosurfactant showed a better SPF than tocopherol, at the same concentration. As a consequence, the presence of the biosurfactant increased the SPF of the different formulations. Moreover, this biosurfactant was observed to exert emulsifier capacity during the experiment. Conclusion & Significance: The preparation of formulations in presence of biosurfactant, mica and tocopherol can be a good alternative to obtain more biocompatible sunscreen formulations for the cosmetic and pharmaceutical industry, observing a synergistic effect of mica and biosurfactant on the stabilization of the emulsions. Recent Publications 1. Rinc?n-Font?n M, Rodr?guez-L?pez L, Vecino X, Cruz J M and Moldes A B (2018) Design and characterization of greener sunscreen formulations based on mica powder and a biosurfactant extract. Powder Technology 327:442-228. 2. Chen L, Hu J Y and Wang S Q (2012) The role of antioxidants in photoprotection: a critical review. Journal of American Academy of Dermatology 67(5):1013-1024. 3. Lin J Y, Selim M A, Shea C R, Grichnik J M, Omar M M, Monteiro-Riviere N A and Pinnell SR (2003) UV photoprotection by combination topical antioxidants vitamin C and vitamin E. Journal of American Academy of Dermatology 48(6):866- 874. 4. Vecino X, Barbosa-Pereira L, Devesa-Rey R, Cruz J M and Moldes A B (2015) Optimization of extraction conditions and fatty acid characterization of Lactobacillus pentosus cellbound biosurfactant/bioemulsifier. Journal of Science of Food and Agriculture 95(2):313-320.
机译:问题声明:如今,化妆品和制药行业正在寻找更多的天然成分,以防止太阳损坏辐射(UV光)对皮肤的影响。通常,防晒制剂含有合成有机化合物,可以产生对皮肤的刺激性作用。因此,需要使用更自然和生物相容性的成分。利用从玉米和云母组合的生物表面活性剂提取物可以是替代化学防晒成分的有趣替代品。另外,由于其抗氧化能力,可以包括在这些配方中的维生素E.在这项工作中,阐明了通过生物表面活性剂含水提取物(从玉米获得)形成的防晒系数(SPF)和乳液形成(EV),是一种硅酸盐矿物(云母)和非水溶性抗氧化剂(维生素E)。方法论:在存在和不存在生物表面活性剂的情况下制备不同的制剂,以便将其作为防晒剂和乳化剂的效果。按照Mansur等人的方法测量每种物质和不同配方的SPF。用乙醇作为溶剂。另一方面,乳液形成(EV)的百分比如先前的研究中,在一个月内测量。结果:显示所有物质都经过施加的防晒能力。特别是,生物表面活性剂与同一浓度相同的生物活性剂表现出比生育酚更好。结果,生物表面活性剂的存在增加了不同配方的SPF。此外,观察到这种生物活性剂在实验期间施加乳化剂容量。结论和意义:在生物活性剂,云母和生育酚存在下制备制剂可以是替代品种用于化妆品和制药行业的生物相容性防晒配方,观察云母和生物活性剂对乳液稳定的协同作用。最近的出版物1. rinc?n-font?n m,rodr?guez-l?pez l,vecino x,cruzj m和模塑B(2018)的设计和表征基于云母粉末和生物活性剂提取物的绿色防晒配方。粉末技术327:442-228。 2.陈L,胡锦涛和王S Q(2012)抗氧化剂在光保护中的作用:批判性评论。美国皮肤科学院学报67(5):1013-1024。 3.林JY,SELIM MA,SHEA CR,GRICHNIK JM,OMAR MM,MONTEIRO-RIVIERE NA和PINNELL SR(2003)通过组合局部抗氧化剂维生素C和维生素E.美国皮肤科学院杂志48(6): 4. vecino X,Barbosa-Pereira L,Devesa-Rey R​​,Cruz JM和Morees AB(2015)优化乳杆菌培养皿培养皿生物活性剂/生物后乳剂的提取条件和脂肪酸表征。作者:王莹,中国农业科学学报95(2):313-320。

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