"C. D. Nenitzescu" Institute of Organic and Supramolecular Chemistry of the Romanian Academy, 202 B Spl. Independenței, S6, 060023 Bucharest, Romania.
Faculty of Chemical Engineering and Biotechnologies, National University of Science and Technology Politehnica of Bucharest, 1-7 Gh. Polizu Street, 011061 Bucharest, Romania.
Molecules. 2023 Nov 12;28(22):7550. doi: 10.3390/molecules28227550.
We reported the tunable synthesis of new vegetable oil-UV filter bioconjugates using sea buckthorn oil (SBO) and -methoxycinnamic acid (-MCA) as an alternative to the common UV filter, ethylhexyl--methoxycinnamate (octinoxate). The synthetic strategy is based on the sustainable ring-opening reaction of epoxidized SBO with -MCA in heterogenous catalysis in eco-friendly solvents. The amount of UV-absorptive moieties grafted on the triglyceride backbone is controlled by different epoxidation degrees as determined by NMR spectroscopy. The performance of the new UV-absorber bioconjugates was assessed by in vitro sun protection factor (SPF) measurements after inclusion in SBO-ethylcellulose (EC) oleogels and comparison with the SPF value of the SBO-EC-octinoxate oleogel with equivalent -MCA acid moieties (10% wt/wt). The concentration obtained for the SBO-EC oleogel formulated with the bioconjugate with the lowest degree of functionalization, namely 55%, represents 45% of the SPF determined for the SBO-EC-octinoxate oleogel, regardless of the concentration of measured solutions. The new concept of vegetable oil-UV-absorber bioconjugates has potential UV-B photoprotective properties when included in oleogel formulations and deserves further investigation of their properties and stability including association with UV-A absorbers, respectively.
我们报道了一种新的植物油-紫外线过滤剂生物缀合物的可调合成方法,使用沙棘油(SBO)和 -甲氧基肉桂酸(-MCA)作为常见紫外线过滤剂乙基己基 - 甲氧基肉桂酸(奥克立林)的替代品。该合成策略基于在环保溶剂中的多相催化中环氧化 SBO 与 -MCA 的可持续开环反应。通过 NMR 光谱确定,通过不同的环氧化程度来控制接枝在三酰基甘油主链上的紫外线吸收部分的数量。将新的紫外线吸收剂生物缀合物包含在 SBO-乙基纤维素(EC)油凝胶中并进行体外防晒因子(SPF)测量后,评估其性能,并与具有等效 -MCA 酸部分(10wt%/wt%)的 SBO-EC-奥克立林油凝胶的 SPF 值进行比较。用功能化程度最低的生物缀合物(即 55%)配方的 SBO-EC 油凝胶的浓度代表了 SBO-EC-奥克立林油凝胶的 SPF 的 45%,而与测量溶液的浓度无关。植物油-紫外线吸收剂生物缀合物的新概念在包含在油凝胶配方中时具有潜在的紫外线 B 光保护性能,值得进一步研究其性能和稳定性,包括与紫外线 A 吸收剂的结合。