首页> 外文期刊>International Journal of Cosmetic Science >Predicting skin penetration of actives from complex cosmetic formulations: an evaluation of inter formulation and inter active effects during formulation optimization for transdermal delivery
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Predicting skin penetration of actives from complex cosmetic formulations: an evaluation of inter formulation and inter active effects during formulation optimization for transdermal delivery

机译:预测复杂化妆品配方中活性成分的皮肤渗透性:评估用于透皮递送的配方优化过程中的配方间和相互作用效果

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摘要

Twenty products, containing a radiolabelled form of each active in typical co.snietic formulations, were made and applied to female human epidermal membranes mounted in Franz diffusion cells for 48 h under 'in use' conditions. The products consisted of combinations of five formulations (a hydro-alcoholic gel, an oil in water emulsion, a water in oil emulsion, a microemulsion and an oil) with four model drug actives (testosterone, hydrocortisone, 5-fluorouracii and Icetoconazole), Steady-state flux appeared to be reached by 8 h and maintained for all products, other than for the microemulsions, consistent with the actives being present in the residual formulation on the skin at saturation. The recovery for each active at the end of the 48-h study (from a series of stratum corneum tape strips, the remaining skin, cumulative amount penetrating into the receptor solution, product washed from the skin and on the donor chamber cap) ranged from 86,5% to 100,6%. The rank order of the fluxes for the actives from the hydro-alcoholic gel is consistent with the known active molecular size and polarity determinants for maximum epidermal Uux. Actives with similar steady-state (maximum) fluxes from a range of formulations had retention in the stratum corneum and similar transport rate constants through the stratum corneum. The microemulsion formulation signilicantly enhanced both the straluni corneum steady-state flux and transport rale constant for 5-tluorouracil. hydrocortisone and testosterone. The penetration flux of each active could be related to its size and polarity and appeared maximal when the actives in the different cosmetic formulations applied to the skin under 'in use' conditions were likely to remain in the residual product on the skin as a saturated solution after solvent evaporation. Enhanced penetration fluxes can be achieved by formulation selection and an appropriate choice/mix of emollients/adjuvants. The principles described here provide a framework for understanding the delivery of cosmetic ingredients from various formulations.
机译:制备了二十种产品,其中每种产品均具有放射性标记形式的典型共肠溶制剂,并在“使用中”条件下将其应用于安装在Franz扩散池中的女性人表皮膜上48小时。该产品由五种配方(水醇凝胶,水包油乳液,油包水乳液,微乳液和油)与四种模型药物活性成分(睾丸激素,氢化可的松,5-氟尿嘧啶和冰康康唑)组合而成,稳态通量似乎要在8小时后达到,并且对于所有产品(微乳剂除外)都保持稳定,这与残留制剂在皮肤上饱和时存在的活性物质一致。在48小时研究结束时,每种活性物质的回收率(从一系列角质层胶带条,剩余的皮肤,渗透到受体溶液中的累积量,从皮肤上洗出的以及在供体室盖上的产品)的恢复范围为86.5%至100.6%。来自水-醇凝胶的活性物质通量的等级顺序与已知的最大表皮Uux的活性分子大小和极性决定因素一致。一系列制剂具有相似的稳态(最大)通量的活性物质在角质层中具有保留作用,并且在角质层中具有相似的传输速率常数。微乳剂配方显着提高了5-三氟尿嘧啶的角质层稳态通量和转运速率常数。氢化可的松和睾丸激素。每种活性物质的渗透通量可能与其大小和极性有关,并且在“使用”条件下应用于皮肤的不同化妆品配方中的活性物质很可能以饱和溶液形式残留在皮肤上的残留产品中时,其渗透通量最大。溶剂蒸发后。通过配方选择和润肤剂/佐剂的适当选择/混合,可以提高渗透通量。这里描述的原理为理解各种配方中化妆品成分的输送提供了框架。

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