Department of Experimental and Clinical Medicine, Catanzaro, Italy.
Department of Health Science University "Magna Graecia" of Catanzaro Campus Universitario-Germaneto, Catanzaro, Italy.
Int J Cosmet Sci. 2022 Oct;44(5):514-529. doi: 10.1111/ics.12800. Epub 2022 Aug 8.
Nowadays, the use of silicones in cosmetic formulation is still controversial, given that "natural" or "biodegradable" components are preferred. Often, the exclusion and/or the discrimination of these excipients from cosmetic field are unmotivated because all things cannot be painted with the same brush. Hence, we want to bring to light and underline the advantages of including silicones in cosmetic emulsions, refuting and debunking some myths related to their use.
Silicone-free and silicone-based emulsions were obtained within an easy homogenization process. Droplet size distribution was assessed by laser diffraction particle size analyser Mastersizer 2000™, and by optical microscopy. The long-time stability profiles were investigated thanks to the optical analyser Turbiscan® Lab Expert. Diffusing wave spectroscopy (DWS) by Rheolaser Master™ and frequency sweep measurements by Kinexus® Pro Rotational Rheometer were carried out to assess a full rheological characterization. In vivo studies were carried out by the evaluation of Trans Epidermal Water Loss (TEWL) over time on healthy human volunteers. A skin feeling rating was collected from the same volunteers by questionnaire.
From size distribution analysis, a better coherence of data appeared for silicone-based emulsion, as the size of the droplets was kept unchanged after 1 month, as well as the uniformity parameter. Morphological investigation confirmed a homogenous droplet distribution for both samples. Silicones enhanced the viscosity, compactness and strength of the cream, providing a suitable stability profile both at room temperature and when heated at 40°C. The solid-like viscoelastic behaviour was assessed in the presence of dynamic oscillatory stresses. The monitoring of TEWL over time demonstrated non-occlusive properties of emulsions containing silicones, the values of which were comparable to the negative control. Silicone-based emulsions gained higher scores from the volunteers in silkiness, freshness and softness features, while lower scores were obtained in greasiness compared to silicone-free emulsions. No cases of irritation were recorded by the candidates.
The presence of specific silicones inside a cosmetic product improved its technological characteristics. The rheological identity and the stability feature showed the real suitability of prepared emulsion as a cosmetic product. Moreover, this study demonstrated that silicone-based emulsions are safe for the skin and did not cause skin occlusion. Improved skin sensations are registered by potential consumers when silicones are included in the formulation.
如今,由于人们更喜欢“天然”或“可生物降解”的成分,因此在化妆品配方中使用硅酮仍然存在争议。通常,将这些赋形剂排除和/或歧视出化妆品领域是没有道理的,因为不能一概而论。因此,我们希望强调将硅酮纳入化妆品乳液的优势,驳斥和揭穿与它们的使用相关的一些神话。
通过简单的匀化过程获得无硅酮和含硅酮的乳液。通过激光衍射粒度分析仪 Mastersizer 2000™和光学显微镜评估液滴粒径分布。通过光学分析仪 Turbiscan® Lab Expert 研究长期稳定性曲线。使用 Rheolaser Master™进行扩散波光谱(DWS)和 Kinexus® Pro 旋转流变仪进行频率扫描测量,以进行全面的流变特性评估。通过评估健康志愿者随时间推移的经表皮水分流失(TEWL)进行体内研究。通过问卷调查收集来自同一志愿者的皮肤感觉评分。
从粒径分布分析来看,含硅酮乳液的数据一致性更好,因为一个月后液滴的大小保持不变,均匀性参数也是如此。形态学研究证实两种样品的液滴分布均均匀。硅酮可提高乳膏的粘度、稠度和强度,为在室温下和加热至 40°C 时提供合适的稳定性曲线。在存在动态振荡应力的情况下评估了固态粘弹性行为。随时间监测 TEWL 表明含有硅酮的乳液具有非封闭性,其值与阴性对照相当。志愿者对含硅酮乳液的丝滑感、新鲜感和柔软感评价较高,而对油腻感评价较低。候选者没有记录到任何刺激情况。
化妆品中存在特定的硅酮可以改善其技术特性。流变特性和稳定性特征表明所制备的乳液作为化妆品的实际适用性。此外,这项研究表明,硅酮基乳液对皮肤安全,不会引起皮肤闭塞。当配方中包含硅酮时,潜在消费者会感觉到皮肤感觉得到改善。