Hochar Isabelle, Puginier Mickaël, Groux Hervé, Guilbot Jérôme, Cottrez Françoise, Roso Alicia
Seppic Regulatory, 50 Boulevard National, 92257 La Garenne Colombes, France.
IMMUNOSEARCH, Les Cyclades, Chemin de Camperousse, 06130 Grasse, France.
Polymers (Basel). 2025 May 20;17(10):1408. doi: 10.3390/polym17101408.
Assessing the propensity of ingredients to induce skin sensitization through in vitro testing is crucial for worker and consumer safety. This is particularly important for novel and high-performance ingredients with complex structures, such as rheology-modifying polymers, which are extensively used in cosmetics, pharmaceuticals, and detergents. The Sens-Is assay has proven effective in distinguishing skin sensitizers from non-sensitizers for difficult-to-test ingredients when integrated into a multi-method in vitro approach. Therefore, the primary goal of this research was to explore whether the Sens-Is in vitro assay is suitable to evaluate rheology-modifying polymers. Fifteen structurally diverse rheology-modifying polymers, including natural polymers obtained by extraction, chemical synthesis, or biotechnology, spanning varying physical forms and concentrations, were evaluated. The results showed that most polymers were non-sensitizing, consistent with available in vivo data. Although polymer macromolecules generally exhibit limited skin sensitization potential due to their surface confinement, the Sens-Is assay permitted the detection of weak signals from secondary components or possible byproducts in specific cases. This work confirms Sens-Is as a useful tool in an overall approach to assessing the skin sensitization liability of polymers under development, but careful solvent selection is crucial to ensure accurate results and prevent potential overexposure due to polymer retention on the epidermal surface.
通过体外测试评估成分引起皮肤致敏的倾向对于工人和消费者安全至关重要。这对于具有复杂结构的新型高性能成分尤为重要,例如流变改性聚合物,它们广泛用于化妆品、药品和洗涤剂中。当整合到多方法体外方法中时,Sens-Is 测定法已被证明在区分难测成分的皮肤致敏剂和非致敏剂方面是有效的。因此,本研究的主要目标是探索 Sens-Is 体外测定法是否适合评估流变改性聚合物。评估了 15 种结构多样的流变改性聚合物,包括通过提取、化学合成或生物技术获得的天然聚合物,涵盖不同的物理形式和浓度。结果表明,大多数聚合物不具有致敏性,这与现有的体内数据一致。尽管聚合物大分子由于其表面限制通常表现出有限的皮肤致敏潜力,但 Sens-Is 测定法在特定情况下能够检测到次要成分或可能的副产物发出的微弱信号。这项工作证实了 Sens-Is 是评估正在开发的聚合物皮肤致敏可能性的整体方法中的一种有用工具,但仔细选择溶剂对于确保准确结果以及防止由于聚合物保留在表皮表面而导致的潜在过度暴露至关重要。