A method for preparing a high-performance antioxidant whitening composition foundation

By combining antioxidant intermediate microencapsulation technology and surface-modified pigments, the problem of easy deactivation of active ingredients and post-makeup dullness in antioxidant foundation liquids is solved, achieving stable protection and optical compensation of active ingredients, and providing long-lasting antioxidant and brightening effects.

CN122398642APending Publication Date: 2026-07-17GUANGZHOU JIUSE BIOTECHNOLOGY CO LTD

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
GUANGZHOU JIUSE BIOTECHNOLOGY CO LTD
Filing Date
2026-05-11
Publication Date
2026-07-17

AI Technical Summary

Technical Problem

The antioxidant active ingredients in existing antioxidant foundations are easily deactivated, have poor storage stability, and are difficult to solve the problem of dullness after makeup. Furthermore, it is difficult to achieve system compatibility and balance with skin feel.

Method used

By employing antioxidant intermediate microencapsulation technology, astaxanthin and ergothioneine are encapsulated in a ternary composite membrane composed of biopolysaccharides, hydrogenated lecithin, and ceramides. Combined with surface-modified pigments and fine emulsification processes, a multiphase composite kinetic system is constructed to achieve stable protection and optical compensation of the active ingredients.

Benefits of technology

It significantly extends the product's efficacy lifecycle, maintains long-lasting antioxidant effects, solves the problems of dullness after makeup and skin discomfort, and provides lasting brightening and a comfortable user experience.

✦ Generated by Eureka AI based on patent content.

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Abstract

本发明涉及化妆品制备技术领域,且公开了一种用于化妆品的抗氧化中间体微胶囊,包括:芯材,所述芯材包含抗氧化组合物及溶解所述抗氧化组合物的多元醇溶剂,所述抗氧化组合物包含重量比为(1‑3):(2‑5)的虾青素与麦角硫因;壁材层,包裹于所述芯材外表面,所述壁材层由生物多糖、氢化卵磷脂及神经酰胺组合而成的三元复合膜组成。通过实现了活性组分在复杂乳化体系中的超强稳态保护与缓释渗透效应,显著延长了产品的功效生命周期。本发明通过生物多糖、氢化卵磷脂及神经酰胺构筑的三元复合膜壁材,不仅在物理上锁死了虾青素与麦角硫因的易氧化位点,还利用三元壁材的化学相容性解决了活性物与粉底基质中其他化学组分的交叉反应风险。
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