Custom-Molecular-Weight Sodium Hyaluronate

Product Overview:

Sodium hyaluronate is a naturally derived polysaccharide active ingredient with excellent water-binding and moisturizing properties, as well as good biocompatibility. It is a core moisturizing ingredient widely used in the cosmetics industry.
Based on biofermentation and precise molecular weight control technologies, Letao Biotech offers sodium hyaluronate ingredients covering a wide range of molecular weights. By adjusting the molecular size of hyaluronic acid, the company delivers varying levels of moisturizing performance, skin feel, and formulation requirements, providing customized ingredient solutions for the development of high-end skincare products.

Product Features:

CAS:9067-32-7

INCI Chinese: Sodium Hyaluronate
INCI Name: SODIUM HYALURONATE

Molecular Weight Specifications:

Low-molecular-weight sodium hyaluronate: 3,000–5,000 Da
Medium-to-low-molecular-weight sodium hyaluronate:10,000–20,000 Da
Medium-molecular-weight sodium hyaluronate: 50,000 Da
Medium-to-high-molecular-weight sodium hyaluronate: 100,000 Da
High-molecular-weight sodium hyaluronate: 200,000–1,200,000 Da
High-molecular-weight sodium hyaluronate: 1,800,000 Da, 2,600,000 Da

Physical Properties:
White or off-white powder

Core Strengths

① Precise Molecular Weight Control
Offers a range of hyaluronic acid systems with varying molecular weights to meet the needs of different skincare formulations.

② Custom Development Capabilities
We support customization based on molecular weight, specifications, and application requirements.

③ Mature Production Process
Utilizes biological fermentation technology to ensure stable production and quality control.

Applications

Supports highly effective moisturizing care
Used in the development of skin barrier care products
Supports the research and development of soothing skincare products
Helps drive innovation in high-end functional skincare products

Application Areas
Performance-based skincare products, professional beauty products

Description