Cross-linked sodium hyaluronate powder - high-density three-dimensional cross-linked network forming material
Crosslinked Sodium Hyaluronate Powder - Multiple BDDE Crosslinking Technology Used - Crosslinked Polymer Series
Long-lasting retention, three-dimensional structure, and precise cross-linking technology. A high-performance cross-linked hyaluronic acid powder that enhances shape support and sustainability through a three-dimensional network.
Crosslinked Sodium Hyaluronate Powder is a high-performance hyaluronic acid crosslinked polymer raw material manufactured using a multi-crosslinking technology with BDDE. The degree of crosslinking is precisely controlled within the range of 6-8%, and customization according to application is also possible. The crosslinked structure forms a high-density three-dimensional network, demonstrating excellent shape retention, sustained moisturizing properties, and viscoelastic characteristics. This raw material is powdered through freeze-drying, which provides excellent stability for transportation and storage. When re-dissolved in saline or similar solutions as needed, it immediately reconstructs a uniform three-dimensional gel structure. Compared to regular non-crosslinked hyaluronic acid, it has higher viscoelasticity, making it easier to adjust gel strength and shape retention. The endotoxin level is extremely low at <0.005EU/mg, and the residual crosslinking agent is appropriately managed for high purity specifications. It can be designed into high viscoelastic gels, well-dispersed micro-crosslinked gels, and homogeneous single-phase gels, making it suitable for diverse product development and research applications. It is utilized in a wide range of fields, including viscoelastic design for beauty gels, material carriers, improving the physical properties of gel-based products, and as a forming material for three-dimensional structures.
Inquire About This Product
basic information
INCI Name: Crosslinked Sodium Hyaluronate Appearance: White to off-white powder (freeze-dried product) Crosslinking Agent: BDDE (under appropriate management) Degree of Crosslinking: 6-8% (customizable) ■ Product Classification and Specifications CSHA (Biphasic Crosslinked Gel Raw Material) - Usage Concentration: 1.0-2.59% - G’ (Elastic Modulus): 1000-1100 Pa - G’’ (Viscous Modulus): 280-310 Pa CDHA (Monophasic Crosslinked Gel Raw Material) - Usage Concentration: 0.5-2.5% - G’: 260-470 Pa - G’’: 50-150 Pa CWHA (Micro-Crosslinked Gel Raw Material) - Usage Concentration: 0.2-2.0% - G’: 130-300 Pa - G’’: 50-150 Pa ■ Characteristics - High viscoelasticity due to three-dimensional crosslinked structure - Reformation of homogeneous gel structure after re-dissolution - Excellent hydration retention, shape support, and stability - Ultra-low endotoxin: <0.005EU/mg - Residual crosslinking agent: Managed within standard specifications ■ Storage Conditions - Store below -15°C (avoid moisture and keep sealed)
Price range
Delivery Time
Applications/Examples of results
Cross-linked hyaluronic acid powder is utilized in the development of various high-performance gel products, leveraging its high viscoelasticity, high stability, and three-dimensional network structure. Biphasic gels are suitable for product designs requiring hardness and shape stability, while monophasic gels serve as homogeneous and smooth gel bases. Micro-crosslinked gels are appropriate for light viscosity adjustments and material carrier applications. In the field of research and development, it is used for the mechanical design of gel-like materials, studies on controlling crosslinking density, viscoelastic optimization, and as a sustained-release carrier for functional materials. Additionally, due to its ease of viscoelastic adjustment, it can be applied to a wide range of formulation designs in the cosmetics and biomaterials fields, including three-dimensional gels, carrier gels, hydrogel materials, and molding gels. With compliance to global standards and high reproducibility, it is adopted by OEM/ODM manufacturers, cosmetic development companies, and biomaterial research institutions, contributing to the development of high-performance gel materials. Depending on the application, it also accommodates customization of crosslinking degree, viscoelasticity, and concentration, enabling optimal raw material design tailored to the required physical properties.
Company information
Our company is a global raw material and technology solution provider that offers natural-derived ingredients, including herbal medicines and plant-derived extracts, as well as high value-added functional ingredient formulation technologies. We integrate knowledge of traditional natural materials with modern biotechnology and formulation techniques to cater to a wide range of fields, including pharmaceuticals, health foods, functional foods and beverages, cosmetics, personal care, and animal nutrition. Utilizing advanced technologies such as Cocrystal, Liposomal, microencapsulation, particle technology, pellet technology, and granulation technology, we provide customized solutions to address challenges related to the solubility, absorption, stability, flavor, and processability of functional ingredients. Additionally, we supply a diverse range of natural and functional ingredients, including plant extracts, natural flavors, essential oils, amino acids, and peptides. We have established a consistent global supply system that covers raw material procurement, processing, quality control, and export, allowing us to flexibly respond to development projects from small batches to mass production. Through high-quality raw materials, advanced technologies, and specialized support, we assist customers worldwide in product development and business expansion.













![[Data Verification] Evidence-rich human stem cell exosome cosmetic ingredients](https://image.mono.ipros.com/public/product/image/2101880/IPROS10696244664115687942.png?w=280&h=280)