Ethyl Cellulose N10: A Versatile Pharma Grade Excipient for Advanced Formulations
Unlock superior drug delivery and formulation with our high-purity, medicine-grade Ethyl Cellulose N10.
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Ethyl Cellulose N10
Ethyl Cellulose N10 is a premium, USP, BP, EP, CP compliant cellulose ether designed for demanding pharmaceutical and cosmetic applications. Its exceptional film-forming capabilities and water-insolubility make it an ideal choice for advanced formulations.
- Benefit from its role as a sustained release matrix, enabling precise control over drug release profiles.
- Leverage its properties as a microcapsule film forming material to protect active ingredients.
- Utilize Ethyl Cellulose N10 as a thickening agent for various pharmaceutical gels and creams.
- Ensure product integrity with its excellent binding properties for tablet coating applications.
Key Advantages
Pharmaceutical Compliance
Meeting USP, BP, EP, and CP standards, this product guarantees safety and efficacy for pharmaceutical applications, aiding in ethereal cellulose pharmaceutical applications.
Controlled Release Functionality
Its structure as a sustained release matrix ethyl cellulose allows for the development of advanced drug delivery systems, enhancing therapeutic outcomes.
Versatile Application Use
From tablet coating to creating stable gels, its utility as a thickener for pharmaceutical gels and a film former broadens formulation possibilities.
Key Applications
Tablet Coating
Providing a protective and controllable barrier, it's essential for ethyl cellulose for tablet coating, ensuring drug stability and targeted delivery.
Sustained Release Systems
Formulated as a sustained release matrix ethyl cellulose, it is crucial for developing medications with prolonged effects.
Microencapsulation
As a robust microcapsule film forming material, it effectively shields sensitive ingredients and controls their release.
Topical Formulations
Its thickening properties make it valuable as a thickener for pharmaceutical gels and creams, improving texture and stability.