Microcrystalline Cellulose (MCC) PH102: A Versatile Pharmaceutical Excipient
Discover the essential roles of MCC PH102 in creating stable, effective, and easy-to-use pharmaceutical products.
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Microcrystalline Cellulose PH102
Microcrystalline Cellulose (MCC) PH102 is a highly refined, purified, and partially depolymerized cellulose derived from high-quality wood pulp. Its unique physicochemical properties make it an indispensable excipient in the pharmaceutical industry, contributing significantly to the quality and performance of solid dosage forms like tablets and capsules.
- Leveraging its function as a crucial pharmaceutical excipient, MCC PH102 enhances tablet cohesion and stability.
- As a key disintegrant, it ensures rapid tablet breakdown for optimal drug release.
- Its excellent compressibility and binding properties are vital for the reliable manufacturing of tablets and capsules.
- The inert, tasteless, and odorless nature of microcrystalline cellulose guarantees formulation integrity without affecting drug efficacy.
Key Advantages
Enhanced Tabletability
Microcrystalline cellulose offers exceptional compressibility and binding capabilities, crucial for producing robust tablets with minimal friability, supporting the goal of obtaining reliable drug formulations.
Improved Drug Release
Its role as a disintegrant promotes rapid tablet disintegration, facilitating the efficient release of active pharmaceutical ingredients and thereby enhancing bioavailability.
Manufacturing Efficiency
With its excellent flow properties and inertness, MCC PH102 simplifies manufacturing processes, reducing the need for multiple excipients and streamlining production for pharmaceutical applications.
Key Applications
Tablet Manufacturing
Widely used as a binder and filler in direct compression and wet granulation for tablets, ensuring consistency and mechanical strength.
Capsule Filling
Serves as a diluent and filler in capsule formulations, ensuring accurate dosing and preventing caking.
Orally Disintegrating Tablets
Its rapid disintegration properties make it ideal for orally disintegrating tablets, improving patient compliance.
Drug Delivery Systems
Plays a role in multiparticulate and sustained-release formulations, contributing to controlled drug delivery.