Oct. 07, 2024
VIVAPHARM® HPMC, hypromellose, is a cellulose-based polymer for film coating, wet granulation, and hard capsule manufacturing. It is practically insoluble in hot water, acetone, anhydrous ethanol, and toluene and dissolves in cold water, resulting in a colloidal solution. VIVAPHARM® HPMC is E type , meaning that its average content of methoxyl groups is 29% and its average content of hydroxypropyl groups is 10%. The JRS Pharma hypromellose product line includes a variety of E grades ranging from low to high viscosity.
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There are some key differences between HPMC K4M and K100M that are important to understand. Hydroxypropyl methylcellulose (HPMC) is a commonly used excipient in the pharmaceutical industry. It is used as a binder, disintegrant, thickener, and emulsifier in various dosage forms, including tablets, capsules, and creams. HPMC is available in different grades, with HPMC K4M and HPMC K100M being two of the most commonly used grades.
What is HPMC?
Before we dive into the differences between HPMC K4M and K100M, let's take a closer look at what HPMC is and how it is used. HPMC is a derivative of cellulose that is produced by chemically modifying natural cellulose. It is a white to off-white, odorless, and tasteless powder that is soluble in water and many organic solvents.
HPMC is used in pharmaceutical formulations as a binder, disintegrant, thickener, and emulsifier. As a binder, HPMC helps hold tablets together and maintain their shape. As a disintegrant, HPMC helps tablets and capsules break down and release their active ingredients. As a thickener, HPMC gives creams and ointments their desired consistency. And as an emulsifier, HPMC helps mix immiscible liquids, such as oil and water.
Differences between HPMC K4M and K100M
While both HPMC K4M and K100M are used as binders, disintegrants, thickeners, and emulsifiers, there are some key differences between them:
Molecular weight: The primary difference between HPMC K4M and K100M is their molecular weight. HPMC K4M has a lower molecular weight than HPMC K100M, which means it is less viscous and more soluble in water. HPMC K100M, on the other hand, has a higher molecular weight, which makes it more viscous and less soluble in water.
Viscosity: The viscosity of HPMC K4M and K100M is another key difference between the two grades. HPMC K4M has a viscosity of around 4,000 cP (centipoise) at 2% concentration, while HPMC K100M has a viscosity of around 100,000 cP at 2% concentration. This means that HPMC K100M is much more viscous and has a higher thickening power than HPMC K4M.
Application: The different molecular weights and viscosities of HPMC K4M and K100M make them suitable for different applications. HPMC K4M is typically used in formulations that require low to medium viscosity and good solubility, such as tablets, capsules, and topical creams. HPMC K100M, on the other hand, is used in formulations that require high viscosity and a strong thickening effect, such as gels, ointments, and sustained-release tablets.
Cost: The cost of HPMC K4M and K100M can also differ significantly. HPMC K4M is generally less expensive than HPMC K100M, which makes it a more cost-effective option for many formulations.
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Benefits of HPMC
Regardless of the grade, HPMC offers several benefits as an excipient in pharmaceutical formulations:
Biocompatibility: HPMC is derived from natural cellulose, which makes it biocompatible and safe for use in pharmaceutical formulations.
Solubility: HPMC is soluble in water and many organic solvents, which makes it easy to incorporate into formulations and ensures good bioavailability of active ingredients.
Versatility: HPMC can be used as a binder, disintegrant, thickener, and emulsifier, which makes it a versatile excipient for a wide range of dosage forms.
Stability: HPMC offers good stability and can help protect active ingredients from degradation and other external factors.
Controlled release: HPMC can be used to achieve a controlled release of active ingredients, making it a useful excipient for sustained-release tablets and other formulations.
Film-forming properties: HPMC can be used to form thin, flexible films that can protect tablets and capsules from moisture and other environmental factors.
Improved flow properties: HPMC can improve the flow properties of powders, making them easier to handle and process.
Conclusion
HPMC is a versatile excipient that offers several benefits in pharmaceutical formulations. While both HPMC K4M and K100M are commonly used grades, they differ in molecular weight, viscosity, application, and cost. Understanding these differences is important when selecting the appropriate grade for a specific formulation. HPMC offers several benefits, including biocompatibility, solubility, versatility, stability, controlled release, film-forming properties, and improved flow properties. Overall, HPMC is a valuable tool in the formulation of safe, effective, and stable pharmaceutical products.
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