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      • Other Oleochemical Excipients
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Startseite » Organic Chemicals » Microcrystalline Cellulose » The Role of Particle Surface Area and Adhesion Force in the Sticking Behavior of Pharmaceutical Powders

The Role of Particle Surface Area and Adhesion Force in the Sticking Behavior of Pharmaceutical Powders

5. September 2019
Tableting

Cinnamyl O-amine functionalized chitosan as a new excipient in direct compressed tablets with improved drug delivery

The effect of particle surface area and adhesion force on sticking behavior for a model pharmaceutical blend was studied.

Various lots of an active pharmaceutical ingredient (API) differing in particle size distribution and surface area were blended with commercial grades of microcrystalline cellulose (MCC) ranging in size from 20-110 μm. A dry-coating technique was also used to modify the surface of MCC to reduce its adhesion force. This allowed study of sticking behavior due to effects associated with particle adhesion force independently from effects associated with surface area.

Using a removable-tip experiment to quantify the mass of adhered material to a tablet punch, this study concludes that both particle surface area and adhesion force significantly affect sticking behavior. Tablets with higher tensile strength comprised of API with lower surface area relative to the excipient surface area resulted in less sticking.

This study found that the difference between the tablet tensile strength of the blend and that of the API normalized by the surface area fraction of API in the blend correlates well with the rate of mass adhered to the punch. This quantity, referred to as the sticking index, can be used to assess sticking propensity for a pharmaceutical blend. Read more

Tags: excipients

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  • Shop
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      • Cellulose
      • Cellulose Esters
      • Cellulose Ethers
      • CMC and Croscarmellose Sodium
      • Converted Starch
      • Dried Starch
      • Microcrystalline Cellulose
      • Modified Starch
      • Starch
      • Sugars
      • Sugar Alcohols
    • Petrochemicals
      • Acrylic Polymers
      • Glycols
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      • Povidones
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      • Other Petrochemical Excipients
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      • Preservative
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      • Speciality Excipient
      • Surfactants
      • Suspension Agent
      • Sustained Release Agent
      • Sweeteners
      • Taste Masking
      • Topical Excipient
      • Viscocity Agent
  • Sources
    • Handbook of Pharmaceutical Excipients – 9th Edition
    • EINECS Numbers
    • Excipient DMF List
    • Excipient cGMP Certification Organisations
    • FDA Inactive Ingredient List
    • FDA GRAS Substances (SCOGS) Database
    • Excipient E-Numbers
    • Whitepapers / Publications
    • Contract Development|Contract Manufacturing
  • Suppliers
    • A-B
      • ADM
      • ARMOR PHARMA
      • Ceolus™ & Celphere™
      • Ashland
      • BASF
      • Beneo – galenIQ
      • Biogrund
      • Budenheim
    • C-G
      • Captisol
      • Croda
      • Cyclolab
      • DFE Pharma
      • DuPont Pharma Solutions
      • Evonik
      • Fuji Chemical Industries
      • Gattefossé
      • Gangwal Healthcare
    • I-O
      • ingredientpharm
      • IOI Oleochemical
      • JRS Pharma
      • Kerry
      • KLK Oleo Life Science
      • Lactalis Ingredients Pharma
      • Lipoid
      • Dr. Paul Lohmann
      • Lubrizol
      • Magnesia
      • MEGGLE Excipients
      • Nagase Viita – Pharmaceutical Ingredients
      • Nordic Bioproducts Group
    • P-Z
      • Pfanstiehl
      • pharm-a-spheres
      • Pharma Line
      • PMC Isochem
      • Roquette Pharma
      • Seppic
      • Shin-Etsu
      • Sigachi Group
      • Südzucker AG
      • VIKRAM THERMO
      • Zerion Pharma
      • ZoomLab® – Your Virtual Pharma Assistant
  • Inquiries
    • Product Inquiry
    • Tailored Tableting Excipients
      • Tailored Film Coating
  • Events
    • Overview Pharmaceutical Webinars
    • Videos CPhI Frankfurt 2025
    • CPhI China 2024
    • ExciPerience – The great excipient event!
  • All4Nutra

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Copyright: PharmaExcipients AG