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Applying terahertz technology for nondestructive detection of crack initiation in a film-coated layer on a swelling tablet. | LitMetric

Applying terahertz technology for nondestructive detection of crack initiation in a film-coated layer on a swelling tablet.

Results Pharma Sci

Faculty of Pharmaceutical Science, Toho University, 2-2-1 Miyama, Funabashi, Chiba 274-8510, Japan ; PAT Committee, Japan Society of Pharmaceutical Machinery and Engineering, Miyoshi Bld. 3F, 2-7-3 Kandata-cho, Chiyoda-ku, Tokyo 101-0046, Japan.

Published: March 2015

AI Article Synopsis

  • * Variations in the film coating process, including filling rates and spray pressure, can lead to differences in film density and gaps between coated and uncoated tablets, increasing the risk of cracks.
  • * The terahertz wave technique allows for the assessment of film surface density and interface density differences, helping predict crack initiation without the need for accelerated stability tests, thus improving the film coating process.

Article Abstract

Here, we describe a nondestructive approach using terahertz wave to detect crack initiation in a film-coated layer on a drug tablet. During scale-up and scale-down of the film coating process, differences in film density and gaps between the film-coated layer and the uncoated tablet were generated due to differences in film coating process parameters, such as the tablet-filling rate in the coating machine, spray pressure, and gas-liquid ratio etc. Tablets using the PEO/PEG formulation were employed as uncoated tablets. We found that heat and humidity caused tablets to swell, thereby breaking the film-coated layer. Using our novel approach with terahertz wave nondestructively detect film surface density (FSD) and interface density differences (IDDs) between the film-coated layer and an uncoated tablet. We also found that a reduced FSD and IDD between the film-coated layer and uncoated tablet increased the risk of crack initiation in the film-coated layer, thereby enabling us to nondestructively predict initiation of cracks in the film-coated layer. Using this method, crack initiation can be nondestructively assessed in swelling tablets after the film coating process without conducting accelerated stability tests, and film coating process parameters during scale-up and scale-down studies can be appropriately established.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC4167182PMC
http://dx.doi.org/10.1016/j.rinphs.2012.04.001DOI Listing

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