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  1. 教員研究業績
  2. 製剤学研究室
  3. 原著論文

Impact of surface roughness of pre-treated punches and powder properties on prevention of sticking during pharmaceutical tableting.

https://gifu-pu.repo.nii.ac.jp/records/14298
https://gifu-pu.repo.nii.ac.jp/records/14298
84b6933f-a058-495c-ad98-56b20bbcea1c
Item type 研究室原著論文(1)
公開日 2020-08-11
タイトル
タイトル Impact of surface roughness of pre-treated punches and powder properties on prevention of sticking during pharmaceutical tableting.
言語 en
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言語 eng
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資源タイプ識別子 http://purl.org/coar/resource_type/c_6501
資源タイプ journal article
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アクセス権 metadata only access
アクセス権URI http://purl.org/coar/access_right/c_14cb
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値 In the present study, surface-modified punches with different roughness were evaluated for their ability to prevent sticking during pharmaceutical tableting using a single punch machine. The surface roughness of the punch faces was assessed using a laser microscope. Acetaminophen and ibuprofen were used as model active pharmaceutical ingredients (APIs) for the tableting tests. The amounts of API powders adhering to the punch faces after tableting were evaluated using spectrophotometric methods. Although the surfaces of the pre-treated punch faces were developed to prevent sticking during tableting, the sticking prevention was greater for acetaminophen than ibuprofen, and the sticking prevention was shown to depend on the mechanical properties of the API powders—namely, plasticity and elasticity. During continuous tableting the formulations, the surface-modified punches maintained their anti-sticking properties. We concluded that characterization of the sticking properties by the present methods using a single punch machine is useful (1) to select the most suitable type of punch face for tableting a drug formulation without a large loss of expensive APIs, and (2) to solve the sticking problems without changing the pharmaceutical formulations during manufacturing.
bibliographic_information en : Journal of Drug Delivery Science and Technology

巻 60, 号 -, p. 101999-101999, ページ数 1, 発行日 2020-12
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2020, Impact of surface roughness of pre-treated punches and powder properties on prevention of sticking during pharmaceutical tableting.: 101999–101999 p.

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