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首页> 外文期刊>AAPS PharmSciTech >A Study on In-Line Tablet Coating—the Influence of Compaction and Coating on Tablet Dimensional Changes
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A Study on In-Line Tablet Coating—the Influence of Compaction and Coating on Tablet Dimensional Changes

机译:在线片剂包衣的研究-压制和包衣对片剂尺寸变化的影响

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Prior to coating, tablets are usually stored for a definite period to enable complete strain recovery and prevent subsequent volumetric expansion-related coating defects. In-line coating is defined as the coating of tablets immediately after compaction. In-line coating will be expected to improve manufacturing efficiencies. In this study, the possibility of in-line coating was studied by evaluating the influence of compaction and coating on tablet dimensional changes. The use of tapered dies for compaction was also evaluated. Two types of tablet coaters which presented different coating environments, namely the Supercell™ coater and pan coater, were employed for coating. The extent of tablet dimensional changes was studied in real time using optical laser sensors in a controlled environment. After compaction, tablet dimensional changes were found to be anisotropic. In contrast, coating resulted in isotropic volume expansion in both the axial and radial directions. Pan coating resulted in significantly greater tablet dimensional changes compared to Supercell™ coating. There was no significant difference in dimensional changes of tablets coated in line or after complete viscoelastic strain recovery for Supercell™ coating. However, significantly different dimensional changes were observed for pan coating. The use of tapered dies during compaction was found to result in more rapid viscoelastic strain recovery and also significantly reduced tablet dimensional changes when tablets were immediately coated after compaction using the pan coater. In conclusion, the Supercell™ coater appeared to be more suitable for in-line tablet coating, while tapered dies were beneficial in reducing tablet dimensional changes when the pan coater was employed for in-line coating.
机译:在包衣之前,片剂通常要保存一定的时间,以使应变完全恢复并防止随后的与体积膨胀有关的包衣缺陷。在线包衣定义为压紧后立即包衣的片剂。在线涂层有望提高生产效率。在这项研究中,通过评估压实和包衣对片剂尺寸变化的影响,研究了在线包衣的可能性。还评估了使用锥形模进行压实。呈现不同包衣环境的两种片剂包衣机,即Supercell™包衣机和锅包衣机,用于包衣。在受控环境中使用光学激光传感器实时研究了片剂尺寸变化的程度。压实后,发现片剂的尺寸变化是各向异性的。相反,涂层导致在轴向和径向上各向同性的体积膨胀。与Supercell™包衣相比,锅包衣导致片剂尺寸变化明显更大。对于Supercell™包衣,在线或完全恢复粘弹性应变后,包衣的片剂尺寸变化无明显差异。然而,对于锅包衣观察到明显不同的尺寸变化。发现在压实期间使用锅包衣机立即包衣片剂时,在压实过程中使用锥形模头可导致更快的粘弹性应变恢复,并且还显着减少了片剂尺寸变化。总之,Supercell™包衣机似乎更适合在线片剂包衣,而锥型模具在将锅包衣机用于在线包衣时有利于减少片剂尺寸变化。

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