Department of Pharmaceutics, Semmelweis University, 9 Hőgyes Endre Street, Budapest H-1092, Hungary; Egis Pharmaceuticals PLC, 116-120 Bökényföldi Street, Budapest H-1165, Hungary.
Department of Organic Chemistry and Technology, Budapest University of Technology and Economics, H-111 Budapest, Műegyetem rakpart 3, Hungary.
Eur J Pharm Biopharm. 2024 Nov;204:114493. doi: 10.1016/j.ejpb.2024.114493. Epub 2024 Sep 11.
Gastroretentive dosage forms are recommended for several active substances because it is often necessary for the drug to be released from the carrier system into the stomach over an extended period. Among gastroretentive dosage forms, floating tablets are a very popular pharmaceutical technology. In this study, it was investigated whether a rapid, nondestructive method can be used to characterize the floating properties of a tablet. To accomplish our objective, the same composition was compressed, and varied compression forces were applied to achieve the desired tablet. In addition to physical examinations, digital microscopic images of the tablets were captured and analyzed using image analysis techniques, allowing the investigation of the floatability of the dosage form. Image processing algorithms and artificial neural networks (ANNs) were utilized to classify the samples based on their strength and floatability. The input dataset consisted solely of the acquired images. It has been shown by our research that visible imaging coupled with pattern recognition neural networks is an efficient way to categorize these samples based on their floatability. Rapid and non-destructive digital imaging of tablet surfaces is facilitated by this method, offering insights into both crushing strength and floating properties.
胃滞留剂型被推荐用于几种活性物质,因为药物通常需要在延长的时间内从载体系统释放到胃中。在胃滞留剂型中,漂浮片剂是一种非常流行的制药技术。在这项研究中,研究了是否可以使用快速、非破坏性的方法来表征片剂的漂浮性能。为了实现我们的目标,相同的成分被压缩,并施加不同的压缩力来获得所需的片剂。除了物理检查外,还使用图像分析技术拍摄了片剂的数字显微图像并进行了分析,从而可以研究剂型的漂浮能力。图像处理算法和人工神经网络 (ANN) 被用于根据片剂的强度和漂浮性对样品进行分类。输入数据集仅由获取的图像组成。我们的研究表明,将可见成像与模式识别神经网络相结合是根据漂浮性对这些样品进行分类的有效方法。这种方法促进了片剂表面的快速、非破坏性数字成像,为破碎强度和漂浮特性提供了深入了解。