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半固体挤出3D打印技术制备医院制剂的可行性:个性化苯磺酸氨氯地平咀嚼片

Feasibility of developing hospital preparation by semisolid extrusion 3D printing: personalized amlodipine besylate chewable tablets.

作者信息

Han Xiaolu, Kang Dongzhou, Liu Boshi, Zhang Hui, Wang Zengming, Gao Xiang, Zheng Aiping

机构信息

State Key Laboratory of Toxicology and Medical Countermeasures, Beijing Institute of Pharmacology and Toxicology, Beijing, China.

Troops 32104 of People's Liberation Army, Inner Mongolia, China.

出版信息

Pharm Dev Technol. 2022 Feb;27(2):164-174. doi: 10.1080/10837450.2022.2027965. Epub 2022 Jan 23.

Abstract

Semisolid extrusion (SSE) 3D printing is an emerging technology in personalized medicine. To address clinical multi-dose requirements, SSE has been explored to manufacture new preparations. In this study, amlodipine besylate (AMB) was the model drug, and SSE was the pharmaceutical strategy. We developed semisolids suitable for SSE and AMB chewable tablets with six strengths (1.5-5 mg) to meet the needs of 2-16-year-old patients. First, the semisolid extrudability was evaluated by texture analyzer, and then the amounts of carboxymethyl cellulose sodium, sodium starch glycolate, and glycerin were optimized by full factorial design. Then, rheological tests were performed to evaluate the properties of the semisolid and the effect of starch sodium glycolate on printability. Finally, the amount of corrigents was optimized using the electronic tongue. Laboratory amplified semisolids and 3D printed tablets can be stored for a few months, and the whole SSE process had no effect on crystal type. This study validated the feasibility of SSE 3D printing, and tablets with appropriate taste and cartoon appearance can meet or even exceed the traditional preparations. Our study provides a new strategy for multi-dose solid preparations and effectively meet the need for personalized amlodipine medicine.

摘要

半固体挤出(SSE)3D打印是个性化医疗领域的一项新兴技术。为满足临床多剂量需求,人们探索了利用SSE制造新制剂的方法。在本研究中,苯磺酸氨氯地平(AMB)为模型药物,SSE为制药策略。我们开发了适用于SSE的半固体以及具有六种规格(1.5 - 5毫克)的AMB咀嚼片,以满足2至16岁患者的需求。首先,通过质构分析仪评估半固体的挤出性,然后采用全因子设计优化羧甲基纤维素钠、淀粉乙醇酸钠和甘油的用量。接着,进行流变学测试以评估半固体的性质以及淀粉乙醇酸钠对可打印性的影响。最后,使用电子舌优化矫味剂的用量。实验室放大的半固体和3D打印片剂可储存数月,整个SSE过程对晶型无影响。本研究验证了SSE 3D打印的可行性,具有适宜口感和卡通外观的片剂能够达到甚至超越传统制剂。我们的研究为多剂量固体制剂提供了一种新策略,并有效满足了个性化氨氯地平药物的需求。

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