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采用选择性激光烧结技术制造含异烟肼的智能 QD100 口腔三维打印片用于即时胃内释放

Additive Manufacturing of SmartEx QD 100 Designed Oral Three-Dimensional Printlets Containing Isoniazid for Immediate Gastric Release by Selective Laser Sintering.

机构信息

Department of Pharmaceutics, National Institute of Pharmaceutical Education and Research (NIPER)-Guwahati, Changsari, Assam 781101, India.

Department of Pharmaceutical Analysis, NIPER-Guwahati, Changsari, Assam 781101, India.

出版信息

Mol Pharm. 2024 Oct 7;21(10):5272-5284. doi: 10.1021/acs.molpharmaceut.4c00693. Epub 2024 Aug 27.

Abstract

The selection of appropriate materials and compatibility of selected materials with drugs and formulations are limiting steps in three-dimensional printing technology. In this study, SmartEx QD 100 (SM QD 100) was introduced as a novel, coprocessed, unexplored excipient that can be used in SLS-mediated 3D printing. The current study aimed to evaluate the feasibility of fabricating SM QD 100 containing INH-embedded SLS-mediated immediate gastric release tablets. The prepared physical mixtures were subjected to the fabrication of 3D printlets by using SLS-mediated 3D printing. The fabricated 3D printlets were subjected to physicochemical characterization by using various analytical techniques. After oral administration of sintered 3D printlets to rabbits, samples were collected and pharmacokinetic parameters were analyzed using the developed LC-APCI-MS/MS method. The optimized batch was able to release 100% INH within 15 min, which confirmed the immediate gastric release. Similarly, sintered 3D printlets were stable under accelerated stability conditions for three months. Finally, the pharmacokinetic parameters revealed the rate and extent of absorption of INH from sintered 3D printlets. As evidenced by and analyses, SM QD 100 was able to sinter SLS-mediated INH-embedded stable immediate gastric release tablets. SM QD 100 is a novel material for SLS-mediated 3D printing in pharmaceutical applications.

摘要

在三维打印技术中,合适材料的选择和所选材料与药物和制剂的相容性是限制因素。本研究引入了 SmartEx QD 100(SM QD 100)作为一种新型的、共处理的、未开发的赋形剂,可用于 SLS 介导的 3D 打印。本研究旨在评估制备含有 INH 嵌入式 SLS 介导即时胃溶片的 SM QD 100 的可行性。将制备的物理混合物通过 SLS 介导的 3D 打印制备 3D 打印片。使用各种分析技术对制备的 3D 打印片进行理化特性表征。将烧结的 3D 打印片口服给予兔子后,收集样品并使用开发的 LC-APCI-MS/MS 方法分析药代动力学参数。优化批能够在 15 分钟内释放 100%的 INH,这证实了即时胃溶。同样,烧结的 3D 打印片在三个月的加速稳定性条件下稳定。最后,药代动力学参数揭示了从烧结的 3D 打印片中吸收 INH 的速度和程度。和 分析表明,SM QD 100 能够烧结 SLS 介导的 INH 嵌入式稳定即时胃溶片。SM QD 100 是一种用于药物应用中 SLS 介导的 3D 打印的新型材料。

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