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研究磁性纳米颗粒作为选择性激光烧结(SLS)3D 打印口腔片剂的替代烧结剂的应用。

Investigating the Use of Magnetic Nanoparticles As Alternative Sintering Agents in Selective Laser Sintering (SLS) 3D Printing of Oral Tablets.

机构信息

Pharmaceutical Engineering and 3D Printing (PharmE3D) Lab, Division of Molecular Pharmaceutics and Drug Delivery, College of Pharmacy, The University of Texas at Austin, Austin, Texas78712, United States.

出版信息

ACS Biomater Sci Eng. 2023 Jun 12;9(6):2924-2936. doi: 10.1021/acsbiomaterials.2c00299. Epub 2023 Feb 6.

Abstract

Selective laser sintering (SLS) is a single-step, three-dimensional printing (3DP) process that is gaining momentum in the manufacturing of pharmaceutical dosage forms. It also offers opportunities for manufacturing various pharmaceutical dosage forms with a wide array of drug delivery systems. This research aimed to introduce carbonyl iron as a multifunctional magnetic and heat conductive ingredient for the fabrication of oral tablets containing isoniazid, a model antitubercular drug, via SLS 3DP process. Furthermore, the effects of magnetic iron particles on the drug release from the SLS printed tablets under a specially designed magnetic field was studied. Optimization of tablet quality was performed by adjusting SLS printing parameters. The independent factors studied were laser scanning speed, hatching space, and surface/chamber temperature. The responses measured were printed tablets' weight, hardness, disintegration time, and dissolution performance. It has been observed that, for the drug formulation with carbonyl iron, due to its inherent thermal conductivity, sintering tablets required relatively lower laser energy input to form the tablets of the same quality attributes as the other batches that contained no magnetic particles. Also, printed tablets with carbonyl iron released 25% more drugs under a magnetic field than those without it. It can be claimed that magnetic nanoparticles appear as an alternative conductive material to facilitate the sintering process during SLS 3DP of dosage forms.

摘要

选择性激光烧结(SLS)是一种单步、三维打印(3DP)工艺,在药物剂型制造中逐渐受到关注。它还为制造各种具有广泛药物输送系统的药物剂型提供了机会。本研究旨在介绍羰基铁作为一种多功能磁性和热导成分,用于通过 SLS 3DP 工艺制造含有异烟肼的口服片剂,异烟肼是一种模型抗结核药物。此外,还研究了磁性铁颗粒对 SLS 打印片剂在特殊设计的磁场下药物释放的影响。通过调整 SLS 打印参数来优化片剂质量。研究的独立因素是激光扫描速度、孵化空间和表面/腔室温度。测量的响应是打印片剂的重量、硬度、崩解时间和溶解性能。已经观察到,对于含有羰基铁的药物配方,由于其固有的导热性,烧结片剂需要相对较低的激光能量输入才能形成具有与其他批次相同质量属性的片剂,而其他批次则不含磁性颗粒。此外,含有羰基铁的打印片剂在磁场下释放的药物比不含铁的片剂多 25%。可以说,磁性纳米颗粒作为一种替代导电材料,可在 SLS 3DP 药物剂型的烧结过程中提供便利。

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