Department of Pharmaceutics, School of Pharmacy, Shenyang Pharmaceutical University, Wenhua Road 103, Shenyang 110016, China.
School of Pharmacy, Liaoning University, 66 Chongshan Middle Road, Shenyang 110036, China.
Int J Pharm. 2021 Mar 1;596:120201. doi: 10.1016/j.ijpharm.2021.120201. Epub 2021 Feb 1.
Patient responses to doses vary widely, and affording limited doses to such a diverse population will inevitably yield unsatisfactory therapeutic effects and even adverse effects. In Particular, there is an urgent demand for a dynamic dose-control platform for pediatric patients, many of whom require diverse doses and flexible dose adjustments. The aim of this study was to explore the possibility of using a drop-on-powder (DoP) technology-based desktop 3D printer to build a dynamic dose-control platform for theophylline (TP) and metoprolol tartrate (MT). In addition, the impact of drug loading patterns on the accuracy of dose regulation was also assessed. All of the printed tablets exhibited good mechanical properties and satisfactory structural integrity. On printing tablets with target drug doses, the accuracy was in the range of 91.2108% with a small variation coefficient in the range of 0.53.2%. Compared with traditional divided-dose methods, drop-on-powder 3D printing technology exhibited higher accuracy in dose regulation, but had less impact on the in vitro drug release behavior. The results in this work clearly indicate the possibility and ability of DoP technology as a promising method for constructing a dynamic dose-control platform for the fabrication of personalized medicines for pediatric patients.
患者对剂量的反应差异很大,为如此多样化的人群提供有限的剂量,不可避免地会导致治疗效果不理想,甚至出现不良反应。特别是,儿科患者迫切需要一个动态剂量控制平台,许多儿科患者需要多种剂量和灵活的剂量调整。本研究旨在探讨使用基于液滴喷射(DoP)技术的桌面 3D 打印机构建茶碱(TP)和酒石酸美托洛尔(MT)的动态剂量控制平台的可能性。此外,还评估了药物加载模式对剂量调节准确性的影响。所有打印的片剂均表现出良好的机械性能和令人满意的结构完整性。在打印目标药物剂量的片剂时,准确性在 91.2%108%之间,变异系数在 0.5%3.2%之间。与传统的分割剂量方法相比,液滴喷射 3D 打印技术在剂量调节方面具有更高的准确性,但对体外药物释放行为的影响较小。本工作的结果清楚地表明了 DoP 技术作为构建儿科患者个性化药物的动态剂量控制平台的有前途的方法的可能性和能力。