Division of Molecular Pharmaceutics and Drug Delivery, Department of Molecular Pharmaceutics and Drug Delivery, College of Pharmacy, The University of Texas at Austin, Austin, Texas 78712, United States.
Mol Pharm. 2021 Oct 4;18(10):3894-3908. doi: 10.1021/acs.molpharmaceut.1c00557. Epub 2021 Sep 16.
This research study utilized a light-sensitive drug, nifedipine (NFD), to understand the impact of processing parameters and formulation composition on drug degradation, crystallinity, and quality attributes (dimensions, hardness, disintegration time) of selective laser sintering (SLS)-based three-dimensional (3D)-printed dosage forms. Visible lasers with a wavelength around 455 nm are one of the laser sources used for selective laser sintering (SLS) processes, and some drugs such as nifedipine tend to absorb radiation at varying intensities around this wavelength. This phenomenon may lead to chemical degradation and solid-state transformation, which was assessed for nifedipine in formulations with varying amounts of vinyl pyrrolidone-vinyl acetate copolymer (Kollidon VA 64) and potassium aluminum silicate-based pearlescent pigment (Candurin) processed under different SLS conditions in the presented work. After preliminary screening, Candurin, surface temperature (ST), and laser speed (LS) were identified as the significant independent variables. Further, using the identified independent variables, a 17-run, randomized, Box-Behnken design was developed to understand the correlation trends and quantify the impact on degradation (%), crystallinity, and quality attributes (dimensions, hardness, disintegration time) employing qualitative and quantitative analytical tools. The design of experiments (DoEs) and statistical analysis observed that LS and Candurin (wt %) had a strong negative correlation on drug degradation, hardness, and weight, whereas ST had a strong positive correlation with drug degradation, amorphous conversion, and hardness of the 3D-printed dosage form. From this study, it can be concluded that formulation and processing parameters have a critical impact on stability and performance; hence, these parameters should be evaluated and optimized before exposing light-sensitive drugs to the SLS processes.
本研究利用一种光敏感药物硝苯地平(NFD),了解加工参数和配方组成对选择性激光烧结(SLS)三维(3D)打印剂型药物降解、结晶度和质量属性(尺寸、硬度、崩解时间)的影响。波长在 455nm 左右的可见激光是选择性激光烧结(SLS)工艺中使用的激光源之一,而硝苯地平等一些药物往往会在这个波长周围以不同的强度吸收辐射。这种现象可能导致化学降解和固-态转变,本研究对不同含量的乙烯基吡咯烷酮-乙酸乙烯酯共聚物(Kollidon VA 64)和基于钾铝硅酸盐的珠光颜料(Candurin)的配方进行了评估,这些配方在不同的 SLS 条件下进行处理。在初步筛选后,Candurin、表面温度(ST)和激光速度(LS)被确定为显著的独立变量。此外,使用确定的独立变量,开发了一个 17 运行、随机、Box-Behnken 设计,以了解降解(%)、结晶度和质量属性(尺寸、硬度、崩解时间)的相关趋势,并使用定性和定量分析工具量化其对降解(%)、结晶度和质量属性(尺寸、硬度、崩解时间)的影响。实验设计(DoE)和统计分析观察到 LS 和 Candurin(wt%)对药物降解、硬度和重量有很强的负相关,而 ST 对药物降解、无定形转化率和 3D 打印剂型的硬度有很强的正相关。从这项研究可以得出结论,配方和加工参数对稳定性和性能有至关重要的影响;因此,在将光敏感药物暴露于 SLS 工艺之前,应评估和优化这些参数。