School of Engineering Medicine, Texas A&M University, Houston, Texas, 77030, USA.
Texas A&M Health Science Center, Irma Lerma Rangel School of Pharmacy, Texas A&M University, Reynolds Medical Sciences Building, Suite 308, College Station, Texas, 77843, USA.
AAPS PharmSciTech. 2024 Sep 17;25(7):217. doi: 10.1208/s12249-024-02935-2.
The focus of current studies was to fabricate dose flexible printlets of dapsone (DDS) for pediatric patients by selective laser sintering (SLS) 3D printing method, and evaluate its physicochemical, patient in-use stability, and pharmacokinetic attributes. Eight formulations were fabricated using Kollicoat IR, Eudragit L-100-55 and StarCapas excipients and evaluated for hardness, disintegration, dissolution, amorphous phase by differential scanning calorimetry and X-ray powder diffraction, in-use stability at 30 C/75% RH for a month, and pharmacokinetic study in Sprague Dawley rats. The hardness, and disintegration of the printlets varied from 2.6±1.0 (F4) to 7.7±0.9 (F3) N and 2.0±0.4 (F2) to 7.6±0.6 (F3) sec, respectively. The drug was partially present as an amorphous form in the printlets. The drug was completely (>85%) dissolved in 20 min. No change in drug form or dissolution extent was observed after storage at in use condition. Pharmacokinetic profiles of both formulations (tablets and printlets) were almost superimposable with no statistical difference in pharmacokinetic parameters (T, C, and AUC)between formulations (p>0.05). Values of EC (half maximal effective concentration) and EC (maximal concentration inducing 90% maximal response) were 0.50±0.15 and 1.32±0.26 mM, 0.41±0.06 and 1.11±0.21, and 0.42±0.13 and 1.36±0.19 mM for DDS, printlet and tablet formulations, respectively, and differences were statistically insignificant (p>0.05). In conclusion, tablet and printlet formulations are expected to be clinical similar, thus clinically interchangeable.
目前的研究重点是通过选择性激光烧结(SLS)3D 打印方法制造具有剂量灵活性的氨苯砜(DDS)打印片,评估其物理化学性质、患者使用稳定性和药代动力学特性。使用 Kollicoat IR、Eudragit L-100-55 和 StarCapas 赋形剂制备了 8 种制剂,并对其硬度、崩解、溶解、差示扫描量热法和 X 射线粉末衍射中的无定形相、在 30°C/75%RH 下使用 1 个月的稳定性以及在 Sprague Dawley 大鼠中的药代动力学研究进行了评估。打印片的硬度和崩解时间分别在 2.6±1.0(F4)至 7.7±0.9(F3)N 和 2.0±0.4(F2)至 7.6±0.6(F3)秒之间变化。药物在打印片中部分呈无定形形式存在。药物在 20 分钟内完全(>85%)溶解。在使用条件下储存后,药物形态或溶解程度没有变化。两种制剂(片剂和打印片)的药代动力学曲线几乎完全重叠,制剂之间的药代动力学参数(T、C 和 AUC)没有统计学差异(p>0.05)。半最大有效浓度(EC)和 90%最大响应诱导最大浓度(EC(max))的 EC 值分别为 0.50±0.15 和 1.32±0.26 mM、0.41±0.06 和 1.11±0.21 mM、0.42±0.13 和 1.36±0.19 mM,用于 DDS、打印片和片剂制剂,差异无统计学意义(p>0.05)。总之,片剂和打印片制剂预计具有临床相似性,因此可临床互换。