Department of Pharmaceutical Sciences, Università degli Studi di Milano, Milan, Italy.
Drug Dev Ind Pharm. 2021 Apr;47(4):636-644. doi: 10.1080/03639045.2021.1908335. Epub 2021 Apr 7.
The possible application of a hot-melt ram extrusion printing to the preparation of diclofenac orodispersible films (ODF) made of maltodextrin was studied focusing the attention on the effects of taste-masking agents (i.e. namely mint, licorice-mint, and sucralose) and an opacifier (titanium dioxide [TiO]).
This is a proof-of-concept of the feasibility to print ODF loaded with a thermosensitive drug substance by hot-melt technologies.
Diclofenac sodium (DNa) ODF made of maltodextrin (dextrose equivalent (DE) = 6 ) plasticized with glycerol were prepared by hot-melt extrusion printing. ODF were characterized for disintegration time, drug content, and solid state, dissolution in deionized water and simulated salivary fluid at pH 5.7, tensile, and adhesive properties. Moreover, the stability of ODF was assessed in accelerated conditions over six months.
After the preparation, no variation in drug solid state was evident and the formation of impurity A of DNa was detected, even if it remained below the Pharmacopoeia (Ph. Eur.) limits (< 0.2%). Only the addition of DNa significantly improved the ODF tensile properties: the tensile strength increased from 0.17 ± 0.03 MPa (placebo ODF) to 2.21 ± 0.54 MPa ( ≤ 0.03). All ODF disintegrated in about 1 min, and the t was lower than 3 min. TiO reduced the static and dynamic peel forces ( ≤ 0.006) favoring the ODF detachment from the primary packaging material. During the accelerated stability study, ODF were easy to handle without fracture; the drug content, impurity A, and dissolution profiles remained superimposable.
Hot-melt printing can be suitable to prepare palatable ODF loaded with bitter thermosensitive drugs.
研究热熔挤出打印技术在制备基于麦芽糊精的双氯芬酸钠口腔速溶膜(ODF)中的可能应用,重点关注掩味剂(即薄荷、薄荷甘草和三氯蔗糖)和遮光剂(二氧化钛[TiO])的影响。
这是用热熔技术打印载有热敏药物的 ODF 的可行性的概念验证。
通过热熔挤出打印制备含甘油增塑的麦芽糊精(葡萄糖当量[DE] = 6)的双氯芬酸钠(DNa)ODF。对 ODF 的崩解时间、药物含量和固体状态、在去离子水和 pH 5.7 的模拟唾液中的溶解情况、拉伸和粘合性能进行了表征。此外,还在加速条件下评估了 ODF 在六个月内的稳定性。
制备后,药物固体状态没有明显变化,并且检测到 DNa 的杂质 A 的形成,尽管其仍低于药典(Ph. Eur.)的限量(< 0.2%)。只有添加 DNa 才能显著提高 ODF 的拉伸性能:拉伸强度从 0.17 ± 0.03 MPa(安慰剂 ODF)增加到 2.21 ± 0.54 MPa(≤0.03)。所有 ODF 在大约 1 分钟内崩解,t 小于 3 分钟。TiO 降低了静态和动态剥离力(≤0.006),有利于 ODF 从初级包装材料上脱离。在加速稳定性研究中,ODF 易于处理而不会断裂;药物含量、杂质 A 和溶解曲线仍然可以叠加。
热熔打印可适用于制备载有苦味热敏药物的可口 ODF。