Sezione di Tecnologia e Legislazione Farmaceutiche "Maria Edvige Sangalli", Dipartimento di Scienze Farmaceutiche, Università degli Studi di Milano, via G. Colombo 71, Milan 20133, Italy; Multiply Labs, 1760 Cesar Chavez Street Unit D, 94124 San Francisco, California 94124.
Sezione di Tecnologia e Legislazione Farmaceutiche "Maria Edvige Sangalli", Dipartimento di Scienze Farmaceutiche, Università degli Studi di Milano, via G. Colombo 71, Milan 20133, Italy.
J Pharm Sci. 2020 Jun;109(6):1990-1999. doi: 10.1016/j.xphs.2020.02.013. Epub 2020 Feb 27.
Dietary supplement companies have recently started to focus on the personalization of products and the improvement of the relevant performance. In this respect, a versatile, easy-to-handle capsular delivery platform with customizable content and release kinetics was here proposed and evaluated after filling with caffeine as a model dietary ingredient. In particular, capsular devices comprising 1 to 3 independent inner compartments were attained by Lego-inspired assembly of matching modular units with different wall compositions, manufactured by injection molding and fused deposition modeling 3D printing. Accordingly, one-, two- and three-pulse release profiles of the dietary ingredient were obtained from differently assembled devices following the breakup of the compartments occurring promptly (immediate-release), on pH change (delayed-release) or after tunable lag times (pulsatile-release). The latter release mode would enable the onset of the stimulating effect of caffeine at different times of the day after a single administration when convenient. The performance of each individual compartment only depended on the composition (i.e., promptly soluble, swellable/soluble or enteric soluble polymers) and thickness of its own wall, while it was not affected by the composition and number of joined modular units. Moreover, the delivery platform was extended to include an external gastroresistant shell enclosing previously assembled devices.
近年来,膳食补充剂公司开始专注于产品的个性化和相关性能的提升。在这方面,我们提出并评估了一种多功能、易于操作的胶囊输送平台,该平台具有可定制的内容和释放动力学,可以填充咖啡因作为模型膳食成分。具体来说,通过使用乐高启发式的组装方法,将具有不同壁组成的匹配模块单元组装在一起,形成了包含 1 到 3 个独立内隔室的胶囊装置,这些单元是通过注塑和熔融沉积建模 3D 打印制造的。因此,从不同组装的装置中可以获得单、双和三脉冲释放曲线,这是由于隔室迅速破裂而产生的(即速释)、pH 值变化(迟释)或经过可调滞后时间(脉冲释放)。后一种释放模式可在单次给药后,根据需要在一天中的不同时间开始咖啡因的刺激作用。每个单独隔室的性能仅取决于其壁的组成(即速溶、溶胀/可溶或肠溶聚合物)和厚度,而不受连接的模块单元的组成和数量的影响。此外,该输送平台还扩展到包括一个外部耐胃酸的外壳,将之前组装好的装置封装起来。