帕潘立酮棕榈酸酯
药品
帕利哌酮
舱室(船)
药理学
医学
精神分裂症(面向对象编程)
海洋学
精神科
地质学
利培酮
抗精神病药
作者
Panpan Yu,Mengjun Zhang,Xiong Jin,Keheng Wu,Sihui Long,Shishi Cheng,Fu Liu,Xiaomin Xu,Jie Liu,Dan Liu,Xue Li,Бо Лю,Jian Xu
标识
DOI:10.3389/fphar.2025.1507828
摘要
Long-acting injectable formulations, such as paliperidone palmitate extended-release injectable suspension, have been designed to release medicines slowly and sustainably. Developing models that simulate drug release from long-acting injectable formulations in vivo is challenging. A novel approach to modeling and simulating complex and multiphasic drug pharmacokinetics (PK) is provided in this article to facilitate development of long-acting formulations. By segmenting nanocrystalline particles according to their different sizes, the absorption delays of each segment were obtained from the results of the PK study in dogs. In addition to the lag time for each segment, all other parameters, including physicochemical parameters such as drug solubility, density and diffusion coefficient, as well as pharmacokinetic parameters related to clearance, elimination and distribution, were introduced into the model to establish a muscle compartment model for use in humans. By using this model, the injectable suspensions paliperidone samples were predicted to have a long release of 90-100 days in vivo.
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