Praphawatvet Tuangrat, Cui Zhengrong, Williams Robert O
Division of Molecular Pharmaceutics and Drug Delivery, College of Pharmacy, The University of Texas at Austin, Austin, TX, United States.
Division of Molecular Pharmaceutics and Drug Delivery, College of Pharmacy, The University of Texas at Austin, Austin, TX, United States.
Int J Pharm. 2022 Dec 15;629:122357. doi: 10.1016/j.ijpharm.2022.122357. Epub 2022 Nov 1.
Thin-film freeze-drying is a dry powder engineering technology that involves in a rapid thin-film freezing (TFF) process followed by lyophilization to remove solvent. TFF process has been successfully used to produce pharmaceutical powders of the small and large molecule drugs as well as live organisms. This paper provides a comprehensive review of the pharmaceutical applications of TFF powders of small molecule drugs intended for pulmonary delivery or oral administration. The powders produced by the TFF process often exhibited unique physical properties such as amorphous morphology, high porosity, brittle matrix structure, and high specific surface area, and the powders also often contain loosely connected micron or submicron particles or aggregates. The TFF process parameters and formulation compositions directly affect the physical properties of the powders. These physical properties render TFF powders desirable aerodynamic properties for efficient pulmonary delivery by oral inhalation and help enhance the dissolution of poorly water-soluble small molecule drugs in the powders and thus improve their bioavailability after oral administration.
薄膜冷冻干燥是一种干粉工程技术,它涉及快速薄膜冷冻(TFF)过程,随后进行冻干以去除溶剂。TFF过程已成功用于生产小分子药物、大分子药物以及活生物体的药用粉末。本文全面综述了用于肺部给药或口服的小分子药物TFF粉末的药物应用。通过TFF过程生产的粉末通常表现出独特的物理性质,如无定形形态、高孔隙率、脆性基质结构和高比表面积,并且这些粉末还常常包含松散连接的微米或亚微米颗粒或聚集体。TFF过程参数和配方组成直接影响粉末的物理性质。这些物理性质使TFF粉末具有理想的空气动力学性质,便于通过口服吸入实现高效肺部给药,并有助于提高粉末中难溶性小分子药物的溶出度,从而改善其口服后的生物利用度。