Ishii Naoko, Mizobuchi Senri, Kawano Yayoi, Hanawa Takehisa
Department of Pharmacy, Kashiwa City Hospital, 1-3 Fuse, Kashiwa 277-0825, Japan.
Faculty of Pharmaceutical Sciences, Tokyo University of Science, 2641 Yamazaki, Noda 278-8510, Japan.
Pharmaceutics. 2021 Nov 3;13(11):1848. doi: 10.3390/pharmaceutics13111848.
In Japan, rebamipide (RB) mouthwash (RB-MW) for oral mucositis induced by cancer chemotherapy has been prepared using in-hospital formulation. Usually, RB-MW is prepared by dispersing crushed commercial RB tablets in the dispersion medium; however, uniformity is difficult to obtain due to low solubility. The current study aims is to prepare homogenously dispersed formulations using the fine particles of crushed tablets by a method that is convenient for hospital use. Commercial RB tablets were pre-milled at different milling times as "RB-Ts". A ground mixture was then prepared by co-grinding the RB-Ts with HPC-L or PVP K30 via a benchtop ball milling machine (MM400). The physicochemical properties of samples were evaluated for PXRD, FTIR, turbidity, particle size, and solubility. Although the milling of RB tablets decreased the crystallinity, the length of milling time did not affect them. In contrast, grinding using MM400 significantly decreased RB crystallinity; their PXRD patterns showed a halo, suggesting the amorphization of RB crystals by grinding. Although solubility and turbidity seemed to be affected by the type of polymer rather than the particle size, every ground mixture showed high dispersibility. Thus, grinding the RB-Ts with polymers appeared to be the most promising way to obtain stable dispersion as an in-hospital formulation.
在日本,已使用院内制剂制备了用于癌症化疗所致口腔黏膜炎的瑞巴派特(RB)漱口水(RB-MW)。通常,RB-MW是通过将碾碎的市售RB片剂分散在分散介质中制备而成;然而,由于溶解度低,难以获得均匀性。本研究旨在通过一种便于医院使用的方法,使用碾碎片剂的细颗粒制备均匀分散的制剂。将市售RB片剂在不同研磨时间进行预研磨,得到“RB-Ts”。然后通过台式球磨机(MM400)将RB-Ts与HPC-L或PVP K30共同研磨,制备研磨混合物。对样品的物理化学性质进行了粉末X射线衍射(PXRD)、傅里叶变换红外光谱(FTIR)、浊度、粒度和溶解度评估。虽然RB片剂的研磨降低了结晶度,但研磨时间的长短并未对其产生影响。相比之下,使用MM400研磨显著降低了RB的结晶度;其PXRD图谱显示为晕圈,表明通过研磨使RB晶体非晶化。虽然溶解度和浊度似乎受聚合物类型而非粒径的影响,但每种研磨混合物均表现出高分散性。因此,将RB-Ts与聚合物一起研磨似乎是作为院内制剂获得稳定分散体的最有前景的方法。