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共沉淀糯米淀粉作为多功能辅料在直接压片中的应用。

Application of co-precipitated glutinous rice starch as a multifunctional excipient in direct compression tablets.

作者信息

Amornrojvaravut Chonticha, Peerapattana Jomjai

机构信息

Division of Pharmaceutical Technology, Faculty of Pharmaceutical Sciences, Khon Kaen University, Khon Kaen, Thailand.

出版信息

Heliyon. 2023 Sep 6;9(9):e19904. doi: 10.1016/j.heliyon.2023.e19904. eCollection 2023 Sep.

Abstract

Two key properties of excipients for inclusion in direct compression tablets are flowability and compactibility. Glutinous rice starch (GRS) has poor flowability, which limits its use in direct compression tablets. This study aimed to create a multifunctional direct compression excipient (filler binder disintegrant) with improved flowability from GRS by the co-precipitation method. The physicochemical and pharmaceutical properties of the co-precipitated GRS (cpGRS) were investigated. The optimum conditions for producing cpGRS (0.43 M sodium hydroxide solution, 7.09% PVP K30, 14.02% calcium carbonate, 95 min of mixing time and pH of 6.97) resulted in 68.80% yield, fair to good flowability, acceptable tablet strength, and fast disintegration. The FT-IR spectra of cpGRS showed no significant shifts in the key peaks, which indicates that there was an absence of chemical interactions within cpGRS. X-ray diffractograms also showed no significant changes, indicating that the GRS granules, calcium carbonate, and PVP K30 components remained unaltered during co-precipitation. cpGRS also demonstrated a dilution capacity of 50% when paracetamol was used as model drug. When cpGRS was combined with domperidone or propranolol hydrochloride it showed a better deformation capability than the physical mixtures. Although cpGRS was sensitive to lubricant, the hardness and tensile strength were higher than common strength for general purpose use in tablets. When compared to the physical mixture, pregelatinized starch and directly compressible calcium carbonate, the results showed that cpGRS tablets of both model drugs passed the friability test, demonstrated the best disintegration property, provided the fastest and highest drug release profile for propranolol, and improved the drug release profile for domperidone. For propranolol-cpGRS tablets, dissolution medium at different pH did not affect the dissolution profile. For domperidone-cpGRS tablets, the pH of dissolution medium did affect the dissolution profile of the tablets. This was according to the API solubility. These results reveal that cpGRS is an excellent multifunctional i.e., filler, binder, and disintegrant excipient suitable for direct compression tablets. The main component is natural. The preparation method is simple, quick, and efficient. This method does not produce harmful waste and requires only basic equipment, and affordable reactants and devices.

摘要

可直接压片的辅料的两个关键特性是流动性和可压性。糯米淀粉(GRS)流动性较差,这限制了其在直接压片方面的应用。本研究旨在通过共沉淀法从GRS制备一种具有改善流动性的多功能直接压片辅料(填充剂 - 粘合剂 - 崩解剂)。对共沉淀GRS(cpGRS)的物理化学和药学性质进行了研究。制备cpGRS的最佳条件(0.43 M氢氧化钠溶液、7.09% PVP K30、14.02%碳酸钙、95分钟混合时间和pH值6.97)得到了68.80%的产率、良好至优秀的流动性、可接受的片剂强度和快速崩解性。cpGRS的傅里叶变换红外光谱(FT - IR)显示关键峰无明显位移,这表明cpGRS内部不存在化学相互作用。X射线衍射图也显示无明显变化,表明GRS颗粒、碳酸钙和PVP K30成分在共沉淀过程中保持不变。当以对乙酰氨基酚为模型药物时,cpGRS还表现出50%的稀释能力。当cpGRS与多潘立酮或盐酸普萘洛尔混合时,它比物理混合物表现出更好的变形能力。尽管cpGRS对润滑剂敏感,但其硬度和拉伸强度高于片剂通用的一般强度。与物理混合物、预胶化淀粉和直接可压性碳酸钙相比,结果表明两种模型药物的cpGRS片剂均通过了脆碎度试验,表现出最佳的崩解性能,为普萘洛尔提供了最快和最高的药物释放曲线,并改善了多潘立酮的药物释放曲线。对于普萘洛尔 - cpGRS片剂,不同pH值的溶出介质不影响溶出曲线。对于多潘立酮 - cpGRS片剂,溶出介质的pH值确实影响片剂的溶出曲线。这取决于活性药物成分(API)的溶解度。这些结果表明cpGRS是一种适用于直接压片的优秀多功能辅料,即填充剂、粘合剂和崩解剂。其主要成分是天然的。制备方法简单、快速且高效。该方法不产生有害废物,仅需基本设备以及价格合理的反应物和装置。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ac09/10559294/a7234337f8c0/ga1.jpg

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