Benabbas Rihab, Sanchez-Ballester Noelia M, Aubert Adrien, Sharkawi Tahmer, Bataille Bernard, Soulairol Ian
ICGM, University Montpellier, CNRS, ENSCM, 34090 Montpellier, France.
Department of Pharmacy, Nîmes University Hospital, 30000 Nimes, France.
Polymers (Basel). 2021 Mar 23;13(6):988. doi: 10.3390/polym13060988.
This study exposes the potential usefulness of a new co-processed excipient, composed of alginic acid and microcrystalline cellulose (Cop AA-MCC), for the preparation of immediate drug release tablets by direct compression. Evaluation of the physical and mechanical properties as well as the disintegration behavior of Cop AA-MCC in comparison to commercial co-processed excipients (Cellactose, Ludipress, Prosolv SMCC HD90 and Prosolv ODT) and to the physical mixture of the native excipients (MCC and AA), was carried out. The obtained results illustrate the good performance of Cop AA-MCC in terms of powder flowability, tablet tensile strength, compressibility, and disintegration time. Although, this new co-processed excipient showed a slightly high lubricant sensitivity, which was explained by its more plastic than fragmentary deformation behavior, it presented a low lubricant requirement due to the remarkably low ejection force observed during compression. Compression speed and dwell time seemed not to affect significantly the tabletability of Cop AA-MCC. The study exposed evenly the performance of Cop AA-MCC compared to Prosolv ODT, in terms of tabletability and dissolution rate of Melatonin. Cop AA-MCC presented comparable hardness, lower dilution potential, higher lubricant sensitivity, lower ejection force, and faster Melatonin's release time than Prosolv ODT. In summary, Cop AA-MCC exhibited interesting physical, mechanical, and biopharmaceutical properties, which demonstrate its concurrence to commercially available co-processed excipients. Furthermore, the simplicity of its composition and the scalability of its elaboration makes this multifunctional excipient highly recommended for direct compression.
本研究揭示了一种由海藻酸和微晶纤维素组成的新型共处理辅料(Cop AA-MCC)在直接压片制备速释片剂方面的潜在用途。与市售共处理辅料(Cellactose、Ludipress、Prosolv SMCC HD90和Prosolv ODT)以及天然辅料(MCC和AA)的物理混合物相比,对Cop AA-MCC的物理和机械性能以及崩解行为进行了评估。所得结果表明,Cop AA-MCC在粉末流动性、片剂抗张强度、可压缩性和崩解时间方面表现良好。尽管这种新型共处理辅料表现出稍高的润滑剂敏感性,这可以用其比破碎变形行为更具塑性来解释,但由于在压片过程中观察到的脱模力极低,它对润滑剂的需求量较低。压片速度和保压时间似乎对Cop AA-MCC的可压性没有显著影响。该研究还均匀地揭示了Cop AA-MCC与Prosolv ODT相比在褪黑素的可压性和溶解速率方面的性能。Cop AA-MCC与Prosolv ODT相比,硬度相当,稀释潜力较低,润滑剂敏感性较高,脱模力较低,褪黑素释放时间更快。总之,Cop AA-MCC表现出有趣的物理、机械和生物药剂学性质,这表明它与市售共处理辅料相当。此外,其组成的简单性和制备的可扩展性使得这种多功能辅料非常推荐用于直接压片。