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Swelling, Dissolution and Disintegration of HPMC in Aqueous Media

机译:HPMC在含水介质中的溶胀,溶解和解体

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This paper contains the work on monitoring the swelling, dissolution, and disintegration processes for hydroxypropyl methylcellulose (HPMC) tablets fabricated under 400, 1000, 2000 kg/cm~2 pressures. The density and porosity of tablets of three grades of HPMC (6, 40, 4000 mPa.s viscosity of 2 wt% aqueous solution at room temperature) were measured to identify the effect of different physical/chemical properties on the swelling and the subsequent processes involved. The process observations were conducted at human body temperature of 37"C to understand drug release. The cumulative swelling curve showed that particle size and their distribution in HPMC powder, and density and porosity of the formed tablets have influence on the swelling kinetics. The strength and thickness the gelated layer formed during the swelling process influenced by the chemical structure of HPMC ultimately determined the behavior during the swelling, dissolution and disintegration of the HPMC tablets. The possible mechanism leading to these changes was proposed. The detailed kinetic simulation of the integrated process was also discussed, which seemed to follow power-law formulations.
机译:本文含有关于在400,1000,200kg / cm〜2压力下制造的羟丙基甲基纤维素(HPMC)片剂的溶胀,溶解和崩解过程的作品。测量三种级HPMC(6,40,4000MPa的粘度的片剂的密度和孔隙率为室温下的2wt%),以鉴定不同物理性质对溶胀和后续方法的影响涉及。在37“C的人体温下进行过程观察以了解药物释放。累积溶胀曲线表明,粒度及其在HPMC粉末中的分布,并且形成的片剂的密度和孔隙率对肿胀动力学产生影响。强度并且厚度在溶胀过程中形成的凝胶层受到HPMC的化学结构的影响,最终确定了HPMC片剂的溶胀,溶解和崩解过程中的行为。提出了导致这些变化的可能机制。集成的详细动力学模拟还讨论了过程,似乎遵循权法制剂。

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