Nokhodchi A, Ford J L, Rowe P H, Rubinstein M H
Pharmaceutical Technology and Drug Delivery Group, School of Pharmacy and Chemistry, Liverpool John Moores University, UK.
J Pharm Pharmacol. 1996 Nov;48(11):1122-7. doi: 10.1111/j.2042-7158.1996.tb03906.x.
The influence of moisture content on the Heckel analysis, energy analysis and strain-rate sensitivity of hydroxyproplymethylcellulose 2208 (HPMC K4M) has been evaluated. An increase in moisture content from 0 to 14.9% w/w decreased the mean yield pressure, probably due to a plasticizing effect of moisture which reduced the resistance of particles to deformation. For each moisture content (0, 2.2, 3.8, 5.9, 9.6 and 14.9% w/w), the initial relative density and the extrapolated density from the linear portion of the Heckel plot, tended to decrease with increasing compression speed. Minor changes were observed in the initial relative density due to changes in the moisture content. The strain-rate sensitivity increased from 21.6 to 50.7% as the moisture content increased from 0 to 14.9% w/w, indicating that the plasticity of HPMC increased with increase in moisture content, whereas increase in moisture content from 0 to 14.9% w/w decreased the plastic energy. Increase in compression force or speed of compaction increased both the plastic and elastic energies. An increase in moisture content from 0 to 5.9% w/w slightly reduced the elastic energy but above 5.9% moisture content the elastic energy was unaffected by the moisture content.
已评估了水分含量对羟丙基甲基纤维素2208(HPMC K4M)的赫克尔分析、能量分析及应变速率敏感性的影响。水分含量从0%(重量/重量)增加至14.9%(重量/重量)会降低平均屈服压力,这可能是由于水分的增塑作用降低了颗粒的抗变形能力。对于每种水分含量(0%、2.2%、3.8%、5.9%、9.6%和14.9%(重量/重量)),赫克尔图线性部分的初始相对密度和外推密度往往会随着压缩速度的增加而降低。由于水分含量的变化,初始相对密度出现了微小变化。随着水分含量从0%(重量/重量)增加至14.9%(重量/重量),应变速率敏感性从21.6%增加至50.7%,这表明HPMC的可塑性随水分含量的增加而增加,而水分含量从0%(重量/重量)增加至14.9%(重量/重量)会降低塑性能量。压缩力或压实速度的增加会使塑性能量和弹性能量均增加。水分含量从0%(重量/重量)增加至5.9%(重量/重量)会使弹性能量略有降低,但水分含量高于5.9%时,弹性能量不受水分含量影响。