首页> 外文期刊>European journal of pharmaceutics and biopharmaceutics: official journal of Arbeitsgemeinschaft fuer Pharmazeutische Verfahrenstechnik e.V >Crystallization of poly(ethylene oxide) with acetaminophen - A study on solubility, spherulitic growth, and morphology in memory of Prof. Peng Wang, a brilliant scientist, an enthusiastic teacher, and the dearest friend.
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Crystallization of poly(ethylene oxide) with acetaminophen - A study on solubility, spherulitic growth, and morphology in memory of Prof. Peng Wang, a brilliant scientist, an enthusiastic teacher, and the dearest friend.

机译:用对乙酰氨基酚结晶聚环氧乙烷-一位聪明的科学家,一位热情的老师和最亲爱的朋友王鹏教授在记忆,球状生长和形态记忆方面的研究。

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摘要

A simple, sensitive, efficient, and novel method analyzing the number of spherulitic nuclei was proposed to estimate the solubility of a model drug acetaminophen (APAP) in poly(ethylene oxide) (PEO). At high crystallization temperature (323 K), 10% APAP-PEO had the same low number of spherulitic nuclei as pure PEO, indicating that APAP and PEO were fully miscible. At low crystallization temperature (303 K), the number of nuclei for 10% APAP-PEO was significantly higher, suggesting that APAP was oversaturated and therefore recrystallized and acted as a nucleating agent. Based on the results obtained, the solubility of APAP in PEO is possibly between the concentration of 0.1% and 1% at 303 K. The spherulitic growth rate G of PEO was found to decrease with increasing APAP concentration, suggesting that APAP is most likely functioning as a chemical defect and is either rejected from or included in the PEO crystals during chain folding. APAP could possibly locate in the inter-spherulitic, inter-fibrillar, inter-lamellar, or intra-lamellar regions of PEO. At 323 K, the morphology of 10% APAP-PEO is more dendritic than spherulitic with large unfilled space in between dendrites and spherulites, which is a sign of one or the combination of the four modes of segregation. An extensive spherulitic nucleation and growth kinetics study using the classical theoretical relationships, for example, the Hoffman-Lauritzen (HL) and Avrami theories, was conducted. Both microscopic and differential scanning calorimetric (DSC) analysis yielded similar values for the nucleation constant Kg as well as the fold surface free energy σe and work of chain folding q. The values of σe and q increased with APAP concentration, indicating that the chain folding of PEO was hindered by APAP.
机译:提出了一种简单,灵敏,有效和新颖的方法来分析球状核的数量,以估计模型药物对乙酰氨基酚(APAP)在聚环氧乙烷(PEO)中的溶解度。在高结晶温度(323 K)下,10%APAP-PEO的球状核数目与纯PEO相同,表明APAP和PEO是完全可混溶的。在较低的结晶温度(303 K)下,10%APAP-PEO的核数显着增加,这表明APAP过饱和,因此重结晶并充当成核剂。根据所得结果,在303 K时,APAP在PEO中的溶解度可能介于0.1%和1%之间。发现PEO的球状生长速率G随着APAP浓度的增加而降低,这表明APAP最有可能起作用作为化学缺陷,在链折叠过程中被PEO晶体排斥或包含在PEO晶体中。 APAP可能位于PEO的球间,原纤维间,层间或层内区域。在323 K时,10%APAP-PEO的形态比球状的更枝晶,在树枝状和球状晶之间有较大的未填充空间,这是一种或四种分离模式组合的标志。使用经典的理论关系,例如霍夫曼-劳里森(HL)和Avrami理论,进行了广泛的球晶形核和生长动力学研究。微观和差示扫描量热法(DSC)分析得出的成核常数Kg以及折叠表面自由能σe和链折叠功q的值均相似。 σe和q的值随APAP浓度的增加而增加,表明PEO的链折叠受到APAP的阻碍。

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