>Poly (methyl methacrylate) derivatives such as Eudragit are largely used for drug encapsulation and in controlled oral drug delivery. With special focusi'/> pH‐Sensitive methacrylic acid–methyl methacrylate copolymer Eudragit L100 and dimethylaminoethyl methacrylate, butyl methacrylate, and methyl methacrylate tri‐copolymer Eudragit E100
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pH‐Sensitive methacrylic acid–methyl methacrylate copolymer Eudragit L100 and dimethylaminoethyl methacrylate, butyl methacrylate, and methyl methacrylate tri‐copolymer Eudragit E100

机译:pH-敏感性甲基丙烯酸甲基丙烯酸甲酯共聚物EUDragit L100和二甲基氨基甲基丙烯酸甲酯,甲基丙烯酸甲酯和甲基丙烯酸甲酯三元共聚物EUDRAGIT E100

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>Poly (methyl methacrylate) derivatives such as Eudragit are largely used for drug encapsulation and in controlled oral drug delivery. With special focusing on those applications, solubilization and precipitation conditions of two pH‐sensitive Eudragit polymers, namely, L100 and E100, were investigated via systematic studies. Effects of various physicochemical parameters such as pH, polymer concentration, salinity, buffer concentration, and incubation time on the solubilization and precipitation of these polymers were investigated. In addition, pH titration of both polymers was reported. Considering both macroscopic and quantitative aspects such as the final mean particle size, size distribution, morphology, and the zeta potential, it was established that the different precited parameters could not be dissociated and exert a synergic action on the solubilization and precipitation of both polymers. Titration curves revealed two equivalences that helped estimating carboxylic content of Eudragit L100 (6 mmol/g) and ammonium content of Eudragit E100 (4 mmol/g). In this study, the solubilization and the precipitation domains were for the first time clearly established by considering the above‐mentioned parameters. Moreover, it was found that Eudragit L100 and E100 cannot be considered as classic polyelectrolytes; in fact, solubilization and precipitation domains were not affected by ionic strength.
机译: >聚(甲基丙烯酸甲酯)衍生物如Eudragit主要用于药物包封和受控口服药物递送。通过系统研究研究了特殊关注这些应用,两个pH敏感的Eudragit聚合物,即L100和E100的沉淀和沉淀条件。研究了各种物理化学参数,如pH,聚合物浓度,盐度,缓冲浓度和孵育时间对这些聚合物的溶解和沉淀的孵育时间。此外,报道了两种聚合物的pH滴定。考虑到诸如最终平均粒度,尺寸分布,形态和Zeta电位的宏观和定量方面,建立了不分离出不同先前的参数并对两种聚合物的溶解和沉淀产生协同作用。滴定曲线揭示了两种等效性,其有助于估计Eudragit L100(6mmol / g)和Eudragit E100(4mmol / g)的铵含量的羧酸含量。在该研究中,通过考虑上述参数,溶解和沉淀结构域首次进行清楚地确定。此外,发现Eudragit L100和E100不能被认为是经典的聚电解质;事实上,溶解和沉淀结构域不受离子强度的影响。

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