Jin Yu, Yamanaka Junpei, Sato Shizuko, Miyata Isamu, Yomota Chikako, Yonese Masakatsu
Graduate School of Pharmaceutical Sciences, Nagoya City University, Japan.
Chem Pharm Bull (Tokyo). 2002 Oct;50(10):1341-8. doi: 10.1248/cpb.50.1341.
Hyaluronate-hydroxyethyl acrylate blend gel (HA-PHEA) were prepared to modify the brittleness of hyaluronate gel (HA) and the characteristics of HA-PHEA gel were compared with those of HA and polyhydroxyethyl acrylate (PHEA) gels. These gels were high in water content and transparent. HA-PHEA gel was improved in viscoelastic properties due to the elasticity and the high affinity with water of PHEA, and the drying-swelling cycles became reversible. The effective charge densities theta of the gels estimated from membrane potentials were -0.002, -0.008 and 0 mol dm(-3) for HA-PHEA, HA and PHEA gels. Effects of electro- static and nonelectrostatic interactions on absorptions and releases were studied using sodium benzoate (NaBA) as an anionic solute, and methylene blue (MB), chlorpromazine (CPHCl) and benzethonium chloride (BZTCl) as cationic solutes, in which CPHCl and BZTCl are cationic amphiphilic solutes. The releases of MB, CPHCl and BZTCl from HA-PHEA and HA gels were suppressed comparing with those of NaBA. By adding salts, the releases of MB and CPHCl were enhanced but those of BZTCl were suppressed due to enhancement of the intra- and intermicelle formation. In the releases of the cationic solutes from HA-PHEA gel, electrostatic and nonelectrostatic interactions with HA were found to play important roles. Behaviors of the releases from HA-PHEA gel were found to possess the features of HA gel.
制备了透明质酸-丙烯酸羟乙酯共混凝胶(HA-PHEA)以改善透明质酸凝胶(HA)的脆性,并将HA-PHEA凝胶的特性与HA和聚羟乙基丙烯酸酯(PHEA)凝胶的特性进行比较。这些凝胶含水量高且透明。由于PHEA的弹性和与水的高亲和力,HA-PHEA凝胶的粘弹性性能得到改善,并且干燥-溶胀循环变得可逆。由膜电位估计的凝胶的有效电荷密度θ对于HA-PHEA、HA和PHEA凝胶分别为-0.002、-0.008和0 mol dm(-3)。使用苯甲酸钠(NaBA)作为阴离子溶质,亚甲基蓝(MB)、氯丙嗪(CPHCl)和苄索氯铵(BZTCl)作为阳离子溶质研究了静电和非静电相互作用对吸收和释放的影响,其中CPHCl和BZTCl是阳离子两亲性溶质。与NaBA相比,MB、CPHCl和BZTCl从HA-PHEA和HA凝胶中的释放受到抑制。通过添加盐,MB和CPHCl的释放增强,但BZTCl的释放由于胶束内和胶束间形成的增强而受到抑制。在阳离子溶质从HA-PHEA凝胶中的释放中,发现与HA的静电和非静电相互作用起重要作用。发现从HA-PHEA凝胶中释放的行为具有HA凝胶的特征。