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Thiolated polymers: synthesis and in vitro evaluation of polymer-cysteamine conjugates.

机译:硫代聚合物:聚合物-半胱胺结合物的合成和体外评估。

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The purpose of the present study was to synthesize and characterize novel thiolated polymers. Mediated by a carbodiimide cysteamine was covalently linked to sodium carboxymethylcellulose (CMC) and polycarbophil (PCP). The resulting CMC-cysteamine conjugates displayed 77.9+/-6.7 and 365.1+/-8.7 micromol thiol groups per gram of polymer, whereas the PCP-cysteamine conjugates showed 26.3+/-1.9 and 122.7+/-3.8 micromol thiol groups per gram of polymer (mean+/-S.D.; n=3). In aqueous solutions above pH 5.0 both modified polymers were capable of forming inter- and/or intra-molecular disulfide bonds. The reaction velocity of this oxidation process was accelerated with a decrease in the proton concentration. The oxidation proceeded more rapidly within thiolated CMC than within thiolated PCP. Permeation studies carried out in Ussing-type chambers with freshly excised intestinal mucosa from guinea pigs utilizing sodium fluorescein as model drug for the paracellular uptake revealed an enhancement ratio (R=P(app) (conjugate)/P(app) (control)) of 1.15 and 1.41 (mean+/-S.D.; n=3) for the higher thiolated CMC-cysteamine (0.5%; m/v) and PCP-cysteamine conjugate (1.0%; m/v), respectively. The decrease in the transepithelial electrical resistance values was in good correlation with the enhancement ratios. Due to a high crosslinking tendency by the formation of disulfide bonds stabilizing drug carrier systems based on thiolated polymers and a permeation enhancing effect, CMC- and PCP-cysteamine conjugates represent promising excipients for the development of novel drug delivery systems.
机译:本研究的目的是合成和表征新型硫醇化聚合物。由碳二亚胺半胱胺介导的羧甲基纤维素钠(CMC)和聚卡波非(PCP)共价连接。所得CMC-半胱胺缀合物显示每克聚合物77.9 +/- 6.7和365.1 +/- 8.7微摩尔硫醇基,而PCP-半胱胺缀合物显示每克聚合物26.3 +/- 1.9和122.7 +/- 3.8微摩尔硫醇基。聚合物(平均值+/- SD; n = 3)。在pH 5.0以上的水溶液中,两种改性聚合物均能够形成分子间和/或分子内二硫键。该氧化过程的反应速度随着质子浓度的降低而加速。在硫醇化的CMC中,氧化过程比在硫醇化的PCP中进行得更快。使用荧光素钠作为模型药物对豚鼠的豚鼠新鲜切除的肠粘膜进行Ussing型隔室进行的渗透研究表明其增强比例(R = P(app)(缀合物)/ P(app)(对照))分别为高级硫醇化CMC-半胱胺(0.5%; m / v)和PCP-半胱胺共轭物(1.0%; m / v)的1.15和1.41(平均值+/- SD; n = 3)。经上皮电阻值的降低与增强比具有良好的相关性。由于通过形成基于硫醇化聚合物的二硫键稳定药物载体系统而具有高交联趋势,并且渗透增强作用,CMC-和PCP-半胱胺缀合物代表了开发新型药物传递系统的有希望的赋形剂。

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