首页> 外文期刊>Materials science & engineering >Simultaneous in situ monitoring of acrylic acid polymerization reaction on N-carboxymethyl chitosan using multidetectors:Formation of a new bioadhesive and gastroprotective hybrid particle
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Simultaneous in situ monitoring of acrylic acid polymerization reaction on N-carboxymethyl chitosan using multidetectors:Formation of a new bioadhesive and gastroprotective hybrid particle

机译:使用多探测器同时现场监测丙烯酸在N-羧甲基壳聚糖上的聚合反应:新型生物粘附和胃保护杂化颗粒的形成

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摘要

Chitosan and polyacrylic acid (PAA) both have weak, short-lasting bioadhesive properties; therefore, a hybrid particle composed of a chitosan derivative and PAA could be used as a new bioadhesive agent. Using simultaneous in-situ monitoring with a multidetection system, N-carboxymethyl chitosan was ionically bonded to acrylic acid and then polymerized using potassium persulphate as the initiator (N-CMC_A-D_h, of 165 nm). The PAA on N-CMCa was crosslinked using N,N-methylene-bisacrylamide (N-CMC_AC-D-h, of 141 nm). During polymerization, the solution developed a milky white appearance, and polymerization kinetics was determined to be 3.2 x 10~(-3) ± 4.0×10~(-6) mmol/min. The reaction for PAA alone was 1.7 times faster than that of the hybrid system. The particles showed an increase in thermal stability and reduction of thermal-mass loss compared with the N-CMC alone. The N-CMC_AC particles showed the highest bioadhesion onto the stomach. The gastroprotection index of N-CMCh_Ac particles against ethanol/HCl-induced ulcers in mice was 68.2 ± 6.4%. Similar results were observed for omeprazole (74.2 ±5.3%). The particles obtained in this work have potential for use in drug delivery to the stomach, perhaps to aid in treating ulceration and inflammation, and can be used as a system for the prevention of ethanol-induced ulcers.
机译:壳聚糖和聚丙烯酸(PAA)都具有较弱的,持久的生物粘附特性。因此,由壳聚糖衍生物和PAA组成的杂化颗粒可以用作新型生物粘附剂。使用多检测系统同时进行原位监测,将N-羧甲基壳聚糖离子键合到丙烯酸上,然后使用过硫酸钾作为引发剂(N-CMC_A-D_h,165 nm)进行聚合。使用N,N-亚甲基双丙烯酰胺(N-CMC_AC-D-h,141 nm)交联N-CMCa上的PAA。在聚合过程中,溶液呈现乳白色外观,并且确定的聚合动力学为3.2×10〜(-3)±4.0×10〜(-6)mmol / min。单独使用PAA的反应比混合系统快1.7倍。与单独的N-CMC相比,该颗粒显示出热稳定性的增加和热质量损失的减少。 N-CMC_AC颗粒对胃的生物粘附力最高。 N-CMCh_Ac颗粒对乙醇/ HCl诱发的小鼠溃疡的胃保护指数为68.2±6.4%。奥美拉唑的观察结果相似(74.2±5.3%)。在这项工作中获得的颗粒具有用于将药物输送到胃中的潜力,可能有助于治疗溃疡和发炎,并且可以用作预防乙醇诱发的溃疡的系统。

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  • 来源
    《Materials science & engineering》 |2011年第3期|p.677-682|共6页
  • 作者单位

    Programa de Mestrado em Ciencias Farmaceuticas, Niideo de Investigacoes Qutmico-Farmaceuticas (NIQFAR). Universidade do Vale do Itajai - UNIVAU, Itajai, CP 360, CEP 88302-202,Itajai, Santa Catarina, Brazil;

    Departamento de Bioquimica e Biologia Molecular, UFPR, Curitiba, Parana, Brazil;

    Programa de Mestrado em Ciencias Farmaceuticas, Niideo de Investigacoes Qutmico-Farmaceuticas (NIQFAR). Universidade do Vale do Itajai - UNIVAU, Itajai, CP 360, CEP 88302-202,Itajai, Santa Catarina, Brazil;

    Programa de Mestrado em Ciencias Farmaceuticas, Niideo de Investigacoes Qutmico-Farmaceuticas (NIQFAR). Universidade do Vale do Itajai - UNIVAU, Itajai, CP 360, CEP 88302-202,Itajai, Santa Catarina, Brazil;

    Programa de Mestrado em Ciencias Farmaceuticas, Niideo de Investigacoes Qutmico-Farmaceuticas (NIQFAR). Universidade do Vale do Itajai - UNIVAU, Itajai, CP 360, CEP 88302-202,Itajai, Santa Catarina, Brazil;

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  • 正文语种 eng
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  • 关键词

    particles n-carboxymethyl chitosan acrylic acid polymerization bioadhesion gastroprotection;

    机译:颗粒正羧甲基壳聚糖丙烯酸聚合生物粘附胃保护;

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