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首页> 外文期刊>European journal of pharmaceutical sciences >Silicon-zinc-glycerol hydrogel, a potential immunotropic agent for topical application
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Silicon-zinc-glycerol hydrogel, a potential immunotropic agent for topical application

机译:硅 - 锌 - 甘油水凝胶,局部应用的潜在免疫渗透剂

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Nanoparticles synthesized using sol-gel method are promising agents for biomedical applications, in particular for the therapy and diagnosis of various diseases. Using silicon and zinc glycerolates as biocompatible precursors we synthesized by the sol-gel method a new bioactive silicon-zinc-containing glycerohydrogel combining the positive pharmacological properties of the precursors. In the present work the structural features of silicon-zinccontaining glycerohydrogel and its immunotropic properties were studied. The advanced physical methods, including XRD, TEM, dynamic and electrophoretic light scattering, were used for studying the structural features of the gel. Hydrolysis of zinc monoglycerolate was investigated under gelation conditions. Evaluation of the efficiency of silicon-zinc-containing glycerohydrogel in providing immune functions was carried out using a model of the complicated wound process behind immunosuppression induced by hydrocortisone administration in the Wistar rats. It has been shown that zinc monoglycerolate exists in the state of amorphous nanoparticles in the cells of 3D-network formed due to incomplete hydrolysis of silicon glycerolates and subsequent silanol condensation. Zinc monoglycerolate is not hydrolyzed and does not enter 3D-network of the gel with the formation of Zn-O-Si groups, but it forms a separate phase. Immunotropic action of silicon-zinc-containing glycerohydrogel was revealed by the histology and immunohistochemistry methods. Amorphous nanoparticles of zinc monoglycerolate, water-soluble silicon glycerolates, and products of their hydrolytic transformations, which are present in a aqueous-glycerol medium, are in the first place responsible for the pharmacological activity of hydrogel. The results obtained allow us to consider silicon-zinc-containing glycerohydrogel as a promising immunotropic agent for topical application.
机译:使用溶胶 - 凝胶法合成的纳米颗粒是生物医学应用的有前途的药剂,特别是用于治疗和诊断各种疾病。用硅和锌甘油酯作为生物相容性前体,我们通过溶胶 - 凝胶法合成了一种新的生物活性硅 - 锌的甘油氢氢醇,组合前体的阳性药理学性质。在本工作中,研究了硅 - 血管氨基氢钴凝胶的结构特征及其免疫层性能。使用XRD,TEM,动态和电泳光散射在内的先进物理方法用于研究凝胶的结构特征。在凝胶化条件下研究了锌甘油酯的水解。利用Wistar大鼠氢化酮给药诱导的免疫抑制后面的复杂伤口过程模型进行了对含硅锌甘油氢凝胶提供免疫功能的效率的评价。已经证明,由于硅甘油酯不完全水解和随后的硅烷醇缩合,在形成的3D网络细胞中的无定形纳米颗粒中的锌甘油酯存在锌。锌单甘油酸锌不水解,并不与Zn-O-Si组的形成进入凝胶的3D网络,但它形成单独的阶段。通过组织学和免疫组织化学方法揭示了含硅锌的甘油氢凝胶的免疫渗透作用。在甘油培养基中存在的红甘油,水溶性硅甘油酯,水溶性硅甘油酯和其水解转变产物的无定形纳米颗粒首先是水凝胶的药理学活性的第一名。得到的结果允许我们将含硅锌的甘油氢凝胶视为局部施用的有前途的免疫抑制剂。

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