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Development of a Hybrid Dextrin Hydrogel Encapsulating Dextrin Nanogel As Protein Delivery System

机译:包裹糊精纳米凝胶作为蛋白质传递系统的混合糊精水凝胶的开发。

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Dextrin, a glucose polymer with low molecular weight, was used to develop a fully resorbable hydrogel, without using chemical initiators. Dextrin was first oxidized (oDex) with sodium periodate and then cross-linked with adipic acid dihidrazide, a nontoxic cross-linking molecule. Furthermore, a new bidimensional composite hydrogel, made of oxidized dextrin incorporating dextrin nanogels (oDex-nanogel), was also developed. The oDex hydrogels showed good mechanical properties and biocomparibility, allowing the proliferation of mouse embryo fibroblasts 3T3 cultured on top of the gel. The gelation time may be controlled selecting the concentrations of the polymer and reticulating agent. Both the oDex and oDex-nanogel hydrogels are biodegradable and present a 3-D network with a continuous porous structure. The obtained hybrid hydrogel enables the release of the dextrin nanogel over an extended period of time, paralleling the mass loss curve due to the degradation of the material. The dextrin nanogel allowed the efficient incorporation of interleukin-10 and insulin in the oDex hydrogel, providing a sophisticated system of controlled release. The new hydrogels present promising properties as an injectable carrier of bioactive molecules. Both proteins and poorly water-soluble low-molecular-weight drugs are efficiently encapsulated in the nanogel, which performs as a controlled release system entrapped in the hydrogel matrix.
机译:糊精是一种低分子量的葡萄糖聚合物,可用于开发完全可吸收的水凝胶,而无需使用化学引发剂。糊精首先用高碘酸钠氧化(oDex),然后与己二酸二hirazrazide(一种无毒的交联分子)交联。此外,还开发了一种新的二维复合水凝胶,该复合水凝胶由氧化糊精结合糊精纳米凝胶(oDex-纳米凝胶)制成。 oDex水凝胶显示出良好的机械性能和生物可比性,从而允许在凝胶顶部培养的小鼠胚胎成纤维细胞3T3增殖。可以选择聚合物和网状剂的浓度来控制胶凝时间。 oDex和oDex-纳米凝胶水凝胶均可生物降解,并呈现具有连续多孔结构的3-D网络。所获得的杂化水凝胶使得糊精纳米凝胶能够在延长的时间内释放,这与由于材料降解而引起的质量损失曲线平行。糊精纳米凝胶可将白介素10和胰岛素有效掺入oDex水凝胶中,从而提供了复杂的控释系统。新型水凝胶作为生物活性分子的可注射载体具有广阔的前景。蛋白质和水溶性差的低分子量药物均被有效地封装在纳米凝胶中,纳米凝胶作为被包裹在水凝胶基质中的控释系统发挥作用。

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