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Rapid Photocrosslinkable Thermoresponsive Injectable Polyphosphazene Hydrogels

机译:快速可光交联的热响应注射型聚磷腈水凝胶

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Rapidly photocrosslinkable and thermosensitive polyphosphazene polymers have been prepared to overcome the limitations associated with long UV exposure. Short UV exposure on the thermosensitive gels under mild conditions leads to quick photocrosslinking of the acrylate groups in the polymer network, and results in a dual crosslinked network with enhanced mechanical strength. The accelerated photocrosslinking can be attributed to the high reactivity of the acrylate double bond and hydrophobic interactions in the polymer network. The effects on the degree of photocrosslinking of the UV light intensity and the concentration of the photoinitiator were studied. In vitro and in vivo photocrosslinkings were accomplished within 120 and 180 s of exposure times, respectively. The degradation rate of the polymers depended on the degree of acrylate substitution in the polymer network. These results demonstrate that the injectable hydrogels with desired mechanical properties and degradation rates can be created in situ under mild photocrosslinkable conditions, and the dual crosslinkable acrylated poly(organophosphazenes) may hold great promise for biomedical delivery applications of biological molecules, cells, and drugs.
机译:已经制备了可快速光交联和热敏的聚磷腈聚合物,以克服与长时间暴露于紫外线有关的限制。在温和条件下在热敏凝胶上短时间暴露于紫外线下会导致聚合物网络中丙烯酸酯基团的快速光交联,并导致机械强度增强的双交联网络。加速的光交联可归因于丙烯酸酯双键的高反应性和聚合物网络中的疏水相互作用。研究了紫外光强度对光交联度和光引发剂浓度的影响。体外和体内光交联分别在120和180 s的曝光时间内完成。聚合物的降解速率取决于聚合物网络中丙烯酸酯的取代程度。这些结果表明,在温和的光可交联条件下可以原位产生具有所需机械性能和降解速率的可注射水凝胶,并且双可交联丙烯酸酯化聚(有机磷腈)可为生物分子,细胞和药物的生物医学输送应用提供广阔前景。

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