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首页> 外文期刊>RSC Advances >Radiation-induced curcumin release from curcumin-chitosan polymer films
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Radiation-induced curcumin release from curcumin-chitosan polymer films

机译:从姜黄素 - 壳聚糖聚合物薄膜辐射诱导的姜黄素释放

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摘要

The probability of human exposure to damaging radiation is increased in activities associated with long-term space flight, medical radiation therapies, and responses to nuclear accidents. However, the development of responsive countermeasures to combat radiation damage to biological tissue is lagging behind rates of human exposure. Herein, we report a radiation-responsive drug delivery system that releases doses of curcumin from a chitosan polymer/film in response to low level gamma radiation exposure. As a fibrous chitosan-curcumin polymer, 1 Gy gamma irradiation (Cs-137) released 5 +/- 1% of conjugated curcumin, while 6 Gy exposure releases 98 +/- 1% of conjugated curcumin. The same polymer was formed into a film through solvent casting. The films showed similar, albeit attenuated behavior in water (100% released) and isopropyl alcohol (32% released) with statistically significant drug release following 2 Gy irradiation. ATR FT-IR studies confirmed glycosidic bond cleavage in the chitosan-curcumin polymer in response to gamma radiation exposure. Similar behavior was noted upon exposure of the polymer to 20 cGy (1 GeV amu(-1), at 20 cGy min(-1)) high linear energy transfer (LET) Fe-56 radiation based on FTIR studies. Density Functional Theory calculations indicate homolytic bond scission as the primary mechanism for polymer disintegration upon radiation exposure. Films did not change in thickness during the course of radiation exposure. The successful demonstration of radiation-triggered drug release may lead to new classes of radio-protective platforms for developing countermeasures to biological damage from ionizing radiation.
机译:在与长期空间飞行,医疗辐射疗法和核事故的反应相关的活动中,人类暴露于破坏性辐射的可能性增加。然而,对生物组织对抗辐射损伤的响应对策的发展在人体暴露的速率下滞后。在此,我们报告了响应于低水平的γ辐射暴露的辐射响应响应药物输送系统,从壳聚糖聚合物/膜中释放姜黄素的剂量。作为纤维丁烷 - 姜黄素聚合物,1Gyγ辐照(CS-137)释放5 +/- 1%的共轭姜黄素,而6GY暴露释放98 +/- 1%的共轭姜黄素。通过溶剂浇铸形成相同的聚合物。薄膜显示出类似的,尽管在水中(100%释放)和异丙醇(32%释放),具有统计学显着的药物释放后2 Gy辐射的致释醇(32%)。 ATR FT-IR研究证实了壳聚糖姜黄素聚合物中的糖苷键切割响应于γ辐射暴露。在将聚合物暴露于20 cgy(1 gev Amu(-1)时,在20cGy min(-1))上的高线性能量转移(Let)Fe-56辐射基于FTIR研究时,注意到类似的行为。密度函数理论计算表明均匀粘合群作为辐射暴露对聚合物崩解的主要机制。在辐射暴露过程中,薄膜在厚度上没有变化。辐射触发药物释放的成功示范可能导致新的无线电保护平台,以便在电离辐射中发育对生物损伤的对策。

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