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首页> 外文期刊>Health Physics: Official Journal of the Health Physics Society >Biomaterials for the decorporation of (85)Sr in the rat.
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Biomaterials for the decorporation of (85)Sr in the rat.

机译:生物材料的decorporation老(85)老鼠。

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Although four stable isotopes of strontium occur naturally, Sr is produced by nuclear fission and is present in surface soil around the world as a result of fallout from atmospheric nuclear weapons tests. It can easily transfer to humans in the event of a nuclear/radiological emergency or through the plant-animal-human food chain causing long-term exposures. Strontium is chemically and biologically similar to calcium, and is incorporated primarily into bone following internal deposition. Alginic acid (alginate) obtained from seaweed (kelp) extract selectively binds ingested strontium in the gastrointestinal tract blocking its systemic uptake and reducing distribution to bone in rats, while other natural polysaccharides including chitosan and hyaluronic acid had little in vivo affinity for strontium. Alginate exhibits the unique ability to discriminate between strontium and calcium and has been previously shown to reduce intestinal absorption and skeletal retention of strontium without changing calcium metabolism. In our studies, the effect of commercially available alginate on intestinal absorption of strontium was examined. One problem associated with alginate treatment is its limited solubility and gel formation in water. The aqueous solubility of sodium alginate was improved in a sodium chloride/sodium bicarbonate electrolyte solution containing low molecular weight polyethylene glycol (PEG). Furthermore, oral administration of the combined alginate/electrolyte/PEG solution accelerated removal of internal strontium in rats when compared to treatment with individual sodium alginate/electrolyte or electrolyte/PEG solutions. Importantly, both alginate and PEG are nontoxic, readily available materials that can be easily administered orally in case of a national emergency when potentially large numbers of the population may require medical treatment for internal depositions. Our results suggest further studies to optimize in vivo decorporation performance of engineered alginate material via modification of its chemical and physicochemical properties are warranted.
机译:虽然四个稳定的锶同位素发生老自然是由核裂变在世界各地的表层土壤存在吗影响大气核的结果武器测试。在发生核/放射性紧急情况或通过plant-animal-human食物链导致长期曝光。化学和生物与钙相似,主要是合并到骨头内部沉积。从海藻(海带)提取选择性结合摄入锶在胃肠道呼吸道阻塞其系统性吸收和减少分布在大鼠骨,而其他自然多糖包括壳聚糖、透明质酸酸锶的体内没有亲和力。藻朊酸盐表现出独特的能力区分锶和钙之前一直可以减少肠道锶的吸收和骨骼保留在不改变钙代谢。研究中,商业化的影响海藻酸锶的肠道吸收是检查。是它的溶解度有限,海藻酸治疗水凝胶的形成。提高海藻酸钠钠氯/碳酸氢钠电解质的解决方案含有低分子量聚乙烯乙二醇(挂钩)。合并后的海藻酸/电解质/挂钩的解决方案加速清除内部锶的老鼠相比与个人钠治疗海藻酸/电解质或电解质/挂钩解决方案。无毒,现成的材料轻松的口服药物一个国家当潜在的大量的紧急人口可能需要治疗内部的口供。研究优化体内decorporation通过海藻酸的性能设计材料改性的化学和物理化学属性是必要的。

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