Rodgerson Denis O, Reidenberg Bruce E, Harris Alan G, Pecora Andrew L
Denis O Rodgerson, Alan G Harris, Andrew L Pecora, NeoStem, Inc., New York, NY 10170, United States.
World J Exp Med. 2012 Jun 20;2(3):37-44. doi: 10.5493/wjem.v2.i3.37.
Accidental radiation exposure and the threat of deliberate radiation exposure have been in the news and are a public health concern. Experience with acute radiation sickness has been gathered from atomic blast survivors of Hiroshima and Nagasaki and from civilian nuclear accidents as well as experience gained during the development of radiation therapy for cancer. This paper reviews the medical treatment reports relevant to acute radiation sickness among the survivors of atomic weapons at Hiroshima and Nagasaki, among the victims of Chernobyl, and the two cases described so far from the Fukushima Dai-Ichi disaster. The data supporting the use of hematopoietic stem cell transplantation and the new efforts to expand stem cell populations ex vivo for infusion to treat bone marrow failure are reviewed. Hematopoietic stem cells derived from bone marrow or blood have a broad ability to repair and replace radiation induced damaged blood and immune cell production and may promote blood vessel formation and tissue repair. Additionally, a constituent of bone marrow-derived, adult pluripotent stem cells, very small embryonic like stem cells, are highly resistant to ionizing radiation and appear capable of regenerating radiation damaged tissue including skin, gut and lung.
意外辐射暴露以及蓄意辐射暴露的威胁一直是新闻报道的内容,也是公众健康关注的问题。关于急性放射病的经验来自广岛和长崎原子弹爆炸的幸存者、民用核事故,以及癌症放射治疗发展过程中积累的经验。本文回顾了广岛和长崎原子弹爆炸幸存者、切尔诺贝利事故受害者以及福岛第一核电站灾难迄今所描述的两起案例中与急性放射病相关的医学治疗报告。对支持使用造血干细胞移植以及目前为扩大体外干细胞群体以便输注来治疗骨髓衰竭所做新努力的数据进行了综述。源自骨髓或血液的造血干细胞具有广泛的能力来修复和替代辐射诱导损伤的血液及免疫细胞生成,并且可能促进血管形成和组织修复。此外,骨髓来源的成体多能干细胞的一种成分,即非常小的类胚胎干细胞,对电离辐射具有高度抗性,并且似乎能够再生包括皮肤、肠道和肺部在内的辐射损伤组织。