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体外针对放射性核素慢性照射所致致死性损伤的辐射防护

Radioprotection against lethal damage caused by chronic irradiation with radionuclides in vitro.

作者信息

Howell R W, Goddu S M, Bishayee A, Rao D V

机构信息

Department of Radiology, University of Medicine & Dentistry of New Jersey, New Jersey Medical School, Newark 07103, USA.

出版信息

Radiat Res. 1998 Oct;150(4):391-9.

Abstract

To examine the capacity of chemical protectors to mitigate damage caused by chronic irradiation by incorporated radionuclides in vitro, cells must be maintained in the presence of the protector during the course of the irradiation. Such long exposures to chemical protectors at concentrations high enough to afford protection usually results in extreme chemotoxicity. To overcome this problem, experimental conditions were developed to allow Chinese hamster V79 cells to be maintained in 5% DMSO for prolonged periods (up to 72 h) with no observable chemotoxicity. Under these conditions, the capacity of DMSO to protect against damage to V79 cells caused by unbound 32P and 3H2O and DNA-incorporated (131)IdU, [3H]dThd and 125IdU was examined. The dose modification factors for 32P, 3H2O, (131)IdU, [3H]dThd and 125IdU were 2.6+/-0.5, 2.3+/-0.3, 1.0+/-0.1, 1.16+/-0.07 and 1.07+/-0.02, respectively. These results show that 5% DMSO is capable of protecting cultured V79 cells against lethal damage caused by beta particles emitted by unbound 32P and 3H2O, whereas little or no protection is afforded against damage caused by beta particles emitted by DNA-incorporated (131)I and 3H or low-energy Auger electrons emitted by DNA-incorporated 125I.

摘要

为了在体外研究化学防护剂减轻由掺入的放射性核素引起的慢性辐射损伤的能力,在辐射过程中必须使细胞处于防护剂存在的环境中。以足以提供保护的浓度长时间暴露于化学防护剂通常会导致严重的化学毒性。为了克服这个问题,开发了实验条件,使中国仓鼠V79细胞能够在5%二甲基亚砜(DMSO)中长时间(长达72小时)维持,且无明显的化学毒性。在这些条件下,研究了DMSO对未结合的32P和3H2O以及掺入DNA的(131)IdU、[3H]dThd和125IdU所引起的V79细胞损伤的防护能力。32P、3H2O、(131)IdU、[3H]dThd和125IdU的剂量修正因子分别为2.6±0.5、2.3±0.3、1.0±0.1、1.16±0.07和1.07±0.02。这些结果表明,5%的DMSO能够保护培养的V79细胞免受未结合的32P和3H2O发射的β粒子所造成的致死性损伤,而对于掺入DNA的(131)I和3H发射的β粒子或掺入DNA的125I发射的低能俄歇电子所造成的损伤几乎没有或没有提供保护。

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