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体外暴露于p(66)/Be中子或60Coγ射线的人类肿瘤细胞系的放射敏感性变化。

Radiosensitivity variations in human tumor cell lines exposed in vitro to p(66)/Be neutrons or 60Co gamma-rays.

作者信息

Slabbert J P, Theron T, Serafin A, Jones D T, Böhm L, Schmitt G

机构信息

National Accelerator Centre, Faure, South Africa.

出版信息

Strahlenther Onkol. 1996 Oct;172(10):567-72.

PMID:8899008
Abstract

BACKGROUND

Neutron therapy should be beneficial to patients with tumor types which are resistant to photons but relatively sensitive to high-LET radiation. In this work the potential therapeutic gain of a clinical neutron beam is evaluated by quantifying the variations in radiosensitivity of different cell lines to neutrons and photons.

MATERIAL AND METHODS

Different cell lines were exposed in vitro to p(66)/Be neutrons or 60Co gamma-rays. Micronuclei frequencies in binucleated cells and surviving fractions were determined for each cell type.

RESULTS

Following exposure to either 1 or 1.5 Gy neutrons, micronuclei frequencies were significantly correlated with that observed for 2 Gy photons. A weak but significant correlation between the variation in neutron RBE values, determined from survival curve inactivation parameters and the mean inactivation doses for photon exposures, was also established.

CONCLUSION

It is concluded that although neutron and photon sensitivities are related, the use of this high energy neutron source may constitute a potential therapeutic gain for tumor types that can be identified as very resistant to photons. Considering that a definitive oxygen gain factor has been established for this neutron beam the observed therapeutic gain is expected to be further enhanced in tumors where hypoxia protects cells from conventional radiation damage.

摘要

背景

中子治疗对于那些对光子放疗有抗性但对高传能线密度(LET)辐射相对敏感的肿瘤类型患者应该是有益的。在这项研究中,通过量化不同细胞系对中子和光子的放射敏感性差异,评估了临床中子束潜在的治疗增益。

材料与方法

不同细胞系在体外接受p(66)/Be中子或60Coγ射线照射。测定每种细胞类型双核细胞中的微核频率和存活分数。

结果

在接受1 Gy或1.5 Gy中子照射后,微核频率与2 Gy光子照射后的微核频率显著相关。根据存活曲线失活参数确定的中子相对生物效应(RBE)值变化与光子照射的平均失活剂量之间也建立了微弱但显著的相关性。

结论

得出的结论是,虽然中子和光子敏感性相关,但对于可确定为对光子非常抗性的肿瘤类型,使用这种高能中子源可能构成潜在的治疗增益。考虑到已为此中子束确定了明确的氧增强因子,预计在缺氧保护细胞免受传统辐射损伤的肿瘤中,观察到的治疗增益将进一步提高。

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