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低能离子对DNA的损伤。

DNA damage by low-energy ions.

作者信息

Hunniford C Adam, McCullough Robert W, Davies R Jeremy H, Timson David J

机构信息

School of Mathematics and Physics, Queen's University Belfast, University Road, Belfast BT7 1NN, UK.

出版信息

Biochem Soc Trans. 2009 Aug;37(Pt 4):893-6. doi: 10.1042/BST0370893.

Abstract

Ion-beam irradiation provides a promising treatment for some types of cancer. This promise is due mainly to the selective deposition of energy into a relatively small volume (the Bragg peak), thus reducing damage to healthy tissue. Recent observations that electrons with energies below the ionization potential of DNA can cause covalent damage to the bases and backbone have led to investigations into the ability of low-energy (<1 keV x Da(-1)) ion beams to damage double-stranded DNA. It has been clearly demonstrated that these low-energy ions induce a mixture of single- and double-strand breaks to dried DNA in vacuo. These effects depend upon the number of ions incident upon the DNA, the kinetic energy of the ions and on their charge state. This DNA damage may be important, as all radiotherapies will result in the production of low-energy secondary ions as radiation passes through tissues. Currently, their effects are neglected in treatment planning, and thus more work is required to quantify and understand DNA damage by low-energy ions.

摘要

离子束辐照为某些类型的癌症提供了一种很有前景的治疗方法。这种前景主要归因于能量在相对较小的体积(布拉格峰)内的选择性沉积,从而减少对健康组织的损伤。最近的观察结果表明,能量低于DNA电离电位的电子会对碱基和主链造成共价损伤,这引发了对低能(<1 keV x Da(-1))离子束损伤双链DNA能力的研究。已经清楚地证明,这些低能离子在真空中会对干燥的DNA诱导产生单链和双链断裂的混合损伤。这些效应取决于入射到DNA上的离子数量、离子的动能及其电荷状态。这种DNA损伤可能很重要,因为所有放疗在辐射穿过组织时都会产生低能二次离子。目前,在治疗计划中忽略了它们的影响,因此需要更多的工作来量化和了解低能离子对DNA的损伤。

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