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[子宫腺癌中的放射抗性因素]

[Radioresistant elements in adenocarcinoma of the uterus].

作者信息

Sasaki H, Mitsunaga S, Kitamura T, Kishino Y, Toyoizumi T, Ogawa M, Yamauchi S, Iwata M, Terashima Y, Mochizuki S

出版信息

Nihon Sanka Fujinka Gakkai Zasshi. 1986 Sep;38(9):1587-94.

PMID:3772205
Abstract

Radioresistant elements in adenocarcinoma of uterine cancer were studied using SKG-3a and HEC-59 cell lines as spheroids and monolayer culture. Dose-survival curves for monolayer cultured SKG-3a and HEC-59 cells were almost similar at acute exposure. On the other hand, as spheroids grown to 300 microns in diameter, dose-survival curves for SKG-3a cells were biphasic and those for HEC-59 were monophasic. The increased shoulder in survival curves proved the contract effect of both cells. Conventionally fractionated irradiation promoted shrinkage and disintegration of spheroids as the dose was increased. All SKG-3a spheroids were destroyed over 60 Gy, but some of HEC 59 spheroids survived over 68 Gy at the total dose. The total dose at disintegration-50% was 40 Gy in SKG-3a and 48 Gy in HEC-59 spheroids. In a comparison of single with 5-fractionated irradiation, fractionation induced an increase in radioresistance of adenocarcinoma cells. The maximum recovery-dose of HEC-59 cell as spheroids was 0.4 Gy and that of SKG-3a was 0.28 Gy. The magnitude of PLD-repair in HEC-59 cells was greater than that in SKG-3a. In conclusion, the PLD-repair and contact effect could be more important factors than the hypoxic element in the acquisition of radioresistance in adenocarcinoma cells as a solid tumor under fractionated irradiation.

摘要

以SKG - 3a和HEC - 59细胞系作为球体和单层培养物,研究了子宫腺癌中的辐射抗性元素。在急性暴露时,单层培养的SKG - 3a和HEC - 59细胞的剂量存活曲线几乎相似。另一方面,当球体直径生长到300微米时,SKG - 3a细胞的剂量存活曲线呈双相,而HEC - 59细胞的剂量存活曲线呈单相。存活曲线中增加的肩部证明了两种细胞的接触效应。随着剂量增加,常规分割照射促进了球体的收缩和崩解。所有SKG - 3a球体在60 Gy以上被破坏,但一些HEC 59球体在总剂量68 Gy以上仍存活。SKG - 3a球体崩解50%时的总剂量为40 Gy,HEC - 59球体为48 Gy。在单次照射与5次分割照射的比较中,分割照射诱导了腺癌细胞辐射抗性的增加。作为球体的HEC - 59细胞的最大恢复剂量为0.4 Gy,SKG - 3a细胞为0.28 Gy。HEC - 59细胞中PLD修复的程度大于SKG - 3a细胞。总之,在分割照射下,作为实体瘤的腺癌细胞获得辐射抗性的过程中,PLD修复和接触效应可能比缺氧因素更重要。

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