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在裸鼠体内生长的中度分化良好且角化的GL人鳞状细胞癌的再增殖。

Repopulation of moderately well-differentiated and keratinizing GL human squamous cell carcinomas growing in nude mice.

作者信息

Hessel F, Krause M, Petersen C, Hörcsöki M, Klinger T, Zips D, Thames H D, Baumann M

机构信息

Radiation Oncology Clinic, Medical Faculty Carl Gustav Carus, University of Technology-Dresden, Fetscherstrasse 74, D-01307 Dresden, Germany.

出版信息

Int J Radiat Oncol Biol Phys. 2004 Feb 1;58(2):510-8. doi: 10.1016/j.ijrobp.2003.09.065.

Abstract

PURPOSE

It has been suggested that, reminiscent of the regulated proliferative response of normal squamous epithelium, squamous cell carcinomas that have preserved characteristics of differentiation have a greater repopulation capacity during fractionated irradiation than undifferentiated tumors. The aim of the present study was to investigate repopulation in moderately well-differentiated and keratinizing GL human squamous cell carcinomas in nude mice.

METHODS AND MATERIALS

GL human squamous cell carcinomas were transplanted s.c. into the right hind leg of NMRI nu/nu mice. Irradiation was performed with 5.4 Gy fractions under clamp hypoxia or with 2 Gy fractions under ambient conditions. Six, 12, or 18 fractions were given daily, every second day, or every third day. Graded top-up doses were applied under clamp hypoxia to determine the tumor control dose 50% (TCD(50)). A total of 20 TCD(50) assays were performed and analyzed using maximum-likelihood techniques.

RESULTS

With an increasing number of daily 5.4 Gy fractions under clamp hypoxia, the top-up TCD(50) values decreased significantly from 50.9 Gy (95% CI: 47, 54) after single doses to 0 Gy after 18 fractions. For the same number of fractions, the top-up TCD(50) increased with increasing overall treatment time. The results are consistent with a constant repopulation rate with a clonogenic doubling time (T(clon)) of 12.7 days (8.6, 16.8). Under ambient blood flow, the top-up TCD(50)s for daily 2 Gy fractions decreased significantly, but were less pronounced than for 5.4 Gy fractions under clamp hypoxia. For a given number of fractions under ambient conditions, the top-up TCD(50)s did not increase significantly with overall treatment time, except for irradiation with 12 fractions in 36 days compared to 12 and 24 days. The T(clon) value from these data was 24.0 days (11.6, 36.4).

CONCLUSION

Our data demonstrate a slow but significant rate of repopulation of clonogenic tumor cells during fractionated irradiation of GL human squamous cell carcinomas under clamp hypoxia without indication of a change of the repopulation rate during treatment. Less pronounced repopulation was observed for irradiation under ambient conditions, which might be explained by preferential survival of hypoxic and therefore nonproliferating cells. Taken together with our previous studies on poorly differentiated FaDu tumors (Petersen et al., IJROBP 2001;51:483-493), the results support important heterogeneity of kinetics and mechanisms of repopulation, in particular of the influence of the oxygenation status of surviving clonogenic cells on the repopulation rate during fractionated irradiation, in different experimental squamous cell carcinoma.

摘要

目的

有人提出,类似于正常鳞状上皮的增殖反应受调控,保留分化特征的鳞状细胞癌在分次照射期间比未分化肿瘤具有更大的再增殖能力。本研究的目的是调查裸鼠中中度分化良好且角化的GL人鳞状细胞癌的再增殖情况。

方法和材料

将GL人鳞状细胞癌皮下移植到NMRI nu/nu小鼠的右后肢。在钳夹低氧条件下以5.4 Gy分次进行照射,或在环境条件下以2 Gy分次进行照射。每天、隔天或隔三天给予6、12或18次分次照射。在钳夹低氧条件下应用分级补充剂量以确定50%肿瘤控制剂量(TCD(50))。共进行了20次TCD(50)测定,并使用最大似然技术进行分析。

结果

在钳夹低氧条件下,随着每天5.4 Gy分次照射次数的增加,补充TCD(50)值从单次照射后的50.9 Gy(95% CI:47, 54)显著下降至18次分次照射后的0 Gy。对于相同的分次照射次数,补充TCD(50)随着总治疗时间的增加而增加。结果与克隆源性倍增时间(T(clon))为12.7天(8.6, 16.8)的恒定再增殖率一致。在正常血流条件下,每天2 Gy分次照射的补充TCD(50)显著下降,但不如钳夹低氧条件下5.4 Gy分次照射明显。在环境条件下,对于给定的分次照射次数,补充TCD(50)除了在36天内照射12次与12天和24天照射12次相比外,不会随着总治疗时间显著增加。根据这些数据得出的T(clon)值为24.0天(11.6, 36.4)。

结论

我们的数据表明,在钳夹低氧条件下对GL人鳞状细胞癌进行分次照射期间,克隆源性肿瘤细胞的再增殖速度缓慢但显著,且在治疗期间未显示再增殖率的变化。在环境条件下照射观察到的再增殖不太明显,这可能是由于低氧且因此不增殖的细胞优先存活所致。结合我们之前对低分化FaDu肿瘤的研究(Petersen等人,《国际放射肿瘤学·生物学·物理学杂志》2001;51:483 - 493),结果支持了再增殖动力学和机制的重要异质性,特别是存活克隆源性细胞的氧合状态对不同实验性鳞状细胞癌分次照射期间再增殖率的影响。

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