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Influence of ionizing radiation on ovarian carcinoma SKOV- 3 xenografts in nude mice under hypoxic conditions.

Authors :
Zhang YC
Jiang G
Gao H
Liu HM
Liang J
Source :
Asian Pacific journal of cancer prevention : APJCP [Asian Pac J Cancer Prev] 2014; Vol. 15 (5), pp. 2353-8.
Publication Year :
2014

Abstract

Purpose: We aimed to detect the expression of HIF-1α, VEGF, HPSE-1 and CD31 in SKOV3 xenografts in nude mice treated with different doses of ionizing radiation, trying to explore the possible mechanism of hypoxia and radioresistance.<br />Methods: Nude mice bearing SKOV3 xenografts were randomly divided into 4 groups: Group A (control group, no ionizing radiation), Group B (treated with low dose of ionizing radiation: 50cGy), Group C (treated with high dose of ionizing radiation: 300cGy), Group D ( combined ionizing radiation, treated with ionizing radiation from low dose to high dose : 50cGy first and 300cGy after 6h interval). The mRNA levels of HIF-1 and VEGF in each group were detected by real time polymerase chain reaction, while HPSE-1 expression was measured by ELISA. The microvessel density (MVD) and hypoxic cells were determined through immunohistochemical (IHC) staining of CD31 and HIF-1a.<br />Results: Significant differences of HIF-1α mRNA level could be found among the 4 groups (F=74.164, P<0.001): Group C>Group A>Group D> Group B. The mRNA level of VEGF in Group C was significantly higher than in the other three groups (t=-5.267, P=0.000), while no significant difference was observed among Group A, B and D (t=1.528, 1.588; P=0.205, 0.222). In addition, the MVD was shown to be the highest in Group C (t=6.253, P=0.000), whereas the HPSE-1 level in Group A was lower than in Group B (t=14.066, P=0.000) and higher than in Group C (t=-21.919, P=0.000), and similar with Group D (t=-2.066, P=0.058). Through IHC staining of HIF-1a, the expression of hypoxic cells in Group A was (++), Group B was (+), Group C was (+++) and Group D was (+).<br />Conclusion: Ionizing radiation with lower- doses might improve tumor hypoxia through inhibiting the expression of HIF-1 and HPSE-1, whereas higher- doses worsen tumor hypoxic conditions by up-regulating HIF-1α, HPSE-1, VEGF and CD31 levels. A protocol of low-dose ionizing radiation followed by a high-dose irradiation might at least partly improve tumor hypoxia and enhance radiosensitivity.

Details

Language :
English
ISSN :
2476-762X
Volume :
15
Issue :
5
Database :
MEDLINE
Journal :
Asian Pacific journal of cancer prevention : APJCP
Publication Type :
Academic Journal
Accession number :
24716983
Full Text :
https://doi.org/10.7314/apjcp.2014.15.5.2353