Al-Mahrouki Azza, Giles Anoja, Hashim Amr, Kim Hyunjung Christina, El-Falou Ahmad, Rowe-Magnus Dean, Farhat Golnaz, Czarnota Gregory J
Radiation Oncology and Physical Sciences, Sunnybrook Health Sciences Centre and Sunnybrook Research Institute, Toronto, Canada.
Departments of Radiation Oncology and Medical Biophysics, University of Toronto, Toronto, Canada.
PLoS One. 2017 Jul 26;12(7):e0181951. doi: 10.1371/journal.pone.0181951. eCollection 2017.
Ultrasound (US) stimulated microbubbles (MB) is a new treatment approach that sensitizes cancer cells to radiation (XRT). The molecular pathways in this response remain unelucidated, however, previous data has supported a role for cell membrane-metabolism related pathways including an up regulation of UDP glycosyltransferase 8 (UGT8), which catalyzes the transfer of galactose to ceramide, a lipid that is associated with the induction of apoptotic signalling. In this study, the role of UGT8 in responses of prostate tumours to ultrasound-stimulated microbubble radiation enhancement therapy is investigated. Experiments were carried out with cells in vitro and tumours in vivo in which UGT8 levels had been up regulated or down regulated. Genetically modified PC3 cells were treated with XRT, US+MB, or a combination of XRT+US+MB. An increase in the immunolabelling of ceramide was observed in cells where UGT8 was down-regulated as opposed to cells where UGT8 was either not regulated or was up-regulated. Clonogenic assays have revealed a decreased level of cellular survival with the down-regulation of UGT8. Xenograft tumours generated from stably transfected PC3 cells were also treated with US+MB, XRT or US+MB+XRT. Histology demonstrated more cellular damage in tumours with down-regulated UGT8 in comparison with control tumours. In contrast, tumours with up-regulated UGT8 had less damage than control tumours. Power Doppler imaging indicated a reduction in the vascular index with UGT8 down-regulation and photoacoustic imaging revealed a reduction in oxygen saturation. This was contrary to when UGT8 was up regulated. The down regulation of UGT8 led to the accumulation of ceramide resulting in more cell death signalling and therefore, a greater enhancement of radiation effect when vascular disruption takes place through the use of ultrasound-stimulated microbubbles.
超声(US)刺激微泡(MB)是一种使癌细胞对辐射(XRT)敏感的新治疗方法。然而,这种反应中的分子途径仍未阐明,不过先前的数据支持细胞膜代谢相关途径的作用,包括UDP糖基转移酶8(UGT8)的上调,该酶催化半乳糖转移至神经酰胺,神经酰胺是一种与凋亡信号诱导相关的脂质。在本研究中,研究了UGT8在前列腺肿瘤对超声刺激微泡辐射增强疗法反应中的作用。在体外细胞和体内肿瘤中进行了实验,其中UGT8水平已上调或下调。对经过基因改造的PC3细胞进行XRT、US + MB或XRT + US + MB联合处理。与UGT8未调节或上调的细胞相反,在UGT8下调的细胞中观察到神经酰胺免疫标记增加。克隆形成试验表明,随着UGT8下调,细胞存活率降低。由稳定转染的PC3细胞产生的异种移植肿瘤也用US + MB、XRT或US + MB + XRT处理。组织学显示,与对照肿瘤相比,UGT8下调的肿瘤细胞损伤更多。相反,UGT8上调的肿瘤比对照肿瘤损伤更少。功率多普勒成像表明,随着UGT8下调,血管指数降低,光声成像显示氧饱和度降低。这与UGT8上调时的情况相反。UGT8的下调导致神经酰胺积累,从而导致更多的细胞死亡信号,因此,当通过使用超声刺激微泡破坏血管时,辐射效应增强更大。