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Ultra-violet light emission from hpv-g cells irradiated with low let radiation from 90Y; consequences for radiation induced bystander effects

机译:来自hpY-g细胞的紫外线在90Y的低辐射下照射;辐射引起的旁观者效应的后果

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In this study, we aimed to establish the emission of UV photons when HPV-G cells and associated materials (such as the cell substrate and cell growth media) are exposed to low LET radiation. The potential role of UV photons in the secondary triggering of biological processes led us to hypothesize that the emission and absorption of photons at this wavelength explain some radiation induced "bystander effects" that have previously been thought to be chemically mediated. Cells were plated in Petri-dishes of two different sizes, having different thicknesses of polystyrene (PS) substrate, and were exposed to β-radiation from 90Y produced by the McMaster Nuclear Reactor. UV measurements were performed using a single photon counting system employing an interference-type filter for selection of a narrow wavelength range, 340±5 nm, of photons. Exposure of the cell substrates (which were made of polystyrene) determined that UV photons were being emitted as a consequence of β particle irradiation of the Petri-dishes. For a tightly collimated β-particle beam exposure, we observed 167 photons in the detector per unit μCi in the shielded source for a 1.76 mm thick substrate and 158 photons/μCi for a 0.878 mm thick substrate. A unit μCi source activity was equivalent to an exposure to the substrate of 18 β-particles/cm2 in this case. The presence of cells and medium in a Petri-dish was found to significantly increase (up to a maximum of 250%) the measured number of photons in a narrow band of wavelengths of 340±5 nm (i.e. UVA) as compared to the signal from an empty control Petri-dish. When coloured growth medium was added to the cells, it reduced the measured count rate, while the addition of transparent medium in equal volume increased the count rate, compared to cells alone. We attribute this to the fact that emission, scattering and absorption of light by cells and media are all variables in the experiment. Under collimated irradiation conditions, it was observed that increasing cell density in medium of fixed volume resulted in a decrease in the observed light output. This followed a roughly exponential decline. We suggest that this may be due to increased scattering at the cell boundary and absorption of the UV in the cells. We conclude that we have measured UVA emitted by cells, cell medium and cell substrates as a consequence of their irradiation by low LET β-particle radiation. We suggest that these secondary UV photons could lead to effects in non-targetted cells. Some effects that had previously been attributed to a chemically mediated "bystander effect" may in fact be due to secondary UV emission. Some radiation bystander effect studies may require re-interpretation as this phenomenon of UV emission is further investigated.
机译:在这项研究中,我们旨在确定当HPV-G细胞和相关物质(例如细胞基质和细胞生长培养基)暴露于低LET辐射时,UV光子的发射。紫外线光子在生物过程的二次触发中的潜在作用使我们假设,在此波长下光子的发射和吸收可以解释某些辐射诱发的“旁观者效应”,这些效应以前被认为是化学介导的。将细胞接种在具有不同厚度的聚苯乙烯(PS)底物的两种不同大小的培养皿中,并暴露于McMaster核反应堆产生的90Y的β射线辐射。使用单光子计数系统执行UV测量,该系统采用干涉型滤光片来选择340±5 nm的窄波长范围的光子。细胞底物(由聚苯乙烯制成)的暴露确定由于皮氏培养皿的β粒子辐照而发出了紫外线光子。对于紧密准直的β粒子束曝光,对于1.76 mm厚的基板,在屏蔽源中每单位µCi探测器中观察到167个光子,而对于0.878 mm厚的基板,则观察到158个光子/μCi。在这种情况下,单位μCi的源活性等于在基材上的暴露量为18β粒子/ cm2。与信号相比,发现在培养皿中细胞和培养基的存在显着增加(最大为250%)在340±5 nm波长的窄带(即UVA)中测得的光子数从一个空的控制培养皿中。当将有色生长培养基添加到细胞中时,与单独的细胞相比,它降低了测量的计数率,而以等体积添加透明培养基则增加了计数率。我们将其归因于以下事实:在实验中,细胞和介质对光的发射,散射和吸收都是变量。在准直照射条件下,观察到在固定体积的培养基中细胞密度增加导致观察到的光输出降低。随后出现了指数级的下降。我们建议,这可能是由于细胞边界处的散射增加以及细胞中UV的吸收。我们得出的结论是,由于低LETβ粒子辐射对细胞,细胞培养基和细胞底物的辐射,我们已经测量了它们发出的UVA。我们建议这些次要的紫外线光子可能会导致非目标细胞中的影响。先前归因于化学介导的“旁观者效应”的某些效应实际上可能归因于二次UV发射。随着对紫外线辐射现象的进一步研究,一些辐射旁观者效应研究可能需要重新解释。

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