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载色白细胞染料胶束水凝胶:I. 初步研究。

Radiochromic leuco dye micelle hydrogels: I. Initial investigation.

机构信息

Department of Physics and Engineering, London Regional Cancer Program at London Health Sciences Centre, 790 Commissioners Road East, London, Ontario, N6A 4L6, Canada.

出版信息

Phys Med Biol. 2009 Nov 21;54(22):6773-89. doi: 10.1088/0031-9155/54/22/002. Epub 2009 Oct 21.

Abstract

This investigation reports the use of surfactants and colorless leuco triarylmethane dyes to form a new class of radiochromic micelle hydrogels for three-dimensional (3D) water-equivalent dosimetry. Gelatin gel samples with several surfactants and leuco dyes were prepared and evaluated for optical transparency, dose sensitivity and diffusion rates. The addition of Triton X-100, a non-ionic surfactant, at levels exceeding the critical micelle concentration provides a transparent hydrogel in which the water insoluble leuco Malachite Green (LMG) can dissolve. During irradiation, the LMG dye precursor converts to Malachite Green (MG(+)). The most sensitive reported LMG gel formulation contains 0.3 mM LMG leuco dye, 16 mM trichloroacetic acid, 7 mM Triton X-100 and 4% w/w gelatin. A diffusion coefficient of 0.14 mm(2) h(-1) was determined for MG(+) in this gel by fitting the time-dependent degradation of the transmission profile after irradiating half of the sample. The diffusion rate was three times lower than the standard radiochromic ferrous xylenol-orange (FX) gel. The primary feature of this 3D hydrogel is that it introduces transparent, radiochromic, micelle hydrogels. The radiochromic response to dose is instantaneous and images are stable for several hours. A dosimetric characterization revealed that the dose response is reproducible to within 10% over five separate batches and independent of both energy and dose rate. Uniform pre-irradiation of samples to 5 Gy provided a subsequent near linear response to greater than 110 Gy. LMG gels when read with a fast optical CT scanner can provide full 3D dose distributions in less than 30 min post-irradiation. LMG micelle gels scanned with a 633 nm light source are a promising system for quantitative water- or tissue-equivalent 3D dose verification in the 5-100 Gy dose range. These gels are useful for the scanning of larger volume dosimeters (i.e. >15 cm diameter) since they are easily prepared with inexpensive ingredients, are transparent and have a low initial optical absorbance prior to irradiation. In this gel, only one colored molecular species is produced. This results in a linear relation between the concentration of the colored dye product and optical absorption independent of the sampled wavelength.

摘要

这项研究报告了使用表面活性剂和无色隐色三芳甲烷染料来形成一类新的用于三维(3D)水等效剂量测定的放射变色胶束水凝胶。制备了含有几种表面活性剂和隐色染料的明胶凝胶样品,并对其光学透明度、剂量敏感性和扩散率进行了评估。在超过临界胶束浓度的水平下添加非离子表面活性剂 Triton X-100,可以形成透明的水凝胶,其中不溶于水的隐色孔雀石绿(LMG)可以溶解。在辐照过程中,LMG 染料前体转化为孔雀石绿(MG(+))。报道的最敏感的 LMG 凝胶配方含有 0.3mM 的 LMG 隐色染料、16mM 三氯乙酸、7mM Triton X-100 和 4%w/w 的明胶。通过拟合辐照一半样品后透射轮廓的时变降解,确定该凝胶中 MG(+)的扩散系数为 0.14mm(2)h(-1)。扩散速率比标准放射变色亚铁二甲苯酚橙(FX)凝胶低三倍。这种 3D 水凝胶的主要特点是引入了透明的放射变色胶束水凝胶。对剂量的放射变色响应是瞬时的,图像在数小时内稳定。剂量学特性表明,在五个不同批次之间,剂量响应的重复性在 10%以内,与能量和剂量率无关。对样品进行 5Gy 的预辐照,可提供随后对大于 110Gy 的近乎线性响应。用快速光学 CT 扫描仪读取 LMG 凝胶,可在辐照后 30 分钟内提供全 3D 剂量分布。用 633nm 光源扫描的 LMG 胶束凝胶是一种有前途的系统,可用于在 5-100Gy 剂量范围内进行定量水或组织等效 3D 剂量验证。这些凝胶可用于扫描较大体积的剂量计(即 >15cm 直径),因为它们可以用廉价的成分轻松制备,具有透明性,并且在辐照前具有低的初始光吸收率。在这种凝胶中,只生成一种有色分子物质。这导致在光吸收与所采样波长无关的情况下,有色染料产物的浓度与光学吸收之间存在线性关系。

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