University of Lyon, Universite Claude Bernard Lyon 1, UJM-Saint Etienne, CNRS, INSALyon, Inserm U120, France.
University of Lyon, UJM-Saint Etienne, CNRS, Institut dOptique Graduate School, Laboratoire Hubert C, France.
J Biomed Opt. 2018 Sep;23(9):1-7. doi: 10.1117/1.JBO.23.9.097002.
5-ALA-induced protoporphyrin IX (PpIX) has shown its relevance in medical assisting techniques, notably in the detection of glioma (brain tumors). Validation of instruments on phantoms is mandatory and a standardization procedure has recently been proposed. This procedure yields phantoms recipes to realize a linear relationship between PpIX concentration and fluorescence emission intensity. The present study puts forward phantoms where this linear relationship cannot be used. We propose a model that considers two states of PpIX, corresponding to two different aggregates of PpIX, with fluorescence spectra peaking at 634 and 620 nm, respectively. We characterize the influence of these two states on PpIX fluorescence emission spectra in phantoms with steady concentration of PpIX and various microenvironment parameters (surfactant, Intralipid or bovine blood concentration, and pH). We show that, with fixed PpIX concentration, a modification of the microenvironment induces a variation of the emitted spectrum, notably a shift in its central wavelength. We show that this modification reveals a variation of proportions of the two states. This establishes phantom microenvironment regimes where the usual single state model is biased while a linear combination of the two spectra enables accurate recovering of any measured spectra.
5-ALA 诱导的原卟啉 IX(PpIX)在医学辅助技术中显示出其相关性,特别是在检测脑肿瘤(脑肿瘤)方面。在幻影上验证仪器是强制性的,最近提出了一种标准化程序。该程序产生幻影配方,以实现 PpIX 浓度和荧光发射强度之间的线性关系。本研究提出了无法使用这种线性关系的幻影。我们提出了一个模型,该模型考虑了 PpIX 的两种状态,分别对应于 PpIX 的两种不同聚集体,其荧光光谱分别在 634nm 和 620nm 处达到峰值。我们研究了这两种状态在 PpIX 荧光发射光谱中的影响,其中 PpIX 的浓度保持稳定,并且具有各种微环境参数(表面活性剂、Intralipid 或牛血浓度和 pH 值)。我们表明,在固定的 PpIX 浓度下,微环境的变化会引起发射光谱的变化,特别是其中心波长的移动。我们表明,这种变化揭示了两种状态的比例变化。这确定了幻影微环境的范围,在这些范围内,通常的单状态模型存在偏差,而两个光谱的线性组合可以准确地恢复任何测量的光谱。