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Attenuated Total Reflectance Fourier Transform Infrared Spectroscopy: An analytical technique to understand therapeutic responses at the molecular level

机译:衰减全反射傅立叶变换红外光谱:一种在分子水平上理解治疗反应的分析技术

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Rapid monitoring of the response to treatment in cancer patients is essential to predict the outcome of the therapeutic regimen early in the course of the treatment. The conventional methods are laborious, time-consuming, subjective and lack the ability to study different biomolecules and their interactions, simultaneously. Since; mechanisms of cancer and its response to therapy is dependent on molecular interactions and not on single biomolecules, an assay capable of studying molecular interactions as a whole, is preferred. Fourier Transform Infrared (FTIR) spectroscopy has become a popular technique in the field of cancer therapy with an ability to elucidate molecular interactions. The aim of this study, was to explore the utility of the FTIR technique along with multivariate analysis to understand whether the method has the resolution to identify the differences in the mechanism of therapeutic response. Towards achieving the aim, we utilized the mouse xenograft model of retinoblastoma and nanoparticle mediated targeted therapy. The results indicate that the mechanism underlying the response differed between the treated and untreated group which can be elucidated by unique spectral signatures generated by each group. The study establishes the efficiency of non-invasive, label-free and rapid FTIR method in assessing the interactions of nanoparticles with cellular macromolecules towards monitoring the response to cancer therapeutics.
机译:快速监测癌症患者对治疗的反应对于在治疗过程的早期预测治疗方案的结果至关重要。常规方法费力,费时,主观且缺乏同时研究不同生物分子及其相互作用的能力。以来;癌症的机理及其对治疗的反应取决于分子相互作用,而不是取决于单个生物分子,因此优选能够整体研究分子相互作用的测定方法。傅立叶变换红外(FTIR)光谱学已成为具有阐明分子相互作用能力的癌症治疗领域的流行技术。这项研究的目的是探索FTIR技术以及多变量分析的实用性,以了解该方法是否具有确定治疗反应机理差异的分辨率。为了达到目的,我们利用了视网膜母细胞瘤的小鼠异种移植模型和纳米粒子介导的靶向治疗。结果表明,处理组和未处理组之间响应的根本机制不同,这可以通过各组产生的独特光谱特征来阐明。该研究确定了无创,无标记和快速FTIR方法在评估纳米粒子与细胞大分子相互作用以监测对癌症治疗反应方面的效率。

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