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Quantitative Laser Biospeckle Method for the Evaluation of the Activity of Trypanosoma cruzi Using VDRL Plates and Digital Analysis

机译:用VDRL板和数字分析定量激光生物散斑法评价克氏锥虫活性。

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摘要

In this paper we report a quantitative laser Biospeckle method using VDRL plates to monitor the activity of Trypanosoma cruzi and the calibration conditions including three image processing algorithms and three programs (ImageJ and two programs designed in this work). Benznidazole was used as a test drug. Variable volume (constant density) and variable density (constant volume) were used for the quantitative evaluation of parasite activity in calibrated wells of the VDRL plate. The desiccation process within the well was monitored as a function of volume and of the activity of the Biospeckle pattern of the parasites as well as the quantitative effect of the surface parasite quantity (proportion of the object’s plane). A statistical analysis was performed with ANOVA, Tukey post hoc and Descriptive Statistics using R and R Commander. Conditions of volume (100μl) and parasite density (2-4x104 parasites/well, in exponential growth phase), assay time (up to 204min), frame number (11 frames), algorithm and program (RCommander/SAGA) for image processing were selected to test the effect of variable concentrations of benznidazole (0.0195 to 20μg/mL / 0.075 to 76.8μM) at various times (1, 61, 128 and 204min) on the activity of the Biospeckle pattern. The flat wells of the VDRL plate were found to be suitable for the quantitative calibration of the activity of Trypanosoma cruzi using the appropriate algorithm and program. Under these conditions, benznidazole produces at 1min an instantaneous effect on the activity of the Biospeckle pattern of T. cruzi, which remains with a similar profile up to 1 hour. A second effect which is dependent on concentrations above 1.25μg/mL and is statistically different from the effect at lower concentrations causes a decrease in the activity of the Biospeckle pattern. This effect is better detected after 1 hour of drug action. This behavior may be explained by an instantaneous effect on a membrane protein of Trypanosoma cruzi that could mediate the translocation of benznidazole. At longer times the effect may possibly be explained by the required transformation of the pro-drug into the active drug.
机译:在本文中,我们报告了一种使用VDRL板监测克鲁斯锥虫的活性和校准条件的定量激光生物散斑方法,包括三种图像处理算法和三个程序(ImageJ和本程序中设计的两个程序)。苯硝唑用作测试药物。可变体积(恒定密度)和可变密度(恒定体积)用于定量评估VDRL平板校准孔中的寄生虫活性。监测孔内的干燥过程,该过程是寄生虫的生物斑点模式的体积和活性以及表面寄生虫数量(物体平面的比例)的定量影响的函数。使用R和R Commander对ANOVA,Tukey post hoc和描述性统计进行统计分析。体积(100μl)和寄生虫密度(2-4x10 4 寄生虫/孔,处于指数生长期),测定时间(长达204分钟),帧数(11帧),算法和程序(选择用于图像处理的RCommander / SAGA)来测试不同时间(1、61、128和204分钟)可变浓度的苯硝唑(0.0195至20μg/ mL / 0.075至76.8μM)对Biospeckle模式活性的影响。发现使用适当的算法和程序,VDRL平板的平孔适合定量校正克氏锥虫的活性。在这些条件下,苯甲硝唑在1min时对克鲁维酵母的生物斑点模式的活性产生瞬时影响,该模式在长达1小时的时间内仍具有相似的分布。取决于高于1.25μg/ mL的浓度的第二种效应与统计学上与较低浓度下的效应不同,这会导致生物斑点图案活性降低。药物作用1小时后,可以更好地检测到这种效果。可以通过对克氏锥虫膜蛋白的瞬时作用来解释这种行为,该膜蛋白可以介导苯并硝唑的易位。在更长的时间,效果可能可以通过将前药转变为活性药物来解释。

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