Franco Paula G, Pérez María J, Aranda Claudio, Adamo Ana, Silvestroff Lucas
Departamento de Química Biológica Patológica, Facultad de Farmacia y Bioquímica, Universidad de Buenos Aires, Buenos Aires, Argentina; Instituto de Química y Fisicoquímica Biológicas "Prof. Alejandro E. Paladini" (IQUIFIB, UBA-CONICET), Buenos Aires, Argentina.
Hospital General de Agudos Carlos G. Durand, Ciudad Autónoma de Buenos Aires, Argentina.
Clin Chim Acta. 2015 Jun 15;446:86-92. doi: 10.1016/j.cca.2015.04.011. Epub 2015 Apr 18.
Mucopolysaccharidosis type VI can be screened by measuring the lysosomal arylsulfatase B (ARSB) residual enzyme activity in dried blood spots (DBS) using synthetic substrates. However, we have found experimental obstacles when determining ARSB activity with the fluorescent method due to the significant quenching effect rendered by DBS components.
We adapted the methods originally described by Chamoles et al. [1] and Civallero et al. [2] and put forward 2 distinct approaches for ARSB activity quantification from DBS samples by measuring the 4-methylumbelliferone (β-MU) fluorescence generated from the ARSB 4-methylumbelliferone sulfate (β-MUS) substrate.
We demonstrate the high throughput feasibility of a novel approach for measuring ARSB activities by incorporating tailor-made calibration curves according to each patient's DBS sample quenching properties. The second method is used to calculate ARSB activities by measuring the fluorescence and absorbance parameters in each reaction sample with a single DBS-free calibration curve.
The quantitative correlation between the DBS sample absorbance and its quenching effect can be used to calculate predictive ARSB activities and would serve as an affordable first tier screening test. The method described herein demonstrates the critical importance of adapting the β-MU calibration curves to each patient's unique DBS sample matrix and its positive impact on the accuracy and reliability of ARSB activity measurements.
通过使用合成底物测量干血斑(DBS)中的溶酶体芳基硫酸酯酶B(ARSB)残余酶活性,可以对VI型粘多糖贮积症进行筛查。然而,由于DBS成分产生的显著淬灭效应,我们在用荧光法测定ARSB活性时遇到了实验障碍。
我们采用了Chamoles等人[1]和Civallero等人[2]最初描述的方法,提出了2种不同的方法,通过测量ARSB硫酸4-甲基伞形酮(β-MUS)底物产生的4-甲基伞形酮(β-MU)荧光来定量DBS样品中的ARSB活性。
我们通过根据每个患者的DBS样品淬灭特性纳入特制的校准曲线,证明了一种测量ARSB活性的新方法的高通量可行性。第二种方法是通过使用单一无DBS校准曲线测量每个反应样品中的荧光和吸光度参数来计算ARSB活性。
DBS样品吸光度与其淬灭效应之间的定量相关性可用于计算预测性ARSB活性,并将作为一种经济实惠的一级筛查试验。本文所述方法证明了使β-MU校准曲线适应每个患者独特的DBS样品基质的至关重要性及其对ARSB活性测量准确性和可靠性的积极影响。