Author:
Abbasi Fariba,Hashemi Hassan,Samaei Mohammad Reza,SavarDashtaki Amir,Azhdarpoor Abooalfazl,Fallahi Mohammad Javad
Abstract
AbstractThe 3-(4,5-dimethylthiazol-2-yl)-2,5-diphenyltetrazolium bromide (MTT) assay is the most common method for the determination of cell toxicity, but some factors limit the sensitivity of this method, such as pH. Less attention had been paid to the interference effect of optical and plasmonic properties of SiO2 nanoparticles (NPs) in the wavelength range assigned to MTT. This study investigated the synergistic interference effect of SiO2 NPs and wavelength on MTT assay for the first time. The examined variables included the type of SiO2 NPs concentrations (1, 10, and 100 mM) and different wavelengths (470, 490, 520, and 570 nm). The results showed that optical density (OD) increased (p < 0.05) when wavelength and the concentration of crystalline SiO2 NPs increased. So, the maximum OD at 10 and 100 mM were attributed to crystalline SiO2 NPs (p < 0.05) due to the functional group, whereas it was related to amorphous at 1 mM (p > 0.05). According to polynomial regression modeling (PRM), the maximum interference effect was predicted at crystalline SiO2 NPs and wavelength > 550 nm. Besides, the synergistic effects of SiO2 NPs, wavelength, and concentration of NPs had been a good fitting with first-order PRM. Thus, the concentration of SiO2 NPs had a confounder factor in colorimetric for MTT assay. The best artificial neural network (ANN) structure was related to the 3:7:1 network (Rall = 0.936, MSE = 0.0006, MAPE = 0.063). The correlation between the actual and predicted data was 0.88. As SiO2 NPs presence is an interfering factor in MTT assay concerning wavelength, it is suggested wavelength use with minimum confounding effect for MTT assay.
Funder
Shiraz University of Medical Sciences
Publisher
Springer Science and Business Media LLC
Reference50 articles.
1. Selvakumaran, J. & Jell, G. A Guide to Basic Cell Culture and Applications in Biomaterials and Tissue Engineering (CRC Press, 2005).
2. Luis, C., Castaño-Guerrero, Y., Soares, R. & Sales, G. Avoiding the interference of doxorubicin with MTT measurements on the MCF-7 breast cancer cell line. Methods Protoc. 2, 29 (2019).
3. Volk, P. D. & Moreland, J. G. Methods in enzymology. Endosome Signal. Part B. 535, 430 (2014).
4. Riss T. L. et al. Cell Viability Assays. In: (eds Markossian, S. et al.). Assay Guidance Manual. Bethesda (MD): Eli Lilly & Company and the National Center for Advancing Translational Sciences; 2004. https://www.ncbi.nlm.nih.gov/books/NBK144065/. (2016).
5. Emanet, M., Şen, Ö. & Çulha, M. Evaluation of boron nitride nanotubes and hexagonal boron nitrides as nanocarriers for cancer
drugs. Nanomedicine (Lond). 12(7), 797–810. https://doi.org/10.2217/nnm-2016-0322. (2017).
Cited by
16 articles.
订阅此论文施引文献
订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献