scholarly journals Electrochemical Detection of Global DNA Methylation Using Biologically Assembled Polymer Beads

Cancers ◽  
2021 ◽  
Vol 13 (15) ◽  
pp. 3787
Author(s):  
Narshone Soda ◽  
Zennia Jean Gonzaga ◽  
Amandeep Singh Pannu ◽  
Navid Kashaninejad ◽  
Richard Kline ◽  
...  

DNA methylation is a cell-type-specific epigenetic marker that is essential for transcriptional regulation, silencing of repetitive DNA and genomic imprinting. It is also responsible for the pathogenesis of many diseases, including cancers. Herein, we present a simple approach for quantifying global DNA methylation in ovarian cancer patient plasma samples based on a new class of biopolymer nanobeads. Our approach utilises the immune capture of target DNA and electrochemical quantification of global DNA methylation level within the targets in a three-step strategy that involves (i) initial preparation of target single-stranded DNA (ss-DNA) from the plasma of the patients’ samples, (ii) direct adsorption of polymer nanobeads on the surface of a bare screen-printed gold electrode (SPE-Au) followed by the immobilisation of 5-methylcytosine (5mC)-horseradish peroxidase (HRP) antibody, and (iii) immune capture of target ss-DNA onto the electrode-bound PHB/5mC-HRP antibody conjugates and their subsequent qualification using the hydrogen peroxide/horseradish peroxidase/hydroquinone (H2O2/HRP/HQ) redox cycling system. In the presence of methylated DNA, the enzymatically produced (in situ) metabolites, i.e., benzoquinone (BQ), binds irreversibly to cellular DNA resulting in the unstable formation of DNA adducts and induced oxidative DNA strand breakage. These events reduce the available BQ in the system to support the redox cycling process and sequel DNA saturation on the platform, subsequently causing high Coulombic repulsion between BQ and negatively charged nucleotide strands. Thus, the increase in methylation levels on the electrode surface is inversely proportional to the current response. The method could successfully detect as low as 5% methylation level. In addition, the assay showed good reproducibility (% RSD ≤ 5%) and specificity by analysing various levels of methylation in cell lines and plasma DNA samples from patients with ovarian cancer. We envision that our bioengineered polymer nanobeads with high surface modification versatility could be a useful alternative platform for the electrochemical detection of varying molecular biomarkers.

2017 ◽  
Vol 62 (No. 2) ◽  
pp. 43-50 ◽  
Author(s):  
W. Li ◽  
A. Van Soom ◽  
L. Peelman

DNA methylation undergoes dynamic changes and is a crucial part of the epigenetic regulation during mammalian early development. To determine the DNA methylation levels in bovine embryos, we applied a bisulfite sequencing based method aimed at repetitive sequences including three retrotransposons (L1_BT, BovB, and ERV1-1-I_BT) and Satellite I. A more accurate estimate of the global DNA methylation level compared to previous methods using only one repeat sequence, like Alu, could be made by calculation of the weighted arithmetic mean of multiple repetitive sequences, considering the copy number of each repetitive sequence. Satellite I and L1_BT showed significant methylation reduction at the blastocyst stage, while BovB and ERV1-1-I_BT showed no difference. The mean methylation level of the repetitive sequences during preimplantation development was the lowest at the blastocyst stage. No methylation difference was found between embryos cultured in 5% and 20% O<sub>2</sub>. Because mutations of CpGs negatively influence the calculation accuracy, we checked the mutation rate of the sequenced CpG sites. Satellite I and L1_BT showed a relatively low mutation rate (1.92 and 3.72% respectively) while that of ERV1-1-I_BT and BovB was higher (11.95 and 24% respectively). Therefore we suggest using a combination of repeats with low mutation rate, taking into account the proportion of each sequence, as a relatively quick marker for the global DNA methylation status of preimplantation stages and possibly also for other cell types.


Andrology ◽  
2015 ◽  
Vol 3 (2) ◽  
pp. 235-240 ◽  
Author(s):  
D. Montjean ◽  
A. Zini ◽  
C. Ravel ◽  
S. Belloc ◽  
A. Dalleac ◽  
...  

2008 ◽  
Vol 14 (11) ◽  
pp. 3283-3290 ◽  
Author(s):  
Anna Woloszynska-Read ◽  
Paulette Mhawech-Fauceglia ◽  
Jihnhee Yu ◽  
Kunle Odunsi ◽  
Adam R. Karpf

Author(s):  
Mohammed M. Laqqan ◽  
Maged M. Yassin

Background: Intracytoplasmic sperm injection needs sufficient oocytes of high quality in order to increase the rate of fertilization and pregnancy. This study was designed to investigate the influence of maternal age on the ICSI outcomes in women undergoing to first ICSI cycle and to evaluate the influence of maternal age on global DNA methylation.Methods: A total of 242 females were included in this study with a mean age of 30.5±7.3 years. The participants were divided into three groups depending on women's age≤25, N=70; 26-35, N=102 and>35, N=70). The genomic DNA was isolated from the blood samples, then the global DNA methylation was evaluated using ELISA.Results: A significant reduction has been found in the level of anti-Müllerian hormone (AMH), total number of the collected oocyte, mature oocytes, fertilized oocytes and number of embryos transferred in the older females compared to the younger group (p<0.001). While a significant increase has been found in global DNA methylation level in the older females compared to the younger group (p<0.001). A positive significant correlation has been found between global DNA methylation level and maternal age (p<0.001). In contrast, a negative significant correlation has been shown between AMH level, mature oocytes and maternal age (p<0.001).Conclusions: Maternal age has a significant influence on the number of mature oocytes, number of embryos transferred and global DNA methylation. The pregnancy chance is more in the age group less than 35 years.


2018 ◽  
Vol 6 (29) ◽  
pp. 4783-4791 ◽  
Author(s):  
Ripon Bhattacharjee ◽  
Shunsuke Tanaka ◽  
Sofia Moriam ◽  
Mostafa Kamal Masud ◽  
Jianjian Lin ◽  
...  

Peroxidase-mimetic activity of mesoporous Fe2O3 nanomaterials in global DNA methylation detection using naked eye and electrochemical readout.


Metallomics ◽  
2017 ◽  
Vol 9 (2) ◽  
pp. 149-160 ◽  
Author(s):  
Oscar F. Sanchez ◽  
Jinyoung Lee ◽  
Nathaphon Yu King Hing ◽  
Seong-Eun Kim ◽  
Jennifer L. Freeman ◽  
...  

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