Analytical chemistry 2015-04-07

DNAzyme hybridization, cleavage, degradation, and sensing in undiluted human blood serum.

Wenhu Zhou, Qingyun Chen, Po-Jung Jimmy Huang, Jinsong Ding, Juewen Liu

文献索引:Anal. Chem. 87(7) , 4001-7, (2015)

全文:HTML全文

摘要

RNA-cleaving DNAzymes provide a unique platform for developing biosensors. However, a majority of the work has been performed in clean buffer solutions, while the activity of some important DNAzymes in biological sample matrices is still under debate. Two RNA-cleaving DNAzymes (17E and 10-23) are the most widely used. In this work, we carefully studied a few key aspects of the 17E DNAzyme in human blood serum, including hybridization, cleavage activity, and degradation kinetics. Since direct fluorescence monitoring is difficult due to the opacity of serum, denaturing and nondenaturing gel electrophoresis were combined for studying the interaction between serum proteins and DNAzymes. The 17E DNAzyme retains its activity in 90% human blood serum with a cleavage rate of 0.04 min(-1), which is similar to that in the PBS buffer (0.06 min(-1)) with a similar ionic strength. The activity in serum can be accelerated to 0.3 min(-1) with an additional 10 mM Ca(2+). As compared to 17E, the 10-23 DNAzyme produces negligible cleavage in serum. Degradation of both the substrate and the DNAzyme strand is very slow in serum, especially at room temperature. Degradation occurs mainly at the fluorophore label (linked to DNA via an amide bond) instead of the DNA phosphodiester bonds. Serum proteins can bind more tightly to the 17E DNAzyme complex than to the single-stranded substrate or enzyme. The 17E DNAzyme hybridizes extremely fast in serum. With this understanding, the detection of DNA using the 17E DNAzyme is demonstrated in serum.


相关化合物

  • 二水合磷酸二氢钠
  • 磷酸氢二钠七水合物

相关文献:

Ultrasensitive and rapid screening of mercury(II) ions by dual labeling colorimetric method in aqueous samples and applications in mercury-poisoned animal tissues.

2015-04-08

[Anal. Chim. Acta 868 , 45-52, (2015)]

A lab-on-a-chip device for analysis of amlodipine in biological fluids using peroxyoxalate chemiluminescence system.

2014-12-01

[Luminescence 29(8) , 1148-53, (2014)]

Engineering self-contained DNA circuit for proximity recognition and localized signal amplification of target biomolecules.

2014-08-01

[Nucleic Acids Res. 42(14) , 9523-30, (2014)]

Physicochemical properties of pH-sensitive hydrogels based on hydroxyethyl cellulose-hyaluronic acid and for applications as transdermal delivery systems for skin lesions.

2015-05-01

[Eur. J. Pharm. Biopharm. 92 , 146-54, (2015)]

Multistage aqueous two-phase extraction of a monoclonal antibody from cell supernatant.

2015-01-01

[Biotechnol. Prog. 31 , 925-36, (2015)]

更多文献...