Related Experiment Video
Updated: Feb 14, 2026

Optical Detection of E. coli Bacteria by Mesoporous Silicon Biosensors
Published on: November 20, 2013
Ultrasensitive optical biosensor for detection of miRNA-155 using positively charged Au nanoparticles
Fatemeh Hakimian1, Hedayatollah Ghourchian2, Azam Sadat Hashemi3
1Institute of Biochemistry and Biophysics, University of Tehran, Tehran, Iran.
Abstract:
An ultrasensitive optical biosensor for microRNA-155 (miR-155) was developed to diagnose breast cancer at early stages. At first, the probe DNA covalently bind to the negatively charged gold nanoparticles (citrate-capped AuNPs). Then, the target miR-155 electrostatically adsorb onto the positively charged gold nanoparticles (polyethylenimine-capped AuNP) surface. Finally, by mixing citrate-capped AuNP/probe and polyethylenimine-capped AuNP/miR-155, hybridization occurs and the optical signal of the mixture give a measure to quantify the miR-155 content. The proposed biosensor is able to specify 3-base-pair mismatches and genomic DNA from target miR-155. The novelty of this biosensor is in its ability to trap the label-free target by its branched positively charged polyethylenimine. This method increases loading the target on the polyethylenimine-capped AuNPs' surface. So, proposed sensor enables miR-155 detection at very low concentrations with the detection limit of 100 aM and a wide linear range from 100 aM to 100 fM.
Related Concept Videos
Formal Charges
Ions and Ionic Charges
Atomic Radii and Effective Nuclear Charge
Electric Charges
The English physicist William Gilbert studied the phenomenon of static electricity in...
Charge on a Conductor
Charge and Current
Charge is an inherent property of the atomic particles that make up matter and is measured in units called coulombs (C). Matter is composed of atoms, each consisting of electrons, protons, and neutrons. Electrons have a negative charge (-e), while protons...

