AbstractIn this paper we describe a method that uses the nearly covalent strength biotin–streptavidin interaction to attach a paramagnetic bead of micrometer size to a DNA molecule of nanometer size, scaling up the spatial size of a query DNA strand by a factor of 1000, making it visible to the human eye. The use of magnetic principles enables rapid binding and washing of detector beads, facilitating a readout of amplified DNA sequences in a few minutes. Here we exemplify the method on mitochondrial DNA variations using an array platform. Visual identification and documentation can be performed with an ordinary mobile phone equipped with a built-in camera
Single-molecule force-spectroscopy methods such as magnetic and optical tweezers have emerged as pow...
In this paper, we report a novel DNA molecular beacon (MB)-based plastic biochip platform for scanom...
<div><p>DNA-paramagnetic silica bead aggregation in a rotating magnetic field facilitates the quanti...
AbstractIn this paper we describe a method that uses the nearly covalent strength biotin–streptavidi...
In this thesis, three different read-out techniques for biomolecular recognition have been studied. ...
[[abstract]]This work demonstrated the feasibility of detecting 250 zM Escherichia coli O157:H7 eaeA...
The functional state of the genome is determined by its interactions with proteins that bind, modify...
<div><p>The functional state of the genome is determined by its interactions with proteins that bind...
The functional state of the genome is determined by its interactions with proteins that bind, modify...
[[abstract]]This work demonstrated the feasibility of detecting 250 zM Escherichia coli O157:H7 eaeA...
Combining DNA and superparamagnetic beads in a rotating magnetic field produces multiparticle aggreg...
The functional state of the genome is determined by its interactions with proteins that bind, modify...
The functional state of the genome is determined by its interactions with proteins that bind, modify...
DNA is a complex biopolymer, support for the genetic information of most living organisms on Earth. ...
The functional state of the genome is determined by its interactions with proteins that bind, modify...
Single-molecule force-spectroscopy methods such as magnetic and optical tweezers have emerged as pow...
In this paper, we report a novel DNA molecular beacon (MB)-based plastic biochip platform for scanom...
<div><p>DNA-paramagnetic silica bead aggregation in a rotating magnetic field facilitates the quanti...
AbstractIn this paper we describe a method that uses the nearly covalent strength biotin–streptavidi...
In this thesis, three different read-out techniques for biomolecular recognition have been studied. ...
[[abstract]]This work demonstrated the feasibility of detecting 250 zM Escherichia coli O157:H7 eaeA...
The functional state of the genome is determined by its interactions with proteins that bind, modify...
<div><p>The functional state of the genome is determined by its interactions with proteins that bind...
The functional state of the genome is determined by its interactions with proteins that bind, modify...
[[abstract]]This work demonstrated the feasibility of detecting 250 zM Escherichia coli O157:H7 eaeA...
Combining DNA and superparamagnetic beads in a rotating magnetic field produces multiparticle aggreg...
The functional state of the genome is determined by its interactions with proteins that bind, modify...
The functional state of the genome is determined by its interactions with proteins that bind, modify...
DNA is a complex biopolymer, support for the genetic information of most living organisms on Earth. ...
The functional state of the genome is determined by its interactions with proteins that bind, modify...
Single-molecule force-spectroscopy methods such as magnetic and optical tweezers have emerged as pow...
In this paper, we report a novel DNA molecular beacon (MB)-based plastic biochip platform for scanom...
<div><p>DNA-paramagnetic silica bead aggregation in a rotating magnetic field facilitates the quanti...