We developed particle patterning processes on microstructured surfaces for the combinatorial synthesis of high density peptide arrays. We worked with polymer microparticles with embedded amino acids derivatives and solid substrates with cylindrical microcavities. Using laser-based method, we demonstrated combinatorial particle patterning with 1 million spots/cm². With the so-called stochastic approach, we synthesized dipeptide array with a density of 25 million peptide spots/cm²
Today, lithographic methods enable combinatorial synthesis of >50,000 oligonucleotides per cm(2), an...
Lithographic methods allow for the combinatorial synthesis of >50.000 oligonucleotides per cm(2), wh...
In this paper, we introduce a novel microfluidic combinatorial synthesis platform, referred to as Mi...
In this thesis, different laser based methods to produce high density peptide arrays were developed....
In this review, we describe different methods of microarray fabrication based on the use of micro-pa...
In this review, we describe different methods of microarray fabrication based on the use of micro-p...
Laser writing is used to structure surfaces in many different ways in materials and life sciences. H...
Peptide arrays, produced through combinatorial synthesis from amino-acid monomers, are an important ...
Abstract Laser-induced forward transfer (LIFT) is a rapid laser-patterning technique for high-throug...
Nowadays, lithographic methods facilitate the combinatorial synthesis of >50.000 oligonucleotides pe...
CMOS - Based Peptide Arrays Peptide arrays are an important tool in proteomics and peptidomics, allo...
Biofunctionalization of surfaces in a microarray format has revolutionized biological assay applicat...
Laser-induced forward transfer (LIFT) is a rapid laser-patterning technique for high-throughput comb...
Compared to the human genome, which is formed by approximately 25,000 genes, the human proteome comp...
We developed a next-generation method for chemical in–situ combinatorial biomolecule array synthesis...
Today, lithographic methods enable combinatorial synthesis of >50,000 oligonucleotides per cm(2), an...
Lithographic methods allow for the combinatorial synthesis of >50.000 oligonucleotides per cm(2), wh...
In this paper, we introduce a novel microfluidic combinatorial synthesis platform, referred to as Mi...
In this thesis, different laser based methods to produce high density peptide arrays were developed....
In this review, we describe different methods of microarray fabrication based on the use of micro-pa...
In this review, we describe different methods of microarray fabrication based on the use of micro-p...
Laser writing is used to structure surfaces in many different ways in materials and life sciences. H...
Peptide arrays, produced through combinatorial synthesis from amino-acid monomers, are an important ...
Abstract Laser-induced forward transfer (LIFT) is a rapid laser-patterning technique for high-throug...
Nowadays, lithographic methods facilitate the combinatorial synthesis of >50.000 oligonucleotides pe...
CMOS - Based Peptide Arrays Peptide arrays are an important tool in proteomics and peptidomics, allo...
Biofunctionalization of surfaces in a microarray format has revolutionized biological assay applicat...
Laser-induced forward transfer (LIFT) is a rapid laser-patterning technique for high-throughput comb...
Compared to the human genome, which is formed by approximately 25,000 genes, the human proteome comp...
We developed a next-generation method for chemical in–situ combinatorial biomolecule array synthesis...
Today, lithographic methods enable combinatorial synthesis of >50,000 oligonucleotides per cm(2), an...
Lithographic methods allow for the combinatorial synthesis of >50.000 oligonucleotides per cm(2), wh...
In this paper, we introduce a novel microfluidic combinatorial synthesis platform, referred to as Mi...