A new immunomagnetic separation process that uses protein A-coated magnetic nanoclusters (PACMAN) as the separation vehicles has been developed. The nanoclusters are produced by sonicating egg yolk phosphatidylcholine and the transmembrane Fc receptor protein-A in a buffered aqueous ferrofluid suspension. The phospholipids appear to form a coating around clusters of 5-50 magnetic nanoparticles, while some of the protein-A associate with the coated layer. The PACMAN suspension shows no flocculation for several months. When this suspension is added to a mixture of chicken (CRBC) and antibody-bound sheep red blood cells (SRBC), the nanoclusters bind to the exposed Fc domains of the antibodies attached to the target SRBCs. Exposure of this mixt...
The magnetic separation technology using sub-microsized ferromagnetic particle is indispensable in m...
PD/BD/105753/2014 UIDB/ 04378/2020 POCI-01-0145-FEDER-007728 PTDC/BII-BIO/28878/2017One of the tr...
The growth of the biopharmaceutical industry has created a demand for new technologies for the purif...
A new immunomagnetic separation process, that uses protein-A coated magnetic nanoclusters (PACMAN) a...
The recognition and isolation of specific mammalian cells by the biocompatible polymer coated super-...
Extraction of rare target cells from biosamples is enabling for life science research. Traditional r...
The safety of the cells used for Advanced Therapy Medicinal Products is crucial for patients. Reliab...
[[abstract]]A separation method is reported for particle and biochemical analysis based on affinity ...
Magnetic separation has been gaining a new interest during two last decades thanks to emerging biome...
We present a continuous-flow microfluidic device that enables cell by cell separation of cells selec...
Magnetic separation has been gaining a new interest during two last decades thanks to emerging biome...
Using simple colloidal processing techniques, we have produced stable suspensions of avidin-coated m...
High capacity magnetic protein A agarose beads, LOABeads PrtA, were used in the development of a new...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Chemical Engineering, 2005.Includes...
The magnetic separation technology using sub-microsized ferromagnetic particle is indispensable in m...
PD/BD/105753/2014 UIDB/ 04378/2020 POCI-01-0145-FEDER-007728 PTDC/BII-BIO/28878/2017One of the tr...
The growth of the biopharmaceutical industry has created a demand for new technologies for the purif...
A new immunomagnetic separation process, that uses protein-A coated magnetic nanoclusters (PACMAN) a...
The recognition and isolation of specific mammalian cells by the biocompatible polymer coated super-...
Extraction of rare target cells from biosamples is enabling for life science research. Traditional r...
The safety of the cells used for Advanced Therapy Medicinal Products is crucial for patients. Reliab...
[[abstract]]A separation method is reported for particle and biochemical analysis based on affinity ...
Magnetic separation has been gaining a new interest during two last decades thanks to emerging biome...
We present a continuous-flow microfluidic device that enables cell by cell separation of cells selec...
Magnetic separation has been gaining a new interest during two last decades thanks to emerging biome...
Using simple colloidal processing techniques, we have produced stable suspensions of avidin-coated m...
High capacity magnetic protein A agarose beads, LOABeads PrtA, were used in the development of a new...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Chemical Engineering, 2005.Includes...
The magnetic separation technology using sub-microsized ferromagnetic particle is indispensable in m...
PD/BD/105753/2014 UIDB/ 04378/2020 POCI-01-0145-FEDER-007728 PTDC/BII-BIO/28878/2017One of the tr...
The growth of the biopharmaceutical industry has created a demand for new technologies for the purif...