Microcarrier technology opened new perspectives for anchorage-dependent cell culture, by providing increased surface areas for cell adhesion and proliferation, and therefore improving both cell and product yields obtained in these cultures. The establishment of a successful microcarrier culture depends on many factors, such as the type of microcarrier, the cells, and the culture conditions. In this chapter, the basic steps required for the evaluation and optimization of a microcarrier culture for the purpose of production of recombinant proteins are described, for both solid and porous microcarriers
International audienceAnchorage-dependent cells are of great interest for various biotechnological a...
The focus of this work is to develop a technology for the synthesis of polymer microcarriers that de...
Human mesenchymal stem cells (hMSCs) have demonstrated great potential to be used as therapies for m...
Large-scale biopharmaceutical production commonly relies on suspension cell cultures that provide hi...
Large-scale biopharmaceutical production commonly relies on suspension cell cultures that provide h...
The emergence of microcarrier technology has brought a renewed interest in anchorage-dependent cell ...
A major problem in tissue engineering is the availability of a sufficient number of cells with the a...
The fact of microcarrier (MC) culture introduces new possibilities and makes possible the practical ...
The fact of microcarrier (MC) culture introduces new possibilities and makes possible the practical ...
The manufacturing of recombinant protein is traditionally undertaken in mammalian cell culture. Toda...
Therapies utilizing stem cells isolated from various tissues are currently undergoing clinical evalu...
© 2018 Elsevier Ltd Human stem cells, including pluripotent, embryonic and mesenchymal, stem cells p...
Animal cell cultures are widely employed for the production of viral vaccines and for recombinant pr...
Allogeneic cell therapies require the manufacture of large amounts of cells in a reliable and robust...
With recent advances in biotechnology, there is a strong and urgent need for robust platforms to cul...
International audienceAnchorage-dependent cells are of great interest for various biotechnological a...
The focus of this work is to develop a technology for the synthesis of polymer microcarriers that de...
Human mesenchymal stem cells (hMSCs) have demonstrated great potential to be used as therapies for m...
Large-scale biopharmaceutical production commonly relies on suspension cell cultures that provide hi...
Large-scale biopharmaceutical production commonly relies on suspension cell cultures that provide h...
The emergence of microcarrier technology has brought a renewed interest in anchorage-dependent cell ...
A major problem in tissue engineering is the availability of a sufficient number of cells with the a...
The fact of microcarrier (MC) culture introduces new possibilities and makes possible the practical ...
The fact of microcarrier (MC) culture introduces new possibilities and makes possible the practical ...
The manufacturing of recombinant protein is traditionally undertaken in mammalian cell culture. Toda...
Therapies utilizing stem cells isolated from various tissues are currently undergoing clinical evalu...
© 2018 Elsevier Ltd Human stem cells, including pluripotent, embryonic and mesenchymal, stem cells p...
Animal cell cultures are widely employed for the production of viral vaccines and for recombinant pr...
Allogeneic cell therapies require the manufacture of large amounts of cells in a reliable and robust...
With recent advances in biotechnology, there is a strong and urgent need for robust platforms to cul...
International audienceAnchorage-dependent cells are of great interest for various biotechnological a...
The focus of this work is to develop a technology for the synthesis of polymer microcarriers that de...
Human mesenchymal stem cells (hMSCs) have demonstrated great potential to be used as therapies for m...