Production of recombinant proteins in suspension cultures of genetically modified plant cells is a promising and rapidly developing area of plant biotechnology. In the present review article, advantages related to using plant systems for expression of recombinant proteins are considered. Here, the main focus is covering the literature on optimization of cultivation conditions of suspension-cultured plant cells to obtain a maximal yield of target proteins. In particular, certain examples of successful use of such cells to produce pharmaceuticals were described
While traditionally used to produce natural products, plant suspension cultures can also be utilized...
Molecular farming is the production of pharmaceutically important and commercially valuable proteins...
Transient recombinant protein production is a promising alternative to stable transgenic systems, pa...
Production of recombinant proteins in suspension cultures of genetically modified plant cells is a p...
The use of whole plants for the synthesis of recombinant proteins has received a great deal of atten...
Plant cell suspension cultures grow in a liquid medium as individual cells or small aggregates, and ...
Plant cell suspension cultures have several advantages that make them suitable for the production of...
Molecular Farming – the use of plant based systems for production of recombinant proteins – is an em...
Molecular farming is the production of pharmaceutically important and commercially valuable proteins...
Plants offer an alternative to microbial fermentation and animal cell cultures for the production of...
Alternatively to whole plants, plant cell cultures are used to produce bioactive substances for food...
Alternatively to whole plants, plant cell cultures are used to produce bioactive substances for food...
Plants provide an inexpensive and convenient system for the large-scale production of valuable recom...
Plant cell culture technology (PCCT) provides an environmentally friendly and controlled method to p...
The production of therapeutic and industrial recombinant proteins in plants has advantages over esta...
While traditionally used to produce natural products, plant suspension cultures can also be utilized...
Molecular farming is the production of pharmaceutically important and commercially valuable proteins...
Transient recombinant protein production is a promising alternative to stable transgenic systems, pa...
Production of recombinant proteins in suspension cultures of genetically modified plant cells is a p...
The use of whole plants for the synthesis of recombinant proteins has received a great deal of atten...
Plant cell suspension cultures grow in a liquid medium as individual cells or small aggregates, and ...
Plant cell suspension cultures have several advantages that make them suitable for the production of...
Molecular Farming – the use of plant based systems for production of recombinant proteins – is an em...
Molecular farming is the production of pharmaceutically important and commercially valuable proteins...
Plants offer an alternative to microbial fermentation and animal cell cultures for the production of...
Alternatively to whole plants, plant cell cultures are used to produce bioactive substances for food...
Alternatively to whole plants, plant cell cultures are used to produce bioactive substances for food...
Plants provide an inexpensive and convenient system for the large-scale production of valuable recom...
Plant cell culture technology (PCCT) provides an environmentally friendly and controlled method to p...
The production of therapeutic and industrial recombinant proteins in plants has advantages over esta...
While traditionally used to produce natural products, plant suspension cultures can also be utilized...
Molecular farming is the production of pharmaceutically important and commercially valuable proteins...
Transient recombinant protein production is a promising alternative to stable transgenic systems, pa...