Nestlé R&D Centre Tours, 101 Avenue Gustave Eiffel, Notre Dame D'Oé, BP 49716, 37097, Tours Cedex 2, France.
Adv Biochem Eng Biotechnol. 2009;115:89-115. doi: 10.1007/10_2008_28.
Different types of bioreactors are used at Nestlé R&D Centre - Tours for mass propagation of selected plant varieties by somatic embryogenesis and for large scale culture of plants cells to produce metabolites or recombinant proteins. Recent studies have been directed to cut down the production costs of these two processes by developing disposable cell culture systems. Vegetative propagation of elite plant varieties is achieved through somatic embryogenesis in liquid medium. A pilot scale process has recently been set up for the industrial propagation of Coffea canephora (Robusta coffee). The current production capacity is 3.0 million embryos per year. The pre-germination of the embryos was previously conducted by temporary immersion in liquid medium in 10-L glass bioreactors. An improved process has been developed using a 10-L disposable bioreactor consisting of a bag containing a rigid plastic box ('Box-in-Bag' bioreactor), insuring, amongst other advantages, a higher light transmittance to the biomass due to its horizontal design. For large scale cell culture, two novel flexible plastic-based disposable bioreactors have been developed from 10 to 100 L working volumes, validated with several plant species ('Wave and Undertow' and 'Slug Bubble' bioreactors). The advantages and the limits of these new types of bioreactor are discussed, based mainly on our own experience on coffee somatic embryogenesis and mass cell culture of soya and tobacco.
不同类型的生物反应器在雀巢研发中心 - 图尔被用于通过体细胞胚胎发生大量繁殖选定的植物品种,以及大规模培养植物细胞以生产代谢物或重组蛋白。最近的研究致力于通过开发一次性细胞培养系统来降低这两个过程的生产成本。通过液体培养基中的体细胞胚胎发生来实现优良植物品种的营养繁殖。最近已经为罗布斯塔咖啡(Coffea canephora)的工业繁殖建立了一个中试规模的过程。目前的生产能力为每年 300 万枚胚胎。胚胎的预萌发以前是在 10 升玻璃生物反应器中的液体培养基中进行临时浸泡。使用包含刚性塑料盒的 10 升一次性生物反应器(“盒中袋”生物反应器)开发了一种改进的工艺,由于其水平设计,确保了更高的生物量透光率,从而确保了更高的生物量透光率等优点。对于大规模细胞培养,已经从 10 升开发了两种新型的灵活塑料基一次性生物反应器到 100 升工作体积,并用几种植物物种进行了验证(“波浪和回流”和“Slug Bubble”生物反应器)。基于我们在咖啡体细胞胚胎发生和大豆和烟草的大规模细胞培养方面的经验,主要讨论了这些新型生物反应器的优缺点和限制。