BIOMERIT Research Centre, School of Microbiology, University College Cork, T12 K8AF Cork, Ireland.
School of Microbiology, University College Cork, T12 K8AF Cork, Ireland.
Mar Drugs. 2018 Jul 4;16(7):227. doi: 10.3390/md16070227.
In a demanding commercial world, large-scale chemical processes have been widely utilised to satisfy consumer related needs. Chemical industries are key to promoting economic growth and meeting the requirements of a sustainable industrialised society. The market need for diverse commodities produced by the chemical industry is rapidly expanding globally. Accompanying this demand is an increased threat to the environment and to human health, due to waste produced by increased industrial production. This increased demand has underscored the necessity to increase reaction efficiencies, in order to reduce costs and increase profits. The discovery of novel biocatalysts is a key method aimed at combating these difficulties. Metagenomic technology, as a tool for uncovering novel biocatalysts, has great potential and applicability and has already delivered many successful achievements. In this review we discuss, recent developments and achievements in the field of biocatalysis. We highlight how green chemistry principles through the application of biocatalysis, can be successfully promoted and implemented in various industrial sectors. In addition, we demonstrate how two novel lipases/esterases were mined from the marine environment by metagenomic analysis. Collectively these improvements can result in increased efficiency, decreased energy consumption, reduced waste and cost savings for the chemical industry.
在竞争激烈的商业世界中,大规模的化学工艺已被广泛应用于满足消费者相关需求。化学工业是促进经济增长和满足可持续工业化社会要求的关键。全球对化学工业生产的各种商品的市场需求正在迅速扩大。伴随着这种需求的是工业生产增加所带来的对环境和人类健康的威胁增加。这种需求的增加强调了提高反应效率的必要性,以降低成本和提高利润。发现新型生物催化剂是解决这些困难的关键方法之一。宏基因组学技术作为一种发现新型生物催化剂的工具,具有巨大的潜力和适用性,已经取得了许多成功的成果。在本文中,我们讨论了生物催化领域的最新发展和成就。我们强调了如何通过应用生物催化将绿色化学原则成功地推广和应用于各个工业领域。此外,我们还展示了如何通过宏基因组分析从海洋环境中挖掘出两种新型脂肪酶/酯酶。这些改进可以共同提高效率、降低能耗、减少浪费和降低化学工业的成本。