Integrating Fermentation Engineering and Organopalladium Chemocatalysis for the Production of Squalene from Biomass-Derived Carbohydrates as the Starting Material

Cuicui Wu, Kaifei Tian,Xuan Guo,Yunming Fang

CATALYSTS(2023)

引用 0|浏览2
暂无评分
摘要
The transition from fossil resources to renewable biomass for the production of valuable chemicals and biobased fuels is a crucial step towards carbon neutrality.Squalene, a valuable chemical extensively used in the energy, healthcare, and pharmaceutical fields, has traditionally been isolated from the liver oils of deep-sea sharks and plant seed oils. In this study, a biochemical synergistic conversion strategy was designed and realized to convert glucose to squalene by combining fermentation technology in yeast with reductive coupling treatment of dienes. First, glucose derived from hydrolysis of cellulose was used as a renewable resource, using genetically engineered Saccharomyces cerevisiae as the initial biocatalyst to produce 13-farnesene with a titer of 27.6 g/L in a 2.5 L bioreactor. Subsequently, intermediate 13-farnesene was successfully converted to squalene through the organopalladium-catalyzed reductive coupling reaction involving the formation of Pd(0)L-2 species. Under mild reaction conditions, impressive 13-farnesene conversion (99%) and squalene selectivity (100%) were achieved over the Pd(acac)(2) catalyst at a temperature of 75 C-degrees in an ethanol solvent after 5 h. This advancement may provide insights into broadening squalene production channels and accessing the complex skeletons of natural terpenoids from biorenewable carbon sources, offering practical significance and economic benefits.
更多
查看译文
关键词
squalene,beta-farnesene,fermentation technology,reductive coupling of dienes,Saccharomyces cerevisiae
AI 理解论文
溯源树
样例
生成溯源树,研究论文发展脉络
Chat Paper
正在生成论文摘要