Villa-Lerma Guadalupe, González-Márquez Humberto, Gimeno Miquel, Trombotto Stéphane, David Laurent, Ifuku Shinsuke, Shirai Keiko
Universidad Autónoma Metropolitana, Biotechnology Department, Laboratory of Biopolymers and Pilot Plant of Bioprocessing of Agro-Industrial and Food By-Products, Av. San Rafael Atlixco No. 186, Col. Vicentina, C.P. 09340, Iztapalapa, México City, Mexico.
Universidad Nacional Autónoma de México, Facultad de Química, Ciudad Universitaria, C.P. 04510, Mexico City, Mexico.
Bioresour Technol. 2016 Jun;209:180-6. doi: 10.1016/j.biortech.2016.02.138. Epub 2016 Mar 4.
The hydrolysis of chitin treated under supercritical conditions was successfully carried out using chitinases obtained by an optimized fermentation of the fungus Lecanicillium lecanii. The biopolymer was subjected to a pretreatment based on suspension in supercritical 1,1,1,2-tetrafluoroethane (scR134a), which possesses a critical temperature and pressure of 101°C and 40bar, respectively, followed by rapid depressurization to atmospheric pressure and further fibrillation. This methodology was compared to control untreated chitins and chitin subjected to steam explosion showing improved production of reducing sugars (0.18mg/mL), enzymatic hydrolysis and high acetylation (FA of 0.45) in products with degrees of polymerization between 2 and 5.
利用通过对真菌蜡蚧轮枝菌进行优化发酵获得的几丁质酶,成功实现了在超临界条件下处理的几丁质的水解。将该生物聚合物基于悬浮在超临界1,1,1,2 - 四氟乙烷(scR134a)中进行预处理,该物质的临界温度和压力分别为101°C和40巴,随后快速减压至大气压并进一步原纤化。将该方法与未处理的对照几丁质以及经过蒸汽爆破的几丁质进行比较,结果表明在聚合度为2至5的产物中,还原糖产量提高(0.18mg/mL)、酶促水解效果良好且乙酰化程度较高(乙酰化度为0.45)。