Li Li-Juan, Xia Wen-Jing, Ma Gui-Ping, Chen Yue-Lin, Ma Yue-Yu
Department of Medical Examination, Wulanchabu Medical College, Wulanchabu, 012000, Inner Mongolia, China.
Department of Biological Engineering, Nanjing Normal University Taizhou College, Taizhou, 225300, JiangSu, China.
AMB Express. 2019 Jul 22;9(1):112. doi: 10.1186/s13568-019-0835-0.
Cellulase has many potential applications in ethanol production, extraction of medicinal ingredients, food, brewing, oil exploration, environmental protection. However, the widespread use of cellulase is limited by its relatively high production costs and low biological activity. Therefore, we studied the enzymatic properties and reusability of cellulase immobilized on multiwalled carbon nanotubes and sodium alginate for the first time. The results showed that the optimum temperature and pH of immobilized cellulase was 40 °C and 3.0, respectively. After 1 month of storage at 4 °C, the enzyme activity of immobilized cellulase dropped to 71.2% of the baseline. Immobilized cellulase was proved to be reusable and maintained ~ 70% of its activity after 7 cycles of repeated use. Versus free cellulase, the immobilized cellulase showed good thermal stability, pH resistance, storage stability and reusability, which could be beneficial in large-scale industrial manufacturing processes.
纤维素酶在乙醇生产、药用成分提取、食品、酿造、石油勘探、环境保护等方面有许多潜在应用。然而,纤维素酶的广泛应用受到其相对较高的生产成本和较低的生物活性的限制。因此,我们首次研究了固定在多壁碳纳米管和海藻酸钠上的纤维素酶的酶学性质和可重复使用性。结果表明,固定化纤维素酶的最适温度和pH分别为40℃和3.0。在4℃储存1个月后,固定化纤维素酶的酶活性降至基线的71.2%。固定化纤维素酶被证明具有可重复使用性,在重复使用7个循环后仍保持约70%的活性。与游离纤维素酶相比,固定化纤维素酶表现出良好的热稳定性、耐pH性、储存稳定性和可重复使用性,这在大规模工业制造过程中可能是有益的。