Departamento de Química y Bioquímica, Facultad de Ciencias Exactas y Naturales, Universidad Nacional de Mar del Plata, Funes 3350, 7600, Mar del Plata, Buenos Aires, Argentina.
Instituto de Investigaciones Fisicas de Mar del Plata, Universidad Nacional de Mar del Plata, Funes 3350, 7600, Mar del Plata, Buenos Aires, Argentina.
Chemistry. 2023 Aug 21;29(47):e202301113. doi: 10.1002/chem.202301113. Epub 2023 Jul 24.
The enzymatic reduction of carbon dioxide presents limited applicability due to denaturation and the impossibility of biocatalyst recovery; disadvantages that can be minimized by its immobilization. Here, a recyclable bio-composed system was constructed by in-situ encapsulation under mild conditions using formate dehydrogenase in a ZIF-8 metalorganic framework (MOF) in the presence of magnetite. The partial dissolution of ZIF-8 in the enzyme's operation medium can be relatively inhibited if the concentration of magnetic support used exceeds 10 mg mL . The bio-friendly environment for immobilization does not harm the integrity of the biocatalyst, and the production of formic acid is improved 3.4-fold compared to the free enzyme because the MOFs act as concentrators of the enzymatic cofactor. Furthermore, the bio-composed system retains 86 % of its activity after a long time of five cycles, thus indicating an excellent magnetic recovery and a good reusability.
由于酶的变性和生物催化剂回收的不可能,二氧化碳的酶还原的应用受到限制; 这些缺点可以通过固定化来最小化。在这里,在存在磁铁矿的情况下,通过在温和条件下原位封装,使用甲酸盐脱氢酶在 ZIF-8 金属有机骨架 (MOF) 中构建了可回收的生物组成系统。如果使用的磁性载体的浓度超过 10mg/mL,则可以相对抑制 ZIF-8 在酶的操作介质中的部分溶解。生物友好的固定化环境不会损害生物催化剂的完整性,并且与游离酶相比,甲酸的产量提高了 3.4 倍,因为 MOFs 充当酶辅因子的浓缩剂。此外,该生物组成系统在经过长时间的五个循环后仍保留 86%的活性,因此表明具有优异的磁性回收和良好的可重复使用性。