Khan M Kamran, Luo Jianquan, Wang Zhaoshuai, Khan Rashid, Chen Xiangrong, Wan Yinhua
State Key Laboratory of Biochemical Engineering, Institute of Process Engineering, Chinese Academy of Sciences, Beijing 100190, P. R. China.
J Mater Chem B. 2018 Mar 21;6(11):1640-1649. doi: 10.1039/c7tb02966g. Epub 2018 Mar 1.
Alginate dialdehyde (ADA), a biocompatible polymer, was used as an intermediate layer on a nylon membrane to readily fabricate cation exchange (CEX), metal-affinity (Me-affinity), histidine-affinity (His-affinity) and peptide-affinity (Pep-affinity) membrane adsorbers without any organic solvent usage. All the membrane adsorbers exhibited a high selectivity in the fractionation of a IgG (immunoglobulin)/HSA (human serum albumin) mixture. Along with a high purity of 100%, a high IgG binding capacity of 30, 24, 21 and 28 mg mL (membrane volume) was achieved by the CEX, Me-affinity, His-affinity and Pep-affinity membrane adsorbers in flow-through mode respectively, which is superior to those of the reported membrane adsorbers. Furthermore, the CEX and Pep-affinity adsorbers were tested for the separation of IgG from human plasma solution. The carboxylic groups along with the peptides on the Pep-affinity adsorber captured IgG synergistically with a higher recovery and purity (99% and 98.6%). This synergetic adsorber showed a q and dynamic binding capacity (DBC) of 138.4 and 38.7 mg mL respectively for IgG binding which was somewhat higher than that of the reported protein A agarose (having q and DBC of 84 and 24.4 mg g respectively). The present work indicated that the ADA layer not only activated the membrane surface to attach various adsorptive ligands under mild conditions, but also reduced non-specific adsorption. Due to the versatile linking function and green reaction conditions, the ADA coating on the nylon membrane is promising for the preparation of diverse membrane adsorbers.
海藻酸钠二醛(ADA)是一种生物相容性聚合物,被用作尼龙膜上的中间层,以便在不使用任何有机溶剂的情况下轻松制备阳离子交换(CEX)、金属亲和(Me-亲和)、组氨酸亲和(His-亲和)和肽亲和(Pep-亲和)膜吸附剂。所有膜吸附剂在IgG(免疫球蛋白)/HSA(人血清白蛋白)混合物的分级分离中均表现出高选择性。在流穿模式下,CEX、Me-亲和、His-亲和和Pep-亲和膜吸附剂分别实现了100%的高纯度以及30、24、21和28 mg/mL(膜体积)的高IgG结合容量,优于已报道的膜吸附剂。此外,还测试了CEX和Pep-亲和吸附剂从人血浆溶液中分离IgG的性能。Pep-亲和吸附剂上的羧基与肽协同捕获IgG,回收率和纯度更高(分别为99%和98.6%)。这种协同吸附剂对IgG结合的q值和动态结合容量(DBC)分别为138.4和38.7 mg/mL,略高于已报道的蛋白A琼脂糖(q值和DBC分别为84和24.4 mg/g)。目前的工作表明,ADA层不仅在温和条件下激活膜表面以附着各种吸附配体,还减少了非特异性吸附。由于其通用的连接功能和绿色反应条件,尼龙膜上的ADA涂层有望用于制备多种膜吸附剂。