Kuzimenkova Marina V, Ivanov Alexander E, Galaev Igor Yu
Department of Biotechnology, Center for Chemistry and Chemical Engineering, Lund University, P.O. Box 124, SE-22100, Lund, Sweden.
Macromol Biosci. 2006 Feb 10;6(2):170-8. doi: 10.1002/mabi.200500185.
Copolymers of N-acryloyl-m-aminophenylboronic acid (NAAPBA) with acryamide (AA), N,N-dimethylacrylamide (DMAA), and N-isopropylacrylamide (NIPAM) were found to adsorb on cross-linked agarose gel (Sepharose CL-6B) in the pH range from 7.5-9.2, due to specific boronate-sugar interactions. The molar percentages of phenylboronic acid (PBA) groups in the boronate-containing copolymers (BCCs), as estimated by 1H NMR spectroscopy, were 13, 10, and 16%, respectively, whereas the apparent ionization constants, the pKa values, of the copolymers were similar and equal to 9.0 +/- 0.2 at 20 degrees C. The copolymers adsorption capacities were in the range of 15-30 mg x ml(-1) gel (14-36 micromol pendant PBA ml(-1) gel) at pH 9.2 and decreased with decreasing pH value. The interaction of monomeric NAAPBA with Sepharose CL-6B was characterized by an equilibrium association constant of 53 +/- 17 M(-1), the chromatographic capacity factor k' = 1.8, and a total content of binding sites of 27 +/- 10 micromol x ml(-1) gel at pH 9.2. The weak reversible binding of monomeric NAAPBA and almost irreversible binding of NAAPBA copolymers to the gel at pH 9.2 suggested a multivalent character of the copolymer adsorption. At pH 7.5, the maximal adsorption capacity was displayed by the AA-NAAPBA copolymer (15 mg x ml(-1) gel). All the BCCs could be completely desorbed from the gel by 0.1 M fructose in aqueous buffered media with pH values from 7.5-9.2. The strong adsorption of AA-NAAPBA on agarose gel probably relates to the conformation of the copolymer in aqueous solution and provides opportunities for biomedical applications of the copolymer under physiological conditions. Multivalent, weak-affinity adsorption of BCCs to the agarose gel seems to be a tentative model for the copolymers' binding to oligo- and polysaccharides of cell membranes and mucosal surfaces.
由于特定的硼酸酯 - 糖相互作用,发现N - 丙烯酰基 - m - 氨基苯硼酸(NAAPBA)与丙烯酰胺(AA)、N,N - 二甲基丙烯酰胺(DMAA)和N - 异丙基丙烯酰胺(NIPAM)的共聚物在pH值为7.5 - 9.2的范围内吸附在交联琼脂糖凝胶(Sepharose CL - 6B)上。通过1H NMR光谱估计,含硼酸酯的共聚物(BCCs)中苯基硼酸(PBA)基团的摩尔百分比分别为13%、10%和16%,而共聚物的表观电离常数pKa值相似,在20℃时等于9.0±0.2。在pH 9.2时,共聚物的吸附容量在15 - 30 mg·ml-1凝胶(14 - 36 μmol悬垂PBA·ml-1凝胶)范围内,并随pH值降低而降低。单体NAAPBA与Sepharose CL - 6B的相互作用的特征在于平衡缔合常数为53±17 M-1,色谱容量因子k' = 1.8,在pH 9.2时结合位点的总含量为27±10 μmol·ml-1凝胶。单体NAAPBA在pH 9.2时与凝胶的弱可逆结合以及NAAPBA共聚物与凝胶的几乎不可逆结合表明共聚物吸附具有多价特性。在pH 7.5时,AA - NAAPBA共聚物表现出最大吸附容量(15 mg·ml-1凝胶)。在pH值为7.5 - 9.2的水性缓冲介质中,所有BCCs都可以被0.1 M果糖从凝胶中完全解吸。AA - NAAPBA在琼脂糖凝胶上的强吸附可能与共聚物在水溶液中的构象有关,并为共聚物在生理条件下的生物医学应用提供了机会。BCCs对琼脂糖凝胶的多价、弱亲和力吸附似乎是共聚物与细胞膜和粘膜表面的寡糖和多糖结合的一个初步模型。