首页> 外文期刊>Colloids and Surfaces, B. Biointerfaces >Swelling-shrinking behavior of chemically cross-linked polypeptide gels from poly(α-l-lysine), poly(α-dl-lysine), poly(e{open}-l-lysine) and thermally prepared poly(lysine): Effects of pH, temperature and additives in the solution
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Swelling-shrinking behavior of chemically cross-linked polypeptide gels from poly(α-l-lysine), poly(α-dl-lysine), poly(e{open}-l-lysine) and thermally prepared poly(lysine): Effects of pH, temperature and additives in the solution

机译:聚(α-l-赖氨酸),聚(α-dl-赖氨酸),聚(e {open} -l-赖氨酸)和热制备的聚(赖氨酸)的化学交联多肽凝胶的溶胀-收缩行为:效果溶液中的pH,温度和添加剂

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We synthesized the glutaraldehyde cross-linked hydrogels using four kinds of poly(lysine)s (PLs) and measured the equilibrium swelling ratio (Q) as a function of pH. Also measured was the temperature change of Q at a fixed pH (11.6) in the absence and presence of additives (LiBr, methanol and urea) that affect the secondary structure of PLs. The swelling data were examined using a force balance approach in which the repulsive and attractive interactions among the cross-linked PL chains were considered based on the conformational properties of PLs in aqueous solutions. It was found that the formation of the helical segments in the cross-linked chain has little effect in the gel collapse, but their association acts as the attractive interaction causing the gel to shrink. The formation of the beta-sheet structure within the network also acts as the attractive interaction. These attractive interactions are mainly due to the hydrogen bonding, but hydrophobic interactions between the lysine side chains should be considered. In addition, in the swelling behavior of all the PL gels the polyampholyte nature appears due to electrostatic interactions of the basic groups with the C-terminal carboxyl group.
机译:我们使用四种聚赖氨酸(PLs)合成了戊二醛交联水凝胶,并测量了平衡溶胀率(Q)与pH的关系。还测量了在不存在和存在影响PL二级结构的添加剂(LiBr,甲醇和尿素)的情况下,在固定pH(11.6)下Q的温度变化。使用力平衡方法检查溶胀数据,其中基于水溶液中PL的构象特性,考虑了交联PL链之间的排斥性和吸引力相互作用。发现交联链中螺旋链段的形成对凝胶塌陷几乎没有影响,但是它们的缔合起吸引作用而引起凝胶收缩。网络内β-折叠结构的形成也充当了吸引人的相互作用。这些有吸引力的相互作用主要是由于氢键引起的,但应考虑赖氨酸侧链之间的疏水相互作用。此外,在所有PL凝胶的溶胀行为中,由于碱性基团与C末端羧基之间的静电相互作用,出现了多两性。

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