Sreeram Kalarical Janardhanan, Yamini Shrivastava H, Nair Balachandran Unni
Chemical Laboratory, Central Leather Research Institute, Adyar, Chennai 600 020, India.
Biochim Biophys Acta. 2004 Jan 22;1670(2):121-5. doi: 10.1016/j.bbagen.2003.11.001.
The interactions between the polysaccharide alginate and iron(III) were investigated. The solution properties were studied through pH-metry, viscometry, zeta potential and particle size measurements. In the presence of alginate, iron(III) was stabilized and no precipitation was observed. Studies indicate that iron(III)-alginate system was more stable than iron(III) or alginate alone. The binding constant is of the order of 10(4) M(-1). A case for 'site binding model' for the interaction between alginate and Fe(III) has been made based on the studies using circular dichroism and zeta potential experiments. The number of binding sites per molecule of alginate has been estimated to be 66. This indicates that the alginate can bind more number of Fe(III) ions and thus provide a stable complex which can find wide industrial applications.
研究了多糖藻酸盐与铁(III)之间的相互作用。通过pH测定法、粘度测定法、zeta电位和粒度测量研究了溶液性质。在藻酸盐存在下,铁(III)得到稳定,未观察到沉淀。研究表明,铁(III)-藻酸盐体系比单独的铁(III)或藻酸盐更稳定。结合常数约为10(4)M(-1)。基于使用圆二色性和zeta电位实验的研究,提出了藻酸盐与Fe(III)相互作用的“位点结合模型”。据估计,每分子藻酸盐的结合位点数量为66个。这表明藻酸盐可以结合更多数量的Fe(III)离子,从而提供一种稳定的复合物,可在广泛的工业应用中找到用途。