Department of Chemistry, Sapienza University of Rome, Piazzale A. Moro 5, I-00185 Rome, Italy.
Carbohydr Polym. 2014 Jan 30;101:96-103. doi: 10.1016/j.carbpol.2013.09.033. Epub 2013 Sep 19.
Hyaluronic acid (HA) and alginate (AL) covalent nanogels cross-linked with l-lysine ethyl ester were prepared by template chemical cross-linking of the polysaccharide in polyion complex micelle (PIC) nanoreactors. By using this method we were able to prepare HA and AL nanogels without organic solvents. PICs were prepared by using poly(ethylene oxide)-block-poly[(3-acrylamidopropyl)-trimethylammonium chloride] (PEO-b-PAMPTMA) or poly[(N-isopropylacrylamide)-block-PAMPTMA] (PNIPAAM-b-PAMPTMA). Only PNIPAAM-b-PAMPTMA block copolymers allowed to prepare PIC with small and controlled size. Short polysaccharide chains (Xn=50 and 63 for AL and HA, respectively, where Xn is the number of monosaccharidic units present in the polysaccharide) where used to optimize PIC formation. The remarkable difference in charge density and rigidity of HA and AL did not have a significant influence on the formation of PICs. PICs with small size (diameter of about 50-80 nm) and low polydispersity were obtained up to 5mg/mL of polymer. After cross-linking with l-lysine ethyl ester, the nanoreactors were dissociated by adding NaCl. The nanogels were easily purified and isolated by dialysis. The dissociation of the nanoreactors and the formation of the nanogels were confirmed by (1)H NMR, DLS, TEM and ζ-potential measurements. The size of the smallest nanogels in solution in the swollen state was 50-70 nm in presence of salt and 80-100 nm in water.
透明质酸(HA)和藻酸盐(AL)通过 l-赖氨酸乙酯共价交联纳米凝胶是通过多糖在聚离子复合物胶束(PIC)纳米反应器中的模板化学交联制备的。通过使用这种方法,我们能够在没有有机溶剂的情况下制备 HA 和 AL 纳米凝胶。PIC 是通过使用聚(环氧乙烷)-嵌段-聚[(3-丙烯酰胺丙基)-三甲基氯化铵](PEO-b-PAMPTMA)或聚[(N-异丙基丙烯酰胺)-嵌段-PAMPTMA](PNIPAAM-b-PAMPTMA)制备的。只有 PNIPAAM-b-PAMPTMA 嵌段共聚物允许制备具有小尺寸和可控尺寸的 PIC。使用短的多糖链(对于 AL 和 HA,Xn=50 和 63,其中 Xn 是多糖中存在的单糖单元的数量)来优化 PIC 的形成。HA 和 AL 的电荷密度和刚性的显著差异对 PIC 的形成没有显著影响。在高达 5mg/mL 聚合物浓度下,可获得具有小尺寸(直径约 50-80nm)和低多分散性的 PIC。用 l-赖氨酸乙酯交联后,通过添加 NaCl 使纳米反应器解离。纳米凝胶通过透析很容易被纯化和分离。通过(1)H NMR、DLS、TEM 和 ζ-电势测量证实了纳米反应器的解离和纳米凝胶的形成。在盐存在下,溶胀状态下溶液中最小纳米凝胶的尺寸为 50-70nm,在水中的尺寸为 80-100nm。