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Synthesis, structural characterization and properties of water-soluble N-(γ-propanoyl-amino acid)-chitosans

机译:水溶性N-(γ-丙酰基 - 氨基酸)-chitosans的合成,结构表征和性质

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摘要

Water-soluble peptide-chitosans were obtained by reaction of low-molecular-weight chitosan, having a low degree of acetylation, with peptide substituents under mild conditions. These peptide substituents were prepared by standard peptide chemistry from 3-bromopropanoic acid and tert-butyl esters of the alpha-amino acids glycine and phenylalanine. The structure of the new peptide-chitosan polymers was confirmed by proton nuclear magnetic resonance and infrared spectroscopy. The thermotropic and morphological properties of both the new peptide-chitosans and two other analogues, derived from valine and aspartic acid [synthesis reported in Batista. M. K. S., Pinto, L. F., Gomes, C. A. R., & Gomes, P. (2006). Novel highly soluble peptide-chitosan polymers: Synthesis and spectral characterization. Carbohlydrate Polymers, 64, 299-305], were evaluated by differential scanning calorimetry and scanning electron microscopy, respectively. As compared to the parent unmodified chitosan, the four peptide-chitosans had higher thermo-sensitivity, porosity and water-holding capacity, and such effects increased with the hydrophilicity of the peptide ligands. The acid-base properties of the four peptide-chitosans were also evaluated by potentiometric techniques and reflected the influence of the inserted ligands on the polymers' acidity constants. It was also possible to confirm the polymers' solubility over the 2-10 pH range. Overall. these polymers present physico-chemical properties that make them promising candidates for the design of novel drug delivery systems.
机译:通过低分子量壳聚糖的反应获得水溶性肽 - 壳聚糖,其具有低乙酰化,在温和条件下具有肽取代基。这些肽取代基通过由3-溴丙烷酸和α-氨基酸甘氨酸和苯丙氨酸的叔丁酯和叔丁基酯制备。通过质子核磁共振和红外光谱证实了新的肽 - 壳聚糖聚合物的结构。新型肽 - 壳聚糖和另外两种类似物的热致和形态特性,衍生自缬氨酸和天冬氨酸[在Batista中报道的合成。 M.K.,Pinto,Pinto,L.F.,Gomes,C. A. R.,&Gomes,P。(2006)。新型高度可溶性肽 - 壳聚糖聚合物:合成和光谱表征。通过差示扫描量热法和扫描电子显微镜评估碳化糖聚合物64,299-305]。与母体未改性的壳聚糖相比,四种肽 - 壳聚糖具有较高的热敏敏感性,孔隙率和水保持能力,并且这种效果随着肽配体的亲水性而增加。通过电位技术评估了四种肽 - 壳聚糖的酸碱性质,并反映了插入的配体对聚合物的酸度常数的影响。还可以在2-10 pH范围内确认聚合物的溶解度。总体。这些聚合物存在物理化学性质,使其成为新型药物输送系统设计的有希望的候选人。

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