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Systematic fabrication of chitosan nanoparticle by gamma irradiation

机译:γ射线系统制备壳聚糖纳米粒子

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The present investigation is mainly focused on the systematic preparation of chitosan nanoparticle in the potential range 1-100 nm using γ-ray irradiation. The effect of irradiation conditions in terms of physical form of chitosan, i.e. flake, colloidal and acidic solution, and γ-ray dose was studied. The molecular weights of chitosan were 10, 25, and > 1000 times reduced when irradiated with the γ-ray dose as high as 100 kGy in Chi-flake, Chi-colloid, and Chi-acid, respectively. The particle size reduced to 70 nm after being irradiated to only 10 kGy γ-rays and it showed a tendency to decrease when the γ-ray doses were increased. The γ-rays effectively induced the reduction of chitosan particle size to < 100 nm with narrow size distribution. The effective size reduction was particularly observed in Chi-colloid. Heterogeneous chemical conjugation of deoxycholic acid onto 10 kGy irradiated Chi-colloid resulted in narrow particle size as small as 50 nm.
机译:目前的研究主要集中在使用γ射线辐照系统制备电位范围为1-100 nm的壳聚糖纳米颗粒。研究了壳聚糖的物理形态即薄片,胶体和酸性溶液以及γ射线剂量对辐照条件的影响。当在片状,片状胶体和片状酸中分别以高达100 kGy的γ射线辐照量时,壳聚糖的分子量分别降低了10、25和> 1000倍。仅对10kGy的γ射线照射后,粒径减小至70nm,并且当增加γ射线剂量时,其表现出减小的趋势。 γ射线有效地诱导了壳聚糖粒径减小至<100 nm,且粒径分布较窄。在Chi-胶体中尤其观察到有效的尺寸减小。脱氧胆酸在10 kGy辐照的Chi-胶体上的异质化学共轭导致窄的粒径小至50 nm。

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