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Preparation of hydrophilic polyhydroxyalkyl glutamine crosslinked films and its biodegradability.

机译:亲水性聚羟烷基谷氨酰胺交联膜的制备及其生物降解性。

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Polybenzyl glutamate (PBLG) or polymethyl glutamate (PMLG) films have been aminolyzed with amino alcohol and crosslinked with aliphatic diamine at 60 degrees C for 48 h simultaneously which led to the formation of crosslinked films of polyhydroxyalkyl glutamine (PHAG). ATR-IR indicates that for the aminolysis of PBLG with 2-amino-1-ethanol or 3-amino-1-propanol, benzyl glutamate almost completely turned to hydroxyalkyl glutamine, however for the aminolysis of PMLG with 5-amino-1-pentanol, methyl glutamate partially turned to hydroxypentanyl glutamine. The water-swelling test shows that water-swelling ratio Q of PHAG films from amino alcohol with longer carbon chain was smaller, the PHAG films crosslinked by 1,2-diamino ethane have the higher water-swelling ratio Q, but the PHAG films crosslinked by 1,8-diamino octane have the lower water swelling ratio Q; and PHAG films with a greater amount of crosslinking agents have high crosslinking density or the low water swelling-ratio Q for same amino alcohol and diamine. It is obvious from in vitro enzymatic hydrolysis test that specimens with smaller swelling ratio Q displayed larger T(1/2), time for half weight digestion of PHAG film, that is, less biodegradability. Therefore, biodegradability of the crosslinked PHAG films can be controlled by changing amino alcohol and diamine.
机译:聚谷氨酸苄基酯(PBLG)或聚谷氨酸甲酯(PMLG)薄膜已用氨基醇进行氨基水解,并在60摄氏度下与脂肪族二胺交联48小时,这导致形成了聚羟烷基谷氨酰胺(PHAG)的交联薄膜。 ATR-1R表明,对于PBLG用2-氨基-1-乙醇或3-氨基-1-丙醇的氨解,谷氨酸苄基几乎完全转变为羟烷基谷氨酰胺,而对于PMLG用5-氨基-1-戊醇的氨解。 ,谷氨酸甲酯部分转变为羟基戊基谷氨酰胺。水溶胀试验表明,具有较长碳链的氨基醇制备的PHAG膜的水溶胀率Q较小,经1,2-二氨基乙烷交联的PHAG膜的水溶胀率Q较高,而PHAG膜的交联率较高。 1,8-二氨基辛烷具有较低的水溶胀率Q;对于相同的氨基醇和二胺,具有大量交联剂的PHAG膜具有较高的交联密度或较低的水溶胀比Q。从体外酶水解试验可以明显看出,溶胀率Q较小的样品显示出较大的T(1/2),即PHAG膜半重量消化的时间,即生物降解性较低。因此,可以通过改变氨基醇和二胺来控制交联的PHAG膜的生物降解性。

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