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等温退火对聚(丙交酯-乙交酯)(PLGA)水解降解速率的影响。

Effect of isothermal annealing on the hydrolytic degradation rate of poly(lactide-co-glycolide) (PLGA).

作者信息

Loo Say Chye Joachim, Ooi Chui Ping, Wee Siew Hong Elyna, Boey Yin Chiang Freddy

机构信息

School of Materials Engineering, Nanyang Technological University, Nanyang Avenue, Singapore 639798, Singapore.

出版信息

Biomaterials. 2005 Jun;26(16):2827-33. doi: 10.1016/j.biomaterials.2004.08.031.

Abstract

Isothermal crystallization through annealing at 115 degrees C was conducted to increase the degree of crystallinity of poly (lactide-co-glycolide) (PLGA). The maximum increase in the degree of crystallinity (approximately 21%) was achieved after 60 min of annealing. The crystal size/perfection was observed to increase with annealing time. The annealed PLGA films were then hydrolytically degraded in phosphate buffered saline solution of pH 7.4 at 37 degrees C for up to 150 days. Minimal mass loss was observed throughout the time investigated, suggesting that the samples were still in the first phase of degradation. The increase in the degree of crystallinity of the PLGA samples annealed at 15 and 30 min was found to retard their overall rate of hydrolytic degradation, when compared to those samples with higher initial crystallinity (annealed for 45 and 60 min) that had faster degradation rates. The increased degradation rate at higher crystallinity was associated with the loss of amorphous material and the formation of voids during annealing, which decreases the glass transition temperature and increases the average water uptake in the samples annealed for longer times. Therefore, the increase in degree of crystallinity is found to retard hydrolytic degradation but only to a certain extent, beyond which the formation of voids through annealing increases the rate of hydrolytic degradation.

摘要

通过在115摄氏度下退火进行等温结晶,以提高聚(丙交酯-共-乙交酯)(PLGA)的结晶度。退火60分钟后,结晶度实现了最大程度的提高(约21%)。观察到晶体尺寸/完整性随退火时间增加。然后将退火后的PLGA薄膜在37摄氏度、pH值为7.4的磷酸盐缓冲盐溶液中进行水解降解,长达150天。在所研究的整个时间段内观察到质量损失极小,这表明样品仍处于降解的第一阶段。与初始结晶度较高(退火45分钟和60分钟)且降解速度较快的样品相比,发现退火15分钟和30分钟的PLGA样品结晶度的提高会延缓其整体水解降解速率。较高结晶度下降解速率的增加与非晶态材料的损失以及退火过程中孔隙的形成有关,这降低了玻璃化转变温度并增加了长时间退火样品的平均吸水率。因此,发现结晶度的提高会延缓水解降解,但仅限于一定程度,超过该程度后,退火导致的孔隙形成会增加水解降解速率。

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