南方医科大学学报 ›› 2016, Vol. 36 ›› Issue (01): 90-.

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天门冬酰胺酶自组装空心纳米囊的药代动力学及生物等效性

晏子俊,谢江川,何丹,胡雪原,张景勍   

  • 出版日期:2016-01-20 发布日期:2016-01-20

Pharmacokinetics and bioequivalence assessment of a self-assembled asparaginase
nanocapsule in rats

  • Online:2016-01-20 Published:2016-01-20

摘要: 目的研究载带天门冬酰胺酶(AN)的自组装透明质酸-聚乙二醇(HA-g-PEG)/磺丁基-β-环糊精(S-CD)纳米囊(AHSPs)在
雄性SD大鼠体内的药代动力学和生物等效性。方法考察了AHSPs的透射电镜、粒径和Zeta电位,并分别测定大鼠静脉给予
AHSPs和游离AN后,不同时间点大鼠血浆样品中AN的活性。采用DAS 2.1.1软件计算药动学参数,对AHSPs和游离AN进行
生物等效性评价。结果经计算,AHSPs的平均粒径为413.80±10.97 nm,Zeta电位为-20.37±2.38 mV。AHSPs和游离AN的主
要药动学参数AUC(0~48 h)分别为137.34±1.82 U/mL和46.38±1.98 U/mL,AUC(0~∞)分别为164.66±6.88 U/mL和51.44±3.01 U/mL,
t1/2分别为4.62±0.60 h 和1.86±0.38 h。与游离AN比较,AHSPs 的AUC(0~48 h)、AUC(0~∞)和t1/2分别提高了2.96、3.20 和2.48 倍。
AUC(0~48 h)、AUC(0~∞)和Cmax的90%可置信区间分别为75.0%~76.5%、74.3%~76.1%、95.1%~96.7%。结论AHSPs延长了AN在大
鼠体内的生物半衰期,提高了AN在大鼠体内的生物利用度,且AHSPs与游离AN不具有生物等效性。

Abstract: Objective: To study the pharmacokinetics and bioequivalence of asparaginase loaded in hyaluronic acid-graft-poly
(ethylene glycol)/ sulfobutylether-β-cyclodextrin nanocapsules (AHSP) in SD rats. Methods The morphology of AHSP was
observed under the transmission electron microscope and the particle size and zeta potential were measured. AHSP and free
asparaginase were intravenously injected in rats, and the plasma asparaginase activity was measured at different time points
after the injections. The pharmacokinetic parameters were calculated using the software DAS 2.1.1 to assess the bioequivalence
of AHSP and free asparaginase. Results AHSP had an average particle size of 413.80±10.97 nm with a zeta potential of -20.37±
2.38 mV. The AUC(0-48 h) of AHSP and free asparaginase was 137.34±1.82 U/mL and 46.38 ±1.98 U/mL, and their AUC(0-∞) was
164.66±6.88 U/mL and 51.44±3.01 U/mL with half-lives of 4.62±0.60 h and 1.86±0.38 h, respectively. Compared with free AN,
AHSP exhibited increased AUC(0-48 h), AUC(0-∞), and half-life by 2.24, 2.55 and 2.32 folds, respectively. The 90% confidential
intervals of AUC(0-48 h), AUC(0-∞) and Cmax of the tested formulation were 75.0%-76.5% , 74.3%-76.1% , and 95.1%-96.7% ,
respectively. Conclusion AHSP can improve the bioavailability and extend the biological half-life of asparaginase in rats, and
AHSP and free asparaginase are not bioequivalent.