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1.
Chinese Pharmaceutical Journal ; (24): 40-45, 2016.
Artículo en Chino | WPRIM | ID: wpr-859254

RESUMEN

OBJECTIVE: To delevop a UPLC-MS method for determining the content of olein in rat plasma, and investigate the pharmacokinetics and bioavailability of nanoparticles of coix seed oil in rats. METHODS: The rats were divided into three groups randomly. They were administered orally suspension of the raw material of the coix seed oil, Kang lai te soft capsules and nanoparticles of coix seed oil, respectively. Blood samples were collected at 0.083, 0.167, 0.25, 0.5, 0.75, 1, 2, 4, 6, 8, 12, 24, 36, 48, 72, 96, and 120 h and the concentrations of olein in rat plasma were determined by UPLC-MS. The pharmacokinetic parameters were calculated by 3P97 pharmacokinetic program. RESULTS: The pharmacokinetic parameters of olein in the the raw material of coix seed oil, KLT soft capsules and nanoparticles of coix seed oil in rat plasma were as follows: ρmax were (5.43±0.45), (7.54±0.44) and (7.30±1.13) mg·L-1, respectively, with significant difference between the nanoparticles and raw material (P0.05); AUC0-∞ were (68.71±5.12), (46.61±3.86), and (178.91±6.26) mg·h·L-1, respectively, which was the highest for the nanoparticles. The relative bioavailability of olein in the nanoparticles of coix seed oil was 260.38% to the raw material and 383.84% to the common oral prepatation. CONCLUSION : The nanoparticles system can increase the bioavailability of coix seed oil and improve its biopharmaceutical property.

2.
Chinese Journal of Biotechnology ; (12): 1121-1128, 2007.
Artículo en Chino | WPRIM | ID: wpr-276150

RESUMEN

Biodiesel fuel produced with the enzyme-catalyzed esterification and transesterification of high acid value waste oil through ultrasonic assistant was explored. Propyl oleate, biodiesel, converted from high acid value waste oil and 1-proponal catalyzed with immobilized lipases from Candida antarctica and Aspergillus oryzae in conditions of ultrasonic assistant. Commercial immobilized lipase Novozym 435 from C. antarctica was used as biocatalyst catalyzing high acid value waste oil and 1-proponal esterification and transesterification to propyl oleate under the ultrasonic assistant conditions and different conditions such as lipases amounts, initiatory molar ratio of propanol to oil, frequency of ultrasonic and power of ultrasonic were investigated and optimized. It is revealed that the enzymatic activity of Novozym435 is enhanced and, in particular, enzyme-catalyzed transesterification activity is enhanced obviously under the ultrasonic assistant conditions. Low frequency and mild energy ultrasonic is a key factor for enhancing enzymatic activity, emulsifying oil-propanol system and accelerating the speed of produce diffusing in the system. Under the optimal ultrasonic assistant reaction conditions, such as Novozym435 amounts 8% by oil quantity, initiatory molar ratio of propanol to oil 3:1, frequency of ultrasonic 28 KHz, power of ultrasonic 100 W and temperature of water batch 40-45 degrees C, the conversion ratio to propyl oleate reached to 94.86% in 50 mins in comparison with the highest conversion ratio to propyl oleate 84.43% under the conventional mechanical agitation conditions. Furthermore, it is demonstrated that various short chain linear and branched alcohols (C1-C5) show high conversion ratio to fatty acid alkyl esters (biodiesel) under the optimal ultrasonic assistant reaction conditions. On the other hand, ultrasonic energy is propitious to reduce the adsorption of product propyl oleate, by-product glycerol and other emplastics in system on the surface of immobilized lipase Novzym435 and recyclable Novozym435 possess clean appearances, well decentralizations, no agglomeration and easy washing and well operational stability.


Asunto(s)
Fuentes de Energía Bioeléctrica , Catálisis , Esterificación , Gasolina , Lipasa , Química , Ultrasonido , Eliminación de Residuos Líquidos , Métodos
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