The intestinal permeability of two flavonoid compounds liquiritin (LQ) and isoliquiritin (ILQ) was investigated using the Caco-2 cell monolayer model. In order to evaluate the permeability and predict the absorpti...The intestinal permeability of two flavonoid compounds liquiritin (LQ) and isoliquiritin (ILQ) was investigated using the Caco-2 cell monolayer model. In order to evaluate the permeability and predict the absorption mechanism of the two compounds, the study on bidirectional permeability from the apical (AP) side to the basolateral (BL) side as well as from the BL side to the AP side was carried out. The determination was performed by HPLC-UV method. And the permeability parameters, especially the apparent permeability coefficients (Papp), were then calculated. The Papp values of LQ and ILQ are (5.40±0.16)× 10^-7 and (8.69±0.15)× 10^-7 cm/s, respectively. The results of time- and concentration-dependent transport experiments indicate that both LQ and ILQ are poor absorbed mainly through passive diffusion.展开更多
The intestinal permeability of three sesquiterpene lactones, atractylenolide Ⅰ, Ⅱ, and Ⅲ, was investigated using the human Caco-2 cell monolayer model. The bidirectional permeability of the three compounds from the...The intestinal permeability of three sesquiterpene lactones, atractylenolide Ⅰ, Ⅱ, and Ⅲ, was investigated using the human Caco-2 cell monolayer model. The bidirectional permeability of the three compounds from the apical (AP) to the basolateral (BL) side and in the reserved direction was studied. The three compounds were assayed using HPLC. The Papp values of atractylenolide Ⅰ, Ⅱ, and Ⅲ were all at the level of 10^-5 cm/s, suggesting high intestinal permeability and good absorption. The bidirectional transport of the three compounds was time- and concentration-dependent, and indicated the main mechanism of the passive diffusion of the three compounds across the intestinal epithelium membrane. Moreover, atractylenolide Ⅰ might be partly actively transported.展开更多
The Caco-2 cells have been recognized as effective tools to be applied to imitate the drug absorption in human intestine for the transport of drug. In this study, Caco-2 cell monolayer model was used to study compatib...The Caco-2 cells have been recognized as effective tools to be applied to imitate the drug absorption in human intestine for the transport of drug. In this study, Caco-2 cell monolayer model was used to study compatibility of the transport of the Veratrum alkaloids in different proportions with Panax ginseng. A specific ultra-high performance liquid chromatographic-electrospray ionization-mass spectrometric(UPLC-ESI-MS) method is developed for the semi-quantitative determination of Veratrum alkaloids on intestinal transport with berberine as internal standard(IS). In the Caco-2 model constructed, three influencing factors are investigated, including time, concentration and recovery rates of the Veratrum alkaloids during the uptake from AP(apical side) to BL(basolateral side). The results suggest that the flux of Veratrum alkaloids is time dependent and concentration dependent. And the absorption of all eight Veratrum alkaloids increase after compatibility with Panax ginseng compared to the single Veratrum nigrum extraction. This research was studied from the perspective of intestinal absorption by the UPLCESI-MS method. This method was successfully applied to transport studies of the Veratrum alkaloids and the interaction mechanism between Veratrum nigrum and Panax ginseng.展开更多
The Caco-2 cells have been recognized as effective tools to be applied to imitating the drug absorption in human intestine for the transport of drug. Herein, Caco-2 cell monolayer model was used to study the transport...The Caco-2 cells have been recognized as effective tools to be applied to imitating the drug absorption in human intestine for the transport of drug. Herein, Caco-2 cell monolayer model was used to study the transport of the ginsenoside compatibility with Veratrum nigrum in different proportions. A specific high performance liquid chro- matography-electrospray ionization-mass spectrometry(HPLC-ESI-MS) method was developed for the semiquantita- tive determination of ginsenoside in intestinal transport with Dioscin as an internal standard. For the Caco-2 model constructed, two influencing factors were investigated, including time and concentration. The results suggest that the absorption of ginsenoside Re, Rgl, Rbl, Rc, Rb2 and Rd are time- and concentration-dependent and the excretions of Rbl, Rc, Rb2 and Rd have a relatronship with some transport proteins. The bioavailability of the ginsenosides has reduced compared to the single Panax ginseng extract when compatibility with a certain amount of Veratrum nigrum.展开更多
基金National New Drug R & D Program(Grant No. 2009ZX09301-010)National High Technology Program(Grant No. 2002AA2Z343C,2004AA2Z3783) of ChinaAbility Enhancing Project of National Science Fund for Talent Training in Basic Science(Grant No.J0830836)
文摘The intestinal permeability of two flavonoid compounds liquiritin (LQ) and isoliquiritin (ILQ) was investigated using the Caco-2 cell monolayer model. In order to evaluate the permeability and predict the absorption mechanism of the two compounds, the study on bidirectional permeability from the apical (AP) side to the basolateral (BL) side as well as from the BL side to the AP side was carried out. The determination was performed by HPLC-UV method. And the permeability parameters, especially the apparent permeability coefficients (Papp), were then calculated. The Papp values of LQ and ILQ are (5.40±0.16)× 10^-7 and (8.69±0.15)× 10^-7 cm/s, respectively. The results of time- and concentration-dependent transport experiments indicate that both LQ and ILQ are poor absorbed mainly through passive diffusion.
基金"Major New Medicine Project"in National Science and Technology Major Project of China(Grant No.2009ZX09301-010)
文摘The intestinal permeability of three sesquiterpene lactones, atractylenolide Ⅰ, Ⅱ, and Ⅲ, was investigated using the human Caco-2 cell monolayer model. The bidirectional permeability of the three compounds from the apical (AP) to the basolateral (BL) side and in the reserved direction was studied. The three compounds were assayed using HPLC. The Papp values of atractylenolide Ⅰ, Ⅱ, and Ⅲ were all at the level of 10^-5 cm/s, suggesting high intestinal permeability and good absorption. The bidirectional transport of the three compounds was time- and concentration-dependent, and indicated the main mechanism of the passive diffusion of the three compounds across the intestinal epithelium membrane. Moreover, atractylenolide Ⅰ might be partly actively transported.
基金supported by the National Natural Science Foundation of China (Nos. 81073040, 81274046, 81173507)the National Basic Research Program of China (National 973 Program) (Nos. 2011CB505300, 2011CB505305)Jilin Province Science and Technology Agency-funded projects (No.20150414040GH)
文摘The Caco-2 cells have been recognized as effective tools to be applied to imitate the drug absorption in human intestine for the transport of drug. In this study, Caco-2 cell monolayer model was used to study compatibility of the transport of the Veratrum alkaloids in different proportions with Panax ginseng. A specific ultra-high performance liquid chromatographic-electrospray ionization-mass spectrometric(UPLC-ESI-MS) method is developed for the semi-quantitative determination of Veratrum alkaloids on intestinal transport with berberine as internal standard(IS). In the Caco-2 model constructed, three influencing factors are investigated, including time, concentration and recovery rates of the Veratrum alkaloids during the uptake from AP(apical side) to BL(basolateral side). The results suggest that the flux of Veratrum alkaloids is time dependent and concentration dependent. And the absorption of all eight Veratrum alkaloids increase after compatibility with Panax ginseng compared to the single Veratrum nigrum extraction. This research was studied from the perspective of intestinal absorption by the UPLCESI-MS method. This method was successfully applied to transport studies of the Veratrum alkaloids and the interaction mechanism between Veratrum nigrum and Panax ginseng.
基金Supported by the National Natural Science Foundation of China(Nos.81073040, 81274046, 81173507), the Jilin Provincial Science and Technology Agency-funded Projects, China(No.20150414040GH) and the National Basic Research Program of China(Nos.2011 CB505300, 2011 CB505305).
文摘The Caco-2 cells have been recognized as effective tools to be applied to imitating the drug absorption in human intestine for the transport of drug. Herein, Caco-2 cell monolayer model was used to study the transport of the ginsenoside compatibility with Veratrum nigrum in different proportions. A specific high performance liquid chro- matography-electrospray ionization-mass spectrometry(HPLC-ESI-MS) method was developed for the semiquantita- tive determination of ginsenoside in intestinal transport with Dioscin as an internal standard. For the Caco-2 model constructed, two influencing factors were investigated, including time and concentration. The results suggest that the absorption of ginsenoside Re, Rgl, Rbl, Rc, Rb2 and Rd are time- and concentration-dependent and the excretions of Rbl, Rc, Rb2 and Rd have a relatronship with some transport proteins. The bioavailability of the ginsenosides has reduced compared to the single Panax ginseng extract when compatibility with a certain amount of Veratrum nigrum.