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首页> 外文期刊>Artificial cells, nanomedicine, and biotechnology. >Biotinylated-lipid bilayer coated mesoporous silica nanoparticles for improving the bioavailability and anti-leukaemia activity of Tanshinone IIA
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Biotinylated-lipid bilayer coated mesoporous silica nanoparticles for improving the bioavailability and anti-leukaemia activity of Tanshinone IIA

机译:生物素化脂质双层包覆的介孔二氧化硅纳米颗粒,用于改善丹参酮IIA的生物利用度和抗白血病活性

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The oral bioavailability and anti-leukaemia activity of Tanshinone IIA (TanIIA) were enhanced by using biotinylated-lipid bilayer coated mesoporous silica nanoparticles (Bio-LB-MSNs) as a vehicle. The in vitro release of TanIIA from TanIIA@MSNs was significantly higher than that of the TanIIA powder (p?in vitro cellular uptake of TanIIA by Caco-2 was increased by loading drug into the Bio-LB-MSNs more than those of the compared nanovehicles without biotin modification. The apparent in situ permeability coefficient (Papp) of TanIIA@Bio-LB-MSNs showed nearly 2.5-, 1.6- and 1.3-fold improvement compared with the TanIIA powder, TanIIA@MSNs and TanIIA@LB-MSNs. Following oral administration of TanIIA@Bio-LB-MSNs in rats, the area under the plasma concentration–time curves (AUC) of TanIIA was 3.4-, 1.9- and 2.4-fold larger than those in the groups received a pure TanIIA powder, TanIIA@MSNs or TanIIA@LB-MSNs, indicating that drug bioavailability was enhanced by using MSNs as a vehicle, and further improved significantly through biotin modification. The in vitro anti-leukaemia activity of TanIIA was also enhanced after being loaded into nanoparticles and modification, with 50% inhibitive concentration (IC50) of NB4 cells at 6.5?μM for TanIIA@Bio-LB-MSN. In conclusion, Bio-LB-MSNs are a promising vehicle to improve the oral bioavailability and anti-leukaemia activity of the poorly water-soluble drug TanIIA.
机译:丹参酮IIA(TanIIA)的口服生物利用度和抗白血病活性通过使用生物素化脂质双层包被的介孔二氧化硅纳米颗粒(Bio-LB-MSNs)作为媒介物得到增强。 TanIIA @ MSNs的TanIIA的体外释放显着高于TanIIA粉末(通过将药物加载到Bio-LB-MSNs中,药物比Caco-2增加了Caco-2对TanIIA的体外细胞吸收增加了) TanIIA @ Bio-LB-MSNs的表观原位渗透系数(Papp)与TanIIA粉末,TanIIA @ MSNs和TanIIA @ LB-MSNs相比提高了近2.5倍,1.6倍和1.3倍。在大鼠中口服TanIIA @ Bio-LB-MSNs后,TanIIA的血浆浓度-时间曲线下面积(AUC)比接受纯TanIIA粉末的组分别大3.4、1.9和2.4倍, TanIIA @ MSNs或TanIIA @ LB-MSNs,表明以MSNs为载体提高了药物的生物利用度,并通过生物素修饰进一步提高了药物的生物利用度;将TanIIA装入纳米颗粒并进行修饰后,其体外抗白血病活性也得到了增强。 ,具有50%抑制性TanIIA @ Bio-LB-MSN的浓度为6.5?μM的NB4细胞浓度(IC50)。总之,Bio-LB-MSNs是改善水溶性差的药物TanIIA的口服生物利用度和抗白血病活性的一种有前途的载体。

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