a Department of Pharmaceutical Sciences School of Pharmacy , Shanghai University of Traditional Chinese Medicine , Shanghai , PR China.
b School of Pharmacy , University of Auckland , Auckland , New Zealand.
Artif Cells Nanomed Biotechnol. 2018;46(sup1):578-587. doi: 10.1080/21691401.2018.1431651. Epub 2018 Jan 29.
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 < .05). The 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 (P) 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 (IC) of NB 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.
采用生物素化脂质双层包覆介孔硅纳米粒(Bio-LB-MSNs)作为载体,提高了丹参酮 IIA(TanIIA)的口服生物利用度和抗白血病活性。与 TanIIA 粉末相比(p<.05),TanIIA@MSNs 中的 TanIIA 体外释放明显更高。与未进行生物素修饰的对照纳米载体相比,将药物载入 Bio-LB-MSNs 后,Caco-2 细胞对 TanIIA 的体外摄取增加。与 TanIIA 粉末、TanIIA@MSNs 和 TanIIA@LB-MSNs 相比,TanIIA@Bio-LB-MSNs 的表观原位渗透系数(P)分别提高了近 2.5、1.6 和 1.3 倍。在大鼠口服给予 TanIIA@Bio-LB-MSNs 后,与给予纯 TanIIA 粉末、TanIIA@MSNs 或 TanIIA@LB-MSNs 的组相比,TanIIA 的血浆浓度-时间曲线下面积(AUC)分别增加了 3.4、1.9 和 2.4 倍,表明用 MSNs 作为载体可提高药物生物利用度,并通过生物素修饰显著提高。TanIIA 载入纳米粒并修饰后,体外抗白血病活性也增强,NB 细胞的 50%抑制浓度(IC)为 6.5μM 的 TanIIA@Bio-LB-MSN。总之,Bio-LB-MSNs 是提高难溶性药物 TanIIA 口服生物利用度和抗白血病活性的一种有前途的载体。