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首页> 外文期刊>International Journal of Nanomedicine >Impact Of Penetratin Stereochemistry On The Oral Bioavailability Of Insulin-Loaded Solid Lipid Nanoparticles
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Impact Of Penetratin Stereochemistry On The Oral Bioavailability Of Insulin-Loaded Solid Lipid Nanoparticles

机译:穿刺素立体化学对胰岛素加载固体脂质纳米粒子口腔生物利用度的影响

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Purpose: This study evaluated the stereoisomeric effect of L- and D-penetratin—cell-penetrating peptides (CPPs)—incorporated insulin-loaded solid lipid nanoparticles (INS-SLNs) on the bioavailability (BA) of oral insulin (INS). Methods: Insulin-loaded solid nanoparticles, L-penetratin-INS-SLNs (LP-INS-SLNs), and D-penetratin-INS-SLNs (DP-INS-SLNs) were formulated by double emulsification. The developed SLNs were evaluated for particle size, zeta potential (ZP), and drug encapsulation and subjected to differential scanning calorimetry (DSC), Fourier transform infrared spectroscopy (FTIR), and evaluated for stability against enzymatic degradation in rat intestinal fluid. Finally, the SLNs were administered to rats to evaluate the BA of INS-SLNs that contained L- and D-penetratin. Results: The mean particle size, PDI, and ZP values of INS-SLNs, LP-INS-SLNs, and DP-INS-SLNs ranged from 618.5 to 973.0 nm, 0.227 to 0.734, and ?17.0 to ?23.7 mV, respectively. The encapsulation efficiency (%EE) and drug loading (%DL) of INS-SLNs, LP-INS-SLNs, and DP-INS-SLNs ranged from 59.03% to 67.42% and from 1.62% to 1.82%, respectively. Differential scanning calorimetry and FTIR analyses indicated that INS was successfully encapsulated in SLNs. Enzymatic degradation of DP-INS-SLNs was slower in intestinal fluid, and the half-life (tsub1/2/sub) was significantly prolonged, compared to all other SLNs. The pharmacological availability (PA) and BA of orally administered LP-INS-SLNs, which were the most effective SLNs, were 13.1% and 15.7% relative to s.c. administration, respectively. Conclusion: Penetratin stereochemistry significantly impacted oral BA of INS-SLNs, which are promising carriers for oral INS administration.
机译:目的:该研究评估了L-和D-胰蛋白 - 细胞穿透肽(CPP)的立体异构体效应(CPP) - 丙二醇蛋白负载的固体脂质纳米颗粒(INS-SLNS)对口服胰岛素(INS)的生物利用度(BA)。方法:通过双乳化配制胰岛素负载固体纳米颗粒,L-胰蛋白 - 插入式SLN(LP-INS-SLNS(LP-INS-SLNS)和D-苯乙丁素 - INS-SLNS(DP-INS-SLNS)。评估开发的SLNS针对粒度,Zeta电位(ZP)和药物包封,并进行差扫描量热法(DSC),傅里叶变换红外光谱(FTIR),并评估大鼠肠液中酶促降解的稳定性。最后,将SLNS施用于大鼠,以评估含有L-和D-胰蛋白的INS-SLNS的BA。结果:INS-SLNS,LP-INS-SLNS和DP-INS-SLN的平均粒度,PDI和ZP值范围为618.5至973.0nm,0.227至0.734,分别为17.0至23.7 mV。 INS-SLNS,LP INS-SLNS和DP-INS-SLN的封装效率(%EE)和药物负载(%DL)分别为59.03%至67.42%,分别为1.62%至1.82%。差分扫描量热法和FTIR分析表明INS已成功封装在SLN中。与所有其他SLN相比,DP-INS-SLNS的酶促降解在肠液中较慢,半衰期(T 1/2 )显着延长。对口服施用的LP INS-SLN的药理可用性(PA)和BA,其是最有效的SLNS,相对于S.C为13.1%和15.7%。分别管理。结论:Penetratin Stereochemistry显着影响了Ins-Slns的口头,这是口头管理人员的承诺。

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