首页> 外文期刊>Nanobiomedicine >Bioavailability of Orally Delivered Alpha-Tocopherol by Poly(Lactic-Co-Glycolic) Acid (PLGA) Nanoparticles and Chitosan Covered PLGA Nanoparticles in F344 Rats:
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Bioavailability of Orally Delivered Alpha-Tocopherol by Poly(Lactic-Co-Glycolic) Acid (PLGA) Nanoparticles and Chitosan Covered PLGA Nanoparticles in F344 Rats:

机译:聚乳酸-乙醇酸(PLGA)纳米颗粒和壳聚糖覆盖的PLGA纳米颗粒在F344大鼠中口服递送α-生育酚的生物利用度:

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It is hypothesized that the bioavailability of αT (alpha-tocopherol), an antioxidant, can be improved when delivered by poly(lactic-co-glycolic) acid (PLGA) nanoparticles (NPs) and chitosan covered PLGA nanoparticles (PLGA-Chi NPs), and that the mucoadhesive properties of chitosan may enhance absorption of αT. PLGA and PLGA-Chi NPs were characterized by measuring entrapment efficiency, size, polydispersity, and zeta potential. Nanoparticle physical stability, chemical stability of entrapped αT, and release kinetics were also measured. Pharmacokinetic studies were conducted by administering PLGA (αT) NPs, PLGA-Chi (αT) NPs, and free αT via oral gavage in rats. The size and zeta potential of the two particle systems were 97.87 ± 2.63 nm and ?36.2 ± 1.31 mV for PLGA(αT) NPs, and 134 ± 2.05 nm and 38.0 ± 2.90 mV for PLGA-Chi (αT) nanoparticles in DI water. The particle systems showed to be stable during various in vitro assays. Bioavailability of nanodelivered αT was improved compared to the free αT, by 170% and 121% for PLGA and PLGA-Chi NPs, respectively. It was concluded that while chitosan did not further improved bioavailability of αT, PLGA NPs protected the entrapped drug from the GI environment degradation and proved to be an effective delivery system for αT.
机译:假设通过聚乳酸-乙醇酸(PLGA)纳米颗粒(NPs)和壳聚糖覆盖的PLGA纳米颗粒(PLGA-Chi NPs)可以提高抗氧化剂αT(α-生育酚)的生物利用度。 ,并且壳聚糖的粘膜粘附特性​​可能会增强αT的吸收。 PLGA和PLGA-Chi NPs通过测量包封率,尺寸,多分散性和Zeta电位来表征。还测量了纳米粒子的物理稳定性,截留的αT的化学稳定性和释放动力学。通过在大鼠中通过管饲法给予PLGA(αT)NP,PLGA-Chi(αT)NP和游离αT进行药代动力学研究。对于PLGA(αT)NPs,两个粒子系统的大小和zeta电位分别为97.87±2.63 nm和?36.2±1.31 mV,对于DIGA水中的PLGA-Chi(αT)纳米粒子,则为134±2.05 nm和38.0±2.90 mV。在各种体外测定中,颗粒系统显示出稳定的性能。与游离αT相比,纳米释放αT的生物利用度得到了提高,PLGA和PLGA-Chi NP分别提高了170%和121%。结论是,虽然壳聚糖不能进一步提高αT的生物利用度,但PLGA NPs可以保护包裹的药物免于GI环境降解,并被证明是αT的有效递送系统。

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