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Enhanced oral bioavailability of insulin using PLGA nanoparticles co-modified with cell-penetrating peptides and Engrailed secretion peptide (Sec)

机译:使用PLGA纳米粒子与穿透细胞的肽和分泌型分泌肽(Sec)共修饰,可提高胰岛素的口服生物利用度

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Abstract Biodegradable polymer nanoparticle drug carriers are an attractive strategy for oral delivery of peptide and protein drugs. However, their ability to cross the intestinal epithelium membrane is largely limited. Therefore, in the present study, cell-penetrating peptides (R8, Tat, penetratin) and a secretion peptide (Sec) with N-terminal stearylation were introduced to modify nanoparticles (NPs) on the surface to improve oral bioavailability of peptide and protein drugs. In vitro studies conducted in Caco-2 cells showed the value of the apparent permeability coefficient (Papp) of the nanoparticles co-modified with Sec and penetratin (Sec-Pen-NPs) was about two-times greater than that of the nanoparticles modified with only penetratin (Pen-NPs), while the increase of transcellular transport of nanoparticles modified together with Sec and R8 (Sec-R8-NPs), or Sec and Tat (Sec-Tat-NPs), was not significant compared with nanoparticles modified with only R8 (R8-NPs) or Tat (Tat-NPs). Using insulin as the model drug, in vivo studies performed on rats indicated that compared to Pen-NPs, the relative bioavailability of insulin for Sec-Pen-NPs was 1.71-times increased after ileal segments administration, and stronger hypoglycemic effects was also observed. Therefore, the nanoparticles co-modified with penetratin and Sec could act as attractive carriers for oral delivery of insulin.
机译:摘要生物可降解的聚合物纳米颗粒药物载体是一种用于口服肽和蛋白质药物的有吸引力的策略。但是,它们穿过肠上皮膜的能力受到很大限制。因此,在本研究中,引入了具有细胞穿透力的肽(R8,Tat,penetratin)和具有N末端硬脂酰化的分泌肽(Sec)来修饰表面的纳米颗粒(NPs),以提高肽和蛋白质药物的口服生物利用度。 。在Caco-2细胞中进行的体外研究表明,与Sec和Penetratin(Sec-Pen-NPs)共修饰的纳米颗粒的表观渗透系数(P app )的值约为两倍。大于仅用渗透素(Pen-NPs)修饰的纳米颗粒,而与Sec和R8(Sec-R8-NPs)或Sec和Tat(Sec-Tat-NPs)一起修饰的纳米颗粒的跨细胞转运增加,与仅用R8(R8-NPs)或Tat(Tat-NPs)修饰的纳米粒子相比,该值并不显着。使用胰岛素作为模型药物,在大鼠上进行的体内研究表明,与Pen-NPs相比,回肠段给药后,胰岛素对Sec-Pen-NPs的相对生物利用度提高了1.71倍,并且还观察到了更强的降血糖作用。因此,与渗透素和Sec共修饰的纳米颗粒可以作为口服胰岛素的有吸引力的载体。

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