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Targeting nanoparticles to M cells with non-peptidic ligands for oral vaccination

机译:将纳米粒子靶向具有非肽配体的M细胞进行口服疫苗接种

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摘要

The presence of RGD on nanoparticles allows the targeting of β1 integrins at the apical surface of human M cells and the enhancement of an immune response after oral immunization. To check the hypothesis that non-peptidic ligands targeting intestinal M cells or APCs would be more efficient for oral immunization than RGD, novel non-peptidic and peptidic analogs (RGD peptidomimitic (RGDp), LDV derivative (LDVd) and LDV peptidomimetic (LDVp)) as well as mannose were grafted on the PEG chain of PCL–PEG and incorporated in PLGA-based nanoparticles. RGD and RGDp significantly increased the transport of nanoparticles across an in vitro model of human M cells as compared to enterocytes. RGD, LDVp, LDVd and mannose enhanced nanoparticle uptake by macrophages in vitro. The intraduodenal immunization with RGDp-, LDVd- or mannose-labeled nanoparticles elicited a higher production of IgG antibodies than the intramuscular injection of free ovalbumin or intraduodenal administration of either non-targeted or RGD-nanoparticles. Targeted formulations were also able to induce a cellular immune response. In conclusion, the in vitro transport of nanoparticles, uptake by macrophages and the immune response were positively influenced by the presence of ligands at the surface of nanoparticles. These targeted-nanoparticles could thus represent a promising delivery system for oral immunization.
机译:纳米颗粒上RGD的存在可将β1整联蛋白靶向人M细胞的顶表面,并增强口服免疫后的免疫反应。为了检验以下假设:靶向肠道M细胞或APC的非肽配体比RGD更有效地进行口服免疫,新的非肽和肽类似物(RGD肽模拟物(RGDp),LDV衍生物(LDVd)和LDV肽模拟物(LDVp)) )和甘露糖接枝到PCL–PEG的PEG链上,并掺入基于PLGA的纳米颗粒中。与肠上皮细胞相比,RGD和RGDp显着增加了跨人类M细胞体外模型的纳米颗粒运输。 RGD,LDVp,LDVd和甘露糖可增强巨噬细胞对纳米颗粒的体外吸收。与肌内注射游离卵清蛋白或十二指肠内施用非靶向或RGD纳米颗粒相比,用RGDp,LDVd或甘露糖标记的纳米颗粒进行十二指肠内免疫可产生更高的IgG抗体。靶向制剂也能够诱导细胞免疫应答。总之,纳米粒子表面的配体的存在对纳米粒子的体外运输,巨噬细胞的摄取和免疫反应产生了积极的影响。这些靶向的纳米颗粒因此可以代表有希望的口服免疫递送系统。

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