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Biodegradable nanoparticles containing TLR3 or TLR9 agonists together with antigen enhance MHC-restricted presentation of the antigen.

机译:包含TLR3或TLR9激动剂以及抗原的可生物降解的纳米颗粒增强了MHC限制的抗原呈递。

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The effects of intraphagosomal toll-like receptor (TLR) activation on the MHC-restricted presentation of exogenous antigen were examined in dendritic cells (DCs). For phagosomal targeting, nanoparticles containing both a TLR agonist and a model antigen, ovalbumin (OVA), were prepared using biodegradable polymer poly(D,L-lactic acid-co-glycolic acid) and were then opsonized with mouse IgG. After incubating mouse DCs with the nanoparticles, the efficacy of OVA peptide presentation was evaluated using OVA-specific CD8 and CD4 T cells. Inclusion of either the TLR3 agonist poly(I:C) or the TLR9 agonist CpG oligodeoxynucleotides (ODN) significantly increased and prolonged both MHC class I- and class II-restricted OVA presentation. Accordingly, the DCs that phagocytosed the nanoparticles containing poly(I:C) or CpG ODN together with OVA efficiently induced the proliferation of OVA-specific CD8 and CD4 T cells. The potency levels of poly(I:C) and CpG ODN in increasing the MHC-restricted presentation of the exogenous antigen appeared to be similar. A combination of the 2 TLR agonists was synergistic in increasing the MHC class I-restricted, but not the class II-restricted, presentation of exogenous antigen. These results show that IgG-opsonized biodegradable nanoparticles containing both intraphagosomal TLR agonists and antigens can be efficient carrier materials in inducing antigen-specific T cell responses.
机译:在树突状细胞(DC)中检查了吞噬体内toll样受体(TLR)激活对MHC限制的外源抗原呈递的影响。对于吞噬体靶向,使用可生物降解的聚合物聚(D,L-乳酸-乙醇酸共聚物)制备同时包含TLR激动剂和模型抗原卵清蛋白(OVA)的纳米颗粒,然后与小鼠IgG调理。用纳米颗粒孵育小鼠DC后,使用OVA特异性CD8和CD4 T细胞评估OVA肽呈递的功效。包含TLR3激动剂聚(I:C)或TLR9激动剂CpG寡脱氧核苷酸(ODN)均显着增加并延长了MHC I类和II类限制的OVA呈递。因此,吞噬含有聚(I:C)或CpG ODN以及OVA的纳米颗粒的DC有效地诱导了OVA特异性CD8和CD4 T细胞的增殖。聚(I:C)和CpG ODN在增加MHC限制外源抗原呈递方面的效力水平似乎相似。 2种TLR激动剂的组合在增加MHC I类限制但非II类限制的外源抗原呈递方面具有协同作用。这些结果表明,包含吞噬体TLR激动剂和抗原的IgG调理的可生物降解纳米颗粒可以是诱导抗原特异性T细胞反应的有效载体材料。

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