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Novel monodisperse PEGtide dendrons: design fabrication and evaluation of mannose receptor-mediated macrophage targeting

机译:新型单分散聚乙二醇树突:甘露糖受体介导的巨噬细胞靶向的设计制备和评估

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摘要

Novel PEGtide dendrons of generation 1 through 5 (G1.0-5.0) containing alternating discrete poly(ethylene glycol) (dPEG) and amino acid/peptide moieties were designed and developed. To demonstrate their targeting utility as nanocarriers, PEGtide dendrons functionalized with mannose residues were developed and evaluated for macrophage targeting. PEGtide dendrons were synthesized using 9-fluorenylmethyloxycarbonyl (Fmoc) solid-phase peptide synthesis (SPPS) protocols. The N-α-Fmoc-N-ε-(5-carboxyfluorescein)-L-lysine (Fmoc-Lys(5-FAM)-OH) and monodisperse Fmoc-dPEG6-OH were sequentially coupled to Fmoc-β-Ala-resin to obtain the resin-bound intermediate Fmoc-dPEG6-Lys(5-FAM)-β-Ala >(1). G1.0 dendrons were obtained by sequentially coupling Fmoc-Lys(Fmoc)-OH, Fmoc-β-Ala-OH, and Fmoc-dPEG6-OH to >(1). Dendrons of higher generation, G2.0 to 5.0, were obtained by repeating the coupling cycles used for the synthesis of G1.0. Dendrons containing eight mannose residues (G3.0-Mannose8) were developed for mannose receptor (MR)-mediated macrophage targeting by conjugating α-D-mannopyranosylphenyl isothiocyanate to G3.0 dendrons. In the present study PEGtide dendrons up to G5.0 were synthesized. The molecular weights of the dendrons determined by MALDI-TOF were in agreement with calculated values. The hydrodynamic diameters measured using dynamic light scattering (DLS) ranged from 1 to 8 nm. Cell viability in the presence of G3.0 and G3.0-Mannose8 was assessed using the 3-(4,5-dimethylthiazol-2-yl)-2,5-diphenyltetrazolium bromide (MTT) assay and was found to be statistically indistinguishable from that of untreated cells. G3.0-Mannose8 exhibited 12-fold higher uptake than unmodified G3.0 control dendrons in MR-expressing J774.E murine macrophage-like cells. Uptake was nearly completely inhibited in the presence of 10 mg/mL mannan, a mannose analog and known MR substrate. Confocal microscopy studies demonstrated the presence of significant intracellular punctate fluorescence colocalized with a fluid endocytosis marker with little surface fluorescence in cells incubated with G3.0-Mannose8. No significant cell-associated fluorescence was observed in cells incubated with G3.0 dendrons that did not contain the targeting ligand mannose. The current studies suggest that PEGtide dendrons could be useful as nanocarriers in drug delivery and imaging applications.
机译:设计并开发了第1至第5代(G1.0-5.0)的新型PEG树枝状分子,其中包含交替的离散聚乙二醇(dPEG)和氨基酸/肽部分。为了证明其作为纳米载体的靶向用途,开发了用甘露糖残基功能化的PEG树突,并评估了其对巨噬细胞的靶向作用。使用9-芴基甲氧基羰基(Fmoc)固相肽合成(SPPS)方案合成了PEG树突。将N-α-Fmoc-N-ε-(5-羧基荧光素)-L-赖氨酸(Fmoc-Lys(5-FAM)-OH)和单分散Fmoc-dPEG6-OH顺序偶联至Fmoc-β-Ala-树脂获得与树脂结合的中间体Fmoc-dPEG6-Lys(5-FAM)-β-Ala>(1)。通过依次将Fmoc-Lys(Fmoc)-OH,Fmoc-β-Ala-OH和Fmoc-dPEG6-OH偶联至>(1)来获得G1.0树突。通过重复用于合成G1.0的偶联循环,可以获得G2.0至5.0的更高的树枝。通过将α-D-甘露聚糖基苯基异硫氰酸酯与G3.0树突缀合,开发了包含八个甘露糖残基(G3.0-Mannose8)的树突用于甘露糖受体(MR)介导的巨噬细胞靶向。在本研究中,合成了高达G5.0的PEG树突。通过MALDI-TOF测定的树枝状分子的分子量与计算值一致。使用动态光散射(DLS)测量的流体力学直径范围为1至8 nm。使用3-(4,5-二甲基噻唑-2-基)-2,5-二苯基四唑溴化物(MTT)分析评估存在G3.0和G3.0-甘露糖8时的细胞活力,发现在统计学上无法区分从未经处理的细胞。在表达MR的J774.E鼠巨噬细胞样细胞中,G3.0-甘露糖8的摄取比未修饰的G3.0对照树突高12倍。在10 mg / mL甘露聚糖,甘露糖类似物和已知MR底物的存在下,摄入几乎被完全抑制。共聚焦显微镜研究表明,在与G3.0-甘露糖8孵育的细胞中,与流体内吞标记物共定位的细胞内点状荧光明显存在,而表面荧光却很少。在与不含靶向配体甘露糖的G3.0树突孵育的细胞中,未观察到明显的细胞相关荧光。当前的研究表明,聚乙二醇树枝状分子可以用作药物递送和成像应用中的纳米载体。

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