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Mannosylated Chitosan Nanoparticles for Delivery of Antisense Oligonucleotides for Macrophage Targeting

机译:甘露糖基化的壳聚糖纳米粒子用于反义寡核苷酸的巨噬细胞靶向输送。

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The therapeutic potential of antisense oligonucleotides (ASODN) is primarily dependent upon its safe and efficient delivery to specific cells overcoming degradation and maximizing cellular uptakein vivo. The present study focuses on designing mannosylated low molecular weight (LMW) chitosan nanoconstructs for safe ODNs delivery by macrophage targeting. Mannose groups were coupled with LMW chitosan and characterized spectroscopically. Mannosylated chitosan ODN nanoparticles (MCHODN NPs) were formulated by self-assembled method using variousN/Pratio (moles of amine groups of MCH to phosphate moieties of ODNs) and characterized for gel retardation assay, physicochemical characteristics, cytotoxicity and transfection efficiency, and antisense assay. Complete complexation of MCH/ODN was achieved at charge ratio of 1:1 and above. On increasing theN/Pratio of MCH/ODN, particle size of the NPs decreased whereas zeta potential (ZV) increased. MCHODN NPs displayed much higher transfection efficiency into Raw 264.7 cells (bears mannose receptors) than Hela cells and no significant toxicity was observed at all MCH concentrations. Antisense assay revealed that reduction in lipopolysaccharide (LPS) induced serum TNF-αis due to antisense activity of TJU-2755 ODN (sequence complementary to 3′-UTR of TNF-α). These results suggest that MCHODN NPs are acceptable choice to improve transfection efficiencyin vitroandin vivo.
机译:反义寡核苷酸(ASODN)的治疗潜力主要取决于其安全有效地递送至克服降解并最大化体内细胞摄取的特定细胞。本研究的重点是通过巨噬细胞靶向设计甘露糖基化的低分子量(LMW)壳聚糖纳米结构,以安全地运送ODN。甘露糖基团与LMW壳聚糖偶联并通过光谱表征。甘露糖基化的壳聚糖ODN纳米颗粒(MCHODN NPs)采用各种N /比例(MCH的胺基摩尔与ODN的磷酸部分的摩尔比)通过自组装方法制备,并表征了凝胶阻滞测定,理化特性,细胞毒性和转染效率以及反义测定。 MCH / ODN的完全络合以1:1或更高的电荷比实现。随着NCH / MCH / ODN比值的增加,NPs的粒径减小,而ζ电位(ZV)增大。与Hela细胞相比,MCHODN NPs对Raw 264.7细胞(带有甘露糖受体)的转染效率要高得多,并且在所有MCH浓度下均未观察到明显的毒性。反义分析显示,脂多糖(LPS)诱导的血清TNF-α降低是由于TJU-2755 ODN(与TNF-α的3'-UTR互补)的反义活性所致。这些结果表明,MCHODN NPs是提高体外和体内转染效率的可接受选择。

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