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Stability Intracellular Delivery and Release of siRNA from Chitosan Nanoparticles Using Different Cross-Linkers

机译:使用不同的交联剂从壳聚糖纳米颗粒中稳定胞内递送和释放siRNA

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摘要

Chitosan (CS) nanoparticles have been extensively studied for siRNA delivery; however, their stability and efficacy are highly dependent on the types of cross-linker used. To address this issue, three common cross-linkers; tripolyphosphate (TPP), dextran sulphate (DS) and poly-D-glutamic acid (PGA) were used to prepare siRNA loaded CS-TPP/DS/PGA nanoparticles by ionic gelation method. The resulting nanoparticles were compared with regard to their physicochemical properties including particle size, zeta potential, morphology, binding and encapsulation efficiencies. Among all the formulations prepared with different cross linkers, CS-TPP-siRNA had the smallest particle size (ranged from 127 ± 9.7 to 455 ± 12.9 nm) with zeta potential ranged from +25.1 ± 1.5 to +39.4 ± 0.5 mV, and high entrapment (>95%) and binding efficiencies. Similarly, CS-TPP nanoparticles showed better siRNA protection during storage at 4˚C and as determined by serum protection assay. TEM micrographs revealed the assorted morphology of CS-TPP-siRNA nanoparticles in contrast to irregular morphology displayed by CS-DS-siRNA and CS-PGA-siRNA nanoparticles. All siRNA loaded CS-TPP/DS/PGA nanoparticles showed initial burst release followed by sustained release of siRNA. Moreover, all the formulations showed low and concentration-dependent cytotoxicity with human colorectal cancer cells (DLD-1), in vitro. The cellular uptake studies with CS-TPP-siRNA nanoparticles showed successful delivery of siRNA within cytoplasm of DLD-1 cells. The results demonstrate that ionically cross-linked CS-TPP nanoparticles are biocompatible non-viral gene delivery system and generate a solid ground for further optimization studies, for example with regard to steric stabilization and targeting.
机译:壳聚糖(CS)纳米粒子已被广泛研究用于siRNA的传递。但是,它们的稳定性和功效高度取决于所用交联剂的类型。为了解决这个问题,使用了三种常见的交联剂。分别用三聚磷酸盐(TPP),硫酸葡聚糖(DS)和聚D-谷氨酸(PGA)通过离子凝胶法制备了载有siRNA的CS-TPP / DS / PGA纳米粒子。比较了所得纳米颗粒的理化性质,包括粒径,ζ电势,形态,结合和包封效率。在使用不同交联剂制备的所有制剂中,CS-TPP-siRNA的粒径最小(范围为127±9.7至455±12.9 nm),ζ电位范围为+25.1±1.5至+39.4±0.5 mV,且高截留率(> 95%)和结合效率。同样,CS-TPP纳米颗粒在4°C储存期间显示出更好的siRNA保护,并通过血清保护测定法确定。 TEM显微照片揭示了CS-TPP-siRNA纳米颗粒的各种形态,而CS-DS-siRNA和CS-PGA-siRNA纳米颗粒显示出不规则的形态。所有装载siRNA的CS-TPP / DS / PGA纳米颗粒均显示出初始爆发释放,然后持续释放siRNA。此外,所有制剂在体外对人结肠直肠癌细胞(DLD-1)均显示出低浓度依赖性和浓度依赖性的细胞毒性。用CS-TPP-siRNA纳米颗粒进行的细胞摄取研究表明,siRNA在DLD-1细胞的细胞质内成功传递。结果表明,离子交联的CS-TPP纳米颗粒是生物相容性非病毒基因递送系统,并为进一步优化研究(例如在空间稳定和靶向方面)奠定了坚实的基础。

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