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Comparative characterization and cytotoxicity study of TAT-peptide as potential vectors for siRNA and Dicer-substrate siRNA

机译:TAT肽作为siRNA和Dicer底物siRNA潜在载体的比较表征和细胞毒性研究

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Recently, a newly discovered Dicer-substrate siRNA (DsiRNA) demonstrates higher potency in gene silencing than siRNA but both suffer from rapid degradation, poor cellular uptake and chemical instability. Therefore, Tat-peptide was exploited to protect and facilitate their delivery into cells. In this study, Tat-peptide was complexed with siRNA or DsiRNA through simple complexation. The physicochemical properties (particle size, surface charge and morphology) of the complexes formed were then characterized. The ability of Tat-peptide to carry and protect siRNA or DsiRNA was determined by UV-Vis spectrophotometry and serum protection assay, respectively. Cytotoxicity effect of these complexes was assessed in V79 cell line. siRNA-Tat complexes had particle size ranged from 186 +/- 17.8 to 375 +/- 8.3 nm with surface charge ranged from -9.3 +/- 1.0 to +13.5 +/- 1.0 mV, depending on the Tat-to-siRNA concentration ratio. As for DsiRNA-Tat complexes, the particle size was smaller than the ones complexed with siRNA, ranging from 176 +/- 8.6 to 458 +/- 14.7 nm. Their surface charge was in the range of +27.1 +/- 3.6 to +38.1 +/- 0.9 mV. Both oligonucleotide (ON) species bound strongly to Tat-peptide, forming stable complexes with loading efficiency of more than 86%. These complexes were relatively non cytotoxic as the cell viability of similar to 90% was achieved. In conclusion, Tat-peptide has a great potential as siRNA and DsiRNA vector due to the formation of stable complexes with desirable physical characteristics, low toxicity and able to carry high amount of siRNA or DsiRNA.
机译:最近,新发现的切丁酶底物siRNA(DsiRNA)比siRNA具有更高的基因沉默能力,但都具有快速降解,细胞吸收差和化学不稳定性的缺点。因此,利用Tat-肽来保护和促进其输送到细胞中。在这项研究中,Tat肽通过简单复合与siRNA或DsiRNA进行复合。然后表征形成的配合物的物理化学性质(粒度,表面电荷和形态)。 Tat肽携带和保护siRNA或DsiRNA的能力分别通过UV-Vis分光光度法和血清保护试验确定。在V79细胞系中评估了这些复合物的细胞毒性作用。 siRNA-Tat复合物的粒径范围为186 +/- 17.8至375 +/- 8.3 nm,表面电荷范围为-9.3 +/- 1.0至+13.5 +/- 1.0 mV,具体取决于Tat-to-siRNA的浓度比。至于DsiRNA-Tat复合物,其粒径小于与siRNA复合的粒径,范围为176 +/- 8.6至458 +/- 14.7 nm。它们的表面电荷在+27.1 +/- 3.6至+38.1 +/- 0.9 mV的范围内。两种寡核苷酸(ON)物种都与Tat肽牢固结合,形成稳定的复合物,负载效率超过86%。这些复合物相对无细胞毒性,因为获得了接近90%的细胞活力。总之,由于形成具有所需物理特性,低毒性并且能够携带大量siRNA或DsiRNA的稳定复合物,Tat肽具有作为siRNA和DsiRNA载体的巨大潜力。

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