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Difatty Acyl-Conjugated Linear and Cyclic Peptides for siRNA Delivery

机译:Difatty酰基缀合的线性和环状肽,用于siRNA递送

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A number of amphiphilic difatty acyl linear and cyclic R_(5)K_(2) peptide conjugates were synthesized by solid-phase peptide methods to enhance the interaction with the hydrophobic cellular phospholipid bilayer and to improve siRNA delivery and silencing. Binding to siRNA molecules was significantly less for the cyclic peptide conjugates. A gradual decrease was observed in the particle size of the complexes with increasing peptide/siRNA ratio for most of the synthesized peptides, suggesting the complex formation. Most of the complexes showed a particle size of less than 200 nm, which is considered an appropriate size for in vitro siRNA delivery. A number of fatty acyl-conjugated peptides, such as LP-C16 and LP-C18, displayed near complete protection against serum degradation. Flow cytometry studies demonstrated significantly higher internalization of fluorescence-labeled siRNA (FAM-siRNA) in the presence of LP-C16, LP-C18, and CP-C16 with 1,2-dioleoyl-sn-glycero-3-phosphoethanolamine (DOPE) addition. Confocal microscopy confirmed the cellular internalization of fluorescence-labeled siRNA in the presence of LP-C16 and LP-C18 with DOPE when compared with cells exposed to DOPE/FAM-siRNA. While C16- and C18-conjugated peptides (especially linear peptides) showed silencing against kinesin spindle protein (KSP) and janus kinase 2 (JAK2) proteins, the addition of DOPE enhanced the silencing efficiency significantly for all selected peptides, except for CP-C16. In conclusion, C16 and C18 difatty acyl peptide conjugates were found to enhance siRNA delivery and generate silencing of targeted proteins in the presence of DOPE. This study provides insights for the design and potential application of optimized difatty acyl peptide/lipid nanoparticles for effective siRNA delivery.
机译:通过固相肽法合成了许多两亲性双脂肪酸酰基线性和环状R_(5)K_(2)肽共轭物,以增强与疏水性细胞磷脂双层的相互作用,并改善siRNA的传递和沉默。对于环肽缀合物,与siRNA分子的结合显着减少。对于大多数合成的肽,随着肽/ siRNA比的增加,观察到复合物的粒径逐渐减小,表明形成了复合物。大多数复合物显示出小于200 nm的粒径,这被认为是体外siRNA输送的合适粒径。许多脂族酰基偶联的肽,例如LP-C16和LP-C18,显示出对血清降解的几乎完全保护。流式细胞术研究表明,在存在带有1,2-二油酰基-sn-甘油-3-磷酸乙醇胺(DOPE)的LP-C16,LP-C18和CP-C16的情况下,荧光标记siRNA(FAM-siRNA)的内在化程度显着提高加成。与暴露于DOPE / FAM-siRNA的细胞相比,共聚焦显微镜证实了在LP-C16和LP-C18中存在DOPE的情况下,荧光标记siRNA的细胞内在化。尽管C16和C18缀合的肽(特别是线性肽)显示出对驱动蛋白纺锤体纺锤体蛋白(KSP)和janus激酶2(JAK2)蛋白的沉默,但添加DOPE可以显着提高所有选定肽的沉默效率,除了CP-C16 。总之,发现在存在DOPE的情况下,C16和C18双脂肪酸酰基肽缀合物可增强siRNA传递并产生靶向蛋白的沉默。这项研究为有效的siRNA递送优化的双脂酰基肽/脂质纳米颗粒的设计和潜在应用提供了见识。

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