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地塞米松/细胞穿透肽纳米粒对内耳治疗基因传递的影响。

The effect of dexamethasone/cell-penetrating peptide nanoparticles on gene delivery for inner ear therapy.

机构信息

Department of Chemical and Biomolecular Engineering, BK 21 Plus Program, Korea Advanced Institute of Science and Technology, Guseong-Dong, Yuseong-Gu, Daejeon.

Clinical Research Institute, St Mary's Hospital, Daejeon.

出版信息

Int J Nanomedicine. 2016 Nov 16;11:6123-6134. doi: 10.2147/IJN.S114241. eCollection 2016.

Abstract

Dexamethasone (Dex)-loaded PHEA-g-C18-Arg8 (PCA) nanoparticles (PCA/Dex) were developed for the delivery of genes to determine the synergistic effect of Dex on gene expression. The cationic PCA nanoparticles were self-assembled to create cationic micelles containing an octadecylamine (C18) core with Dex and an arginine 8 (Arg8) peptide shell for electrostatic complexation with nucleic acids (connexin 26 [] siRNA, green fluorescent protein [GFP] DNA or brain-derived neurotrophic factor [BDNF] pDNA). The PCA/Dex nanoparticles conjugated with Arg8, a cell-penetrating peptide that enhances permeability through a round window membrane in the inner ear for gene delivery, exhibited high uptake efficiency in HEI-OC1 cells. This potential carrier co-delivering Dex and the gene into inner ear cells has a diameter of 120-140 nm and a zeta potential of 20-25 mV. Different types of genes were complexed with the Dex-loaded PCA nanoparticle (PCA/Dex/gene) for gene expression to induce additional anti-inflammatory effects. PCA/Dex showed mildly increased expression of GFP and lower mRNA expression of inflammatory cytokines (IL1b, IL12, and INFr) than did Dex-free PCA nanoparticles and Lipofectamine reagent in HEI-OC1 cells. In addition, after loading siRNA onto the surface of PCA/Dex, gene expression was downregulated according to real-time polymerase chain reaction for 24 h, compared with that using Lipofectamine reagent. After loading BDNF DNA into PCA/Dex, increased expression of BDNF was observed for 30 h, and its signaling pathway resulted in an increase in phosphorylation of Akt, observed by Western blotting. Thus, Dex within PCA/Dex/gene nanoparticles created an anti-inflammatory effect and enhanced gene expression.

摘要

载有地塞米松(Dex)的 PHEA-g-C18-Arg8(PCA)纳米颗粒(PCA/Dex)被开发用于递送至确定地塞米松对基因表达的协同作用的基因。阳离子 PCA 纳米颗粒自组装形成阳离子胶束,包含一个十八烷基胺(C18)核,其中含有地塞米松和精氨酸 8(Arg8)肽壳,用于与核酸(连接蛋白 26 [siRNA]、绿色荧光蛋白 [GFP] DNA 或脑源性神经营养因子 [BDNF] pDNA)静电复合。与 Arg8 共轭的 PCA/Dex 纳米颗粒,一种穿透细胞的肽,可增强穿过内耳圆窗膜的通透性,用于基因递送至 HEI-OC1 细胞中显示出高摄取效率。这种潜在的载体共递地塞米松和基因进入内耳细胞的直径为 120-140nm,Zeta 电位为 20-25mV。不同类型的基因与载有地塞米松的 PCA 纳米颗粒(PCA/Dex/gene)复合以诱导额外的抗炎作用。与无地塞米松的 PCA 纳米颗粒和 Lipofectamine 试剂相比,PCA/Dex 显示 GFP 的表达略有增加,而炎症细胞因子(IL1b、IL12 和 INFr)的 mRNA 表达降低在 HEI-OC1 细胞中。此外,在 PCA/Dex 表面加载 siRNA 后,与使用 Lipofectamine 试剂相比,在 24 小时内下调了基因表达。在将 BDNF DNA 加载到 PCA/Dex 后,观察到 BDNF 的表达增加了 30 小时,并且其信号通路导致 Akt 的磷酸化增加,通过 Western blot 观察到。因此,PCA/Dex/gene 纳米颗粒中的地塞米松产生了抗炎作用并增强了基因表达。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/59c7/5117898/db312ffa027b/ijn-11-6123Fig2.jpg

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