Department of Chemical & Biomolecular Engineering, The Johns Hopkins University, 3400 N Charles St, Baltimore, MD 21218, USA.
J Control Release. 2012 Jan 10;157(1):72-9. doi: 10.1016/j.jconrel.2011.08.031. Epub 2011 Aug 31.
Highly compacted DNA nanoparticles, composed of single molecules of plasmid DNA compacted with block copolymers of poly-l-lysine and 10kDa polyethylene glycol (CK(30)PEG(10k)), mediate effective gene delivery to the brain, eyes and lungs in vivo. Nevertheless, we found that CK(30)PEG(10k) DNA nanoparticles are immobilized by mucoadhesive interactions in sputum that lines the lung airways of patients with cystic fibrosis (CF), which would presumably preclude the efficient delivery of cargo DNA to the underlying epithelium. We previously found that nanoparticles can rapidly penetrate human mucus secretions if they are densely coated with low MW PEG (2-5kDa), whereas nanoparticles with 10kDa PEG coatings were immobilized. We thus sought to reduce mucoadhesion of DNA nanoparticles by producing CK(30)PEG DNA nanoparticles with low MW PEG coatings. We examined the morphology, colloidal stability, nuclease resistance, diffusion in human sputum and in vivo gene transfer of CK(30)PEG DNA nanoparticles prepared using various PEG MWs. CK(30)PEG(10k) and CK(30)PEG(5k) formulations did not aggregate in saline, provided partial protection against DNase I digestion and exhibited the highest gene transfer to lung airways following inhalation in BALB/c mice. However, all DNA nanoparticle formulations were immobilized in freshly expectorated human CF sputum, likely due to inadequate PEG surface coverage.
高度紧凑的 DNA 纳米颗粒由单链质粒 DNA 与聚-l-赖氨酸和 10kDa 聚乙二醇的嵌段共聚物(CK(30)PEG(10k))压缩而成,可有效将基因递送至体内的脑、眼和肺。然而,我们发现 CK(30)PEG(10k) DNA 纳米颗粒会通过粘弹性相互作用固定在囊性纤维化(CF)患者的肺气道分泌物(即痰)中,这可能会阻止有效将货物 DNA 递送至上皮细胞下方。我们之前发现,如果纳米颗粒被密集地涂覆低分子量 PEG(2-5kDa),它们可以迅速穿透人体粘液分泌物,而涂覆有 10kDa PEG 涂层的纳米颗粒则被固定。因此,我们试图通过制备具有低分子量 PEG 涂层的 CK(30)PEG DNA 纳米颗粒来减少 DNA 纳米颗粒的粘弹性。我们研究了使用不同 PEG MW 制备的 CK(30)PEG DNA 纳米颗粒的形态、胶体稳定性、核酸酶抗性、在人痰中的扩散以及体内基因转移。CK(30)PEG(10k)和 CK(30)PEG(5k)制剂在盐水中不聚集,对 DNAse I 消化提供部分保护,并在 BALB/c 小鼠吸入后显示出最高的肺气道基因转移。然而,所有 DNA 纳米颗粒制剂都在新鲜咳出的 CF 患者痰中固定,可能是由于 PEG 表面覆盖不足。