Attenuating endothelial leakiness with self-assembled DNA nanostructures for pulmonary arterial hypertension.
Qian LiuDi WuBinfeng HeXiaotong DingYu XuYing WangMingzhou ZhangHang QianDavid Tai LeongGuan-Song WangPublished in: Nanoscale horizons (2023)
Vascular endothelium dysfunction plays an important role in oncological and pulmonary diseases. Endothelial barrier dysfunction is the initial step of pulmonary vascular remodeling (PVR) and pulmonary arterial hypertension. Upregulation of a pro-autophagy protein Atg101 in the endothelial cells triggered a cascade of intracellular events that leads to endothelial dysfunction through apoptosis. Herein, we proposed a strategy that used endothelial targeting DNA nanostructures to deliver Atg101 siRNA (siAtg101) as a safe, biocompatible "band-aid" to restore pulmonary arterial endothelial barrier integrity within the intricate milieu of pulmonary cells and the pulmonary vasculature. The siAtg101 and aptamer conjugated DNA nanostructures were found to attenuate hypoxia-induced pulmonary endothelial leakiness with surprisingly high selectivity and efficacy. Further in vivo study revealed that functionalized DNA nanostructures likewise attenuated the vascular remodeling in a monocrotaline-induced PVR mouse model. Mechanistically, functionalized DNA nanostructures suppressed PVR by knocking down Atg101, which in turn, downregulated Beclin-1 and subsequently upregulated VE-cadherin to restore endothelial cells' adherin junctions. This work opened a new window for future nanomaterial design that directly addresses the interfacial endothelial cell layer that often stands between the blood and many diseased sites of nanotherapeutic interest.
Keyphrases
- pulmonary hypertension
- endothelial cells
- pulmonary arterial hypertension
- high glucose
- pulmonary artery
- circulating tumor
- single molecule
- cell free
- oxidative stress
- mouse model
- cell cycle arrest
- vascular endothelial growth factor
- nucleic acid
- nitric oxide
- induced apoptosis
- endoplasmic reticulum stress
- prostate cancer
- poor prognosis
- gold nanoparticles
- ionic liquid
- small molecule
- coronary artery
- sensitive detection
- radical prostatectomy
- current status
- robot assisted
- tandem mass spectrometry
- liquid chromatography
- long non coding rna
- single cell
- protein protein