Polycatechol-Derived Mesoporous Polydopamine Nanoparticles for Combined ROS Scavenging and Gene Interference Therapy in Inflammatory Bowel Disease.
Liucan WangZhenqiang WangYiyang PanShuaishuai ChenXin FanXiaolong LiGuoqing ChenYuanhang MaYujiao CaiJixi HuangHua YangWeidong XiaoMin YuPublished in: ACS applied materials & interfaces (2022)
Benefiting from the evolution of nanotechnology, the combination therapy by gene interference and reactive oxygen species (ROS) scavenging are expected, which holds great potential in inflammatory bowel disease (IBD) therapy. However, the functional integration of different therapeutic modules through interface modification of gene vectors for safe and efficient treatment is urgently needed. Herein, we present a catechol chemistry-mediated core-shell nanoplatform for ROS scavenging-mediated oxidative stress alleviation and siRNA-mediated gene interference in a dextran sulfate sodium (DSS)-induced colitis model. The nanoplatform is constructed by employing mesoporous polydopamine nanoparticles (MPDA NPs) with surface modification of amines as the porous core for TNF-α-siRNA loading (31 wt %) and exerts an antioxidant function, while PDA-induced biomineralization of the calcium phosphate (CaP) coating is used as the pH-sensitive protective shell to prevent siRNA from premature release. The CaP layer degraded under weakly acidic subcellular conditions (lysosomes); thus, the synergistic integration of catechol and cation moieties on the exposed surface of MPDA resulted in an efficient lysosomal escape. Subsequently, effective ROS scavenging caused by the electron-donating ability of MPDA and efficient knocking down (40.5%) of tumor necrosis factor-α (TNF-α) via sufficient cytosolic gene delivery resulted in a synergistic anti-inflammation therapeutic effect both in vitro and in vivo . This work establishes the first paradigm of synergistic therapy in IBD by ROS scavenging and gene interference.
Keyphrases
- reactive oxygen species
- cancer therapy
- oxidative stress
- dna damage
- copy number
- combination therapy
- cell death
- genome wide
- rheumatoid arthritis
- genome wide identification
- drug delivery
- photodynamic therapy
- diabetic rats
- ionic liquid
- stem cells
- gene expression
- risk assessment
- hyaluronic acid
- cell therapy
- drug release
- wastewater treatment
- ulcerative colitis
- heat stress
- human health
- high glucose
- heat shock