Biomimetic Nanosensitizer Potentiates Efficient Glioblastoma Gene-Radiotherapy through Synergistic Hypoxia Mitigation and PLK1 Silencing.
Jiawei ChenJiajunzi CuiBinbin JiaoZiyan ZhengHaiwang YuHanbing WangGuan ZhangShicong LaiZhihua GanQingsong YuPublished in: ACS applied materials & interfaces (2024)
Postoperative radiotherapy currently stands as the cornerstone of glioblastoma (GBM) treatment. Nevertheless, low-dose radiotherapy has been proven ineffective for GBM, due to hypoxia in the GBM microenvironment, which renders the resistance to radiation-induced cell death. Moreover, the overexpression of the PLK1 gene in glioma cells enhances GBM proliferation, invasion, metastasis, and resistance to radiation. This study introduced a hybrid membrane-camouflaged biomimetic lipid nanosensitizer (CNL@miPA), which efficiently encapsulated gold nanoclusters (PA) and miR-593-5p by a chimeric membrane derived from lipids, cancer cells, and natural killer cells. CNL@miPA exhibited exceptional blood-brain barrier and tumor tissue penetration, effectively ameliorating hypoxia and synergizing with radiotherapy. By enabling prolonged miRNA circulation in the bloodstream and achieving high enrichment at the tumor site, CNL@miPA significantly suppressed tumor growth in combination treatment, thereby significantly extending the survival period of treated mice. Overall, the developed biomimetic nanosensitizer represented an efficient and multifunctional targeted delivery system, offering a novel strategy for gene-radiotherapy of GBM.
Keyphrases
- radiation induced
- radiation therapy
- early stage
- blood brain barrier
- locally advanced
- low dose
- cell death
- genome wide
- copy number
- endothelial cells
- stem cells
- signaling pathway
- patients undergoing
- climate change
- cell therapy
- gene expression
- dna methylation
- escherichia coli
- sensitive detection
- high dose
- fatty acid
- genome wide identification
- insulin resistance
- skeletal muscle
- adipose tissue
- mesenchymal stem cells
- high fat diet induced
- genome wide analysis
- wild type