| Literature DB >> 35358733 |
Jingqing Yao1, Xinyu Feng1, Xinyu Dai2, Gang Peng3, Zhirui Guo4, Zhengxia Liu4, Min Wang2, Wenjun Guo2, Peng Zhang5, Yuntao Li6.
Abstract
Glioblastoma (GBM) is the most fatal and common type of primary malignant tumors in central nervous system. Chemotherapy drugs are difficult to reach the encephalic region effectively due to blood-brain barrier (BBB), but functional nanoparticle drug carriers can help to solve the problem. Herein, we developed a controllable drug carrier called temozolomide magnetic temperature-sensitive liposomes (TMZ/Fe-TSL) to investigate its feasibility and molecular mechanisms on GBM. Our research found TMZ/Fe-TSL exposed to alternating magnetic field (AMF) could induce significantly GBM cell death and promote the production of ROS. It also showed that the expression of NLRP3, CASP1 and N-GSDMD was upregulated compared to the control group, while the expression of CASP3 showed a reverse change. The results indicated that TMZ/Fe-TSL exposed to the AMF was capable of inducing GBM cells death. And the way and mechanisms of cell death may involve in ROS and pyroptosis, but not apoptosis.Entities:
Keywords: Glioblastoma; Pyroptosis; Temozolomide; Temperature-sensitive liposomes
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Year: 2022 PMID: 35358733 DOI: 10.1016/j.nano.2022.102554
Source DB: PubMed Journal: Nanomedicine ISSN: 1549-9634 Impact factor: 5.307