Author:
Hu Jingbo,Tan Xueying,Wang Dongwei,Li Yixuan,Liang Hongze,Peng Jiejun,Li Fengyan,Zhou Quan,Geng Peiwu,Wang Shuanghu,Yu Yue,Liu Jin
Abstract
Abstract
Background
Effective amelioration of neuronal damages in the case of cerebral ischemic stroke (CIS) is essential for the protection of brain tissues and their functional recovery. However, most drugs can not penetrate the blood–brain barrier (BBB), resulting in the poor therapeutic outcomes.
Results
In this study, the derivatization and dual targeted delivery technologies were used to actively transport antioxidant melatonin (MLT) into the mitochondria of oxidative stress-damaged cells in brain tissues. A mitochondrial targeting molecule triphenylphosphine (TPP) was conjugated to melatonin (TPP-MLT) to increase the distribution of melatonin in intracellular mitochondria with the push of mitochondrial transmembrane potential. Then, TPP-MLT was encapsulated in dual targeted micelles mediated by TGN peptide (TGNYKALHPHNG) with high affinity for BBB and SHp peptide (CLEVSRKNG) for the glutamate receptor of oxidative stress-damaged neural cells.TGN/SHp/TPP-MLT micelles could effectively scavenge the overproduced ROS to protect neuronal cells from oxidative stress injury during CIS occurrence, as reflected by the improved infarct volume and neurological deficit in CIS model animals.
Conclusions
These promising results showed this stepwise-targeting drug-loaded micelles potentially represent a significant advancement in the precise treatment of CIS.
Graphical Abstract
Funder
National Natural Science Foundation of China
Postdoctoral Science Foundation of China
Basic Public Welfare Research Program of Zhejiang province
Medical and Health Science and Technology Project of Zhejiang Province
Traditional Chinese Medicine Science and Technology Project of Zhejiang Province
Natural Science Foundation of Ningbo
Fundamental Research Funds for the Provincial Universities of Zhejiang
Fundo de Apoio ao Ensino, à Pesquisa e Extensão, Universidade Estadual de Campinas
Publisher
Springer Science and Business Media LLC
Subject
Pharmaceutical Science,Applied Microbiology and Biotechnology,Biomedical Engineering,Molecular Medicine,Medicine (miscellaneous),Bioengineering
Cited by
14 articles.
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