鼻腔给药
中枢神经系统
神经炎症
药物输送
实验性自身免疫性脑脊髓炎
刺
药理学
神经元
神经科学
小胶质细胞
干扰素基因刺激剂
医学
鼻腔
神经系统
脊髓损伤
脊髓
全身给药
dna疫苗
促炎细胞因子
运动神经元
血脑屏障
靶向给药
药品
基因传递
转基因
生物
免疫系统
免疫学
作者
X Shen,Yuqing Wang,Yi Yang,Bicai Tang,Long Bai,He Yao,Wenjuan Ma,Yunfeng Lin
标识
DOI:10.1002/adma.202518814
摘要
ABSTRACT Intranasal administration offers a rapid and non‐invasive route to deliver therapeutics directly from the nasal cavity into the brain for treating central nervous system (CNS) disorders. However, its efficacy is hampered by limited CNS targeting efficiency and rapid clearance in the nasal microenvironment. Here, a Ca 2+ responsive alginate hydrogel drug delivery system (namely SA@T SCC ) encapsulating a STING inhibitor within a neuronal targeting aptamer‐modified DNA nanocage for intranasal administration is developed. SA@T SCC demonstrates enhanced nasal retention, sustained release, and efficient transport of cargo into the CNS, leading to robust accumulation in the brain and spinal cord of experimental autoimmune encephalomyelitis (EAE) mice, eventually promoting remyelination, suppressing neuroinflammation, and restoring motor function. Mechanistically, SA@T SCC , acting as a molecular “gardener” in the diseased CNS “ecosystem,” could directly repair “stressed plants” neurons by inhibiting STING‐autophagy‐ferroptosis, restore neuronal health instead of broadly spraying “pesticides” immunosuppressants, calm “disrupted pollinators” microglia, and reverse neuroinflammation. Despite the exploration of STING inhibition for EAE treatment, the concept of nose‐to‐brain drug delivery and neuron targeting intranasal platform enabling precise modulation of the CNS microenvironment could be further extended for other chronic neurodegenerative diseases.
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