Lipid and Transcriptional Regulation in a Parkinson's Disease Mouse Model by Intranasal Vesicular and Hexosomal Plasmalogen-Based Nanomedicines.
Yu WuJieli WangYuru DengBorislav AngelovTakehiko FujinoMd Shamim HossainAngelina AngelovaPublished in: Advanced healthcare materials (2024)
Plasmalogens (vinyl-ether phospholipids) are an emergent class of lipid drugs against various diseases involving neuro-inflammation, oxidative stress, mitochondrial dysfunction, and altered lipid metabolism. They can activate neurotrophic and neuroprotective signaling pathways but low bioavailabilities limit their efficiency in curing neurodegeneration. Here, liquid crystalline lipid nanoparticles (LNPs) are created for the protection and non-invasive intranasal delivery of purified scallop-derived plasmalogens. The in vivo results with a transgenic mouse Parkinson's disease (PD) model (characterized by motor impairments and α-synuclein deposition) demonstrate the crucial importance of LNP composition, which determines the self-assembled nanostructure type. Vesicle and hexosome nanostructures (characterized by small-angle X-ray scattering) display different efficacy of the nanomedicine-mediated recovery of motor function, lipid balance, and transcriptional regulation (e.g., reduced neuro-inflammation and PD pathogenic gene expression). Intranasal vesicular and hexosomal plasmalogen-based LNP treatment leads to improvement of the behavioral PD symptoms and downregulation of the Il6, Il33, and Tnfa genes. Moreover, RNA-sequencing and lipidomic analyses establish a dramatic effect of hexosomal nanomedicines on PD amelioration, lipid metabolism, and the type and number of responsive transcripts that may be implicated in neuroregeneration.
Keyphrases
- magnetic resonance imaging
- oxidative stress
- fatty acid
- gene expression
- mouse model
- computed tomography
- signaling pathway
- high resolution
- induced apoptosis
- dna damage
- dna methylation
- cancer therapy
- ischemia reperfusion injury
- cell proliferation
- single cell
- diabetic rats
- depressive symptoms
- magnetic resonance
- dual energy
- sleep quality
- transcription factor
- blood brain barrier
- heat shock
- cerebral ischemia