Small extracellular vesicles secreted by induced pluripotent stem cell-derived mesenchymal stem cells improve postoperative cognitive dysfunction in mice with diabetes
Author:
Publisher
Medknow
Subject
Developmental Neuroscience
Reference56 articles.
1. Alvarez-Erviti L, Seow Y, Yin H, Betts C, Lakhal S, Wood MJ (2011) Delivery of siRNA to the mouse brain by systemic injection of targeted exosomes. Nat Biotechnol 29:341-345.
2. Biessels GJ, Whitmer RA (2020) Cognitive dysfunction in diabetes: how to implement emerging guidelines. Diabetologia 63:3-9.
3. Boese AC, Hamblin MH, Lee JP (2020) Neural stem cell therapy for neurovascular injury in Alzheimer’s disease. Exp Neurol 324:113112.
4. Callisaya ML, Beare R, Moran C, Phan T, Wang W, Srikanth VK (2019) Type 2 diabetes mellitus, brain atrophy and cognitive decline in older people: a longitudinal study. Diabetologia 62:448-458.
5. Chen B, Sun Y, Zhang J, Zhu Q, Yang Y, Niu X, Deng Z, Li Q, Wang Y (2019) Human embryonic stem cell-derived exosomes promote pressure ulcer healing in aged mice by rejuvenating senescent endothelial cells. Stem Cell Res Ther 10:142.
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