The exo‐microRNA (miRNA) signaling pathways in pathogenesis and treatment of stroke diseases: Emphasize on mesenchymal stem cells (MSCs)

Author:

Farahmand Yalda1,Nabiuni Mohsen2,Vafaei Mastanabad Mahsa3,Sheibani Mehrnaz4,Mahmood Bashar Shaker5,Obayes Ali Mohammed6,Asadi Fatemeh78ORCID,Davallou Rosa9

Affiliation:

1. School of Medicine Terhan University of Medical Sciences Tehran Iran

2. Neurosurgery Department, Faculty of Medicine Iran University of Medical Sciences Tehran Iran

3. Neurosurgery Department, Faculty of Medicine Qazvin University of Medical Science Qazvin Iran

4. Division of Pediatric Neurology University of Texas Southwestern Medical Center Dallas Texas USA

5. Department of Anesthesia Techniques Al‐Noor University College Nineveh Iraq

6. College of Nursing National University of Science and Technology Dhi Qar Iraq

7. Department of Genetics, Fars Science and Research Branch Islamic Azad University Marvdasht Iran

8. Department of Genetics, Marvdasht Branch Islamic Azad University Marvdasht Iran

9. Department of Neurology, Sayyad Shirazi Hospital Golestan University of Medical Siences Gorgan Iran

Abstract

AbstractA major factor in long‐term impairment is stroke. Patients with persistent stroke and severe functional disabilities have few therapy choices. Long noncoding RNAs (lncRNAs) may contribute to the regulation of the pathophysiologic processes of ischemic stroke as shown by altered expression of lncRNAs and microRNA (miRNAs) in blood samples of acute ischemic stroke patients. On the other hand, multipotent mesenchymal stem cells (MSCs) increase neurogenesis, and angiogenesis, dampen neuroinflammation, and boost brain plasticity to improve functional recovery in experimental stroke models. MSCs can be procured from various sources such as the bone marrow, adipose tissue, and peripheral blood. Under the proper circumstances, MSCs can differentiate into a variety of mature cells, including neurons, astrocytes, and oligodendrocytes. Accordingly, the capability of MSCs to exert neuroprotection and also neurogenesis has recently attracted more attention. Nowadays, lncRNAs and miRNAs derived from MSCs have opened new avenues to alleviate stroke symptoms. Accordingly, in this review article, we examined various studies concerning the lncRNAs and miRNAs' role in stroke pathogenesis and delivered an overview of the therapeutic role of MSC‐derived miRNAs and lncRNAs in stroke conditions.

Publisher

Wiley

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