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Mesenchymal stem cells reduce long-term cognitive deficits and attenuate myelin disintegration and microglia activation following repetitive traumatic brain injury.
Wang, Lan-Wan; Chio, Chung-Ching; Chao, Chien-Ming; Chao, Pi-Yu; Lin, Mao-Tsun; Chang, Ching-Ping; Lin, Hung-Jung.
Affiliation
  • Wang LW; Department of Pediatrics, Chi Mei Medical Center, Tainan 710, Taiwan.
  • Chio CC; Department of Biotechnology and Food Technology, Southern Taiwan University of Science and Technology, Tainan 710, Taiwan.
  • Chao CM; Division of Neurosurgery, Department of Surgery, Chi Mei Medical Center, Tainan 710, Taiwan.
  • Chao PY; Department of Intensive Care Medicine, Chi Mei Medical Center, Liouying, Tainan, 73657, Taiwan.
  • Lin MT; Department of Dental Laboratory Technology, Min-Hwei College of Health Care Management, Tainan, 73657, Taiwan.
  • Chang CP; Department of Medical Research, Chi Mei Medical Center, Tainan 710, Taiwan.
  • Lin HJ; Department of Medical Research, Chi Mei Medical Center, Tainan 710, Taiwan.
Sci Prog ; 107(1): 368504241231154, 2024.
Article in En | MEDLINE | ID: mdl-38425276
ABSTRACT
The underlying mechanisms for the beneficial effects exerted by bone marrow-mesenchymal stem cells (BM-MSCs) in treating repetitive traumatic brain injury (rTBI)-induced long-term sensorimotor/cognitive impairments are not fully elucidated. Herein, we aimed to explore whether BM-MSCs therapy protects against rTBI-induced long-term neurobehavioral disorders in rats via normalizing white matter integrity and gray matter microglial response. Rats were subjected to repeated mild lateral fluid percussion on day 0 and day 3. On the fourth day post-surgery, MSCs groups received MSCs (4 × 106 cells/ml/kg, intravenously) and were assessed by the radial maze, Y maze, passive avoidance tests, and modified neurological severity scores. Hematoxylin & eosin, and Luxol fast blue stainings were used to examine the histopathology and white matter thickness. At the same time, immunofluorescence staining was used to investigate the numbers of tumor necrosis factor-alpha (TNF-α)-containing microglia in gray matter. Three to nine months after neurotrauma, rats displayed sensorimotor and cognitive impairments, reduced thickness in white matter, and over-accumulation of TNF-α-containing microglia and cellular damage in gray matter. Therapy with BM-MSCs significantly attenuated the rTBI-induced sensorimotor and cognitive impairments and all their complications. Mesenchymal stem cell therapy might accelerate the recovery of sensorimotor and cognitive impairments in rats with rTBI via normalizing myelin integrity and microglia response.
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Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Mesenchymal Stem Cells / Cognitive Dysfunction / Brain Injuries, Traumatic Limits: Animals Language: En Journal: Sci Prog Year: 2024 Document type: Article Affiliation country: Taiwán Country of publication: Reino Unido

Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Mesenchymal Stem Cells / Cognitive Dysfunction / Brain Injuries, Traumatic Limits: Animals Language: En Journal: Sci Prog Year: 2024 Document type: Article Affiliation country: Taiwán Country of publication: Reino Unido