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Transplantation of human dental pulp stem cells ameliorates brain damage following acute cerebral ischemia

牙髓干细胞 医学 移植 神经保护 缺血 再灌注损伤 神经炎症 冲程(发动机) 药理学 麻醉 病理 炎症 心脏病学 内科学 间充质干细胞 工程类 机械工程
作者
Chikako Nito,Kota Sowa,Masataka Nakajima,Yuki Sakamoto,Satoshi Suda,Yasuhiro Nishiyama,Aki Nakamura-Takahashi,Yuko Nitahara‐Kasahara,Masayuki Ueda,Takashi Okada,Kazumi Kimura
出处
期刊:Biomedicine & Pharmacotherapy [Elsevier BV]
卷期号:108: 1005-1014 被引量:71
标识
DOI:10.1016/j.biopha.2018.09.084
摘要

Numerous experimental studies have shown that cellular therapy, including human dental pulp stem cells (DPSCs), is an attractive strategy for ischemic brain injury. Herein, we examined the effects of intravenous DPSC administration after transient middle cerebral artery occlusion in rats. Male Sprague-Dawley rats received a transient 90 min middle cerebral artery occlusion. DPSCs (1 × 106 cells) or vehicle were administered via the femoral vein at 0 h or 3 h after ischemia-reperfusion. PKH26, a red fluorescent cell linker, was used to track the transplanted cells in the brain. Infarct volume, neurological deficits, and immunological analyses were performed at 24 h and 72 h after reperfusion. PKH26-positive cells were observed more frequently in the ipsilateral than the contralateral hemisphere. DPSCs transplanted at 0 h after reperfusion significantly reduced infarct volume and reversed motor deficits at 24 h and 72 h recovery. DPSCs transplanted at 3 h after reperfusion also significantly reduced infarct volume and improved motor function compared with vehicle groups at 24 h and 72 h recovery. Further, DPSC transplantation significantly inhibited microglial activation and pro-inflammatory cytokine expression compared with controls at 72 h after reperfusion. Moreover, DPSCs attenuated neuronal degeneration in the cortical ischemic boundary area. Systemic delivery of human DPSCs after reperfusion reduced ischemic damage and improved functional recovery in a rodent ischemia model, with a clinically relevant therapeutic window. The neuroprotective action of DPSCs may relate to the modulation of neuroinflammation during the acute phase of stroke.
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