Targeted homing of CCR2-overexpressing mesenchymal stromal cells to ischemic brain enhances post-stroke recovery partially through PRDX4-mediated blood-brain barrier preservation

CCR2 过表达间充质基质细胞靶向归巢至缺血性脑组织可部分通过 PRDX4 介导的血脑屏障保护增强中风后恢复

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作者:Yinong Huang, Jiancheng Wang, Jianye Cai, Yuan Qiu, Haiqing Zheng, Xiaofan Lai, Xin Sui, Yi Wang, Qiying Lu, Yanan Zhang, Meng Yuan, Jin Gong, Wei Cai, Xin Liu, Yilong Shan, Zhezhi Deng, Yue Shi, Yaqing Shu, Lei Zhang, Wei Qiu, Lisheng Peng, Jie Ren, Zhengqi Lu, Andy Peng Xiang

Conclusion

Taken together, this study suggests that overexpression of CCR2 on MSCs enhances their targeted migration to the ischemic hemisphere and improves the therapeutic outcomes, which is attributed to the PRDX4-mediated BBB preservation.

Methods

Using the middle cerebral artery occlusion (MCAO) model of ischemic stroke, we identified that CCL2 is one of the most highly expressed chemokines in the ipsilateral hemisphere. Then, we genetically transduced the corresponding receptor, CCR2 to the MSCs and quantified the cell retention of MSCCCR2 compared to the MSCdtomato control.

Results

MSCCCR2 exhibited significantly enhanced migration to the ischemic lesions and improved the neurological outcomes. Brain edema and blood-brain barrier (BBB) leakage levels were also found to be much lower in the MSCCCR2-treated rats than the MSCdtomato group. Moreover, this BBB protection led to reduced inflammation infiltration and reactive oxygen species (ROS) generation. Similar results were also confirmed using the in vitro BBB model. Furthermore, genome-wide RNA sequencing (RNA-seq) analysis revealed that peroxiredoxin4 (PRDX4) was highly expressed in MSCs, which mainly contributed to their antioxidant impacts on MCAO rats and oxygen-glucose deprivation (OGD)-treated endothelium.

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