期刊论文详细信息
Journal of Neuroinflammation
CD13 facilitates immune cell migration and aggravates acute injury but promotes chronic post-stroke recovery
Research
Uzma Ali1  Linda Shapiro2  Anjali Chauhan3  Sean P. Marrelli3  Gargee Pandya3  Chunfeng Tan3  Julia K. Kofler4  Justin N. Nguyen5  Eric C. Mohan5 
[1] Baylor University, Waco, TX, USA;Center for Vascular Biology, The University of Connecticut Health Center, Farmington, CT, USA;Department of Neurology, University of Texas McGovern Medical School at Houston, Houston, TX, USA;Department of Pathology, University of Pittsburgh, Pittsburgh, PA, USA;University of Texas McGovern Medical School at Houston, Houston, TX, USA;
关键词: CD13;    Ischemic stroke;    Stroke recovery;    Cognitive impairment;    CXCL12;    CXCR4;    Angiogenesis;    Myeloid cells;    Transmigration;   
DOI  :  10.1186/s12974-023-02918-3
 received in 2023-03-21, accepted in 2023-10-01,  发布年份 2023
来源: Springer
PDF
【 摘 要 】

IntroductionAcute stroke leads to the activation of myeloid cells. These cells express adhesion molecules and transmigrate to the brain, thereby aggravating injury. Chronically after stroke, repair processes, including angiogenesis, are activated and enhance post-stroke recovery. Activated myeloid cells express CD13, which facilitates their migration into the site of injury. However, angiogenic blood vessels which play a role in recovery also express CD13. Overall, the specific contribution of CD13 to acute and chronic stroke outcomes is unknown.MethodsCD13 expression was estimated in both mice and humans after the ischemic stroke. Young (8–12 weeks) male wild-type and global CD13 knockout (KO) mice were used for this study. Mice underwent 60 min of middle cerebral artery occlusion (MCAO) followed by reperfusion. For acute studies, the mice were euthanized at either 24- or 72 h post-stroke. For chronic studies, the Y-maze, Barnes maze, and the open field were performed on day 7 and day 28 post-stroke. Mice were euthanized at day 30 post-stroke and the brains were collected for assessment of inflammation, white matter injury, tissue loss, and angiogenesis. Flow cytometry was performed on days 3 and 7 post-stroke to quantify infiltrated monocytes and neutrophils and CXCL12/CXCR4 signaling.ResultsBrain CD13 expression and infiltrated CD13+ monocytes and neutrophils increased acutely after the stroke. The brain CD13+lectin+ blood vessels increased on day 15 after the stroke. Similarly, an increase in the percentage area CD13 was observed in human stroke patients at the subacute time after stroke. Deletion of CD13 resulted in reduced infarct volume and improved neurological recovery after acute stroke. However, CD13KO mice had significantly worse memory deficits, amplified gliosis, and white matter damage compared to wild-type animals at chronic time points. CD13-deficient mice had an increased percentage of CXCL12+cells but a reduced percentage of CXCR4+cells and decreased angiogenesis at day 30 post-stroke.ConclusionsCD13 is involved in the trans-migration of monocytes and neutrophils after stroke, and acutely, led to decreased infarct size and improved behavioral outcomes. However, loss of CD13 led to reductions in post-stroke angiogenesis by reducing CXCL12/CXCR4 signaling.

【 授权许可】

CC BY   
© BioMed Central Ltd., part of Springer Nature 2023

【 预 览 】
附件列表
Files Size Format View
RO202311106302573ZK.pdf 5609KB PDF download
12951_2017_255_Article_IEq56.gif 1KB Image download
Fig. 3 390KB Image download
Fig. 5 463KB Image download
Fig. 4 1643KB Image download
12951_2016_171_Article_IEq5.gif 1KB Image download
Fig. 1 407KB Image download
MediaObjects/12974_2023_2918_MOESM1_ESM.jpg 395KB Other download
MediaObjects/12974_2023_2918_MOESM2_ESM.jpg 726KB Other download
Fig. 1 247KB Image download
Fig. 3 1009KB Image download
Fig. 5 784KB Image download
Fig. 4 945KB Image download
【 图 表 】

Fig. 4

Fig. 5

Fig. 3

Fig. 1

Fig. 1

12951_2016_171_Article_IEq5.gif

Fig. 4

Fig. 5

Fig. 3

12951_2017_255_Article_IEq56.gif

【 参考文献 】
  • [1]
  • [2]
  • [3]
  • [4]
  • [5]
  • [6]
  • [7]
  • [8]
  • [9]
  • [10]
  • [11]
  • [12]
  • [13]
  • [14]
  • [15]
  • [16]
  • [17]
  • [18]
  • [19]
  • [20]
  • [21]
  • [22]
  • [23]
  • [24]
  • [25]
  • [26]
  • [27]
  • [28]
  • [29]
  • [30]
  • [31]
  • [32]
  • [33]
  • [34]
  • [35]
  • [36]
  • [37]
  • [38]
  • [39]
  • [40]
  • [41]
  • [42]
  • [43]
  • [44]
  • [45]
  • [46]
  • [47]
  • [48]
  • [49]
  • [50]
  • [51]
  • [52]
  • [53]
  • [54]
  • [55]
  • [56]
  • [57]
  • [58]
  • [59]
  • [60]
  • [61]
  • [62]
  • [63]
  • [64]
  • [65]
  • [66]
  • [67]
  • [68]
  • [69]
  • [70]
  • [71]
  • [72]
  • [73]
  • [74]
  • [75]
  • [76]
  • [77]
  • [78]
  • [79]
  • [80]
  • [81]
  • [82]
  • [83]
  • [84]
  文献评价指标  
  下载次数:68次 浏览次数:3次