Grafted Subventricular Zone Neural Stem Cells Display Robust Engraftment and Similar Differentiation Properties and Form New Neurogenic Niches in the Young and Aged Hippocampus

被引:25
作者
Shetty, Ashok K. [1 ]
Hattiangady, Bharathi
机构
[1] Scott & White Mem Hosp & Clin, Coll Med, Texas A&M Hlth Sci Ctr, Inst Regenerat Med, 5701 Airport Rd,Module C, Temple, TX 76501 USA
关键词
Cell transplantation; Cellular therapy; Hippocampal neurogenesis; Neural stem cells; Stem cell grafts; Subventricular zone stem cells; TEMPORAL-LOBE EPILEPSY; ECTOPIC GRANULE CELLS; DENTATE GYRUS; STEM/PROGENITOR CELLS; NEUROTROPHIC FACTOR; STATUS EPILEPTICUS; OXIDATIVE STRESS; RAT HIPPOCAMPUS; NEURONAL DIFFERENTIATION; ADULT HIPPOCAMPUS;
D O I
10.5966/sctm.2015-0270
中图分类号
Q813 [细胞工程];
学科分类号
摘要
As clinical application of neural stem cell (NSC) grafting into the brain would also encompass aged people, critical evaluation of engraftment of NSC graft-derived cells in the aged hippocampus has significance. We examined the engraftment and differentiation of alkaline phosphatase-positive NSCs expanded from the postnatal subventricular zone (SVZ), 3 months after grafting into the intact young or aged rat hippocampus. Graft-derived cells engrafted robustly into both young and aged hippocampi. Although most graft-derived cells pervasively migrated into different hippocampal layers, the graft cores endured and contained graft-derived neurons expressing neuron-specific nuclear antigen (NeuN) and gamma-amino butyric acid in both groups. A fraction of migrated graft-derived cells in the neurogenic subgranular zone-granule cell layer also expressed NeuN. Neuronal differentiation was, however, occasionally seen amid graft-derived cells that had migrated into non-neurogenic regions, where substantial fractions differentiated into S-100 beta+ astrocytes, NG2+ oligodendrocyte progenitors, or Olig2+ putative oligodendrocytes. In both age groups, graft cores located in non-neurogenic regions displayed many doublecortin-positive (DCX+) immature neurons at 3 months after grafting. Analyses of cells within graft cores using birth dating and putative NSC markers revealed that DCX+ neurons were newly born neurons derived from engrafted cells and that putative NSCs persisted within the graft cores. Thus, both young and aged hippocampi support robust engraftment and similar differentiation of SVZ-NSC graft-derived cells. Furthermore, some grafted NSCs retain the "stemness" feature and produce new neurons even at 3 months after grafting, implying that grafting of SVZ-NSCs into the young or aged hippocampus leads to establishment of new neurogenic niches in non-neurogenic regions.
引用
收藏
页码:1204 / 1215
页数:12
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