首页> 外文期刊>Stem cells and development >Primitive stem cells derived from bone marrow express glial and neuronal markers and support revascularization in injured retina exposed to ischemic and mechanical damage
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Primitive stem cells derived from bone marrow express glial and neuronal markers and support revascularization in injured retina exposed to ischemic and mechanical damage

机译:源自骨髓的原始干细胞表达神经胶质和神经元标志物,并支持在遭受缺血和机械损伤的受损视网膜中进行血运重建

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Ischemic or mechanical injury to the optic nerve is an irreversible cause of vision loss, associated with limited regeneration and poor response to neuroprotective agents. The aim of this study was to assess the capacity of adult bone marrow cells to participate in retinal regeneration following the induction of anterior ischemic optic neuropathy (AION) and optic nerve crush (ONC) in a rodent model. The small-sized subset of cells isolated by elutriation and lineage depletion (Fr25lin -) was found to be negative for the neuroglial markers nestin and glial fibrillary acidic protein (GFAP). Syngeneic donor cells, identified by genomic marker in sex-mismatched transplants and green fluorescent protein, incorporated into the injured retina (AION and ONC) at a frequency of 0.35%-0.45% after intravenous infusion and 1.8%-2% after intravitreous implantation. Perivascular cells with astrocytic morphology expressing GFAP and vimentin were of the predominant lineage that engrafted after AION injury; 10%-18% of the donor cells incorporated in the retinal ganglion cell layer and expressed NeuN, Thy-1, neurofilament, and beta-tubulin III. The Fr25lin - cells displayed an excellent capacity to migrate to sites of tissue disruption and developed coordinated site-specific morphological and phenotypic neural and glial markers. In addition to cellular reconstitution of the injured retinal layers, these cells contributed to endothelial revascularization and apparently supported remodeling by secretion of insulin-like growth factor-1. These results suggest that elutriated autologous adult bone marrow-derived stem cells may serve as an accessible source for cellular reconstitution of the retina following injury.
机译:视神经的缺血性或机械性损伤是视力丧失的不可逆性原因,与再生受限和对神经保护剂的不良反应有关。这项研究的目的是评估在啮齿动物模型中诱导前部缺血性视神经病变(AION)和视神经挤压(ONC)后成年骨髓细胞参与视网膜再生的能力。发现通过淘析和谱系耗竭(Fr25lin-)分离的小细胞子集对神经胶质标记Nestin和神经胶质纤维酸性蛋白(GFAP)呈阴性。在性别不匹配的移植物中通过基因组标记和绿色荧光蛋白鉴定的同基因供体细胞在静脉内输注后以0.35%-0.45%的频率并在玻璃体内植入后为1.8%-2%的频率掺入受伤的视网膜(AION和ONC)。表达GFAP和波形蛋白的星形细胞形态的血管周细胞是AION损伤后移植的主要谱系。 10%-18%的供体细胞并入视网膜神经节细胞层,并表达NeuN,Thy-1,神经丝和β-微管蛋白III。 Fr25lin-细胞显示出出色的迁移至组织破坏部位的能力,并发展了协调的部位特异性形态学和表型神经和神经胶质标记。除了受损视网膜层的细胞重建外,这些细胞还有助于内皮血管重建,并通过分泌胰岛素样生长因子-1明显支持重建。这些结果表明,淘来的自体成年骨髓来源的干细胞可以作为损伤后视网膜细胞重建的可利用来源。

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