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首页> 外文期刊>Stem cells and development >Oral Mucosa Harbors a High Frequency of Endothelial Cells: A Novel Postnatal Cell Source for Angiogenic Regeneration
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Oral Mucosa Harbors a High Frequency of Endothelial Cells: A Novel Postnatal Cell Source for Angiogenic Regeneration

机译:口腔粘膜患者高频的内皮细胞:一种用于血管生成再生的新型产后细胞源

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摘要

Endothelial progenitor cells/endothelial cells (EPCs/ECs) have great potential to treat pathological conditions such as cardiac infarction, muscle ischemia, and bone fractures, but isolation of EPC/ECs from existing cell sources is challenging due to their low EC frequency. We have isolated endothelial progenitor (EP)-like cells from rat oral mucosa and characterized their yield, immunophenotype, growth, and in vivo angiogenic potential. The frequency of EP-like cells derived from oral mucosa is thousands of folds higher than EPCs derived from donor-match bone marrow samples. EP-like cells from oral mucosa were positive for EC markers CD31, VE-Cadherin, and VEGFR2. Oral mucosa-derived EP-like cells displayed robust uptake of acetylated low-density lipoprotein and formed stable capillary networks in Matrigel. Subcutaneously implanted oral mucosa-derived EP-like cells anastomosed with host blood vessels, implicating their ability to elicit angiogenesis. Similar to endothelial colony-forming cells, EP-like cells from oral mucosa have a significantly higher proliferative rate than human umbilical vein endothelial cells. These findings identify a putative EPC source that is easily accessible in the oral cavity, potentially from discarded tissue specimens, and yet with robust yield and potency for angiogenesis in tissue and organ regeneration.
机译:内皮祖细胞/内皮细胞(EPCS / EC)具有巨大的潜力,可治疗心脏梗死,肌肉缺血和骨骨折等病理条件,但由于其低EC频率,来自现有细胞来源的EPC / ECS的分离是具有挑战性的。我们具有来自大鼠口腔粘膜的孤立的内皮祖细胞(EP)般的细胞,并表征其产率,免疫蛋白型,生长和体内血管生成潜力。源自口腔粘膜的EP样细胞的频率比来自供体匹配的骨髓样品的EPC高的倍数高。来自口腔粘膜的EP样细胞对于EC标志物CD31,Ve-Cadherin和VEGFR2是阳性的。口腔粘膜衍生的EP样细胞显示乙酰化低密度脂蛋白的稳健吸收,并在Matrigel中形成稳定的毛细管网络。皮下植入口腔粘膜衍生的EP样细胞酸致血管,暗示其引发血管生成的能力。类似于内皮菌落形成细胞,来自口腔粘膜的EP样细胞具有比人脐静脉内皮细胞显着更高的增殖率。这些发现鉴定了一种推定的EPC源,其易于在口腔中可容易地进入,可能来自丢弃的组织标本,但对于组织和器官再生中的血管生成具有鲁棒产量和效力。

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