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首页> 外文期刊>Asian journal of andrology >Regeneration of rat corpora cavernosa tissue by transplantation of CD133+ cells derived from human bone marrow and placement of biodegradable gel sponge sheet
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Regeneration of rat corpora cavernosa tissue by transplantation of CD133+ cells derived from human bone marrow and placement of biodegradable gel sponge sheet

机译:通过移植源自人骨髓的CD133 +细胞并放置可生物降解的凝胶海绵片来再生大鼠海绵体组织

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摘要

The objective is to develop an easier technique for regenerating corpora cavernosa tissue through transplantation of human bone marrow-derived CD133 + cells into a rat corpora cavernosa defect model. We excised 2 mm × 2 mm squares of the right corpora cavernosa of twenty-three 8-week-old male nude rats. Alginate gel sponge sheets supplemented with 1 × 10 4 CD133 + cells were then placed over the excised area of nine rats. Functional and histological evaluations were carried out 8 weeks later. The mean intracavernous pressure/mean arterial pressure ratio for the nine rats (0.34258 ± 0.0831) was significantly higher than that for eight rats with only the excision (0.0580 ± 0.0831, P = 0.0238) and similar to that for five rats for which the penis was exposed, and there was no excision (0.37228 ± 0.1051, P = 0.8266). Immunohistochemical analysis revealed that the nine fully treated rats had venous sinus-like structures and quantitative reverse transcription polymerase chain reaction analysis of extracts from their alginate gel sponge sheets revealed that the amounts of mRNA encoding the nerve growth factor (NGF), and vascular endothelial growth factor (VEGF) were significantly higher than those for rats treated with alginate gel sheets without cell supplementation (NGF: P = 0.0309; VEGF: P + cells accelerates functional and histological recovery in the corpora cavernosa defect model.
机译:目的是通过将人骨髓来源的CD133 + 细胞移植到大鼠海绵体缺损模型中,开发一种更容易的海绵体组织再生技术。我们切除了23只8周大的雄性裸鼠的右海绵体的2 mm×2 mm正方形。然后将补充有1×10 4 CD133 + 细胞的藻酸盐凝胶海绵片放在9只大鼠的切除区域上。 8周后进行功能和组织学评估。九只大鼠的平均海绵内压/平均动脉压比(0.34258±0.0831)明显高于八只仅切除的大鼠(0.0580±0.0831,P = 0.0238),与五只阴茎的大鼠相似暴露,没有切除(0.37228±0.1051,P = 0.8266)。免疫组织化学分析显示,经过充分处理的9只大鼠具有静脉窦样结构,对藻酸盐凝胶海绵片提取物的定量逆转录聚合酶链反应分析表明,编码神经生长因子(NGF)和血管内皮生长的mRNA量NF-κB(VEGF)明显高于未补充藻酸盐凝胶片的大鼠(NGF:P = 0.0309; VEGF:P + 细胞可加速海绵体缺损模型的功能和组织学恢复。

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