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首页> 外文期刊>Acta biomaterialia >Bioengineered bladder patches constructed from multilayered adipose-derived stem cell sheets for bladder regeneration
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Bioengineered bladder patches constructed from multilayered adipose-derived stem cell sheets for bladder regeneration

机译:用于膀胱再生的多层脂肪衍生的干细胞片构成的生物工程膀胱贴片

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Cell-seeded scaffolds are a common route of cell transplantation for bladder repair and reconstruction. However, when cell suspensions are harvested, proteolytic enzymes often cause extracellular matrix damage and loss of intercellular junctions. To overcome this problem, we developed a bioengineered three-dimensional bladder patch comprising porous scaffolds and multilayered adipose-derived stem cell (ASC) sheets, and evaluated its feasibility for bladder regeneration in a rat model. Adipose-derived stem cells (ASCs) were labeled with ultrasmall super-paramagnetic iron oxide (USPIO) nanoparticles. ASC patches were constructed using multilayered USPIO-labeled ASC sheets and porous polyglycolic acid scaffolds. To monitor the distribution and localization of bioengineered bladder patches in live animals, magnetic resonance imaging (MRI) was performed 2 weeks, 4 weeks and 8 weeks after transplantation. The bladder regenerative potential of ASC patches was further evaluated by urodynamic and histological analysis. Scanning electron microscopy indicated that cell sheets adhered tightly to the scaffold. MRI showed hypointense signals that lasted up to 8 weeks at the site of USPIO-labeled ASC sheet transplants. Immunofluorescence demonstrated that these tissue-engineered bladder patches promoted regeneration of urothelium, smooth muscle, neural cells and blood vessels. Urodynamic testing revealed that the ASC patch restored bladder function with augmented capacity. The USPIO-labeled ASC patch provides a promising perspective on image-guided tissue engineering and holds great promise as a safe and effective therapeutic strategy for bladder regeneration.
机译:细胞种子支架是膀胱修复和重建的常见细胞移植途径。然而,当收获细胞悬浮液时,蛋白水解酶通常会引起细胞外基质损伤和细胞间隙的损失。为了克服这个问题,我们开发了一种生物工程三维膀胱贴剂,包括多孔支架和多层脂肪衍生的干细胞(ASC)片材,并评估其在大鼠模型中的膀胱再生的可行性。用超级单位式氧化铁(USPIO)纳米颗粒标记脂肪衍生的干细胞(ASCS)。使用多层USPIO标记的ASC片和多孔聚乙醇酸支架构建ASC斑块。为了监测生物中生物的膀胱斑块在活体动物中的分布和定位,在移植后2周,4周和8周进行磁共振成像(MRI)。通过尿动动力学和组织学分析进一步评估ASC斑块的膀胱再生电位。扫描电子显微镜表明,细胞片紧密地粘附到支架上。 MRI显示了USPIO标记的ASC纸张移植部位持续最多8周的低音序信号。免疫荧光证明这些组织工程膀胱贴片促进尿素,平滑肌,神经细胞和血管的再生。坐骨动力学测试显示,ASC补丁以增强容量恢复膀胱功能。 USPIO标签的ASC补丁在图像引导的组织工程方面提供了一个有前途的观点,并作为膀胱再生的安全有效的治疗策略。

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