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首页> 外文期刊>Acta biomaterialia >Biostable electrospun microfibrous scaffolds mitigate hypertrophic scar contraction in an immune-competent murine model
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Biostable electrospun microfibrous scaffolds mitigate hypertrophic scar contraction in an immune-competent murine model

机译:生物稳定的静电纺丝微纤维支架可缓解具有免疫功能的小鼠模型中的肥厚性瘢痕收缩

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摘要

Burn injuries in the United States account for over one million hospital admissions per year, with treatment estimated at four billion dollars. Of severe burn patients, 30-90% will develop hypertrophic scars (HSc). In this study, we evaluate the impact of an elastomeric, randomly-oriented biostable polyurethane (PU) scaffold on HSc-related outcomes. In vitro, fibroblast-seeded PU scaffolds contracted significantly less and demonstrated fewer alpha SMA(+) myofibroblasts compared to fibroblast-seeded collagen lattices. In a murine HSc model, collagen coated PU (ccPU) scaffolds significantly reduced HSc contraction as compared to untreated control wounds and wounds treated with the clinical standard of care. Our data suggest that electrospun ccPU scaffolds meet the requirements to reduce HSc contraction including reduction of in vitro HSc related outcomes, diminished scar stiffness, and reduced scar contraction. While clinical dogma suggests treating severe burn patients with rapidly biodegrading skin equivalents, our data suggest that a more long-term scaffold may possess merit in reducing HSc.
机译:在美国,每年因烧伤而住院的人数超过一百万,治疗费用估计为40亿美元。在严重烧伤患者中,30-90%会出现肥厚性瘢痕(HSc)。在这项研究中,我们评估弹性,随机定向的生物稳定聚氨酯(PU)支架对HSc相关结果的影响。在体外,与成纤维细胞播种的胶原蛋白晶格相比,成纤维细胞播种的PU支架收缩明显更少,并显示出更少的αSMA(+)肌成纤维细胞。在鼠类HSc模型中,与未治疗的对照伤口和以临床护理标准治疗的伤口相比,胶原蛋白涂层的PU(ccPU)支架显着降低了HSc收缩。我们的数据表明,静电纺丝ccPU支架符合减少HSc​​收缩的要求,包括减少体外HSc相关结果,减少疤痕僵硬和减少疤痕收缩。虽然临床教条建议使用快速生物降解的皮肤等效物治疗重度烧伤患者,但我们的数据表明,更长久的支架可能具有降低HSc的优点。

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