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Clearance Kinetics of Biomaterials Affects Stem Cell Retention and Therapeutic Efficacy

机译:生物材料的清除动力学影响干细胞保留和治疗功效。

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The use of biomaterial carriers to improve the therapeutic efficacy of stem cells is known to augment cell delivery, retention, and viability. However, the way that carrier clearance kinetics boosts stem cell delivery and impacts stem cell function remains poorly characterized. In this study, we designed a platform to simultaneously quantify carrier clearance and stem cell retention to evaluate the impact of carrier clearance kinetics on stem cell retention. Additionally, a murine model of hindlimb ischemia was employed to investigate the effects of various cell retention profiles on mitigating peripheral arterial disease. To image the in vivo behaviors of material and cells, we used biotinylated hyaluronan with fluorescently labeled streptavidin and Discosoma sp. Red (Ds-Red)-expressing human mesenchymal stem cells. We found that the retention of transplanted stem cells was closely related to the remaining biomaterial. Furthermore, therapeutic effectiveness was also affected by stem cell retention. These results demonstrate that low-molecular-weight hyaluronan had a slow clearance and high cell retention profile, improving the therapeutic efficacy of human stem cells.
机译:已知使用生物材料载体来改善干细胞的治疗功效可增强细胞的递送,保留和生存能力。然而,载体清除动力学促进干细胞递送并影响干细胞功能的方式仍然不明确。在这项研究中,我们设计了一个平台,可以同时量化载体清除率和干细胞保留率,以评估载体清除率动力学对干细胞保留率的影响。另外,采用后肢缺血的鼠模型来研究各种细胞滞留特征对减轻外周动脉疾病的影响。为了成像材料和细胞的体内行为,我们使用了生物素化的透明质酸和荧光标记的链霉亲和素和Discosoma sp。表达红色(Ds-Red)的人间充质干细胞。我们发现移植的干细胞的保留与剩余的生物材料密切相关。此外,干细胞保留还影响治疗效果。这些结果证明低分子量透明质酸具有缓慢的清除和高的细胞保留特性,从而改善了人类干细胞的治疗功效。

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