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Platelet-Rich Plasma and Adipose-Derived Mesenchymal Stem Cells for Regenerative Medicine-Associated Treatments in Bottlenose Dolphins (Tursiops truncatus)

机译:宽吻海豚(Tursiops truncatus)中富含血小板的血浆和脂肪来源的间充质干细胞用于再生医学相关治疗

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摘要

Dolphins exhibit an extraordinary capacity to heal deep soft tissue injuries. Nevertheless, accelerated wound healing in wild or captive dolphins would minimize infection and other side effects associated with open wounds in marine animals. Here, we propose the use of a biological-based therapy for wound healing in dolphins by the application of platelet-rich plasma (PRP). Blood samples were collected from 9 different dolphins and a specific and simple protocol which concentrates platelets greater than two times that of whole blood was developed. As opposed to a commonly employed human protocol for PRP preparation, a single centrifugation for 3 minutes at 900 rpm resulted in the best condition for the concentration of dolphin platelets. By FACS analysis, dolphin platelets showed reactivity to platelet cell-surface marker CD41. Analysis by electron microscopy revealed that dolphin platelets were larger in size than human platelets. These findings may explain the need to reduce the duration and speed of centrifugation of whole blood from dolphins to obtain a 2-fold increase and maintain proper morphology of the platelets. For the first time, levels of several growth factors from activated dolphin platelets were quantified. Compared to humans, concentrations of PDGF-BB were not different, while TGFβ and VEGF-A were significantly lower in dolphins. Additionally, adipose tissue was obtained from cadaveric dolphins found along the Spanish Mediterranean coast, and adipose-derived mesenchymal stem cells (ASCs) were successfully isolated, amplified, and characterized. When dolphin ASCs were treated with 2.5 or 5% dolphin PRP they exhibited significant increased proliferation and improved phagocytotic activity, indicating that in culture, PRP may improve the regenerative capacity of ASCs. Taken together, we show an effective and well-defined protocol for efficient PRP isolation. This protocol alone or in combination with ASCs, may constitute the basis of a biological treatment for wound-healing and tissue regeneration in dolphins.
机译:海豚具有出色的治愈深层软组织损伤的能力。然而,在野生或圈养海豚中加速伤口愈合将最大程度地减少感染和与海洋动物开放性伤口相关的其他副作用。在这里,我们建议通过富含血小板的血浆(PRP)的应用,基于生物的治疗海豚伤口的方法。从9种不同的海豚中收集了血液样本,并开发了一种特定而简单的方案来浓缩血小板,其浓缩度是全血的两倍。与通常使用的人为制备PRP的方案相反,以900 rpm的速度离心3分钟可得到海豚血小板浓缩的最佳条件。通过FACS分析,海豚血小板对血小板细胞表面标志物CD41具有反应性。电子显微镜分析表明,海豚血小板的大小比人血小板大。这些发现可能解释了减少海豚全血离心持续时间和速度以获得2倍增加并保持血小板适当形态的必要性。第一次,对来自活化海豚血小板的几种生长因子的水平进行了定量。与人类相比,海豚中PDGF-BB的浓度没有差异,而TGFβ和VEGF-A的浓度则显着降低。此外,从西班牙地中海沿岸的尸体海豚中获取脂肪组织,并成功地分离,扩增和鉴定了脂肪来源的间充质干细胞(ASC)。当用2.5或5%的海豚PRP处理海豚ASC时,它们表现出显着增加的增殖和改善的吞噬活性,这表明在培养中,PRP可能会提高ASC的再生能力。综上所述,我们展示了一个有效且定义明确的协议,可实现有效的PRP隔离。该方案单独或与ASC结合使用,可构成海豚伤口愈合和组织再生的生物学治疗基础。

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