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首页> 外文期刊>BioMed research international >Modification of a Rodent Hindlimb Model of Secondary Lymphedema: Surgical Radicality versus Radiotherapeutic Ablation
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Modification of a Rodent Hindlimb Model of Secondary Lymphedema: Surgical Radicality versus Radiotherapeutic Ablation

机译:继发性淋巴水肿的啮齿类动物后肢模型的修改:手术根治性与放射治疗性消融

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Secondary lymphedema is an intractable disease mainly caused by damage of the lymphatic system during surgery, yet studies are limited by the lack of suitable animal models. The purpose of this study was to create an improved model of secondary lymphedema in the hindlimbs of rodents with sustained effects and able to mimic human lymphedema. This was achieved by combining previously reported surgical methods and radiation to induce chronic lymphedema. Despite more radical surgical destruction of superficial and deep lymphatic vessels, surgery alone was not enough to sustain increased hindlimb volume. Radiotherapy was necessary to prolong these effects, with decreased lymphatic flow on lymphoscintigraphy, but hindlimb necrosis occurred after 4 weeks due to radiation toxicity. The applicability of this model for studies of therapeutic lymphangiogenesis was subsequently tested by injecting muscle-derived stem cells previously cocultured with the supernatant of human lymphatic endothelial cells in vitro. There was a tendency for increased lymphatic flow which significantly increased lymphatic vessel formation after cell injection, but attenuation of hindlimb volume was not observed. These results suggest that further refinement of the rodent hindlimb model is needed by titration of adequate radiation dosage, while stem cell lymphangiogenesis seems to be a promising approach.
机译:继发性淋巴水肿是一种难治性疾病,主要是由于手术期间淋巴系统受损而引起的,但由于缺乏合适的动物模型,研究受到了限制。这项研究的目的是在啮齿类动物的后肢中创建一种继发性淋巴水肿的改进模型,该模型具有持续作用并能够模拟人淋巴水肿。这是通过结合先前报道的手术方法和放射线诱发慢性淋巴水肿而实现的。尽管对浅表和深层淋巴管进行了更为彻底的手术破坏,但仅凭手术仍不足以维持增加的后肢体积。放疗是延长这些作用所必需的,淋巴闪烁显像术中的淋巴流量减少,但是由于放射毒性,在4周后发生了后肢坏死。随后通过注射先前与人淋巴管内皮细胞上清液共培养的肌肉衍生干细胞,测试了该模型在治疗性淋巴管生成研究中的适用性。有淋巴流量增加的趋势,该趋势明显增加了细胞注射后淋巴管的形成,但未观察到后肢体积的衰减。这些结果表明,通过滴定足够的辐射剂量,还需要进一步完善啮齿动物后肢模型,而干细胞淋巴管生成似乎是一种有前途的方法。

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