Moog Philipp, Schams Rahmin, Schneidinger Alexander, Schilling Arndt F, Machens Hans-Günther, Hadjipanayi Ektoras, Dornseifer Ulf
Experimental Plastic Surgery, Clinic for Plastic, Reconstructive and Hand Surgery, Klinikum Rechts der Isar, Technische Universität München, D-81675 Munich, Germany.
Department of Plastic, Reconstructive and Aesthetic Surgery, Isar Klinikum, D-80331 Munich, Germany.
Biomedicines. 2020 Sep 20;8(9):365. doi: 10.3390/biomedicines8090365.
Hypoxia Preconditioned Plasma (HPP) and Serum (HPS) are two blood-derived autologous growth factor compositions that are being clinically employed as tools for promoting tissue regeneration, and have been extensively examined for their angiogenic activity. As yet, their ability to stimulate/support lymphangiogenesis remains unknown, although this is an important but often-neglected process in wound healing and tissue repair. Here we set out to characterize the potential of hypoxia preconditioned secretomes as promoters of angiogenic and lymphangiogenic sprouting in vitro. We first analysed HPP/HPS in terms of pro- (VEGF-C) and anti- (TSP-1, PF-4) angiogenic/lymphangiogenic growth factor concentration, before testing their ability to stimulate microvessel sprouting in the mouse aortic ring assay and lymphatic sprouting in the thoracic duct ring assay. The origin of lymphatic structures was validated with lymph-specific immunohistochemical staining (Anti-LYVE-1) and lymphatic vessel-associated protein (polydom) quantification in culture supernatants. HPP/HPS induced greater angiogenic and lymphatic sprouting compared to non-hypoxia preconditioned samples (normal plasma/serum), a response that was compatible with their higher VEGF-C concentration. These findings demonstrate that hypoxia preconditioned blood-derived secretomes have the ability to not only support sprouting angiogenesis, but also lymphangiogenesis, which underlines their multimodal regenerative potential.
缺氧预处理血浆(HPP)和血清(HPS)是两种源自血液的自体生长因子组合物,目前正在临床上用作促进组织再生的工具,并且已经对其血管生成活性进行了广泛研究。然而,它们刺激/支持淋巴管生成的能力仍然未知,尽管这是伤口愈合和组织修复中一个重要但常被忽视的过程。在这里,我们着手表征缺氧预处理分泌组在体外作为血管生成和淋巴管生成芽生促进剂的潜力。我们首先分析了HPP/HPS中促血管生成/淋巴管生成生长因子(血管内皮生长因子C)和抗血管生成/淋巴管生成生长因子(血小板反应蛋白-1、血小板因子4)的浓度,然后测试它们在小鼠主动脉环试验中刺激微血管芽生以及在胸导管环试验中刺激淋巴管芽生的能力。通过淋巴特异性免疫组织化学染色(抗淋巴管内皮透明质酸受体1)和培养上清液中淋巴管相关蛋白(多聚结构域)定量来验证淋巴结构的起源。与非缺氧预处理样品(正常血浆/血清)相比,HPP/HPS诱导了更强的血管生成和淋巴管芽生,这种反应与其较高的血管内皮生长因子C浓度相符。这些发现表明,缺氧预处理的血液来源分泌组不仅有能力支持芽生血管生成,还能支持淋巴管生成,这突出了它们的多模式再生潜力。