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Oestradiol-releasing Biodegradable Mesh Stimulates Collagen Production and Angiogenesis: An Approach to Improving Biomaterial Integration in Pelvic Floor Repair

机译:释放雌二醇的可生物降解网状物刺激胶原蛋白生成和血管生成:一种改善骨盆底修复中生物材料整合的方法

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摘要

Background\ud\udPolypropylene meshes cause severe complications in some patients. Materials that are biomechanically compatible and can better integrate into host tissues are urgently needed.\ud\udObjective\ud\udTo design an oestradiol-releasing electrospun poly-l-lactic acid (PLA) mesh and evaluate its ability to stimulate new extracellular matrix and new blood vessel formation.\ud\udDesign, setting, and participants\ud\udHuman adipose derived mesenchymal cells (ADMSC) were isolated from fat. PLA meshes with micro- to nano-sized fibres containing 1%, 5%, and 10% oestradiol were constructed and used for in vitro and in vivo experiments.\ud\udIntervention\ud\udThe angiogenic potential of the fibrous meshes was evaluated using an in vivo chorioallantoic membrane and an in vitro chick aortic arch assays.\ud\udOutcome measurements and statistical analysis\ud\udOestradiol release was measured fluorometrically. The effect of fibrous meshes on proliferation and extracellular matrix (ECM) production of ADMSC was assessed using immunohistology. Mechanical properties were tested using a tensiometer.\ud\udResults and limitations\ud\udThe ultrastructure of the mesh was not affected by the inclusion of oestradiol and mechanical properties were only slightly modified. Oestradiol was released from PLA meshes over a 5-mo period. ADMSCs cultured on oestradiol-releasing PLA meshes produced more ECM involving collagen I, collagen III, and elastin. Oestradiol-releasing meshes doubled new blood vessel formation in the chorioallantoic membrane assay (p = 0.001) and outgrowth of pro-angiogenic cells in the aortic arch assay (p = 0.001). Further studies in longer-term animal models are required to confirm these results.\ud\udConclusions\ud\udOestradiol-releasing PLA meshes increase ECM production and stimulate angiogenesis. As such, they are promising candidate materials to be used in pelvic floor repair and to improve the initial healing phase of a repair material following implantation.\ud\udPatient summary\ud\udIn this study, we designed a tissue engineered material to be used to support weakened pelvic floor tissues in women to avoid the complications associated with current surgical mesh. Our results showed that this material can stimulate new blood vessel formation in simple chick assays and tissue production in vitro. Both properties should help with the integration of this material into patients’ tissues and merit further study in physiologically relevant animal models.
机译:背景\ ud \ ud聚丙烯网在某些患者中引起严重的并发症。迫切需要具有生物力学相容性并且可以更好地整合到宿主组织中的材料。\ ud \ ud目的\ ud \ ud设计释放雌二醇的静电纺丝聚乳酸(PLA)网格并评估其刺激新的细胞外基质和新的血管形成。\ ud \ ud设计,设置和参与者\ ud \ ud从脂肪中分离出人脂肪来源的间充质细胞(ADMSC)。构建了含有1%,5%和10%雌二醇的微米级至纳米级纤维的PLA网并将其用于体外和体内实验。\ ud \ ud干预\ ud \ ud使用以下方法评估纤维网的血管生成潜力体内绒毛膜尿囊膜和体外小鸡主动脉弓测定。\ ud \ ud结果测量和统计分析\ ud \ ud用荧光法测定雌二醇的释放。使用免疫组织学评估纤维网对ADMSC的增殖和细胞外基质(ECM)产生的影响。使用张力计测试机械性能。\ ud \ ud结果与局限性\ ud \ ud网状超微结构不受雌二醇的影响,机械性能仅略有改变。雌二醇在5个月内从PLA网孔中释放出来。在释放雌二醇的PLA网上培养的ADMSC产生了更多的ECM,涉及胶原蛋白I,胶原蛋白III和弹性蛋白。在绒毛膜尿囊膜测定中,释放雌二醇的网孔使新血管形成增加了一倍(p = 0.001),在主动脉弓测定中使促血管生成细胞的生长增加了一倍(p = 0.001)。需要对长期动物模型进行进一步研究才能证实这些结果。\ ud \ ud结论\ ud \ ud释放雌二醇的PLA网片可增加ECM的产生并刺激血管生成。因此,它们是有望用于骨盆底修复的材料,并有望改善植入后修复材料的初始愈合阶段。\ ud \ ud患者摘要\ ud \ ud在这项研究中,我们设计了一种组织工程材料用于支持女性骨盆底薄弱组织,以避免与当前手术网相关的并发症。我们的结果表明,这种材料可以在简单的鸡实验和体外组织生产中刺激新血管的形成。两种特性均应有助于将该材料整合到患者组织中,并值得在生理相关的动物模型中进行进一步研究。

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