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Podoplanin Immunopositive Lymphatic Vessels at the Implant Interface in a Rat Model of Osteoporotic Fractures

机译:在骨质疏松性骨折大鼠模型中植入界面的Podoplanin免疫阳性淋巴管。

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摘要

Insertion of bone substitution materials accelerates healing of osteoporotic fractures. Biodegradable materials are preferred for application in osteoporotic patients to avoid a second surgery for implant replacement. Degraded implant fragments are often absorbed by macrophages that are removed from the fracture side via passage through veins or lymphatic vessels. We investigated if lymphatic vessels occur in osteoporotic bone defects and whether they are regulated by the use of different materials. To address this issue osteoporosis was induced in rats using the classical method of bilateral ovariectomy and additional calcium and vitamin deficient diet. In addition, wedge-shaped defects of 3, 4, or 5 mm were generated in the distal metaphyseal area of femur via osteotomy. The 4 mm defects were subsequently used for implantation studies where bone substitution materials of calcium phosphate cement, composites of collagen and silica, and iron foams with interconnecting pores were inserted. Different materials were partly additionally functionalized by strontium or bisphosphonate whose positive effects in osteoporosis treatment are well known. The lymphatic vessels were identified by immunohistochemistry using an antibody against podoplanin. Podoplanin immunopositive lymphatic vessels were detected in the granulation tissue filling the fracture gap, surrounding the implant and growing into the iron foam through its interconnected pores. Significant more lymphatic capillaries were counted at the implant interface of composite, strontium and bisphosphonate functionalized iron foam. A significant increase was also observed in the number of lymphatics situated in the pores of strontium coated iron foam. In conclusion, our results indicate the occurrence of lymphatic vessels in osteoporotic bone. Our results show that lymphatic vessels are localized at the implant interface and in the fracture gap where they might be involved in the removal of lymphocytes, macrophages, debris and the implants degradation products. Therefore the lymphatic vessels are involved in implant integration and fracture healing.
机译:插入骨替代材料可加速骨质疏松性骨折的愈合。优选可生物降解的材料用于骨质疏松患者,以避免第二次手术以更换植入物。降解的植入物碎片通常被巨噬细胞吸收,这些巨噬细胞通过穿过静脉或淋巴管从骨折侧去除。我们调查了在骨质疏松性骨缺损中是否存在淋巴管,以及是否通过使用不同的材料对其进行调节。为了解决这个问题,使用双侧卵巢切除术的经典方法以及额外的钙和维生素缺乏饮食,在大鼠中诱发了骨质疏松症。另外,通过截骨术在股骨远端干phy端区域产生了3、4或5mm的楔形缺损。随后将4毫米的缺损用于植入研究,在其中植入磷酸钙水泥的骨替代材料,胶原蛋白和二氧化硅的复合材料以及具有互连孔的铁泡沫。锶或双膦酸盐对不同的材料进行了部分功能化,它们在骨质疏松症治疗中的积极作用是众所周知的。使用针对podoplanin的抗体通过免疫组织化学鉴定淋巴管。在肉芽组织中检测到Podoplanin免疫阳性淋巴管,该肉芽组织填充了骨折间隙,围绕着植入物,并通过其相互连接的孔长入泡沫铁中。在复合物,锶和双膦酸盐官能化的铁泡沫的植入物界面处计数到更多的淋巴毛细血管。还观察到位于锶包覆的泡沫铁的孔中的淋巴管的数量显着增加。总之,我们的结果表明在骨质疏松性骨中存在淋巴管。我们的结果表明,淋巴管位于植入物界面和骨折缝处,在这里它们可能与淋巴细胞,巨噬细胞,碎片和植入物降解产物的去除有关。因此,淋巴管参与植入物整合和骨折愈合。

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