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首页> 外文期刊>Biomaterials >Bone-like tissue formation using an equine COLLOSS E-filled titanium scaffolding material.
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Bone-like tissue formation using an equine COLLOSS E-filled titanium scaffolding material.

机译:使用马COLLOSS E填充钛支架材料形成骨样组织。

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COLLOSS, a bovine extracellular matrix product containing native BMPs has already shown osteoinductive properties. To overcome problems with risk of transmissable spongiform encephalopathy (TSE) infection, an equine derived version was investigated in this study, named COLLOSS E. Disc- and tube-shaped implants were made from titanium fibre mesh. The central space of tubes was filled and the discs were impregnated with the COLLOSS E material to assess osteo-induction. These implants and non-loaded controls were implanted subcutaneously into the back of Wistar rats. After implantation periods of 2, 8, and 12 weeks, the implants were retrieved and sections were made. Histology showed a thin fibrous capsule surrounding the titanium mesh and a very mild tissue reaction. The disc implants, loaded or non-loaded, showed no bone formation at all. After 2 weeks of implantation 3 out of 5 of the loaded tubes showed bone formation with a mean of 0.3 mm2 areas of new formed bone, after 8 weeks 3 out of 6 and 0.7 mm2, and after 12 weeks this increased to 6 out of 6 and 1.0 mm2. In the non-loaded tubes only connective tissue in growth was seen. In conclusion, it was demonstrated that COLLOSS E material, loaded in a titanium fibre mesh tube shows osteoinductive properties. The effect of COLLOSS E has to be investigated further in orthotopic sites, which resemble more the final clinical application for bone reconstruction.
机译:含有天然BMP的牛细胞外基质产品COLLOSS已显示出骨诱导特性。为了克服传染性海绵状脑病(TSE)感染风险的问题,本研究对马衍生版本进行了研究,名为COLLOSSE。椎间盘和管状植入物均由钛纤维网制成。填充管的中央空间,并用COLLOSS E材料浸渍椎间盘以评估骨诱导性。将这些植入物和未加载的对照皮下植入Wistar大鼠的背部。在2、8和12周的植入期后,取出植入物并进行切片。组织学显示围绕钛网的纤维状薄囊,并且组织反应非常轻微。椎间盘植入物(已加载或未加载)完全没有骨形成。植入2周后,在5个负载管中有3个显示出骨形成,平均有0.3 mm2的新形成的骨头区域;在8周后,有6个中的3个和0.7 mm2的骨头形成,而在12周后,这增加了6个中的6个和1.0平方毫米。在未加载的试管中,仅见结缔组织生长。总之,已证明装载在钛纤维网管中的COLLOSS E材料具有骨诱导特性。 COLLOSS E的效果必须在原位进行进一步研究,这更类似于最终的骨重建临床应用。

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