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首页> 外文期刊>Journal of biomedical materials research. Part B, Applied biomaterials. >A New Electrochemically Graded Hydroxyapatite Coating for Osteosynthetic Implants Promotes Implant Osteointegration in a Rat Model
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A New Electrochemically Graded Hydroxyapatite Coating for Osteosynthetic Implants Promotes Implant Osteointegration in a Rat Model

机译:用于骨合成植入物的新型电化学分级羟基磷灰石涂层促进大鼠模型中植入物的骨整合。

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摘要

Hydroxyapatite (HAP) is widely used as an osteoconductive coating for orthopedic implants. So far standard coating methods like plasma spraying produce a relatively thick coating layer (>30 mu m). In addition, the chemical structure of the HAP may be altered because of the heating throughout the coating process. This may have negative effects on the coating stability, implant fixation, and induction of bone formation. The relatively thick layer may detach from the implant with the risk of wear debris. In the present study the potential of a newly developed HAP coating of implants on osteointegration was investigated in a rat model. The coating method, based on an electrochemical process, is applied in a graded manner and results in a biodegradable HAP coating with a thickness of approximately 2 mu m. Coated versus uncoated titanium Kirschner wires (1.4-mm diameter) were inserted into the medullary cavity of the right femora of 5-month old female Sprague Dawley rats (n =36) in a retrograde fashion. Throughout an experimental period of 2 months the osteointegration was traced radiologically. After this time the animals were sacrificed and the implant integration was tested biomechanically with the use of a push-out test. To analyze the bone-implant interface, histological sections (80 mu m) were investigated with an image analyzing system. The biomechanical testing revealed a significantly higher implant fixation in the group treated with the HAP-coated implant (shear strength: 27.8 +- 6.7 MPa) compared to control (shear strength: 8.08 + 3.4 MPa). The histological analyses demonstrated a better ingrowth of the implants in the HAP group with significantly more direct bone-implant contacts compared to the control group. The results demonstrate that the HAP coating promotes implant osteointegration in a rat model.
机译:羟基磷灰石(HAP)被广泛用作整形外科植入物的骨传导涂层。到目前为止,诸如等离子喷涂的标准涂覆方法可产生相对较厚的涂层(> 30微米)。另外,由于整个涂覆过程中的加热,HAP的化学结构可能会改变。这可能对涂层稳定性,植入物固定和诱导骨形成有负面影响。相对较厚的层可能会从植入物中脱落,并有磨损碎片的危险。在本研究中,在大鼠模型中研究了新开发的植入物对骨整合的HAP涂层的潜力。基于电化学方法的涂覆方法以分级方式应用,并产生厚度约为2微米的可生物降解的HAP涂层。将有涂层的和未涂层的钛克氏针(直径1.4毫米)以逆行方式插入5个月大的Sprague Dawley雌性大鼠(n = 36)右股骨的髓腔中。在2个月的实验期间,通过放射学追踪了骨整合。此后,处死动物,并使用推出试验对植入物的整合进行生物力学测试。为了分析骨-植入物的界面,使用图像分析系统对组织切片(80微米)进行了研究。生物力学测试显示,与对照组(剪切强度:8.08 + 3.4 MPa)相比,用HAP涂层植入物治疗的组中的植入物固定(剪切强度:27.8±6.7 MPa)明显更高。组织学分析表明,与对照组相比,HAP组的植入物向内生长更好,并且与骨-植入物的直接接触明显更多。结果表明,HAP涂层在大鼠模型中促进了植入物的骨整合。

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