Abstract

The development of aloarthroplasty of the hip is continuously rising. After implantation of a total cement-free hip endoprosthesis, often there is a periprosthetic femoral bone loss. Alendronate has been shown to be a potent inhibitor of bone resorption activity; it inhibits osteoclastic bone resorption, increases bone mass, and plays a significant role in post-implantation stabilization of the femur. The aim of this study was to determine the effect of alendronate on osteointegration of hip endoprosthesis.Material and methods: The study analyzed 10 patients operated on with implantation of a total cement-free hip endoprosthesis (THP). The included patients were examined by a radiographic method at 6 and 12 months and DXA method at 6 and 12 months. Results: The study showed differences in the values of bone mineral density and bone mineral content in the interval between 6 and 12 months in patients undergoing THP, and hence we can conclude that alendronate therapy after THP implantation reduced periprosthetic loss of bone mass and implant stiffening. Alendronate is a proven inhibitor of periprosthetic bone loss that occurs after prirmary impantation of a total cement-free hip endoprosthesis.

Highlights

  • The analysis consisted of comparing the results for bone mineral density (BMD) and Bone mineral concentration (BMC) obtained at different time points

  • BMC and BMD measurements were performed at the level of the seven Gruen zones-points (1, 2, 3, 4, 5, 6, and 7)

  • This supports the effectiveness of alendronate therapy in reducing bone loss after implantation of a total hip endoprosthesis

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Summary

Introduction

One of the possibilities for postimplantation reduction of periprosthetic bone loss is the use of modern drug bisphosphonate therapy with alendronate.[6,7,8]. Alendronate (alendronic acid – alendronate sodium) is a bisphosphonate drug that is a potent inhibitor of bone resorption activity. It is chemically linked to inorganic pyrophosphates and is an endogenous regulator of the bone metabolism. It enables reduction of bone metabolism, increases bone mass and confirms mineralization of the bone matrix.[9,10,11,12]

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