header advert
Results 1 - 3 of 3
Results per page:
Orthopaedic Proceedings
Vol. 100-B, Issue SUPP_9 | Pages 5 - 5
1 May 2018
Cimino A Imam M Field R
Full Access

We have investigated whether the pattern of subchondral acetabular cyst formation reflects hip pathology and may provide a prognostic indicator for treatment.

A single surgeon series of sequential hip arthroscopies was reviewed to identify the most recent 200 cases undertaken on a previously un-operated joint with pre-operative plain radiographs and computed tomography or magnetic resonance scan available for review. Also, serial “non-arthritic hip scores” (NAHS) recorded pre-operatively, at 6 weeks and 3 months post-surgery. The acetabular Lateral Centre Edge Angle, the Acetabular Index, the FEAR index and the Kallgren and Lawrence grade were determined. All images were reviewed by two independent assessors and divided into four groups according to acetabular subchondral cyst distribution. NC - No cysts - 74 cases (mean: 40.1 years), SPC - a Single Peripheral Cyst – 58 cases (mean: 43.1 years), SDC - a Solitary Dome Cyst – 32 cases (mean: 33 years) and MC - Multiple Cysts – 36 cases (mean: 42.7 years).

No association was identified between gender and patient reported outcomes.

SDC patients were significantly younger than the other three groups (p <0.001). At three months after surgery, the average increase of the NAHS in the four groups was 25.3, 23.5, 4.2 and 4.9 respectively. Acetabular dysplasia was identified in 72% of the SDC group compared to 18%, 16% and 33% in NC, SPC and MC groups. Degenerative change was identified in 86% of the MC group compared to 18%, 40% and 41% of the NC, SPC and SDC groups.

The early patient reported outcome following hip arthroscopy was significantly affected by the location and number of acetabular subchondral cysts. A Solitary Dome Cyst is indicative of underling hip dysplasia. Multiple Cysts are indicative of degenerative disease. The majority of patients in these groups have poor three-month outcomes after hip arthroscopy.


Orthopaedic Proceedings
Vol. 96-B, Issue SUPP_11 | Pages 83 - 83
1 Jul 2014
Bistolfi A Bracco P Banche G Allizond V Boffano M Cimino A del Prever EB Cuffini A
Full Access

Summary

Prosthetic UHMWPE added with vitamin E and crosslinked UHMWPE are able to decrease significantly the adhesion of various bacterial and fungal strains limiting biomaterial associated infection and consequent implant failure.

Introduction

Polyethylene abrasive and oxidative wear induces overtime in vivo a foreign-body response and consequently osteolysis, pain and need of implant revision. To solve these problems the orthopaedic research has been addressed to develop new biomaterials such as a crosslinked polyethylene with a higher molecular mass than standard Ultra High Molecular Weight Polyethylene (UHMWPE), and consequently a higher abrasive wear resistance and an antioxidant (vitamin E)-added UHMWPE to avoid oxidative wear. Nevertheless a feared complication of implant surgery is bacterial or fungal infection, initiated by microbial adhesion and biofilm formation, and related to the biomaterial surface characteristics. Staphylococci are the most common microorganisms causing biomaterial associated infection (BAI), followed by streptococci, Gram-negative bacilli and yeasts. With the aim to prevent BAI, the purpose of this study was to evaluate the adhesion of various microbial strains on different prosthetic materials with specific surface chemical characteristics, used in orthopaedic surgery.


The Bone & Joint Journal
Vol. 96-B, Issue 4 | Pages 497 - 501
1 Apr 2014
Banche G Allizond V Bracco P Bistolfi A Boffano M Cimino A Brach del Prever EM Cuffini AM

We have assessed the different adhesive properties of some of the most common bacteria associated with periprosthetic joint infection on various types of ultra high molecular Weight Polyethylene (UHMWPE). Quantitative in vitro analysis of the adhesion of biofilm producing strains of Staphylococcus aureus and Escherichia coli to physically and chemically characterised standard UHMWPE (PE), vitamin E blended UHMWPE (VE-PE) and oxidised UHMWPE (OX-PE) was performed using a sonication protocol. A significant decreased bacterial adhesion was registered for both strains on VE-PE, in comparison with that observed on PE, within 48 hours of observation (S. aureus p = 0.024 and E. coli p = 0.008). Since Vitamin E reduces bacterial adhesive ability, VE-stabilised UHMWPE could be valuable in joint replacement by presenting excellent mechanical properties, while reducing bacterial adhesiveness.

Cite this article: Bone Joint J 2014;96-B:497–501.