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The Bone & Joint Journal
Vol. 99-B, Issue 1 | Pages 51 - 58
1 Jan 2017
van der Woude JAD Wiegant K van Heerwaarden RJ Spruijt S Emans PJ Mastbergen SC Lafeber FPJG

Aims

Knee joint distraction (KJD) is a relatively new, knee-joint preserving procedure with the goal of delaying total knee arthroplasty (TKA) in young and middle-aged patients. We present a randomised controlled trial comparing the two.

Patients and Methods

The 60 patients ≤ 65 years with end-stage knee osteoarthritis were randomised to either KJD (n = 20) or TKA (n = 40). Outcomes were assessed at baseline, three, six, nine, and 12 months. In the KJD group, the joint space width (JSW) was radiologically assessed, representing a surrogate marker of cartilage thickness.


The Journal of Bone & Joint Surgery British Volume
Vol. 80-B, Issue 3 | Pages 540 - 545
1 May 1998
Roosendaal G Vianen ME Wenting MJG van Rinsum AC van den Berg HM Lafeber FPJG Bijlsma JWJ

Haemophilic arthropathy is characterised by iron deposits in synovial tissues. We investigated the suggestion that iron plays an important role in synovial changes.

We obtained synovial tissue from six patients with haemophilia during arthroplasty, finding that brown haemosideritic tissue was often adjacent to tissue with a macroscopically normal appearance in the same joint. Samples from both types of synovial tissue were analysed histologically and biochemically to determine catabolic activity. Macroscopically haemosideritic synovium showed a significantly higher inflammatory activity than that with a normal appearance. Cultures of abnormal synovial tissue gave a significantly enhanced production of IL-1, IL-6 and TNFα compared with cultures of synovial tissue with a normal appearance. In addition, the supernatant fluids from the cultures showed greater catabolic activity from haemosideritic tissue, as determined by the inhibition of the synthesis of articular cartilage matrix.

We conclude that in patients with haemophilic arthropathy, local synovial iron deposits are associated with increased catabolic activity.