Mesenchymal stem cells from minced umbilical cord fragments may represent a valuable cell population for cartilage and bone tissue engineering A promising approach for cartilage and bone repair is the use of umbilical cord mesenchymal stem cell (UC-MSC)-based tissue engineering. Through a simple and efficient protocol based on mincing the umbilical cord, a consistent number of multipotent UC-MSCs can be obtained. The aim of this in-vitro study is to investigate the pluripotency of UC-MSCs and, in particular, the chondrogenic and osteogenic potential of UC-MSCs grown in tridimensional scaffold, in order to identify a potential clinical relevance for patients who might benefit from MSCs-therapy.Summary Statement
Introduction
Preoperative bone-marrow-derived cell mobilization by G-CSF is a safe orthopaedic procedure and allows circulation in the blood of high numbers of CD34+ve cells, promoting osseointegration of a bone substitute. Granulocyte-colony-stimulating-factor(G-CSF) has been used to improve repair processes in different clinical settings for its role in bone-marrow stem cell(CD34+ and CD34-) mobilization. Recent literature suggests that G-CSF may also play a role in skeletal-tissue repair processes. Aim of the study was to verify the feasibility and safety of preoperative bone-marrow cell (BMC) mobilization by G-CSF in orthopaedic patients and to evaluate G-CSF efficacy in accelerating bone regeneration following opening-wedge high tibial valgus osteotomy(HTVO) for genu varum.Summary Statement
Introduction
The aim of this prospective study was to compare UKAs to HTOs, in terms of clinical and functional Results: Materials and Methods: In all UKAs we implanted an Accuris prosthesis (Smith&
Nephew, Memphis TN), in all HTOs we performed a medial opening wedge osteotomy, according to the surgical technique and syntesized with a Puddu Plate (Arthrex, Naples FL). We evaluated all patients preoperatively and at 6 months postoperatively, at 1 year, 2 years and at the last follow-up visit (mean 3,5 years for UKAs and 2,5 years for HTOs), using the Knee Society Score (KSS) and the WOMAC (Western Ontario and McMaster Universities) Score.
Postoperative program for the HTO group was: 4 weeks of CPM (continuous passive movement), partial weight-bearing al 4 weeks (30–50% of body weight) and then full weight-bearing at 8 weeks postoperatively. In the UKA group, full weight bearing was allowed immediately after operation. We observed only one significant complication postoperatively: an early infection in an HTO patient. We thought this complication was not related to the treatment chosen, but to external factors, so we decided to exclude this patient from our study. In the HTOs group, the KSS knee score (KS) and function score (FS) improved from respectively 38 and 55 preopertively to 76 and 91 at the final follow-up evaluation, while in the UKA group KS increased from 43 to 93 and FS increased from 50 to 84. The WOMAC Score improved from respectively 48 (HTO Group) and 45 (UKA Group) preoperatively to 15 (HTO Group) and 14 (UKA Group) at the final follow-up evaluation.
Comparison of study groups shows good outcome at early and mid-term follow-up. All patients had scores rated good to excellent (both KSS and WOMAC). However, we found a little difference in KSS between the two groups: UKAs have a higher Knee Score (better knee assessment), while HTOs have a significantly higher Functional Score (better performances, maybe due to a more “anatomic saving” procedure). This data suggests that the UKAs have better knee assessment, meanwhile the HTOs have better function. Given that, both treatments lead to a good to excellent outcome at early followup.
The failure rate of peritrochanteric fracture implants ranges from 5 to 20 % The aim of the present preliminary study is to evaluate the relationship between Singh index (SI), and failure of internal fixation (cut-out), examining bone mechanical properties from ex-vivo human femoral heads. The failure rate of peritrochanteric fracture implants ranges from 5 to 20 % The aim of the present preliminary study is to evaluate the relationship between Singh index (SI), and failure of internal fixation (cut-out), examining bone mechanical properties from ex-vivo human femoral heads. From a methodological point of view we decided to use SI on the basis of previous literature,, our data seems not to be influenced by the use of this methodological approach. >
Three load speeds were set: 3, 10, 500 mm/min resulting values of BW/s were compared with Davy and Bergmann ones (obtained with instrumented prosthesis), and test validity was confirmed. In conclusion our data demonstrated that: cut out phenomenon occurs for lower mechanical load in femoral heads of patients with lower SI.