Hamstring tendons (HT) represent a widely used autograft for ACL reconstruction. Harvesting, processing and pretensioning procedures together with the time out of the joint could theoretically hamper tendon cells (TCs) viability. The authors hypothesize that HT cells are not impaired at the end of the surgical procedures and their tenogenic phenotype may be strongly improved by exposure to PEMF. Remnants of semitendinosus and gracilis tendons were collected at the end of the surgical procedures before skin closure from 15 healthy donors who underwent ACL reconstruction with autologous hamstring tendons. To isolate TCs, the tendon was minced and digested with 0.3 % type I collagenase and the nucleated cells were plated at a density 5x10E3 cells/cm2 and cultured in chamber slides in differentiation medium composed of DMEM + 5ng/ml basic fibroblast growth factor (b-FGF) for 7, 14, 21 days The following cell cultures were set up: TCs cultured with differentiation medium + exposure to PEMF 8 h/day (PEMF generator system IGEA, intensity of magnetic field = 1.5 mT, frequency = 75 Hz) TCs cultured with differentiation medium without exposure to PEMF At day 0, day 7, day 14 and day 21, immunofluorescence analysis was performed to evaluate the expression of collagen type I, collagen type VI, scleraxis and PCNA (proliferative marker) Subsequently, tendon explant cultures were set up to verify, at day 21, explant viability and the expression of collagen type I, collagen type VI, beta-catenin and PCNASummary:
Methods
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
Hypoxia enhances chondrocyte phenotype of cells migrating from cartilage fragments, thus supporting the use of chondral fragment as a potential cell source for one-stage cartilage repair Minced cartilage fragments are a viable cell source for one stage cartilage repair, as shown in both in preclinical and clinical studies. However, the joint microenvironment, in which the repair process takes place, is hypoxic and no evidences are present in literature regarding the behaviour of cartilage fragments in a hypoxic environment. Aim of the study is to verify if hypoxia could influence chondrocyte outgrowth from cartilage fragments into a Hyaluronic-Acid/fibrin scaffold and evaluate its effects on migrating chondrocyte behaviour, compared to normoxic condition. This could be significant in the perspective of a wide clinical application of human chondral fragments for single stage repair.Summary Statement
Introduction
Aim of study is to verify feasibility of peroneal tendoscopy and to clarify the histological structure of peroneal vincula, so formulating a hypothesis regarding their functional role. Peroneal tendons possess a vascular supply through mesotendineal structures (vincula), previously related to trophic role and healing response; aim of study is to verify feasibility of tendoscopy in evaluating peroneal tendon and vincula and to clarify histological structure of vincula and presence of nervous tissue, so formulating a hypothesis regarding their functional role. Cadaver study was performed on 8 fresh-frozen ankles, verifying accessibility of endoscope to tendon and vincula; samples from cadaveric vincula were taken; 5 peroneal vincula biopsies were obtained from 5 patients affected by ankle instability, undergoing tendoscopy for chronic lateral ankle pain. Tendoscopy was performed for persistent pain at the posterior margin of lateral malleolus after at least 4 months of nonoperative treatment. Biopsies were taken from center of pathologic vincula. Patients biopsies and cadaveric samples were analyzed with light microscopy and immunohistochemistry (anti-humanS100antibody) Peroneal tendons are accessible by endoscope along whole common sheath; vincula were found in all cadaveric specimens; intraoperative finding of vincula lesion (thickening/scarring) was found in all patients biopsies. Histology and immunohistochemistry revealed presence of nervous fibers inside the intimate structure of peroneal vincula both in cadaveric specimens and in patients biopsies. Tendoscopy as a useful tool in visualizing the entire length of peroneal tendons, allowing the surgeon to diagnose and treat different peroneal disorders. Although literature provides no data about innervations of peroneal vincula, presence of free nervous fibers inside vincula structure is consistent with a proprioceptive role of the vinculum in peroneal tendon physiology. Moreover, our findings in patients biopsies suggest lesion of peroneal vinculum is a nociceptive source and an important element leading, synergistically with other soft tissues (i.e. joint capsule, lateral ligaments) injuries, to proprioception impairment in clinical pictures of chronic ankle instability. So selective excision of degenerated areas of vincula can be justified as accessory procedure in treatment of chronic lateral pain in patients affected by chronic ankle instability.
This study reports the 5-year clinical and radiological outcomes of a simple arthroscopic-assisted technique for Schatzker type II and III tibial plateau fractures, without bone grafting. Forty six patients (46% males, 54% females, average age 48 years, SD 13.6 years), with tibial plateau fractures Schatzker type II (41%) and III (59%), underwent an arthroscopic-assisted technique conceived to use a compacted cancellous bone graft, taken from the medial metaphyseal side of the tibia, and a percutaneous fixation. The patients were prospectively followed-up at one, three and five years from surgery. Independent assessments were carried out using Knee Society Score, HSS score and Rasmussen’s clinical and radiological scores. At 5-year follow-up patients underwent a weight-bearing radiograph of both limbs. At last follow-up evaluation Knee Score (average 93.2, SD 7.7) was excellent in 37 patients (80%), good in six (13%), fair in three (7%). Function Score (average 94.8, SD 8.51) was excellent in 38 patients (83%), good in five (11%), fair in three (6%). HSS score (average 93.4, SD 8.23) was excellent in 41 patients (89%), good in five (11%). The average Rasmussen clinical score was 28.2 (SD 1.4). The radiological Rasmussen score was excellent in five patients (11%), good in 39 (85%) and fair in two (4%). In the weight-bearing radiographs a valgus deviation was present in four patients (8.7%). Arthroscopic-assisted technique for lateral tibial plateau fractures without bone grafting has outcomes encouraging and comparable to the results of other techniques that use either iliac crest graft or bone substitutes.
5 peroneal vincula biopsies were analyzed from patients affected by ankle instability and undergoing tendoscopy for peroneal tenosynovitis.
In particular, spontaneous calcium phosphate deposition on titanium surfaces from aqueous electrolyte containing calcium and phosphate ions, such as simulated body fluid solutions, has been observed and is believed to be related to the excellent bonding capability in contact with bone tissue. In the present study, a new multiphase anodic spark deposition (ASD) method combined with chemical etching is presented It has been optimized and such modified titanium surface exhibited high mineralisation potential, selective protein adsorption, quicker and more intensive osteoblasts adhesion and differentiation. Such treatements was labelled BioSpark™ and consisted in a thick calcium-phosphate-doped oxide film growth on the titanium bulk. This oxide layer exhibits anatase lattice, micro-porosity and a thin nano-roughened texture.
The purpose of this study is to identify the optimal amount of knee flexion required to drill the femoral tunnel in ACL reconstruction using the transtibial technique in order to ensure the correct alignment between the femoral tunnel and the interference screw.
This study identifies a mathematical formula for the optimal amount of knee flexion required to drill the femoral tunnel in ACL reconstruction using the transtibial technique in order to ensure the correct alignement between the femoral tunnel and the interference screw.
The ABG total hip prosthesis had been studied to prevent any kind of stress shielding and to allow the localization of the loads in the metaphiseal region of the femur. The aim of this study was to analize the effective behaviour of the loads in long-term implants and the possible correlations of those findings with the clinical situation of the patients. We considered 87 total hip arthroplasty implants executed from 1989 to 1995 and performed by using Anatomique Benoist Girard I uncemented prosthesis. The radiographical findings have been classified observing Engh’s stability criteria according to Gruen’s subdivision of the periprosthetic femoral zones. The radiographical analysis shows a higher presence of can cellous densification in Gruen’s zones 3 and 5 than the one found in zones 2 and 6. Furthermore the presence of a cortical reaction is more relevant in the distal zones.>
Radiolucent lines are present in 16% of the cases in zone 4; their percentage in zones 3 and 5 decreases to 7.14% and 10.71%. Our study shows the certain presence of the stress shielding mechanism in long-term analysis and documents that the main region of late anchorage is the distal, not hydroxyapatite-coated, one.>
The comparison with other similar studies shows the decrease of the presence of radiolucent lines in proximal femoral zones with the rise of the follow-up: it can be interpreted as the lesser presence of micro movements of the tip of the prosthesis due to the distalization of the anchorage.