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91.

Background

Different cell populations from bone marrow were used in various clinical trials for cardiac diseases during last decade. Four clinical studies are ongoing in our institution and enroll patients with cardiac diseases, coronary disease, type 2 diabetes, and osteoarthritis. The density gradient is used to separate bone marrow mononuclear cells. Joint replacement procedures were associated with significant loss of tissue. Usually, excess tissue as bone marrow, peripheral blood and fat are removed to clean operation site. The aim of this study is to prove whether removed tissue during joint replacement procedure can be considered as a significant source of mononuclear cells.

Methods

Excised tissue obtained during joint replacement procedure was collected by AutoLog system. Bone marrow tissue was collected by iliac crest puncture. Mononuclear cells from both sources were isolated by using Ficoll density gradient centrifugation. Flow cytometry was used to detect mononuclear cell, CD34+ population counts and cell viability. Tissue processing yields between the group of joint replacement and iliac crest puncture group were compared.

Results

Together, 34 bone marrow tissue processings were performed. On average, samples contained 46.31 ± 9.35 ml of bone marrow solution. Average cell yield in final product was 28.64 ± 9.35 × 106 MNCs and 0.77 ± 1.51 × 106 CD34+ population. In case of tissue removed during joint replacement nine processings were performed. On average samples contained 450 ± 157.69 ml of tissue solution. Average cell yield in final product was 76.67 ± 35.42 × 106 MNCs and 1.33 ± 0.97 × 106 CD34+ population.

Conclusions

Tissue processing analysis shows that tissue removed during joint replacement procedure can be assumed as a significant source of mononuclear cells. Methods used for bone marrow-derived mononuclear cell extraction can be applied to the excess tissue.
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Background: Patients with chronic heart failure (HF) are often rehospitalized; rehospitalization identifies subjects with a poorer quality of life and a worse prognosis. Estimates of the time intervals by tissue Doppler imaging (TDI) in patients with chronic HF has not been fully investigated, despite recent studies having explored the prognostic role of TDI-derived parameters in major cardiac diseases, such as HF. We, therefore, aimed to assess the prognostic value of time intervals evaluated by TDI in patients with chronic HF. Methods: A total of 249 patients with chronic HF enrolled in the Daunia Heart Failure Registry underwent echocardiography assessment and were followed prospectively for a mean 284 ± 210 days. Conventional echocardiography and TDI parameters were calculated; time intervals were calculated by TDI: ST (systolic time), ET (ejection time), FT (filling time), and ICT (isovolumic contraction time). We also have calculated ICT/ET and tissue myocardial performance index ([ICT+IRT]/ET). Results: At univariate analysis, ET (RR: 0.80, 95% confidence interval [CI] 0.71-0.90, P < 0.001), ST (RR: 0.88, 95% CI 0.78-0.99, P < 0.05), FT (RR: 0.88, 95% CI 0.78-0.99, P < 0.05), ICT/ET (RR: 1.21, 95% CI 1.07-1.37, P < 0.01) were related to the occurrence of rehospitalization during follow-up. At multivariate Cox regression analysis, correlations remained significant for ET and ST (P < 0.05 and P < 0.01, respectively). Conclusions: Time intervals assessed by TDI may be helpful in predicting the risk of rehospitalization in subjects with chronic HF.  相似文献   
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We report the case of a 72-year-old man with ST-elevation acute myocardial infarction and severe intra-ventricular gradient (>40 mmHg), who died with left ventricular rupture (LVR). We postulate that severe intra-ventricular gradient detectable at admission may be related to subsequent LVR and proposed as a risk factor for LVR.  相似文献   
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Engineering of sophisticated synthetic 3D scaffolds that allow controlling behaviour and location of the cells requires advanced micro/nano‐fabrication techniques. Ultrafast laser micro‐machining employing a 1030‐nm wavelength Yb:KGW femtosecond laser and a micro‐fabrication workstation for micro‐machining of commercially available 12.7 and 25.4 μm thickness polyimide (PI) film was applied. Mechanical properties of the fabricated scaffolds, i.e. arrays of differently spaced holes, were examined via custom‐built uniaxial micro‐tensile testing and finite element method simulations. We demonstrate that experimental micro‐tensile testing results could be numerically simulated and explained by two‐material model, assuming that 2–6 μm width rings around the holes possessed up to five times higher Young's modulus and yield stress compared with the rest of the laser intacted PI film areas of ‘dog‐bone’‐shaped specimens. That was attributed to material modification around the micro‐machined holes in the vicinity of the position of the focused laser beam track during trepanning drilling. We demonstrate that virgin PI films provide a suitable environment for the mobility, proliferation and intercellular communication of human bone marrow mesenchymal stem cells, and discuss how cell behaviour varies on the micro‐machined PI films with holes of different diameters (3.1, 8.4 and 16.7 μm) and hole spacing (30, 35, 40 and 45 μm). We conclude that the holes of 3.1 μm diameter were sufficient for metabolic and genetic communication through membranous tunneling tubes between cells residing on the opposite sides of PI film, but prevented the trans‐migration of cells through the holes. Copyright © 2016 John Wiley & Sons, Ltd.  相似文献   
95.
Mechanical stabilization of oncological vertebral fractures with cement augmentation is the first mechanism of pain relief, with or without restoration of vertebral body height. The aim of this study was to assess the safety and efficacy of vertebroplasty for painful vertebral body fractures in patients with multiple myeloma, in each phase of the disease. The authors reviewed a consecutive group of patients with multiple myeloma who underwent vertebroplasty at our Institute between November 2003 and December 2005. Twenty-eight levels were performed on 11 patients during 14 treatment sessions. All patients suffered from intractable back pain, and presented various lesion types (with and without fractures of posterior wall, and with and without epidural disease). The preoperative median visual analog scale (VAS) score was 7. The median duration of symptoms was 1.1 months. Eight patients were ambulating with orthopaedic devices (57%) in the pre-treatment period. Improvement or complete pain relief was observed in all patients (immediately in 8 cases, and after 2 days in 6 cases). The median VAS pain score decreased to 2. There was no symptomatic procedure-related complication. There were three cases (21%) of PMMA leakage: in the disc space in one case (7%), and in the anterior spinal canal in two cases (14%). Complete removal of orthopaedic devices was obtained in five patients (36%). No new deformation or collapse of the treated vertebrae was observed during the follow-up (range 1 day–25 months). In conclusion, vertebroplasty is a safe and efficient procedure in the treatment of painful vertebral body fractures in patients with multiple myeloma, without potential contraindications, such as fractures of the posterior wall or epidural disease. We also treated three and more levels in 28% of cases in a single session without complications. Due to the early pain relief and the low complication rate, it is possible to expand the indication to vertebroplasty for the prophylactic augmentation of those vertebral bodies at risk of fracture in which significant neoplastic substitution of the body is present.  相似文献   
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