The decrease in the number of satellite cells (SCs), contributing to myofibre formation and reconstitution, and their proliferative capacity, leads to muscle loss, a condition known as sarcopenia. Resistance training can prevent muscle loss; however, the underlying mechanisms of resistance training effects on SCs are not well understood. We therefore conducted a comprehensive transcriptome analysis of SCs in a mouse model. We compared the differentially expressed genes of SCs in young mice (eight weeks old), middle-aged (48-week-old) mice with resistance training intervention (MID+ T), and mice without exercise (MID) using next-generation sequencing and bioinformatics.Aims
Methods
Osteoporosis is a metabolic disease resulting in progressive loss of bone mass as measured by bone mineral density (BMD). Physical exercise has a positive effect on increasing or maintaining BMD in postmenopausal women. The contribution of exercise to the regulation of osteogenesis in osteoblasts remains unclear. We therefore investigated the effect of exercise on osteoblasts in ovariectomized mice. We compared the activity of differentially expressed genes of osteoblasts in ovariectomized mice that undertook exercise (OVX+T) with those that did not (OVX), using microarray and bioinformatics.Objectives
Methods
It has been suggested that extracorporeal shockwave
therapy is a safe and effective treatment for pain relief from recalcitrant
plantar fasciopathy (PF). However, the changes in gait and associated
biomechanical parameters have not been well characterised. We recruited
12 female patients with recalcitrant PF who had a mean age of 59
years (50 to 70) and mean body mass index of 25 kg/m2 (22
to 30). The patients reported a mean duration of symptoms of 9.3
months (6 to 15). Shockwave therapy consisting of 1500 impulses
(energy flux density 0.26 mJ/mm2) was applied for three
sessions, each three weeks apart. A pain visual analogue scale (VAS)
rating, plantar pressure assessment and motion analysis were carried
out before and nine weeks after first shock wave therapy. It was demonstrated
that patients increased their walking velocity and cadence as well
indicating a decrease in pain after shockwave therapy. In the symptomatic
foot, the peak contact pressure over the forefoot increased and
the contact area over the digits decreased. The total foot impulse
also decreased as did stance duration. The duration the centre of
pressure remained in the hindfoot increased in the symptomatic foot
after shockwave therapy. The differences in centre of pressure trajectory
at baseline decreased at final follow-up. In conclusion, shockwave
therapy not only decreased the pain VAS rating but also improved
the gait parameters of the symptomatic foot in PF patients. Cite this article:
In this study of 41 patients, we used proteomic, Western blot and immunohistochemical analyses to show that several reactive oxygen species scavenging enzymes are expressed differentially in patients with primary osteoarthritis and those with non-loosening and aseptic loosening after total hip replacement (THR). The patients were grouped as A (n = 16, primary THR), B (n = 10, fixed THR but requiring revision for polyethylene wear) and C (n = 15, requiring revision due to aseptic loosening) to verify the involvement of the identified targets in aseptic loosening. When compared with Groups A and B, Group C patients exhibited significant up-regulation of transthyretin and superoxide dismutase 3, but down-regulation of glutathione peroxidase 2 in their hip synovial fluids. Also, higher levels of superoxide dismutase 2 and peroxiredoxin 2, but not superoxide dismutase 1, catalase and glutathione perioxidase 1, were consistently detected in the hip capsules of Group C patients. We propose that dysregulated reactive oxygen species-related enzymes may play an important role in the pathogenesis and progression of aseptic loosening after THR.
We conducted a retrospective study to investigate the effect of femoral bowing on the placement of components in total knee replacement (TKR), with regard to its effect on reestablishing the correct mechanical axis, as we hypothesised that computer-assisted total knee replacement (CAS-TKR) would produce more accurate alignment than conventional TKR. Between January 2006 and December 2009, 212 patients (306 knees) underwent TKR. The conventional TKR was compared with CAS-TKR for accuracy of placement of the components and post-operative alignment, as determined by five radiological measurements. There were significant differences in the reconstructed mechanical axes between the bowed and the non-bowed group after conventional TKR (176.2° ( For patients with significant femoral bowing, the reconstructed mechanical axes were significantly closer to normal in the CAS group than in the conventional group (179.2° (