Bone marrow stem cells (BMSCs) represent a collection of different cell types exhibiting stem cell characteristics but with notable heterogeneity. Among these, Skeletal Stem Cells (SSCs) represent a distinct matrix subgroup within BMSC and demonstrate a specialized capacity to facilitate bone formation, recruit chondrocytes, and contribute to hematopoiesis. SSCs play a pivotal role in orchestrating the functions of skeletal organs. Local ischemia has a significant impact on cell survival and function. We hypothesize that bone ischemia induces alterations in the differentiation potential of SSCs, consequently influencing changes in bone structure. We mechanically dissected tissue from the necrotic segment in the femoral head and more normal appearing areas from the femoral neck of specimens from 5 patients diagnosed with osteonecrosis of the femoral head (ONFH). These tissues were enzymatically broken down into individual cell suspensions. Utilizing fluorescence-activated cell sorting (FACS) based on specific surface markers indicative of human skeletal stem cells (hSSC), namely CD45- CD235a- CD31- TIE2- Podoplanin (PDPN)+ CD146- CD73+ CD164+, we isolated a distinct cell population. Subsequent in vitro evaluations, focusing on clonogenicity, osteogenesis, and chondrogenesis were conducted to assess the functional prowess of these SSCs. Moreover, we introduced BMP2 at a concentration of 50ng/ml to SSCs extracted from necrotic regions to potentially reinstate their osteogenic capabilities. We effectively isolated SSCs from both Necrotic and Non-necrotic Zones. We observed an augmented clonal formation capacity and chondrogenesis ability of SSCs isolated from the necrotic region, accompanied by a significant decline in osteogenic ability ( Ischemia adversely affects the proliferation and function of SSCs, resulting in a diminished osteogenic capacity and an insensitivity to BMP2, ultimately leading to structural alterations in bone tissue.
Many case reports and small studies have suggested that cobalt
ions are a potential cause of cardiac complications, specifically
cardiomyopathy, after metal-on-metal (MoM) total hip arthroplasty
(THA). The impact of metal ions on the incidence of cardiac disease
after MoM THA has not been evaluated in large studies. The aim of
this study was to compare the rate of onset of new cardiac symptoms
in patients who have undergone MoM THA with those who have undergone
metal-on-polyethylene (MoP) THA. Data were extracted from the Standard Analytics Files database
for patients who underwent MoM THA between 2005 and 2012. Bearing
surface was selected using International Classification of Diseases
ninth revision codes. Patients with a minimum five-year follow-up
were selected. An age and gender-matched cohort of patients who underwent
MoP THA served as a comparison group. New diagnoses of cardiac disease
were collected during the follow-up period. Comorbidities and demographics
were identified and routine descriptive statistics were used.Aims
Patients and Methods