Transcription Factor Runx2 in Necrotic Femoral Head Tissue: Study Protocol for a Retrospective Non-randomized, Parallel-controlled Clinical Trial
试验速览
- 阶段
- 不适用
- 状态
- 已完成
- 入组人数
- 30
- 主要终点
- Runx2 mRNA expression in femoral head and neck tissue
研究概览
简要总结
The trial detected mRNA expression of several bone repair-related genes, including Runx2, in the femoral head and neck of patients with osteonecrosis of femoral head (ONFH) . Runx2 expression was compared with that of identical tissue from osteoarthritis patients to identify expression in necrotic femoral head tissue, which will help clarify the role and possible clinical significance of Runx2 in femoral head necrosis, bone repair and reconstruction.
详细描述
Osteonecrosis of the femoral head (ONFH) is a destructive degenerative disease that can develop into subchondral and articular facet cartilage collapse. Among proposed pathological mechanisms underlying ONFH, much attention has been paid to the theory of increased intraosseous pressure. The core of this theory is an unbalance in osteoblast and adipocyte differentiation of bone marrow mesenchymal stem cells (BM-MSCs). The occurrence and development of osteonecrosis has been related to abnormal metabolism and differentiation of BM-MSCs. Normal adult BM-MSCs can differentiate into adipocytes and osteoblasts to maintain normal physical status. In response to exogenous stimuli (for example, use of exogenous hormones or alcohol), the bone marrow microenvironment changes to allow more BM-MSCs to differentiate into adipocytes, leading to increased bone marrow cavity pressure, thereby inducing ischemic ONFH.
Overexpression of Runx2, an osteoblast-specific transcription factor, can increase osteoblast differentiation of BM-MSCs, thereby strengthening the effects of BM-MSC transplantation to repair bone defects and necrosis. By controlling expression of osteocalcin, an osteoblast-specific gene, Runx2 also controls osteoblast differentiation and functioning. Osteocalcin, a common indicator used to evaluate bone formation and conversion rate, is a bone metabolism-regulating factor generated and secreted by osteoblasts; thus, it is considered to be a good marker for bone functioning. In a previous study by Chen et al., seven patients with glucocorticoid-induced ONFH at Association Research Circulation Osseous (ARCO) Stage IV were included as an experimental group and seven patients with femoral neck fracture served as a control group. Immunohistochemical staining and quantitative polymerase chain reaction (PCR) were used to detect osteocalcin immunoreactivity and Runx2 expression in femoral head and neck tissue. They found that glucocorticoid-induced ONFH is likely closely related to osteocalcin.
ONFH results from an interruption of the blood supply to the femoral head or injury-caused death of chondrocytes and bone marrow components. During subsequent repair processes, bone morphogenetic proteins (BMPs) not only stimulate BM-MSCs to differentiate into osteoblasts, but also promote osteoblast growth; BMP-2 is the key factor regulating bone tissue formation.
Sclerotin loss after ONFH is closely related to an unbalance in osteoclast activity and differentiation. Osteoprotegerin can inhibit bone absorption of mature osteoblasts and induce apoptosis of osteoblasts. Osteoprotegerin and its ligand system have been confirmed as key factors regulating osteoblast formation and differentiation, while bone absorption plays an important role in the pathogenesis and treatment of osteoporosis, osteoarthritis and bone tumors.
To the best of our knowledge, there have been no controlled clinical trials examining BMP, osteocalcin, osteoprotegerin or, in particular, Runx2 messenger RNA (mRNA) expression in femoral head tissue of patients with ONFH at Ficat Stage III-IV and osteoarthritis. In this non-randomized, parallel-controlled trial, we will use real-time PCR (RT-PCR) to detect Runx2, BMP-2, BMP-7 and osteoprotegerin mRNA expression in femoral head tissue from patients with ONFH at Ficat Stage III-IV. Simultaneously, we will detect osteocalcin immunoreactivity using an immunohistochemical staining method, and compare with osteoarthritis patients for the purpose of clarifying mechanisms of these factors in bone reconstruction post-ONFH.
研究设计
- 研究类型
- Observational
- 观察模型
- Case Control
- 时间视角
- Prospective
入排标准
- 年龄范围
- 25 Years 至 65 Years(Adult, Older Adult)
- 性别
- All
- 接受健康志愿者
- 否
入选标准
- •Diagnosed as ONFH at Ficat Stage III-IV by anteroposterior and lateral X- ray and/or computed tomography (CT) images
- •Diagnosed with hip joint osteoarthritis by laboratory examinations and X-ray images
- •Subjected to total hip replacement for the first time
- •Able to tolerate anesthesia and surgery
- •Provide informed consent regarding the benefits and risks of participation in the trial
排除标准
- •Complicated by severe primary cardiovascular disease, hepatic and/or renal inadequacy, or hematopoietic system disorders
- •Pregnant or lactating woman
- •With blood coagulation disorder
- •With a history of epilepsy or mental disorder
- •Have participated in other clinical trials within 30 days prior to recruitment
- •Are taking part in other clinical trials
- •Cannot manage him/herself or have poor self-control ability
- •Human immunodeficiency virus (HIV)-positive or hepatitis virus-positive
- •Active systemic or local infection
- •Poor tolerance to total hip replacement
结局指标
主要结局
Runx2 mRNA expression in femoral head and neck tissue
时间窗: During surgery
Runx2, a primary transcription factor controlling osteoblast commitment and differentiation, can be considered an osteoblast phenotype marker.
次要结局
- bone morphogenetic protein-2(BMP-2)(During surgery)
- osteoprotegerin(During surgery)
- osteocalcin immunoreactivity(During surgery)
- bone morphogenetic protein-7(BMP-7)(During surgery)
研究者
Liqing Yang
Vice President
Shengjing Hospital
