نتایج جستجو برای: osteocytes

تعداد نتایج: 2034  

Journal: :Cancer research 2015
Joseph L Sottnik Jinlu Dai Honglai Zhang Brittany Campbell Evan T Keller

Cross-talk between tumor cells and their microenvironment is critical for malignant progression. Cross-talk mediators, including soluble factors and direct cell contact, have been identified, but roles for the interaction of physical forces between tumor cells and the bone microenvironment have not been described. Here, we report preclinical evidence that tumor-generated pressure acts to modify...

Journal: :Journal of dental research 2001
T Yamashiro T Fukunaga N Kobashi H Kamioka T Nakanishi M Takigawa T Takano-Yamamoto

Connective tissue growth factor (CTGF), which is encoded by an immediate early gene and a member of the CCN family, has been shown to be expressed in osteoblasts, fibroblasts, and chondrocytes. Although CTGF is expressed in bone and cartilage tissues, we tested the hypothesis that CTGF is regulated in mechanotransduction. In the alveolar bone during experimental tooth movement, CTGF mRNA was ex...

Journal: :FASEB journal : official publication of the Federation of American Societies for Experimental Biology 1999
E H Burger J Klein-Nulend

The capacity of bone tissue to alter its mass and structure in response to mechanical demands has long been recognized but the cellular mechanisms involved remained poorly understood. Over the last several years significant progress has been made in this field, which we will try to summarize. These studies emphasize the role of osteocytes as the professional mechanosensory cells of bone, and th...

2010
P. Shang A. R. Qian R. Meng Z. C. Tian M. Z. Luo L. F. Hu

Bone loss is a negative balance course especially occurred after long-term space flight for astronauts under weightlessness [1]. Bone remodeling is a dynamic process that requires the coordinated interaction of osteocytes, osteoblasts, and osteoclasts, collaborating in basic multicellular units (BMUs) [2]. Recently,osteocytes are believed to be the mechanosensors of bone, responding to mechanic...

Journal: :American journal of physiology. Endocrinology and metabolism 2012
Petra Juffer Richard T Jaspers Paul Lips Astrid D Bakker Jenneke Klein-Nulend

Lack of physical activity results in muscle atrophy and bone loss, which can be counteracted by mechanical loading. Similar molecular signaling pathways are involved in the adaptation of muscle and bone mass to mechanical loading. Whether anabolic and metabolic factors regulating muscle mass, i.e., insulin-like growth factor-I isoforms (IGF-I Ea), mechano growth factor (MGF), myostatin, vascula...

Journal: :Calcified Tissue International 2013

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