Searchable abstracts of presentations at key conferences on calcified tissues

ba0003pp176 | Cell biology: osteocytes | ECTS2014

Effects of osteocyte apoptosis and mechanical strain on osteoblast proliferation and migration

Ko Seong-Hee , Lee Hee Su , Baek Kyunghwa

There are several evidences that osteocyte plays a critical role in bone remodeling. Healthy or apoptotic osteocytes can send signals to other bone surface cells like osteoblasts, osteoclasts, osteoclast precursors and bone lining cells through their networking in canaliculi. Therefore, to determine the role for osteocytes in bone remodeling, we examined the effect of healthy and apoptotic osteocytes on osteoblasts proliferation and recruitment. In addition, the effects of mec...

ba0003pp268 | Osteoporosis: pathophysiology and epidemiology | ECTS2014

BMD and biochemical bone markers in premenopausal amenorrhea

Kang Byung-Moon , Kwon Su-Kyoung , Lee Kyung-Hee

Objectives: This study was designed to investigate the prevalence of low bone mass, the influence of amenorrhea on bone mineral density (BMD), and the cause of amenorrhea that provoke the severe low bone mass in premenopausal women.Materials and methods: One hundred and seventy one women diagnosed with amenorrhea in premenopausal women were included in this study. All patients underwent history taking, gynecological examination, and check serum hormone l...

ba0001pp241 | Cell biology: osteocytes | ECTS2013

Inhibition of osteocyte-induced osteoclast precursor proliferation and migration by mechanical strain

Ko Seong-Hee , Lee Heesu

The osteocyte most likely plays a role in bone remodeling by instructing osteoclasts to remove bone at specific sites. This entire process includes recruitment, proliferation and differentiation of osteoclast precursors. And osteocytes are responsible for detecting and responding to mechanical strain and may send signal to other cells. Therefore, to determine the role for osteocytes and mechanical strain in bone remodeling, we examined the effect of steady or pulsatile shear s...

ba0004is2biog | (1) (1) | ICCBH2015

Bone and osteocyte biology: lessons from human genetic diseases

Lee Brendan

Biographical DetailsDr Brendan Lee is the Robert and Janice McNair Endowed Chair in Molecular and Human Genetics, Professor and Interim Chairman of the Department of Molecular and Human Genetics at Baylor College of Medicine. Dr B Lee co-directs the joint MD Anderson Cancer Center and Baylor College of Medicine Rolanette and Berdon Lawrence Bone Disease Program of Texas, and the Baylor Co...

ba0005p95 | Calciotropic and phosphotropic hormones and mineral metabolism | ECTS2016

Relationship between risk of preterm birth and vitamin D deficiency

Kim Tae-Hee , Won Byun Dong , Lee Hae-Hyeong , Hee Lee Seung , Kim Yeon-Suk

Background and objectives: Vitamin D deficiency causes calcium-depleted bone, which further weakens the bones and increases the risk of fractures. Also, It is known as related to obstetrics problem like gestational diabetes, infections, preeclampsia and incidence of caesarean section as well as glucose metabolism, immune system, cardiovascular diseases and cancer.Recently, the relationship between preterm birth and vitamin D deficiency becomes the main i...

ba0005p338 | Osteoporosis: pathophysiology and epidemiology | ECTS2016

Nonalcoholic fatty liver disease is associated with postmenopausal osteoporosis

Moon Seong-Su , Lee Young-Sil , Kim Taekyoon

Osteoporosis is known to be associated with metabolic diseases characterized by insulin resistance, such as central obesity, diabetes, and metabolic syndrome. Non-alcoholic fatty liver disease (NAFLD) is also increased in such insulin resistant conditions. However, little is known about whether osteoporosis and nonalcoholic fatty liver disease are etiologically related to each other or not. We investigated whether bone mineral density(BMD) is associated with NAFLD in pre- and ...

ba0003pp170 | Cell biology: osteoclasts and bone resorption | ECTS2014

DBZ, a γ-secretase inhibitor, suppresses bone resorption by inhibiting c-Src activity

Jin Won Jong , Kim Ha-Neui , Kim Hong-Hee , Lee Zang Hee

Tyrosine kinase c-Src plays an important role in actin ring formation and bone resorption activity in osteoclasts. Therefore, c-Src has been targeted for the treatment of osteolytic disorders. In the present study, we investigated anti-resorptive effect of dibenzazepine (DBZ), one of the γ-secretase inhibitors (GSIs), on osteoclast-mediated excessive bone resorption. DBZ did not affect osteoclast differentiation, but disturbed actin ring formation and inhibited osteoclast...

ba0005p171 | Cell biology: osteoclasts and bone resorption | ECTS2016

Notch 2 signaling promotes osteoclast resorption via activation of PYK2

Jong Jin Won , Kim Bongjun , Kim Jung-Wook , Kim Hong-Hee , Hee Lee Zang

Notch signaling plays a central role in various cell fate decisions, including skeletal development. Recently, Notch signaling was implicated in osteoclast differentiation and maturation, including the resorption activity of osteoclasts. However, the specific involvement of notch signaling in resorption activity was not fully investigated. Here, we investigated the roles of Notch signaling in the resorption activity of osteoclasts by use of the γ-secretase inhibitor diben...

ba0003pp155 | Cell biology: osteoclasts and bone resorption | ECTS2014

Role of caveolin-1 in osteoclastogenesis

Kim Hong-Hee , Lee Yong Deok , Yoon Soo-Hyun

Lipid raft microdomains have important role in cellular signaling. Caveolae are a specialized type of lipid rafts that are stabilized by oligomers of caveolin protein. Here we showed that caveolin-1 (Cav-1) is a critical membrane structural protein of osteoclast. In microarray analysis, we found that caveolin-1 was significantly up-regulated by RANKL. Knock-down of Cav-1 in bone marrow derived-macrophage reduced osteoclastogenesis. Consistent with the in vitro results...

ba0003pp171 | Cell biology: osteoclasts and bone resorption | ECTS2014

The purinergenic receptor P2Y14 is essential for RANKL-induced osteoclastogenesis

Park Jin Hee , Jung Eutteum , Lee Soo Young

The P2Y14 (purinergic receptor P2Y, G protein coupled, 14) receptor for UDP-glucose and other UDP-sugars has been implicated in the regulation of the stem cell compartment as well as neuroimmune function. However, the role of P2Y14 in osteoclast formation is completely unknown. We found that RANKL selectively induced P2Y14 among seven mammalian P2Y receptors when analysed at both the mRNA and protein level, but inhibitors of the MAP pathway suppressed induction of P2Y14 protei...