1.Vitronectin regulates osteoclastogenesis and bone remodeling in a mouse model of osteoporosis
Mari NAKASHIMA ; Akiko SUZUKI ; Kei HASHIMOTO ; Mayu YAMASHITA ; Yoko FUJIWARA ; Yasunori MIYAMOTO
Anatomy & Cell Biology 2024;57(2):305-315
Vitronectin (VN) is an extracellular matrix protein with a crucial role in regulating bone remodeling. In this study, we aimed to investigate the effect of VN deficiency in a mouse model of osteoporosis induced by ovariectomy (OVX).The findings revealed that the absence of VN led to an increase in the activity of tartrate-resistant acid phosphatase (TRAP), a marker for osteoclasts, in the plasma of OVX-operated mice. TRAP staining further demonstrated that VN deficiency resulted in a higher number of osteoclasts within the femurs of OVX-operated mice. X-ray micro-computed tomography analysis of the femurs in OVX-operated mice indicated that VN deficiency significantly suppressed the OVX-induced increase of marrow area and total volume of bone. Additionally, we assessed structural model index (SMI) and degree of anisotropy (DA) as indices of osteoporosis. The results showed that VN deficiency effectively attenuated the OVX-induced increase in SMI and DA among OVX-operated mice. In summary, our study demonstrates the vital role of VN in regulating osteoclastogenesis and bone remodeling in the mouse model of osteoporosis.
2.Vitronectin regulates osteoclastogenesis and bone remodeling in a mouse model of osteoporosis
Mari NAKASHIMA ; Akiko SUZUKI ; Kei HASHIMOTO ; Mayu YAMASHITA ; Yoko FUJIWARA ; Yasunori MIYAMOTO
Anatomy & Cell Biology 2024;57(2):305-315
Vitronectin (VN) is an extracellular matrix protein with a crucial role in regulating bone remodeling. In this study, we aimed to investigate the effect of VN deficiency in a mouse model of osteoporosis induced by ovariectomy (OVX).The findings revealed that the absence of VN led to an increase in the activity of tartrate-resistant acid phosphatase (TRAP), a marker for osteoclasts, in the plasma of OVX-operated mice. TRAP staining further demonstrated that VN deficiency resulted in a higher number of osteoclasts within the femurs of OVX-operated mice. X-ray micro-computed tomography analysis of the femurs in OVX-operated mice indicated that VN deficiency significantly suppressed the OVX-induced increase of marrow area and total volume of bone. Additionally, we assessed structural model index (SMI) and degree of anisotropy (DA) as indices of osteoporosis. The results showed that VN deficiency effectively attenuated the OVX-induced increase in SMI and DA among OVX-operated mice. In summary, our study demonstrates the vital role of VN in regulating osteoclastogenesis and bone remodeling in the mouse model of osteoporosis.
3.Vitronectin regulates osteoclastogenesis and bone remodeling in a mouse model of osteoporosis
Mari NAKASHIMA ; Akiko SUZUKI ; Kei HASHIMOTO ; Mayu YAMASHITA ; Yoko FUJIWARA ; Yasunori MIYAMOTO
Anatomy & Cell Biology 2024;57(2):305-315
Vitronectin (VN) is an extracellular matrix protein with a crucial role in regulating bone remodeling. In this study, we aimed to investigate the effect of VN deficiency in a mouse model of osteoporosis induced by ovariectomy (OVX).The findings revealed that the absence of VN led to an increase in the activity of tartrate-resistant acid phosphatase (TRAP), a marker for osteoclasts, in the plasma of OVX-operated mice. TRAP staining further demonstrated that VN deficiency resulted in a higher number of osteoclasts within the femurs of OVX-operated mice. X-ray micro-computed tomography analysis of the femurs in OVX-operated mice indicated that VN deficiency significantly suppressed the OVX-induced increase of marrow area and total volume of bone. Additionally, we assessed structural model index (SMI) and degree of anisotropy (DA) as indices of osteoporosis. The results showed that VN deficiency effectively attenuated the OVX-induced increase in SMI and DA among OVX-operated mice. In summary, our study demonstrates the vital role of VN in regulating osteoclastogenesis and bone remodeling in the mouse model of osteoporosis.
4.Trends in the Number and Multiplicity of Blood Culture Submissions in Hospitals in the Minami-Ibaraki Area of Japan
Hanako Osuka ; Shigemi Hitomi ; Tsuyoshi Oishi ; Kazunori Miyamoto ; Tsukasa Kondo ; Teruo Urata ; Eiichi Yabata ; Haruyuki Takei ; Yasunori Funayama ; Miki Goto ; Hiroshi Koganemaru
General Medicine 2014;15(1):29-33
Background: Blood culture is an essential examination for diagnosis of causative microorganisms and determination of optimal antimicrobials in serious cases of infectious diseases. We examined temporal trends in the number and multiplicities of blood culture submission, two pre-analytic parameters indicating quality of the examination, in the Minami Ibaraki Area.
Methods: We reviewed all computerized and available paper-based laboratory records of microbiological examination in five hospitals in the area between 2002 and 2011.
Results: Blood culture submissions, estimated to be 2.4–7.3 (median: 5.1) sets per hospital bed, 8.6–23 (17) per 1,000 inpatient-days, and 0.13–0.41 (0.25) per newly admission in 2011, almost constantly increased during the study period in all hospitals. Proportions of blood specimens to all materials for microbiological cultures also increased up to 15–30% (20%) in 2011. In contrast, it was not until the latter half of the study period that solitary submission, accounting for 26–56% (35%) in 2011, decreased. Positive blood cultures were between 11 and 28% through the study period. Coagulase-negative staphylococci accounted for approximately one fourth of recovered organisms in 2006 and 2011.
Conclusion: Frequency and multiplicity of blood culture submission markedly increased in hospitals in the Minami-Ibaraki Area of Japan.