Vascular calcification is a common clinical complication of cardiovascular disease, diabetes and end-stage renal failure, associated with significant morbidity and mortality. In this study we demonstrate that factors secreted by the hypertrophic chondrocytes induce matrix mineralization and osteoblastic transformation in cultured mouse vascular smooth muscle cells (VSMCs). In addition, these factors render VSMCs responsive to BMP4 and Wnt3a ligands. Neither BMP-4 nor Wnt3a could induce mineralization in short-term (up to 8 days) cultures of primary mouse VSMCs. However, both ligands act synergistically with the chondrocyte-conditioned medium causing a further increase in VSMC calcification. Finally, we show that commitment of VSMCs towards the BMP-regulated mineralization can be induced by the chondrocyte-secreted bone anabolic factor VEGF. In addition, expression profiling suggests a novel role in vascular calcification for the matrix proteins previously known to regulate bone formation and mineralization (including MMP3, fibulin, 11betahydroxysteroid dehydrogenase 1 and retinoic acid receptor responder 2). The results of this study may contribute to further understanding of the cellular mechanisms responsible for vascular calcification and provide important information for the treatment of this pathology.
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http://dx.doi.org/10.1007/s00223-007-9073-6 | DOI Listing |
J Menopausal Med
December 2024
Department of Obstetrics and Gynecology, Soonchunhyang University Bucheon Hospital, Bucheon, Korea.
Vitamin K (VitK) exists in multiple forms, with Vitamin K1 (VitK1) and Vitamin K2 (VitK2) being the most prominent. VitK1 primarily regulates clotting factors in the liver, whereas VitK2 plays a crucial role in activating extrahepatic proteins involved in various physiological processes. VitK plays a pivotal role in various physiological functions, including vascular health, bone metabolism, neuroprotection, hepatoprotection, immune response modulation, dental health, and glucose control.
View Article and Find Full Text PDFZhonghua Yi Xue Za Zhi
January 2025
Department of Neurology, Beijing Children's Hospital, Capital Medical University, National Center for Children's Health, Beijing100045, China.
This study aims to analyze the etiology and short-term prognosis of childhood arterial ischemic stroke (AIS) in Chinese children, based on the COIST classification system. A total of 380 pediatric patients with a first-ever diagnosis of AIS treated at Beijing Children's Hospital between September 2015 and April 2024 were retrospectively included. Etiology was analyzed according to COIST classification.
View Article and Find Full Text PDFJ Orthop Sci
January 2025
Department of Orthopaedic Surgery, Nihon University Itabashi Hospital, 30-1 Oyaguchikamimati Itabashi-ku Tokyo 173-8610 Japan.
Background: Hounsfield unit values (HU) are known to correlate with dual-energy X-ray absorptiometry (DXA), and they are gaining attention as a new method for assessing Bone mineral density (BMD) that is not affected by the limitations of DXA, such as degeneration, scoliosis, and vascular calcification. The purpose of this study was to compare the efficacy of HU and DXA T-scores in predicting adjacent vertebral fractures (AVF) following balloon kyphoplasty (BKP) using the same computed tomography and DXA at one institution.
Methods: The study included 84 cases (20 males, 64 females, mean age 79.
BMJ Case Rep
January 2025
General Surgery, Betsi Cadwaladr University Health Board, Bangor, UK
A woman in her 70s with hypertension, breast cancer and diverticulosis underwent laparoscopic anterior resection for a tubule-villous adenoma, converted to open Hartmann's with aorto-bi-iliac bypass due to a vascular injury. Intraoperative complications included haem-o-lok penetration of the calcified aorta, necessitating vascular team intervention. Postoperative issues included bilateral popliteal artery emboli requiring embolectomy and fasciotomy, and a parastomal abscess.
View Article and Find Full Text PDFInt J Biol Macromol
January 2025
Textile Innovation R&D Department, Korea Institute of Industrial Technology, Ansan 15588, Republic of Korea. Electronic address:
Artificial vascular grafts, as blood vessel substitutes, are a prime challenge in tissue engineering and biomaterial research. An ideal artificial graft must have physiological and mechanical properties similar to those of a natural blood vessel, and hemocompatibility on its surface. We designed and fabricated artificial grafts by applying 3D printing and templated technology, which is endowed with morphologically patient-specific vascular reconstruction.
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