Page last updated: 2024-11-04

sodium fluoride and Atherogenesis

sodium fluoride has been researched along with Atherogenesis in 23 studies

Research Excerpts

ExcerptRelevanceReference
"Positron emission and computed tomography was performed using 18F-sodium fluoride (18F-NaF, calcification) and 18F-fluorodeoxyglucose (18F-FDG, inflammation) in 101 patients with calcific aortic valve disease (81 aortic stenosis and 20 aortic sclerosis)."5.17Aortic stenosis, atherosclerosis, and skeletal bone: is there a common link with calcification and inflammation? ( Baird, A; Boon, NA; Dweck, MR; Joshi, NV; Khaw, HJ; Luo, EL; Makiello, P; Mirsadraee, S; Newby, DE; Rudd, JH; Sng, GK; van Beek, EJ; Williams, MC, 2013)
"We examined the literature to elucidate the role of 18F-sodium fluoride (NaF)-PET in atherosclerosis."5.05Atherosclerosis imaging with ( Alavi, A; Gerke, O; Høilund-Carlsen, PF; Sturek, M, 2020)
"The rabbits were divided into 2 groups as follows: an atherosclerosis group (n = 10) and an atorvastatin group (n = 10)."4.02Atorvastatin Promotes Macrocalcification, But Not Microcalcification in Atherosclerotic Rabbits: An 18F-NaF PET/CT Study. ( Chen, X; Liang, Z; Nie, M; Yan, Y; Zhang, X; Zhao, Q, 2021)
"Atherosclerosis is a common age-related disorder and is the major cause of morbidity and mortality in the developed countries."2.58The Role of PET in Evaluating Atherosclerosis: A Critical Review. ( Al-Zaghal, A; Alavi, A; Constantinescu, CM; Høilund-Carlsen, PF; Moghbel, M; Werner, TJ, 2018)
"Vascular calcification is a complex biological process that is a hallmark of atherosclerosis."1.42Identifying active vascular microcalcification by (18)F-sodium fluoride positron emission tomography. ( Bennett, MR; Bird, JL; Brindle, KM; Davenport, AP; Dweck, MR; Gallagher, FA; Irkle, A; Joshi, FR; Lewis, DY; Newby, DE; Rudd, JH; Skepper, JN; Vesey, AT; Warburton, EA, 2015)

Research

Studies (23)

TimeframeStudies, this research(%)All Research%
pre-19900 (0.00)18.7374
1990's0 (0.00)18.2507
2000's1 (4.35)29.6817
2010's11 (47.83)24.3611
2020's11 (47.83)2.80

Authors

AuthorsStudies
Zhang, X1
Chen, X1
Liang, Z1
Nie, M1
Yan, Y1
Zhao, Q1
Fletcher, AJ1
Tew, YY1
Tzolos, E1
Joshi, SS1
Kaczynski, J1
Nash, J1
Debono, S1
Lembo, M1
Kwiecinski, J1
Bing, R1
Syed, MBJ1
Doris, MK1
van Beek, EJR1
Moss, AJ1
Jenkins, WS1
Walker, NL1
Joshi, NV2
Pawade, TA1
Adamson, PD1
Whiteley, WN1
Wardlaw, JM1
Slomka, PJ1
Williams, MC2
Newby, DE4
Dweck, MR4
Alavi, A8
Werner, TJ6
Høilund-Carlsen, PF8
Revheim, ME4
Piri, R2
Madsen, PL1
Gerke, O3
Sturek, M3
Paydary, K2
Emamzadehfard, S1
Gholami, S1
Pourhassan, S1
Arani, LS1
Zirakchian Zadeh, M1
Saboury, B2
Øestergaard, B1
Borja, AJ1
Samadi Samarin, D1
Mehdizadeh Seraj, S1
Kalbush, E1
Ayubcha, C1
Morris, MA1
Abildgaard, N1
Benz, DC1
Buechel, RR1
Dorbala, S1
Kitagawa, T1
Nakano, Y1
Nogales, P1
Velasco, C1
Mota-Cobián, A1
González-Cintado, L1
Mota, RA1
España, S1
Mateo, J1
Bentzon, JF1
Edenbrandt, L1
Larsson, M1
Enqvist, O1
Skovrup, S1
Iversen, KK1
McKenney-Drake, ML1
Moghbel, MC1
Alloosh, M1
Houshmand, S1
Moe, S1
Salavati, A1
Sturek, JM1
Territo, PR1
Weaver, C1
Moghbel, M1
Al-Zaghal, A1
Constantinescu, CM1
Xing, H1
Zhang, S1
Bu, W1
Zheng, X1
Wang, L1
Xiao, Q1
Ni, D1
Zhang, J1
Zhou, L1
Peng, W1
Zhao, K1
Hua, Y1
Shi, J1
Buscombe, JR1
Irkle, A1
Vesey, AT1
Lewis, DY1
Skepper, JN1
Bird, JL1
Joshi, FR2
Gallagher, FA1
Warburton, EA1
Bennett, MR1
Brindle, KM1
Rudd, JH3
Davenport, AP1
Brammen, L1
Steiner, S1
Berent, R1
Sinzinger, H1
Pipitone, N1
Salvarani, C1
Versari, A1
Derlin, T1
Richter, U1
Bannas, P1
Begemann, P1
Buchert, R1
Mester, J1
Klutmann, S1
Li, Y1
Berenji, GR1
Shaba, WF1
Tafti, B1
Yevdayev, E1
Dadparvar, S1
Khaw, HJ1
Sng, GK1
Luo, EL1
Baird, A1
Makiello, P1
Mirsadraee, S1
van Beek, EJ1
Boon, NA1
Birkner, E1
Grucka-Mamczar, E1
Kasperczyk, S1
Kasperczyk, A1
Zalejska-Fiolka, J1
Birkner, B1
Pieczyrak, B1

Clinical Trials (4)

Trial Overview

TrialPhaseEnrollmentStudy TypeStart DateStatus
An Observational PET/CT Study Examining the Role of Active Valvular Calcification and Inflammation in Patients With Aortic Stenosis[NCT01358513]121 participants (Actual)Observational2010-07-31Completed
Prediction of Recurrent Events With 18F-Fluoride to Identify Ruptured and High-risk Coronary Artery Plaques in Patients With Myocardial Infarction[NCT02278211]706 participants (Actual)Observational2015-10-31Completed
SALTIRE II: Bisphosphonates and RANKL Inhibition in Aortic Stenosis[NCT02132026]Phase 2152 participants (Actual)Interventional2014-11-12Completed
Validation of PET-MRI for Cardiovascular Disease[NCT02988531]20 participants (Anticipated)Interventional2017-02-09Completed
[information is prepared from clinicaltrials.gov, extracted Sep-2024]

Reviews

6 reviews available for sodium fluoride and Atherogenesis

ArticleYear
Atherosclerosis Burdens in Diabetes Mellitus: Assessment by PET Imaging.
    International journal of molecular sciences, 2022, Sep-06, Volume: 23, Issue:18

    Topics: Atherosclerosis; Diabetes Mellitus; Fluorodeoxyglucose F18; Humans; Positron Emission Tomography Com

2022
Atherosclerosis imaging with
    European journal of nuclear medicine and molecular imaging, 2020, Volume: 47, Issue:6

    Topics: Atherosclerosis; Female; Fluorine Radioisotopes; Humans; Male; Positron-Emission Tomography; Retrosp

2020
    European journal of nuclear medicine and molecular imaging, 2018, Volume: 45, Issue:12

    Topics: Animals; Atherosclerosis; Calcinosis; Fluorodeoxyglucose F18; Humans; Positron-Emission Tomography;

2018
The Role of PET in Evaluating Atherosclerosis: A Critical Review.
    Seminars in nuclear medicine, 2018, Volume: 48, Issue:6

    Topics: Atherosclerosis; Fluorodeoxyglucose F18; Humans; Positron-Emission Tomography; Sodium Fluoride

2018
Exploring the nature of atheroma and cardiovascular inflammation in vivo using positron emission tomography (PET).
    The British journal of radiology, 2015, Volume: 88, Issue:1053

    Topics: Aortic Aneurysm; Atherosclerosis; Coronary Vessels; Fluorodeoxyglucose F18; Gallium Radioisotopes; H

2015
Molecular imaging of atherosclerotic lesions by positron emission tomography - can it meet the expectations?
    VASA. Zeitschrift fur Gefasskrankheiten, 2016, Volume: 45, Issue:2

    Topics: Animals; Arteries; Atherosclerosis; Disease Models, Animal; Fluorodeoxyglucose F18; Humans; Molecula

2016

Trials

2 trials available for sodium fluoride and Atherogenesis

ArticleYear
Do we need FDG-PET/CT to assess atherosclerosis?
    European journal of nuclear medicine and molecular imaging, 2017, Volume: 44, Issue:2

    Topics: Adult; Aged; Aorta, Thoracic; Aortitis; Atherosclerosis; Causality; Comorbidity; Denmark; Fluorodeox

2017
Aortic stenosis, atherosclerosis, and skeletal bone: is there a common link with calcification and inflammation?
    European heart journal, 2013, Volume: 34, Issue:21

    Topics: Aged; Aortic Valve; Aortic Valve Stenosis; Atherosclerosis; Bone Density; Calcinosis; Female; Fluoro

2013
Aortic stenosis, atherosclerosis, and skeletal bone: is there a common link with calcification and inflammation?
    European heart journal, 2013, Volume: 34, Issue:21

    Topics: Aged; Aortic Valve; Aortic Valve Stenosis; Atherosclerosis; Bone Density; Calcinosis; Female; Fluoro

2013
Aortic stenosis, atherosclerosis, and skeletal bone: is there a common link with calcification and inflammation?
    European heart journal, 2013, Volume: 34, Issue:21

    Topics: Aged; Aortic Valve; Aortic Valve Stenosis; Atherosclerosis; Bone Density; Calcinosis; Female; Fluoro

2013
Aortic stenosis, atherosclerosis, and skeletal bone: is there a common link with calcification and inflammation?
    European heart journal, 2013, Volume: 34, Issue:21

    Topics: Aged; Aortic Valve; Aortic Valve Stenosis; Atherosclerosis; Bone Density; Calcinosis; Female; Fluoro

2013
Aortic stenosis, atherosclerosis, and skeletal bone: is there a common link with calcification and inflammation?
    European heart journal, 2013, Volume: 34, Issue:21

    Topics: Aged; Aortic Valve; Aortic Valve Stenosis; Atherosclerosis; Bone Density; Calcinosis; Female; Fluoro

2013
Aortic stenosis, atherosclerosis, and skeletal bone: is there a common link with calcification and inflammation?
    European heart journal, 2013, Volume: 34, Issue:21

    Topics: Aged; Aortic Valve; Aortic Valve Stenosis; Atherosclerosis; Bone Density; Calcinosis; Female; Fluoro

2013
Aortic stenosis, atherosclerosis, and skeletal bone: is there a common link with calcification and inflammation?
    European heart journal, 2013, Volume: 34, Issue:21

    Topics: Aged; Aortic Valve; Aortic Valve Stenosis; Atherosclerosis; Bone Density; Calcinosis; Female; Fluoro

2013
Aortic stenosis, atherosclerosis, and skeletal bone: is there a common link with calcification and inflammation?
    European heart journal, 2013, Volume: 34, Issue:21

    Topics: Aged; Aortic Valve; Aortic Valve Stenosis; Atherosclerosis; Bone Density; Calcinosis; Female; Fluoro

2013
Aortic stenosis, atherosclerosis, and skeletal bone: is there a common link with calcification and inflammation?
    European heart journal, 2013, Volume: 34, Issue:21

    Topics: Aged; Aortic Valve; Aortic Valve Stenosis; Atherosclerosis; Bone Density; Calcinosis; Female; Fluoro

2013

Other Studies

15 other studies available for sodium fluoride and Atherogenesis

ArticleYear
Atorvastatin Promotes Macrocalcification, But Not Microcalcification in Atherosclerotic Rabbits: An 18F-NaF PET/CT Study.
    Journal of cardiovascular pharmacology, 2021, 10-01, Volume: 78, Issue:4

    Topics: Animals; Aorta, Abdominal; Atherosclerosis; Atorvastatin; Calcium; Disease Models, Animal; Fluorine

2021
Thoracic Aortic
    JACC. Cardiovascular imaging, 2022, Volume: 15, Issue:7

    Topics: Aortic Valve Stenosis; Atherosclerosis; Calcium; Cardiovascular Diseases; Fluorine Radioisotopes; Hu

2022
Can Target-to-Background Ratio Measurement Lead to Detection and Accurate Quantification of Atherosclerosis With FDG PET? Likely Not.
    Clinical nuclear medicine, 2022, Jun-01, Volume: 47, Issue:6

    Topics: Atherosclerosis; Calcinosis; Fluorodeoxyglucose F18; Humans; Plaque, Atherosclerotic; Positron-Emiss

2022
Quantitative thoracic aorta calcification assessment by
    European radiology, 2021, Volume: 31, Issue:2

    Topics: Aorta, Thoracic; Atherosclerosis; Fluorine Radioisotopes; Humans; Positron Emission Tomography Compu

2021
Assessment of atherosclerosis in multiple myeloma and smoldering myeloma patients using
    Journal of nuclear cardiology : official publication of the American Society of Nuclear Cardiology, 2021, Volume: 28, Issue:6

    Topics: Atherosclerosis; Fluorine Radioisotopes; Humans; Multiple Myeloma; Positron Emission Tomography Comp

2021
(18)F-sodium fluoride PET in multiple myeloma: Linking cancer to atherosclerosis?
    Journal of nuclear cardiology : official publication of the American Society of Nuclear Cardiology, 2021, Volume: 28, Issue:6

    Topics: Atherosclerosis; Fluorodeoxyglucose F18; Humans; Multiple Myeloma; Positron-Emission Tomography; Sod

2021
Innovative atherosclerosis imaging using
    Journal of nuclear cardiology : official publication of the American Society of Nuclear Cardiology, 2022, Volume: 29, Issue:4

    Topics: Atherosclerosis; Fluorine Radioisotopes; Fluorodeoxyglucose F18; Humans; Positron Emission Tomograph

2022
Analysis of
    Arteriosclerosis, thrombosis, and vascular biology, 2021, Volume: 41, Issue:10

    Topics: Animals; Animals, Genetically Modified; Aorta, Abdominal; Aortic Diseases; Atherosclerosis; Disease

2021
"Global" cardiac atherosclerotic burden assessed by artificial intelligence-based versus manual segmentation in
    Journal of nuclear cardiology : official publication of the American Society of Nuclear Cardiology, 2022, Volume: 29, Issue:5

    Topics: Artificial Intelligence; Atherosclerosis; Humans; Positron Emission Tomography Computed Tomography;

2022
Ultrasmall NaGdF4 nanodots for efficient MR angiography and atherosclerotic plaque imaging.
    Advanced materials (Deerfield Beach, Fla.), 2014, Jun-18, Volume: 26, Issue:23

    Topics: Animals; Atherosclerosis; Contrast Media; Gadolinium; Image Enhancement; Magnetic Resonance Angiogra

2014
Identifying active vascular microcalcification by (18)F-sodium fluoride positron emission tomography.
    Nature communications, 2015, Jul-07, Volume: 6

    Topics: Aged; Atherosclerosis; Carotid Arteries; Female; Fluorine Radioisotopes; Humans; Male; Positron-Emis

2015
Feasibility of 18F-sodium fluoride PET/CT for imaging of atherosclerotic plaque.
    Journal of nuclear medicine : official publication, Society of Nuclear Medicine, 2010, Volume: 51, Issue:6

    Topics: Aged; Angiography; Arteries; Atherosclerosis; Biological Transport; Calcinosis; Feasibility Studies;

2010
Association of vascular fluoride uptake with vascular calcification and coronary artery disease.
    Nuclear medicine communications, 2012, Volume: 33, Issue:1

    Topics: Adult; Aged; Aged, 80 and over; Atherosclerosis; Coronary Artery Disease; Feasibility Studies; Femal

2012
Noninvasive imaging in cardiovascular therapy: the promise of coronary arterial ¹⁸F-sodium fluoride uptake as a marker of plaque biology.
    Expert review of cardiovascular therapy, 2012, Volume: 10, Issue:9

    Topics: Atherosclerosis; Biological Transport; Biomarkers; Coronary Artery Disease; Coronary Vessels; Diseas

2012
[Effect of sodium fluoride on the activity of sorbitol dehydrogenase in plasma and liver of rabbits with experimental atherosclerosis].
    Annales Academiae Medicae Stetinensis, 2004, Volume: 50 Suppl 1

    Topics: Animals; Atherosclerosis; Cholesterol, Dietary; L-Iditol 2-Dehydrogenase; Liver; Rabbits; Sodium Flu

2004