Early markers of athrosclerotic cardiovascular diseases and osteoporotic fractures in a postmenopausal woman (сlinical case)

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Abstract

The aim to demonstrate that subclinical atherosclerosis and vascular rigidity in a postmenopausal patient without clinical sings of cardiovascular disease and osteoporosis are connected with a decreased bone mass.
Materials and methods. Patient O., 64 years old, was examined at the National Medical Research Center for Preventive Medicine within the program “Comprehensive assessment of total risks and early preclinical markers of osteoporosis and atherosclerosis complications”. No complaints during the examination were revealed. Laboratory tests were performed to evaluate blood lipids level, calcium-phosphorus metabolism, determine marker of bone resorption – CTX (β-crosslaps), measure levels of vitamin D and parathyroid hormone. Instrumental examinations included dual-energy x-ray absorptiometry of the spine and femoral neck, carotid ultrasound, applanation tonometry, multispiral computed tomography of coronary arteries with calcium score determination.
Results. During outpatient examination, densitometry revealed decreased bone mineral density in the lumbar spine and in the femoral neck, corresponding to osteoporosis, carotid ultrasound identified atherosclerotic plaques, multispiral computed tomography of coronary arteries – coronary calcification, applanation tonometry – increased aortic stiffness.
Conclusion. The clinical case is an example of early-detected preclinical signs of atherosclerosis and osteoporosis, as well as an increased risk of cardiovascular complications. Due to the high frequency of subclinical atherosclerosis, vessel wall state should be examined in women at the beginning of postmenopause. Signs of vascular stiffness and subclinical atherosclerosis give occasion to assess risk of fractures using the FRAX ® calculator and, if necessary, to diagnose bone mass loss using X-ray densitometry. Proposed algorithm can contribute to the early detection of cardiovascular diseases and at the same time improve fracture risk assessment.

About the authors

М. А. Kolchina

National Medical Research Center for Preventive Medicine of the Ministry of Health of Russia

Author for correspondence.
Email: MKolchina@gnicpm.ru
ORCID iD: 0000-0002-8164-8946
10 Petroverigskiy Pereulok, Moscow 101990 Russian Federation

O. V. Kosmatova

National Medical Research Center for Preventive Medicine of the Ministry of Health of Russia

ORCID iD: 0000-0001-7036-4756
10 Petroverigskiy Pereulok, Moscow 101990 Russian Federation

V. E. Novikov

National Medical Research Center for Preventive Medicine of the Ministry of Health of Russia

ORCID iD: 0000-0003-0364-0831
10 Petroverigskiy Pereulok, Moscow 101990 Russian Federation

I. A. Skripnikova

National Medical Research Center for Preventive Medicine of the Ministry of Health of Russia

ORCID iD: 0000-0002-1763-0725
10 Petroverigskiy Pereulok, Moscow 101990 Russian Federation

References

  1. Laroche M., Pécourneau V., Blain H. et al. Osteoporosis and ischemic cardiovascular disease. Joint Bone Spine 2017;84(4):427–32. doi: 10.1016/j.jbspin.2016.09.022.
  2. Lampropoulos C.E., Papaioannou I., D’Cruz D.P. Osteoporosis – a risk factor for cardiovascular disease? Nat Rev Rheumatol 2012;8(10):587–98. doi: 10.1038/nrrheum.2012.120.
  3. Parhami F., Morrow A.D., Balucan J. et al. Lipid oxidation products have opposite effects on calcifying vascular cell and bone cell differentiation. A possible explanation for the paradox of arterial calcification in osteoporotic patients. Arterioscler Thromb Vasc Biol 1997;17(4):680–7. doi: 10.1161/01.atv.17.4.680.
  4. Walsh M.C., Choi Y. Biology of the RANKL-RANK-OPG System in Immunity, Bone, and Beyond Front Immunol 2014;5:511. doi: 10.3389/fimmu.2014.00511.
  5. Abedin M., Tintut Y., Demer L.L. Vascular calcification. Mechanisms and clinical ramifications. Arterioscler Thromb Vasc Biol 2004;24(7):1161–70. doi: 10.1161/01.ATV.0000133194.94939.42.
  6. Rubin M.R., Silverberg S.J. Vascular calcification and osteoporosis – the nature of the nexus. J Clin Endocrinol Metab 2004;89(9):4243–5. doi: 10.1210/jc.2004-1324.
  7. Den Uyl D., Nurmohamed M.T., van Tuyl L.H. et al. (Sub)clinical cardiovascular disease is associated with increased bone loss and fracture risk; a systematic review of the association between cardiovascular disease and osteoporosis. Arthritis Res Ther 2011;13(1):R5. doi: 10.1186/ar3224.
  8. Mangiafico R.A., Alagona C., Pennisi P. Increased augmentation index and central aortic blood pressure in osteoporotic postmenopausal women. Osteoporos Int 2008;19(1):49–56. doi: 10.1007/s00198-007-0438-5.
  9. Sumino H., Ichikawa S., Kasama S. et al. Elevated arterial stiffness in postmenopausal women with osteoporosis. Maturitas 2006;55(3):212–8. doi: 10.1016/j.maturitas.2006.02.008.
  10. Тот П.П., Мэки К.К. Нарушения липидного обмена. М.: ГЭОТАР-Медиа, 2010. [Tot P.P., Mackey K.K. Disorders of lipid metabolism. Moscow: GEOTARMedia, 2010. (In Russ.)].
  11. Pereira T., Maldonado J., Pereira L. Conde J. Aortic stiffness is an independent predictor of stroke in hypertensive patients. Arq Bras Cardiol 2013;100(5):437–43. doi: 10.5935/abc.20130079.
  12. Farhat G.N., Newman A.B., SuttonTyrrell K. et al. The association of bone mineral density measures with incident cardiovascular disease in older adults. Osteoporos Int 2007;18(7):999–1008. doi: 10.1007/s00198-007-0338-8.
  13. Tankó L.B., Bagger Y.Z., Christiansen С. Low bone mineral density in the hip as a marker of advanced atherosclerosis in elderly women. Calcif Tissue Int 2003;73(1):15–20. doi: 10.1007/s00223-002-2070-x.
  14. Marcovitz P.A., Tran H.H., Franklin B.A. et al. Usefulness of bone mineral density to predict significant coronary artery disease. Am J Cardiol 2005;96(8):1059–63. doi: 10.1016/j.amjcard.2005.06.034.
  15. Hyder J.A., Allison M.A., Barrett-Connor E. et al. Bone mineral density and atherosclerosis: the multi-ethnic study of atherosclerosis, abdominal aortic calcium study. Atherosclerosis 2010;209(1):283–9. doi: 10.1016/j.atherosclerosis.2009.09.011.
  16. Suzuki A., Sekuguchi S., Asano S., Itoh M. Pharmacological topics of bone metabolism: recent advances in pharmacological management of osteoporosis. J Pharmacol Sci 2008;106(4):530–5. doi: 10.1254/jphs.fm0070218.
  17. Huang M.S., Sage A.P., Lu J. et al. Phosphate and pyrophosphate mediate PKA-induced vascular cell calcification. Biochem Biophys Res Commun 2008;374(3):553–8. doi: 10.1016/j.bbrc.2008.07.062.
  18. Wang T.J., Pencina M.J., Booth S.L. et al. Vitamin D deficiency and risk of cardiovascular disease.Circulation 2008;117(4):503–11.doi: 10.1161/circulationaha.107.706127.
  19. Alikhanova N.A., Skripnikova I.A., Tkacheva O.N. et al. Association of vessel stiffness parameters and subclinical atherosclerosis and mass of bone tissue in postmenopausal women. Kardiovaskulyarnaya terapiya i profilaktika = Cardiovascular Therapy and Prevention 2016;15(2):51–6. (In Russ.)

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Copyright (c) 2019 Kolchina М.А., Kosmatova O.V., Novikov V.E., Skripnikova I.A.

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