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Russian Journal of Transplantology and Artificial Organs

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Changes in common carotid artery elasticity in solid organ recipients

https://doi.org/10.15825/1995-1191-2023-4-17-21

Abstract

Background. Cardiovascular diseases are very common among solid organ recipients. They are associated with worsening transplant outcomes. Arterial vascular wall elasticity is an important prognostic indicator and a risk marker for cardiovascular events. Noninvasive measurement of common carotid artery (CCA) elasticity may be useful in assessing cardiovascular risk in solid organ recipients.

Objective: To conduct a comparative analysis of indicators of CCA elasticity in solid organ recipients and to study their relationship with factors that potentially have a negative impact on the risk of adverse events.

Materials and methods. The study included 154 patients aged 10 to 75 years, including heart (n = 77), liver (n = 9), and kidney (n = 35) recipients, as well as 33 patients with end-stage heart failure waitlisted for heart transplantation (HT). In all participants, carotid artery ultrasound was performed, pulse wave velocity was measured, and CCA elasticity was calculated.

Results. CCA elasticity was found to be strongly inversely correlated with age, body mass index, systolic blood pressure, renal tubular filtration rate, CCA intima media thickness, and aortic pulse wave velocity. In heart recipients, CCA elasticity was significantly lower than in liver and kidney recipients (p = 0,002) and it inversely correlated with the length of time elapsed after transplantation, which is probably associated with cardiac denervation.

Conclusion. CCA elasticity calculated via noninvasive ultrasound reflects the degree of adverse effects of pathological factors on the main arteries in solid organ recipients.

About the Authors

A. O. Shevchenko
Shumakov National Medical Research Center of Transplantology and Artificial Organs; Sechenov University; Pirogov Russian National Research Medical University
Russian Federation

Moscow



I. Yu. Tyunyaeva
Shumakov National Medical Research Center of Transplantology and Artificial Organs
Russian Federation

Moscow



M. M. Lysenko
Shumakov National Medical Research Center of Transplantology and Artificial Organs
Russian Federation

Moscow



N. N. Koloskova
Shumakov National Medical Research Center of Transplantology and Artificial Organs
Russian Federation

Moscow



D. A. Saydulaev
Shumakov National Medical Research Center of Transplantology and Artificial Organs
Russian Federation

Moscow



S. I. Zubenko
Shumakov National Medical Research Center of Transplantology and Artificial Organs
Russian Federation

Moscow



E. A. Vakurova
Sechenov University

Moscow



S. O. Sharapchenko
Shumakov National Medical Research Center of Transplantology and Artificial Organs
Russian Federation

Sofya Sharapchenko

1, Shchukinskaya str., Moscow, 123182

Phone: (499) 193-87-62



References

1. Hernández D, Vázquez T, Armas-Padrón AM, AlonsoTitos J, Casas C, Gutiérrez E et al. Peripheral Vascular Disease and Kidney Transplant Outcomes: Rethinking an Important Ongoing Complication. Transplantation. 2020; 105 (6): 1188–1202. http://dx.doi.org/10.1097/tp.0000000000003518.

2. Di Maira T, Rubin A, Puchades L, Aguilera V, Vinaixa C, Garcia M et al. Framingham score, renal dysfunction, and cardiovascular risk in liver transplant patients. Liver Transplantation. 2015; 21 (6): 812–822. http://dx.doi.org/10.1002/lt.24128.

3. Messas E, Pernot M, Couade M. Arterial wall elasticity: State of the art and future prospects. Diagnostic and Interventional Imaging. 2013; 94 (5): 561–569. http:// dx.doi.org/10.1016/j.diii.2013.01.025.

4. Korogiannou M, Xagas E, Marinaki S, Sarafidis P, Bo le tis JN. Arterial Stiffness in Patients With Renal Transplantation; Associations With Co-morbid Conditions, Evolution, and Prognostic Importance for Cardiovascular and Renal Outcomes. Frontiers in Cardiovascular Medicine. 2019; 6: 67. http://dx.doi.org/10.3389/fcvm.2019.00067.

5. Junarta J, Hojs N, Ramphul R, Lowe-Jones R, Kaski JC, Banerjee D. Progression of endothelial dysfunction, atherosclerosis, and arterial stiffness in stable kidney transplant patients: a pilot study. BMC Cardiovascular Disorders. 2020; 20 (1): 6. http://dx.doi.org/10.1186/s12872-019-01309-y.

6. Salib M, Simon A, Girerd N, Kearney-Schwartz A, Rossignol P, Benetos A et al. Association between LongTerm Change in Arterial Stiffness and Cardiovascular Outcomes in Kidney Transplant Recipients: Insights from the TRANSARTE Study. Journal of Clinical Medicine. 2022; 11 (5): 1410. http://dx.doi.org/10.3390/jcm11051410.

7. Cheddani L, Haymann JP, Liabeuf S, Tabibzadeh N, Boffa J-J, Letavernier E et al. Less arterial stiffness in kidney transplant recipients than chronic kidney disease patients matched for renal function. Clinical Kidney Journal. 2020; 14 (4): 1244–1254. http://dx.doi.org/10.1093/ckj/sfaa120.

8. Angoff R, Mosarla RC, Tsao CW. Aortic Stiffness: Epidemiology, Risk Factors, and Relevant Biomarkers. Frontiers in Cardiovascular Medicine. 2021; 8: 709396. http://dx.doi.org/10.3389/fcvm.2021.709396.

9. Ikonomidis I, Thymis J. The vicious circle of arterial elasticity, blood pressure, glycemia, and renal function. Hypertension Research. 2023; 46 (6): 1599–602. http:// dx.doi.org/10.1038/s41440-023-01262-6.

10. Delahousse M, Chaignon M, Mesnard L, Boutouyrie P, Safar ME, Lebret T et al. Aortic Stiffness of Kidney Transplant Recipients Correlates with Donor Age. Journal of the American Society of Nephrology. 2008; 19 (4): 798–805. http://dx.doi.org/10.1681/asn.2007060634.

11. Karras A, Boutouyrie P, Briet M, Bozec E, Haymann J, Legendre C et al. Reversal of Arterial Stiffness and Maladaptative Arterial Remodeling After Kidney Transplantation. Journal of the American Heart Association. 2017; 6 (9): e006078. http://dx.doi.org/10.1161/jaha.117.006078.

12. Alatič J, Lindič J, Godnov U, Kovač D. Arterial Stiffness in Renal Transplant Recipients: 5-Year Follow-up. Transplantation Proceedings. 2021; 53 (10): 2907–2912. http://dx.doi.org/10.1016/j.transproceed.2021.09.032.

13. Bachelet-Rousseau C, Kearney-Schwartz A, Frimat L, Fay R, Kessler M, Benetos A. Evolution of arterial stiffness after kidney transplantation. Nephrology Dialysis Transplantation. 2011; 26 (10): 3386–3391. http://dx.doi.org/10.1093/ndt/gfr058.

14. Shevchenko AO, Tyunyaeva IYu, Nasyrova AA, Mozheiko NP, Gautier SV. Dynamics of the stiffness index of the common carotid artery wall during treatment of transplanted heart rejection. Bulletin of transplantology and artificial organs. 2015; 17 (3): 8–13 (In Russ). https://doi.org/10.15825/1995-1191-2015-38-13.

15. Shevchenko AO, Nikitina EA, Koloskova NN, Shevchenko OP, Gautier SV. Kontroliruemaja arterial’naja gipertenzija i vyzhivaemost’ bez nezhelatel’nyh sobytij u recipientov serdca. Kardiovaskuljarnaja terapija i profilaktika. 2018; 17 (4): 4–11 [In Russ, English abstract].

16. Sastre L, García R, Gándara J-G, Fernández-Llama P, Amor AJ, Sierra C et al. The Role of Arterial Stiffness in the Estimation of Cardiovascular Risk in Liver Transplant Recipients. Transplantation Direct. 2021; 8 (1): e1272. http://dx.doi.org/10.1097/txd.0000000000001272.

17. Szewc UZ, Czyżewski L, Wyzgal J, Szarpak L. Assessment of Arterial Stiffness and Body Composition in Stable Liver Transplant Recipients. Transplantation Proceedings. 2018; 50 (7): 2009–2013. http://dx.doi.org/10.1016/j.transproceed.2018.05.004.

18. De Souza-Neto JD, de Oliveira ÍM, Lima-Rocha HA, Oliveira-Lima JW, Bacal F. Hypertension and arterial stiffness in heart transplantation patients. Clinics. 2016; 71 (9): 494–499. http://dx.doi.org/10.6061/clinics/2016(09)02.


Review

For citations:


Shevchenko A.O., Tyunyaeva I.Yu., Lysenko M.M., Koloskova N.N., Saydulaev D.A., Zubenko S.I., Vakurova E.A., Sharapchenko S.O. Changes in common carotid artery elasticity in solid organ recipients. Russian Journal of Transplantology and Artificial Organs. 2023;25(4):17-21. https://doi.org/10.15825/1995-1191-2023-4-17-21

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ISSN 1995-1191 (Print)