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Hormonal and metabolic status of centenarians diagnosed with sarcopenia: Prospective, Observational Study

https://doi.org/10.37586/2686-8636-3-2024-174-184

Abstract

RELEVANCE: Sarcopenia is one of the leading geriatric syndromes that increases the risk of disability, falls and injuries. This syndrome is of particular importance for centenarians aged 90 years and older, for whom a detailed analysis of the course of sarcopenia has not previously been carried out and the hormonal and metabolic characteristics of this condition have not been described.

AIM OF THE STUDY: To analyze the features of hormonal and metabolic status in nonagenarians with sarcopenia and to identify factors that increase the risk of developing this condition

MATERIALS AND METHODS: The study included 2221 people over the age of 90 years. Study participants underwent a comprehensive geriatric assessment during a visit with a doctor and nurse, as well as blood tests to measure a number of metabolic and hormonal parameters. Statistical data analysis was carried out using the R programming language  version 4.2.2.

RESULTS: Apolipoprotein A1, free triiodothyronine, vitamin D, albumin, C-reactive protein, hemoglobin, red blood cells and hematocrit were significantly associated with the presence of sarcopenia. In a survival analysis of people with sarcopenia, the strongest protective factors for participants with sarcopenia were any physical activity and increasing free T3. Malnutrition is the leading destructive factor.

CONCLUSION: Hormonal metabolic status, in particular low concentrations of vitamin D, triiodothyronine, albumin, and apolipoprotein A1, largely determines the presence of sarcopenia in centenarians, but when assessing risks, it is necessary to take into account a number of other important parameters, such as physical activity and nutritional  status.

About the Authors

L. V. Matchekhina
Russian Gerontology Research and Clinical Centsre, Pirogov Russian National Research Medical University of the Ministry of Health of the Russian Federation
Russian Federation

Machekhina Lubov V., MD, PhD, Head of Laboratory of Biomarkers of Aging

Moscow



O. N. Tkacheva
Russian Gerontology Research and Clinical Centsre, Pirogov Russian National Research Medical University of the Ministry of Health of the Russian Federation
Russian Federation

Tkacheva Olga N., MD, PhD, professor, Corresponding Member of the Russian Academy of Sciences, Director

Moscow



E. M. Shelley
Russian Gerontology Research and Clinical Centsre, Pirogov Russian National Research Medical University of the Ministry of Health of the Russian Federation
Russian Federation

Shelley Eva M., MS; Biostatistician, Biomarkers of Aging Laboratory

Moscow



A. A. Mamchur
Centre for Strategic Planning and Management of Biomedical Health Risks of the Federal Medical Biological Agency (Centre for Strategic Planning of FMBA of Russia)
Russian Federation

Mamchur Aleksandra A., Analyst, Medical Genomics Department

Moscow



V. V. Erema
Centre for Strategic Planning and Management of Biomedical Health Risks of the Federal Medical Biological Agency (Centre for Strategic Planning of FMBA of Russia)
Russian Federation

Ерема Вероника Вячеславовна, канд. мед. наук, аналитик отдела медицинской геномики

Moscow



M. V. Bruttan
Centre for Strategic Planning and Management of Biomedical Health Risks of the Federal Medical Biological Agency (Centre for Strategic Planning of FMBA of Russia)
Russian Federation

Brutan Maria V., MD, PhD, Analyst, Medical Genomics Department

Moscow



M. V. Ivanov
Centre for Strategic Planning and Management of Biomedical Health Risks of the Federal Medical Biological Agency (Centre for Strategic Planning of FMBA of Russia)
Russian Federation

Ivanov Mikhail V., Analyst, Medical Genomics Department, Center for Strategic Planning and Management of Medical and Biological Health Risks

Moscow



D. A. Kashtanova
Centre for Strategic Planning and Management of Biomedical Health Risks of the Federal Medical Biological Agency (Centre for Strategic Planning of FMBA of Russia)
Russian Federation

Kashtanova Daria A., MD, PhD, Analyst, Medical Genomics Department

Moscow



A. M. Rumyantseva
Centre for Strategic Planning and Management of Biomedical Health Risks of the Federal Medical Biological Agency (Centre for Strategic Planning of FMBA of Russia)
Russian Federation

Rumyantseva Antonina M., analyst, Medical Genomics Department, Center for Strategic Planning and Management of Medical and Biological Health Risks

Moscow



V. S. Yudin
Centre for Strategic Planning and Management of Biomedical Health Risks of the Federal Medical Biological Agency (Centre for Strategic Planning of FMBA of Russia)
Russian Federation

Yudin Vladimir S., PhD, Head of Medical Genomics Department

Moscow



V. V. Makarov
Centre for Strategic Planning and Management of Biomedical Health Risks of the Federal Medical Biological Agency (Centre for Strategic Planning of FMBA of Russia)
Russian Federation

Makarov Valentin V., MD, PhD, Head of Health Risk Factors Prognosis Department

Moscow



A. A. Keskinov
Centre for Strategic Planning and Management of Biomedical Health Risks of the Federal Medical Biological Agency (Centre for Strategic Planning of FMBA of Russia)
Russian Federation

Keskinov Anton A., MD, PhD, Head of Scientific Research Department, Center for Strategic Planning and Management of Medical and Biological Health Risks

Moscow



S. A. Kraevoy
Centre for Strategic Planning and Management of Biomedical Health Risks of the Federal Medical Biological Agency (Centre for Strategic Planning of FMBA of Russia)
Russian Federation

Kraevoy Sergey A., MD, PhD, First Deputy Director General, Center for Strategic Planning and Management of Medical and Biological Health Risks

Moscow



S. M. Yudin
Centre for Strategic Planning and Management of Biomedical Health Risks of the Federal Medical Biological Agency (Centre for Strategic Planning of FMBA of Russia)
Russian Federation

Yudin Sergey M., MD, PhD, professor, Head of Center for Strategic Planning and Management of Medical and Biological Health Risks

Moscow



I. D. Strazhesko
Russian Gerontology Research and Clinical Centsre, Pirogov Russian National Research Medical University of the Ministry of Health of the Russian Federation
Russian Federation

Strazhesko Irina D., MD, PhD, Deputy Director of Translational Medicine, Russian Gerontology Research and Clinical Centre, Pirogov National Research Medical University. Leading Researcher, the Department of Age-Related Diseases, Medical Scientific and Educational Center of Lomonosov Moscow State University

Moscow



References

1. Traub J., Bergheim I., Eibisberger M., Stadlbauer V. Sarcopenia and Liver Cirrhosis—Comparison of the European Working Group on Sarcopenia Criteria 2010 and 2019. Nutrients. 2020;12:547. doi:10.3390/nu12020547.

2. Papadopoulou S.K. Sarcopenia: A Contemporary Health Problem among Older Adult Populations. Nutrients. 2020 May 1;12(5):1293. doi: 10.3390/nu12051293. PMID: 32370051; PMCID: PMC7282252.

3. Сафонова Ю. А., Зоткин Е.Г. Частота саркопении в старших возрастных группах: оценка диагностических критериев. Научно-практическая ревматология. 2020;58(2):147-153.

4. Hamrick M.W. Role of the cytokine-like hormone leptin in muscle-bone crosstalk with aging. J. Bone Metab 24, 1–8 (2017).

5. Wang Y. et al. Adiponectin inhibits tumor necrosis factoralpha-induced vascular inflammatory response via caveolin-mediated ceramidase recruitment and activation. Circ. Res 114, 792–805 (2014). 6. Remelli F., Vitali A., Zurlo A., Volpato S. Vitamin D Deficiency and Sarcopenia in Older Persons. Nutrients. 2019 Nov 21;11(12):2861. doi: 10.3390/nu11122861. PMID: 31766576; PMCID: PMC6950416.

6. Li C.W., Yu K., Shyh-Chang N., Jiang Z., Liu T., Ma S., Luo L., Guang L., Liang K., Ma W., Miao H., Cao W., Liu R., Jiang L.J., Yu S.L., Li C., Liu H.J., Xu L.Y., Liu R.J., Zhang X.Y., Liu G.S. Pathogenesis of sarcopenia and the relationship with fat mass: descriptive review. J Cachexia Sarcopenia Muscle. 2022 Apr;13(2):781-794. doi: 10.1002/jcsm.12901. Epub 2022 Feb 2. PMID: 35106971; PMCID: PMC8977978.

7. Bloise, Cordeiro, & Ortiga-Carvalho. During aging TH decrease, and this decrease seems to be related with the reduction of myogenesis and the number of type II fibers. 2018.

8. Priego T., Martín A.I., González-Hedström D., et al. Chapter Twenty — Role of hormones in sarcopenia. Vitamins and Hormones,Academic Press,Volume 115,2021,Pages 535-570,ISSN 0083-6729,ISBN 9780323855488.

9. Silva-Fhon J.R., Rojas-Huayta V.M., Aparco-Balboa J.P., Céspedes-Panduro B., Partezani-Rodrigues R.A.. Sarcopenia and blood albumin: A systematic review with meta-analysis. Biomedica. 2021 Sep 22;41(3):590-603. English, Spanish. doi: 10.7705/biomedica.5765. PMID: 34559500; PMCID: PMC852798.

10. Ikeda T., Komiyama H., Miyakuni T., Takano M., Matsushita M., Kobayashi N., Asai K., Shimizu W, Miyauchi Y. Changes in Apolipoprotein A1 and B, Glucose Metabolism, and Skeletal Muscle Mass in 3 Peripheral Artery Disease after Endovascular Treatment: A Pilot Study.

11. Batsis J.A., Villareal D.T. Sarcopenic obesity in older adults: aetiology, epidemiology and treatment strategies. Nat Rev Endocrinol. 2018 Sep;14(9):513-537. doi: 10.1038/s41574-0180062-9. PMID: 30065268; PMCID: PMC6241236.

12. Gao Q., Hu K., Yan C., Zhao B., Mei F., Chen F., Zhao L., Shang Y., Ma Y., Ma B. Associated Factors of Sarcopenia in Community-Dwelling Older Adults: A Systematic Review and Meta-Analysis. Nutrients. 2021 Nov 27;13(12):4291. doi: 10.3390/nu13124291. PMID: 34959843; PMCID: PMC8707132.

13. Rubio-Ruiz M.E., Guarner-Lans V., Pérez-Torres I., Soto M.E. Mechanisms Underlying Metabolic Syndrome-Related Sarcopenia and Possible Therapeutic Measures. Int. J. Mol. Sci. 2019;20:647. doi: 10.3390/ijms20030647.

14. Smeuninx B., McKendry J., Wilson D., Martin U., Breen L. Age-Related Anabolic Resistance of Myofibrillar Protein Synthesis Is Exacerbated in Obese Inactive Individuals. J. Clin. Endocrinol. Metab. 2017;102:3535–3545. doi: 10.1210/jc.2017-00869.

15. Sieber C.C. Malnutrition and sarcopenia. Aging Clin Exp Res. 2019 Jun;31(6):793-798. doi: 10.1007/s40520-019-01170-1. Epub 2019 May 30. PMID: 31148100.

16. Cederholm T., Jensen G.L., Correia M., et al. GLIM criteria for the diagnosis of malnutrition — a consensus report from the global clinical nutrition community. Clin Nutr (Edinburgh, Scotland) 2019;38:1–9.

17. Burini R.C., Anderson E., Durstine J.L., Carson J.A. Inflammation, physical activity, and chronic disease: An evolutionary perspective. Sports Med. Health Sci. 2020;2:1–6. doi: 10.1016/j.smhs.2020.03.004.


Review

For citations:


Matchekhina L.V., Tkacheva O.N., Shelley E.M., Mamchur A.A., Erema V.V., Bruttan M.V., Ivanov M.V., Kashtanova D.A., Rumyantseva A.M., Yudin V.S., Makarov V.V., Keskinov A.A., Kraevoy S.A., Yudin S.M., Strazhesko I.D. Hormonal and metabolic status of centenarians diagnosed with sarcopenia: Prospective, Observational Study. Russian Journal of Geriatric Medicine. 2024;(3):174-184. (In Russ.) https://doi.org/10.37586/2686-8636-3-2024-174-184

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