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NTIS 바로가기Gerontology, v.67 no.5, 2021년, pp.525 - 531
Nga, Ha Thi (Research Center for Endocrine and Metabolic Diseases, Chungnam National University School of Medicine, Daejeon, Republic of Korea) , Jang, Il-Young (Division of Geriatrics, Department of Internal Medicine, Asan Medical Center, University of Ulsan College of Medicine, Seoul, Republic of Korea) , Kim, Da Ae (Asan Institute for Life Sciences, Asan Medical Center, University of Ulsan College of Medicine, Seoul, Republic of Korea) , Park, So Jeong (Asan Institute for Life Sciences, Asan Medical Center, University of Ulsan College of Medicine, Seoul, Republic of Korea) , Lee, Jin Young (Asan Institute for Life Sciences, Asan Medical Center, University of Ulsan College of Medicine, Seoul, Republic of Korea) , Lee, Seungjoo (Department of Neurological Surgery, Asan Medical Center, University of Ulsan College of Medicine, Seoul, Republic of Korea) , Kim, Jeoung Hee (Department of Neurological Surgery, Asan Medical Center, University of Ulsan College of Medicine, Seoul, Republic of Korea) , Lee, Eunju (Division of Geriatrics, Department of Internal Medicine, Asan Medical Center, University of Ulsan Colle) , Park, Jin Hoon , Lee, Young-Ho , Yi, Hyon-Seung , Kim, Beom-Jun
AbstractBackground: Growth differentiation factor 15 (GDF15), induced by tissue inflammation and mitochondrial stress, has received significant attention as a biomarker of mitochondrial dysfunction and has been implicated in various age-related diseases. However, the association between circulating ...
1. Larsson L , Degens H , Li M , Salviati L , Lee YI , Thompson W , . Sarcopenia: aging-related loss of muscle mass and function . Physiol Rev . 2019 ; 99 ( 1 ): 427 - 511 .
2. Santilli V , Bernetti A , Mangone M , Paoloni M . Clinical definition of sarcopenia . Clin Cases Miner Bone Metab . 2014 ; 11 ( 3 ): 177 - 80 ..
3. Abellan van Kan G . Epidemiology and consequences of sarcopenia . J Nutr Health Aging . 2009 ; 13 ( 8 ): 708 - 12 .
4. Kwan P . Sarcopenia, a neurogenic syndrome . J Aging Res . 2013 ; 2013 : 791679 .
5. Short KR , Bigelow ML , Kahl J , Singh R , Coenen-Schimke J , Raghavakaimal S , . Decline in skeletal muscle mitochondrial function with aging in humans . Proc Natl Acad Sci USA . 2005 ; 102 ( 15 ): 5618 - 23 .
6. Marzetti E , Calvani R , Cesari M , Buford TW , Lorenzi M , Behnke BJ , . Mitochondrial dysfunction and sarcopenia of aging: from signaling pathways to clinical trials . Int J Biochem Cell Biol . 2013 ; 45 ( 10 ): 2288 - 301 .
7. Rooyackers OE , Adey DB , Ades PA , Nair KS . Effect of age on in vivo rates of mitochondrial protein synthesis in human skeletal muscle . Proc Natl Acad Sci USA . 1996 ; 93 ( 26 ): 15364 - 9 .
8. Alway SE , Mohamed JS , Myers MJ . Mitochondria initiate and regulate sarcopenia . Exerc Sport Sci Rev . 2017 ; 45 ( 2 ): 58 - 69 .
9. Muoio DM , Neufer PD . Lipid-induced mitochondrial stress and insulin action in muscle . Cell Metab . 2012 ; 15 ( 5 ): 595 - 605 .
10. Moon SS . Low skeletal muscle mass is associated with insulin resistance, diabetes, and metabolic syndrome in the Korean population: the Korea National Health and Nutrition Examination Survey (KNHANES) 2009-2010 . Endocr J . 2014 ; 61 ( 1 ): 61 - 70 .
11. Yi HS , Chang JY , Shong M . The mitochondrial unfolded protein response and mitohormesis: a perspective on metabolic diseases . J Mol Endocrinol . 2018 ; 61 ( 3 ): R91 - R105 .
12. Khan NA , Nikkanen J , Yatsuga S , Jackson C , Wang L , Pradhan S , . mTORC1 regulates mitochondrial integrated stress response and mitochondrial myopathy progression . Cell Metab . 2017 ; 26 ( 2 ): 419 - e5 .
13. Yi HS . Implications of mitochondrial unfolded protein response andmMitokines: a perspective on fatty liver diseases . Endocrinol Metab . 2019 ; 34 ( 1 ): 39 - 46 .
14. Lane RK , Hilsabeck T , Rea SL . The role of mitochondrial dysfunction in age-related diseases . Biochim Biophys Acta . 2015 ; 1847 ( 11 ): 1387 - 400 .
15. Chrysovergis K , Wang X , Kosak J , Lee SH , Kim JS , Foley JF , . NAG-1/GDF-15 prevents obesity by increasing thermogenesis, lipolysis and oxidative metabolism . Int J Obes . 2014 ; 38 ( 12 ): 1555 - 64 .
16. Chung HK , Kim JT , Kim HW , Kwon M , Kim SY , Shong M , . GDF15 deficiency exacerbates chronic alcohol- and carbon tetrachloride-induced liver injury . Sci Rep . 2017 ; 7 ( 1 ): 17238 .
17. Chung HK , Ryu D , Kim KS , Chang JY , Kim YK , Yi HS , . Growth differentiation factor 15 is a myomitokine governing systemic energy homeostasis . J Cell Biol . 2017 ; 216 ( 1 ): 149 - 65 .
18. Semba RD , Gonzalez-Freire M , Tanaka T , Biancotto A , Zhang P , Shardell M , . Elevated plasma growth and differentiation factor 15 is associated with slower gait speed and lower physical performance in healthy community-dwelling adults . J Gerontol A Biol Sci Med Sci . 2020 ; 75 ( 1 ): 175 - 80 .
19. Oh JH , Song S , Rhee H , Lee SH , Kim DY , Choe JC , . Erratum: correction of figure in the article: normal reference plots for the bioelectrical impedance vector in healthy korean adults . J Korean Med Sci . 2019 ; 34 ( 35 ): e242 .
20. Jang IY , Jung HW , Lee CK , Yu SS , Lee YS , Lee E . Comparisons of predictive values of sarcopenia with different muscle mass indices in Korean rural older adults: a longitudinal analysis of the aging study of PyeongChang rural area . Clin Interv Aging . 2018 ; 13 : 91 - 9 .
21. Roberts HC , Denison HJ , Martin HJ , Patel HP , Syddall H , Cooper C , . A review of the measurement of grip strength in clinical and epidemiological studies: towards a standardised approach . Age Ageing . 2011 ; 40 ( 4 ): 423 - 9 .
22. Peel NM , Kuys SS , Klein K . Gait speed as a measure in geriatric assessment in clinical settings: a systematic review . J Gerontol A Biol Sci Med Sci . 2013 ; 68 ( 1 ): 39 - 46 .
23. Jung HW , Roh H , Cho Y , Jeong J , Shin YS , Lim JY , . Validation of a multi-sensor-based kiosk for short physicalperformance battery . J Am Geriatr Soc . 2019 ; 67 ( 12 ): 2605 - 9 .
24. Chen LK , Woo J , Assantachai P , Auyeung TW , Chou MY , Iijima K , . Asian working group for sarcopenia: 2019 consensus update on sarcopenia diagnosis and treatment . J Am Med Dir Assoc . 2020 ; 21 ( 3 ): 300 - e2 .
25. Nakajima T , Shibasaki I , Sawaguchi T , Haruyama A , Kaneda H , Nakajima T , . Growth differentiation factor-15 (GDF-15) is a biomarker of muscle wasting and renal dysfunction in preoperative cardiovascular surgery patients . J Clin Med . 2019 ; 8 ( 10 ): 1576 .
26. Ost M , Igual Gil C , Coleman V , Keipert S , Efstathiou S , Vidic V , . Muscle-derived GDF15 drives diurnal anorexia and systemic metabolic remodeling during mitochondrial stress . EMBO Rep . 2020 ; 21 ( 3 ): e48804 .
27. Bloch SA , Lee JY , Syburra T , Rosendahl U , Griffiths MJ , Kemp PR , . Increased expression of GDF-15 may mediate ICU-acquired weakness by down-regulating muscle microRNAs . Thorax . 2015 ; 70 ( 3 ): 219 - 28 .
28. Moon JS , Goeminne LJE , Kim JT , Tian JW , Kim SH , Nga HT , . Growth differentiation factor 15 protects against the aging-mediated systemic inflammatory response in humans and mice . Aging cell . 2020 ; 19 ( 8 ): e13195 .
29. Tanaka T , Biancotto A , Moaddel R , Moore AZ , Gonzalez-Freire M , Aon MA , . Plasma proteomic signature of age in healthy humans . Aging cell . 2018 ; 17 ( 5 ): e12799 .
30. Conte M , Ostan R , Fabbri C , Santoro A , Guidarelli G , Vitale G , . Human aging and longevity are characterized by high levels of mitokines . J Gerontol A Biol Sci Med Sci . 2019 ; 74 ( 5 ): 600 - 7 .
31. Lehallier B , Gate D , Schaum N , Nanasi T , Lee SE , Yousef H , . Undulating changes in human plasma proteome profiles across the lifespan . Nat Med . 2019 ; 25 ( 12 ): 1843 - 50 .
32. Conte M , Martucci M , Mosconi G , Chiariello A , Cappuccilli M , Totti V , . GDF15 plasma level is inversely associated with level of physical activity and correlates with markers of inflammation and muscle weakness . Front Immunol . 2020 ; 11 : 915 .
33. Coll AP , Chen M , Taskar P , Rimmington D , Patel S , Tadross JA , . GDF15 mediates the effects of metformin on body weight and energy balance . Nature . 2020 ; 578 ( 7795 ): 444 - 8 .
34. Melvin A , Chantzichristos D , Kyle CJ , Mackenzie SD , Walker BR , Johannsson G , . GDF15 is elevated in conditions of glucocorticoid deficiency and is modulated by glucocorticoid replacement . J Clin Endocrinol Metab . 2020 ; 105 ( 5 ). http://dx.doi.org/10.1210/clinem/dgz277 .
35. Brown JB , Celniker SE . Lessons from modENCODE . Annu Rev Genomics Hum Genet . 2015 ; 16 : 31 - 53 .
36. Yue F , Cheng Y , Breschi A , Vierstra J , Wu W , Ryba T , . A comparative encyclopedia of DNA elements in the mouse genome . Nature . 2014 ; 515 ( 7527 ): 355 - 64 .
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