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COVID-19: "영양 아젠다"
Nutrition agenda during the era of the COVID-19 pandemic 원문보기

Journal of nutrition and health, v.54 no.1, 2021년, pp.1 - 9  

이명숙 (성신여자대학교 식품영양학과)

Abstract AI-Helper 아이콘AI-Helper

This review describes the risk factors of the nutrition crisis in coronavirus disease 2019 (COVID-19) infections and suggests precision nutrition against long-term psychological and physiological stress. The mandatory quarantine and the social distancing are associated with an interruption of the li...

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참고문헌 (45)

  1. World Health Organization. WHO coronavirus disease dashboard [Internet]. Geneva: World Health Organization; 2021 [cited 2021 Jan 20]. Available from: https://covid19.who.int/. 

  2. Ritchie H, Ortiz-Ospina E, Beltekian D, Mathieu E, Hasell J, Macdonald B, et al. Mortality risk of COVID-19 [Internet]. Oxford: Our World in Data; 2021 [cited 2021 Jan 18]. Available from: https://ourworldindata.org/mortality-risk-covid. 

  3. Yoo JM. Ewha Womans University 'COVID-19 Vaccine Policy Issues' international conference held [Internet]. Seoul: Veritas α ; 2020 [cited 2021 Jan 19]. Available from: http://www.veritas-a.com/news/articleView.html?idxno343864. 

  4. Muscogiuri G, Barrea L, Savastano S, Colao A. Nutritional recommendations for CoVID-19 quarantine. Eur J Clin Nutr 2020; 74(6): 850-851. 

  5. Wu C, Chen X, Cai Y, Xia J, Zhou X, Xu S, et al. Risk factors associated with acute respiratory distress syndrome and death in patients with coronavirus disease 2019 pneumonia in Wuhan, China. JAMA Intern Med 2020; 180(7): 934-943. 

  6. Bracale R, Vaccaro CM, Changes in food choice following restrictive measures due to COVID-19. Nutr Metab Cardiovasc Dis 2020; 30(9): 1423-1426. 

  7. Rodriguez-Martin BC, Meule A. Food craving: new contributions on its assessment, moderators, and consequences. Front Psychol 2015; 6: 21. 

  8. Ong MM, Ong RM, Reyes GK, Sumpaico-Tanchanco LB. Addressing the COVID-19 nutrition crisis in vulnerable communities: applying a primary care perspective. J Prim Care Community Health 2020; 11: 2150132720946951. 

  9. Gombart AF, Pierre A, Maggini S. A review of micronutrients and the immune system-working in harmony to reduce the risk of infection. Nutrients 2020; 12(1): 236. 

  10. Thurnham DI. Micronutrients and immune function: some recent developments. J Clin Pathol 1997; 50(11): 887-891. 

  11. Iddir M, Brito A, Dingeo G, Fernandez Del Campo SS, Samouda H, La Frano MR, et al. Strengthening the immune system and reducing inflammation and oxidative stress through diet and nutrition: considerations during the COVID-19 crisis. Nutrients 2020; 12(6): 1562. 

  12. Garcia OP, Long KZ, Rosado JL. Impact of micronutrient deficiencies on obesity. Nutr Rev 2009; 67(10): 559-572. 

  13. Elovainio M, Hakulinen C, Pulkki-Raback L, Virtanen M, Josefsson K, Jokela M, et al. Contribution of risk factors to excess mortality in isolated and lonely individuals: an analysis of data from the UK Biobank cohort study, Lancet Public Health 2017; 2(6): e260-e266. 

  14. Corsica JA, Spring BJ. Carbohydrate craving: a double-blind, placebo-controlled test of the self-medication hypothesis. Eat Behav 2008; 9(4): 447-454. 

  15. Moynihan AB, van Tilburg WA, Igou ER, Wisman A, Donnelly AE, Mulcaire JB. Eaten up by boredom: consuming food to escape awareness of the bored self. Front Psychol 2015; 6: 369. 

  16. Di Renzo L, Gualtieri P, Pivari F, Soldati L, Attina A, Cinelli G, et al. Eating habits and lifestyle changes during COVID-19 lockdown: an Italian survey. J Transl Med 2020; 18(1): 229. 

  17. Peuhkuri K, Sihvola N, Korpela R. Diet promotes sleep duration and quality. Nutr Res 2012; 32(5): 309-319. 

  18. Herr N, Bode C, Duerschmied D. The effects of serotonin in immune cells. Front Cardiovasc Med 2017; 4: 48. 

  19. Wiwanitkit V. Delirium, sleep, COVID-19 and melatonin. Sleep Med 2020; 75: 542. 

  20. Calder PC. Nutrition, immunity and COVID-19. BMJ Nutr Prev Health 2020; 3(1): 74-92. 

  21. Meltzer DO, Best TJ, Zhang H, Vokes T, Arora V, Solway J. Association of vitamin D status and other clinical characteristics with COVID-19 test results. JAMA Netw Open 2020; 3(9): e2019722. 

  22. Israel A, Cicurel A, Feldhamer I, Dror Y, Giveon SM, Gillis D, et al. The link between vitamin D deficiency and COVID-19 in a large population [Internet]. [place unknown]: medRxiv; 2020 [cited 2021 Jan 20]. Available from: https://www.medrxiv.org/content/10.1101/2020.09.04.20188268v1. 

  23. Martineau AR, Jolliffe DA, Hooper RL, Greenberg L, Aloia JF, Bergman P, et al. Vitamin D supplementation to prevent acute respiratory tract infections: systematic review and meta-analysis of individual participant data. BMJ 2017; 356: i6583. 

  24. Ginde AA, Blatchford P, Breese K, Zarrabi L, Linnebur SA, Wallace JI, et al. High-dose monthly vitamin D for prevention of acute respiratory infection in older long-term care residents: a randomized clinical trial. J Am Geriatr Soc 2017; 65(3): 496-503. 

  25. Greiller CL, Martineau AR. Modulation of the immune response to respiratory viruses by vitamin D. Nutrients 2015; 7(6): 4240-4270. 

  26. Ragab D, Eldin HS, Taeimah M, Khattab R, Salem RA, The COVID-19 cytokine storm; What we know so far. Front Immunol 2020; 11: 1446. 

  27. Ministry of Health and Welfare (KR). COVID-19, Republic of Korea [Internet]. Sejong: Ministry of Health and Welfare; 2021 [cited 2021 Jan 20]. Available from: http://ncov.mohw.go.kr/bdBoardList_Real.do. 

  28. Statista. Distribution of COVID19 Deaths in USA by Race [Internet]. Hamburg: Statista; 2021 [cited 2021 Jan 18]. Available from: https://www.statista.com/statistics/1122369/covid-deaths-distribution-by-race-us/. 

  29. Yu X. Risk interactions of coronavirus infection across age groups after the peak of COVID-19 epidemic. Int J Environ Res Public Health 2020l; 17(14): 5246. 

  30. Hong S, Choi WH. Clinical and physiopathological mechanism of sarcopenia. Korean J Med 2012; 83(4): 444-454. 

  31. Arango-Lopera VE, Arroyo P, Gutierrez-Robledo LM, Perez-Zepeda MU, Cesari M. Mortality as an adverse outcome of sarcopenia. J Nutr Health Aging 2013; 17(3): 259-262. 

  32. Ekiz T, Kara M, Ozcakar L. Fighting against frailty and sarcopenia - As well as COVID-19? Med Hypotheses 2020; 144: 109911. 

  33. Campbell WW, Trappe TA, Wolfe RR, Evans WJ. The recommended dietary allowance for protein may not be adequate for older people to maintain skeletal muscle. J Gerontol A Biol Sci Med Sci 2001; 56(6): M373-M380. 

  34. Makino S, Ikegami S, Kume A, Horiuchi H, Sasaki H, Orii N. Reducing the risk of infection in the elderly by dietary intake of yoghurt fermented with Lactobacillus delbrueckii ssp. bulgaricus OLL1073R-1. Br J Nutr 2010; 104(7): 998-1006. 

  35. Park Y, Choi JE, Hwang HS. Protein supplementation improves muscle mass and physical performance in undernourished prefrail and frail elderly subjects: a randomized, double-blind, placebo-controlled trial. Am J Clin Nutr 2018; 108(5): 1026-1033. 

  36. Batsis JA, Villareal DT. Sarcopenic obesity in older adults: aetiology, epidemiology and treatment strategies. Nat Rev Endocrinol 2018; 14(9): 513-537. 

  37. Lighter J, Phillips M, Hochman S, Sterling S, Johnson D, Francois F, et al. Obesity in patients younger than 60 years is a risk factor for COVID-19 hospital admission. Clin Infect Dis 2020; 71(15): 896-897. 

  38. Popkin BM, Du S, Green WD, Beck MA, Algaith T, Herbst CH, et al. Individuals with obesity and COVID-19: a global perspective on the epidemiology and biological relationships. Obes Rev 2020; 21(11): e13128. 

  39. Hamer M, Gale CR, Kivimaki M, Batty GD. Overweight, obesity, and risk of hospitalization for COVID-19: a community-based cohort study of adults in the United Kingdom. Proc Natl Acad Sci U S A 2020; 117(35): 21011-21013. 

  40. Tsai S, Clemente-Casares X, Zhou AC, Lei H, Ahn JJ, Chan YT, et al. Insulin receptor mediated stimulation boosts T cell immunity during inflammation and infection. Cell Metab 2018; 28(6): 922-934.e4. 

  41. Saucillo DC, Gerriets VA, Sheng J, Rathmell JC, Maciver NJ. Leptin metabolically licenses T cells for activation to link nutrition and immunity. J Immunol 2014; 192(1): 136-144. 

  42. Rojas-Osornio SA, Cruz-Hernandez TR, Drago-Serrano ME, Campos-Rodriguez R. Immunity to influenza: impact of obesity. Obes Res Clin Pract 2019; 13(5): 419-429. 

  43. Milner JJ, Sheridan PA, Karlsson EA, Schultz-Cherry S, Shi Q, Beck MA. Diet-induced obese mice exhibit altered heterologous immunity during a secondary 2009 pandemic H1N1 infection. J Immunol 2013; 191(5): 2474-2485. 

  44. Sheridan PA, Paich HA, Handy J, Karlsson EA, Hudgens MG, Sammon AB, et al. Obesity is associated with impaired immune response to influenza vaccination in humans. Int J Obes 2012; 36(8): 1072-1077. 

  45. de Faria Coelho-Ravagnani C, Corgosinho FC, Sanches FF, Prado CM, Laviano A, Mota JF. Dietary recommendations during the COVID-19 pandemic. Nutr Rev 2020: nuaa067. 

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