High Prevalence of Energy and Nutrients Inadequacy among Brazilian Older Adults

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Citações na Scopus
1
Tipo de produção
article
Data de publicação
2023
Título da Revista
ISSN da Revista
Título do Volume
Editora
MDPI
Citação
NUTRIENTS, v.15, n.14, article ID 3246, 15p, 2023
Projetos de Pesquisa
Unidades Organizacionais
Fascículo
Resumo
Poor nutrition increases the risk of diseases and adverse health outcomes in older adults. We evaluated the potential inadequacy of nutrient intake among older adults in Brazil and its association with body anthropometry and composition outcomes. Dietary intake was obtained from 295 community-living older adults (>60 years old), of both genders, using a seven-day food record. Nutrient inadequacy was further identified based on the Dietary Reference Intakes and European Guidelines. Skeletal muscle mass (SM), strength and performance, and the diagnosis of sarcopenia were assessed using reference methods. Nutritional inadequacy was high, with energy, dietary fiber, and six micronutrients exhibiting the greatest inadequacy levels (>80%). Energy intake was correlated with SM strength (p = 0.000) and performance (p = 0.001). Inadequate energy, fiber, and protein intakes influenced BMI, while inadequate intake of vitamin B6 directly affected the diagnosis of sarcopenia (p & LE; 0.005). Further research is required to investigate whether these inadequacies can be associated with other clinical health outcomes.
Palavras-chave
food consumption, energy intake, macronutrients intake, micronutrients intake, diet, food, and nutrition, older adults, sarcopenia, physical function, lean mass
Referências
  1. Abbatecola AM, 2018, CURR OPIN CLIN NUTR, V21, P10, DOI 10.1097/MCO.0000000000000434
  2. Agarwal E, 2013, MATURITAS, V76, P296, DOI 10.1016/j.maturitas.2013.07.013
  3. Alehagen U, 2021, BIOMOLECULES, V11, DOI 10.3390/biom11101478
  4. Alexandre TD, 2014, J NUTR HEALTH AGING, V18, P284, DOI 10.1007/s12603-013-0413-0
  5. Alhussain MH, 2021, NUTRIENTS, V13, DOI 10.3390/nu13010114
  6. Arredondo M, 2018, HEALTHY AGEING LONG, V8, P35, DOI 10.1007/978-3-030-03742-0_2
  7. Azzini E, 2021, INT J MOL SCI, V22, DOI 10.3390/ijms22189694
  8. Bahmanpour S., 2012, GUIDELINE POTASSIUM
  9. Barbagallo M, 2021, NUTRIENTS, V13, DOI 10.3390/nu13020463
  10. Beaudart C, 2019, AGING CLIN EXP RES, V31, P815, DOI 10.1007/s40520-019-01186-7
  11. Beaudart C, 2017, PLOS ONE, V12, DOI 10.1371/journal.pone.0169548
  12. Behrouzi P, 2020, J NUTR, V150, P634, DOI 10.1093/jn/nxz269
  13. Beto Judith A, 2015, Clin Nutr Res, V4, P1, DOI 10.7762/cnr.2015.4.1.1
  14. Bhattacharya S, 2022, OSTEOPORO SARCOPENIA, V8, P135, DOI 10.1016/j.afos.2022.12.002
  15. Ceccon RF, 2021, CIENC SAUDE COLETIVA, V26, P17, DOI 10.1590/1413-81232020261.30352020
  16. Chang KV, 2017, AGE AGEING, V46, P738, DOI 10.1093/ageing/afx094
  17. Ciosak SI, 2011, REV ESC ENFERM USP, V45, P1763, DOI 10.1590/S0080-62342011000800022
  18. Coelho HJ, 2018, NUTRIENTS, V10, DOI 10.3390/nu10091334
  19. Cruz-Jentoft AJ, 2019, AGE AGEING, V48, P16, DOI 10.1093/ageing/afy169
  20. da Silva GM, 2021, CIENC SAUDE COLETIVA, V26, P3865, DOI 10.1590/1413-81232021269.2.28252019
  21. De la Cruz-Gongora V, 2017, SALUD PUBLICA MEXICO, V59, P285, DOI 10.21149/7851
  22. de Mello AV, 2020, PUBLIC HEALTH NUTR, V23, P1766, DOI 10.1017/S1368980019003483
  23. Fernandes DPD, 2017, ARCH GERONTOL GERIAT, V72, P174, DOI 10.1016/j.archger.2017.05.006
  24. do Nascimento CQ, 2021, REV BRAS ENFERM, V74, DOI 10.1590/0034-7167-2020-0984
  25. Dominguez LJ, 2021, METABOLITES, V11, DOI 10.3390/metabo11040255
  26. Fisberg RM, 2009, ARQ BRAS ENDOCRINOL, V53, P617, DOI 10.1590/S0004-27302009000500014
  27. Food Forum, 2010, HLTH SAF FOODS WE AG
  28. Frampton J, 2021, J CACHEXIA SARCOPENI, V12, P2134, DOI 10.1002/jcsm.12820
  29. Furman D, 2019, NAT MED, V25, P1822, DOI 10.1038/s41591-019-0675-0
  30. Gana W, 2021, NUTRIENTS, V13, DOI 10.3390/nu13093163
  31. Goncalves T.J.M., 2019, BRASPEN J, V34, P2
  32. Grootswagers P, 2021, AM J CLIN NUTR, V113, P781, DOI 10.1093/ajcn/nqaa368
  33. Guligowska A, 2016, CLIN INTERV AGING, V11, P1505, DOI 10.2147/CIA.S114669
  34. Hall KD, 2017, GASTROENTEROLOGY, V152, P1718, DOI 10.1053/j.gastro.2017.01.052
  35. Heuberger RA, 2011, DRUG AGING, V28, P315, DOI 10.2165/11587670-000000000-00000
  36. Institute of Medicine, 2006, DIETARY REFERENCE IN
  37. Instituto Brasileiro de Geografia e Estatistica Diretoria de Pesquisas, COORD TRAB REND PESQ
  38. Instituto Brasileiro de Geografia e Estatistica Sintese de Indicadores Sociais, 2020, AN COND VID POP BRAS
  39. Isanejad M, 2016, BRIT J NUTR, V115, P1281, DOI 10.1017/S000711451600012X
  40. Jun S, 2020, PUBLIC HEALTH NUTR, V23, P2268, DOI 10.1017/S1368980020000257
  41. Jyvakorpi K, 2016, ARCH GERONTOL GERIAT, V67, P40, DOI 10.1016/j.archger.2016.06.012
  42. Karlsson M, 2020, CLIN NUTR, V39, P1077, DOI 10.1016/j.clnu.2019.04.009
  43. Keller HH, 2017, J AM MED DIR ASSOC, V18, P941, DOI 10.1016/j.jamda.2017.05.003
  44. Kjeldby IK, 2013, BMC GERIATR, V13, DOI 10.1186/1471-2318-13-13
  45. Koponen S, 2021, NUTRIENTS, V13, DOI 10.3390/nu13082763
  46. Kupisz-Urbanska M, 2021, NUTRIENTS, V13, DOI 10.3390/nu13041247
  47. La Fata G, 2014, NUTRIENTS, V6, P5453, DOI 10.3390/nu6125453
  48. Lengele L, 2020, NUTRIENTS, V12, DOI 10.3390/nu12113485
  49. Lin Z, 2018, FRONT ENDOCRINOL, V9, DOI 10.3389/fendo.2018.00404
  50. LIPSCHITZ DA, 1994, PRIMARY CARE, V21, P55
  51. Liu S, 2022, FRONT NUTR, V9, DOI 10.3389/fnut.2022.1036795
  52. Liu Z, 2019, NUTRIENTS, V11, DOI 10.3390/nu11081787
  53. Martini LA, 2013, NUTRITION, V29, P845, DOI 10.1016/j.nut.2012.12.009
  54. Masnoon N, 2017, BMC GERIATR, V17, DOI 10.1186/s12877-017-0621-2
  55. McKeown NM, 2022, BMJ-BRIT MED J, V378, DOI 10.1136/bmj-2020-054370
  56. Meydani SN, 2018, ADV NUTR, V9, P533, DOI 10.1093/advances/nmy035
  57. Monteiro CA, 2019, PUBLIC HEALTH NUTR, V22, P936, DOI 10.1017/S1368980018003762
  58. Monteiro J.P., 2007, CONSUMO ALIMENTAR VI
  59. Nalder L, 2021, J NUTR HEALTH AGING, V25, P287, DOI 10.1007/s12603-020-1489-y
  60. O'Connell ML, 2021, CLIN NUTR ESPEN, V43, P478, DOI 10.1016/j.clnesp.2021.02.020
  61. Philippi S.T., 2002, TABLE FOOD COMPOSITI, V2nd ed.
  62. Pinheiro A.B., 2004, TABELA AVALIACAO CON, V5th ed.
  63. Ponti F, 2020, FRONT ENDOCRINOL, V10, DOI 10.3389/fendo.2019.00861
  64. Rathnayake N, 2021, BMC WOMENS HEALTH, V21, DOI 10.1186/s12905-020-01153-9
  65. Rodriguez-Rodriguez E, 2015, PUBLIC HEALTH NUTR, V18, P850, DOI 10.1017/S1368980014001402
  66. Vinas BR, 2011, ANN NUTR METAB, V59, P84, DOI 10.1159/000332762
  67. Saraiva MD, 2020, BMC GERIATR, V20, DOI 10.1186/s12877-020-01820-4
  68. Shoemaker ME, 2022, NUTRIENTS, V14, DOI 10.3390/nu14132717
  69. Souza L. B. de, 2022, Geriatrics, Gerontology and Aging, V16, DOI 10.53886/gga.e0220001
  70. Stover PJ, 2020, J NUTR, V150, p2593S, DOI 10.1093/jn/nxaa117
  71. Struijk EA, 2018, CLIN NUTR, V37, P1271, DOI 10.1016/j.clnu.2017.05.016
  72. Suidasari S, 2017, EXP THER MED, V14, P3239, DOI 10.3892/etm.2017.4879
  73. TACO, 2011, TABELA BRASILEIRA CO, V4t
  74. Tefera YG, 2020, PLOS ONE, V15, DOI 10.1371/journal.pone.0234000
  75. ter Borg S, 2016, J AM MED DIR ASSOC, V17, P393, DOI 10.1016/j.jamda.2015.12.015
  76. Trombetti A, 2016, OSTEOPOROSIS INT, V27, P463, DOI 10.1007/s00198-015-3236-5
  77. van Dronkelaar C, 2018, J AM MED DIR ASSOC, V19, P6, DOI 10.1016/j.jamda.2017.05.026
  78. Veldurthy V, 2016, BONE RES, V4, DOI 10.1038/boneres.2016.41
  79. Venter C, 2022, ALLERGY, V77, P3185, DOI 10.1111/all.15430
  80. Verly E, 2021, REV SAUDE PUBL, V55, DOI 10.11606/s1518-8787.2021055003343
  81. Volkert D, 2019, CLIN NUTR, V38, P10, DOI 10.1016/j.clnu.2018.05.024
  82. Volkert D, 2013, CURR OPIN CLIN NUTR, V16, P534, DOI 10.1097/MCO.0b013e328363c8d1
  83. Wongpakaran N, 2018, BMC GERIATR, V18, DOI 10.1186/s12877-018-1001-2
  84. World Health Organization (WHO), AGEING
  85. Yeung SSY, 2019, J CACHEXIA SARCOPENI, V10, P485, DOI 10.1002/jcsm.12411