「日本人の食事摂取基準(2025年版)」策定検討会報告書 (411 ページ)
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systematic review and meta-analysis. Ageing Res Rev. 2022;81(101731):101731.
78) Campbell WW, Deutz NEP, Volpi E, et al. Nutritional interventions: Dietary protein needs and influences
on skeletal muscle of older adults. J Gerontol A Biol Sci Med Sci. 2023;78(Suppl 1):67-72.
79) Campbell WW, Trappe TA, Wolfe RR, et al. 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):M373-80.
80) Deutz NEP, Bauer JM, Barazzoni R, et al. Protein intake and exercise for optimal muscle function with
aging: recommendations from the ESPEN Expert Group. Clin Nutr. 2014;33(6):929-936.
81) Wu SY, Yeh NH, Chang HY, et al. Adequate protein intake in older adults in the context of frailty: crosssectional results of the Nutrition and Health Survey in Taiwan 2014-2017. Am J Clin Nutr. 2021;114(2):649660.
82) Houston DK, Nicklas BJ, Ding J, et al. Dietary protein intake is associated with lean mass change in older,
community-dwelling adults: the Health, Aging, and Body Composition (Health ABC) Study. Am J Clin
Nutr. 2008;87(1):150-155.
83) Coelho-Junior HJ, Marzetti E, Picca A, et al. Protein intake and frailty: A matter of quantity, quality, and
timing. Nutrients. 2020;12(10):2915.
84) Kobayashi S, Asakura K, Suga H, et al. High protein intake is associated with low prevalence of frailty
among old Japanese women: a multicenter cross-sectional study. Nutr J. 2013;12(1):164.
85) Rogeri PS, Zanella R Jr, Martins GL, et al. Strategies to prevent sarcopenia in the aging process: Role of
protein intake and exercise. Nutrients. 2021;14(1):52.
86) Nanri H, Yamada Y, Yoshida T, et al. Sex difference in the association between protein intake and frailty:
Assessed using the Kihon Checklist indexes among older adults. J Am Med Dir Assoc. 2018;19(9):801-805.
87) Coelho-Júnior HJ, Rodrigues B, Uchida M, et al. Low protein intake is associated with frailty in older adults:
A systematic review and meta-analysis of observational studies. Nutrients. 2018;10(9):1334.
88) Morton RW, Murphy KT, McKellar SR, et al. A systematic review, meta-analysis and meta-regression of
the effect of protein supplementation on resistance training-induced gains in muscle mass and strength in
healthy adults. Br J Sports Med. 2018;52(6):376-384.
89) Delimaris I. Adverse effects associated with protein intake above the Recommended Dietary Allowance for
adults. ISRN Nutr. 2013;2013:126929.
90) 日本腎臓学会編. エビデンスに基づく CKD 診療ガイドライン 2023. 東京医学社; 2023.
91) Romano F, Serpico D, Cantelli M, et al. Osteoporosis and dermatoporosis: a review on the role of vitamin
D. Front Endocrinol (Lausanne). 2023;14:1231580.
92) Remelli F, Vitali A, Zurlo A, et al. Vitamin D deficiency and sarcopenia in older persons. Nutrients.
2019;11(12):2861.
93) Gunton JE, Girgis CM, Baldock PA, et al. Bone muscle interactions and vitamin D. Bone. 2015;80:89-94.
94) Gerdhem P, Ringsberg KAM, Obrant KJ, et al. Association between 25-hydroxy vitamin D levels, physical
activity, muscle strength and fractures in the prospective population-based OPRA Study of Elderly Women.
Osteoporos Int. 2005;16(11):1425-1431.
95) Wicherts IS, van Schoor NM, Boeke AJP, et al. Vitamin D status predicts physical performance and its
decline in older persons. J Clin Endocrinol Metab. 2007;92(6):2058-2065.
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