Functional Ingredient, Improves Physical Strength

Foods 2020 , 9 , 1147

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References 1. Hotamisligil, G.S. Inflammation and metabolic disorders. Nature 2006 , 444 , 860–867. [CrossRef] [PubMed] 2. Hunter, P. The inflammation theory of disease: The growing realization that chronic inflammation is crucial in many diseases opens new avenues for treatment. EMBORep. 2012 , 13 , 968–970. [CrossRef] [PubMed] 3. Medzhitov, R. Origin and physiological roles of inflammation. Nature 2008 , 454 , 428–435. [CrossRef] [PubMed] 4. El-Gabalawy, H.; Guenther, L.Y.N.C.; Bernstein, C.N.; El-gabalawy, H.; Guenther, L.Y.N.C.; Bernstein, C.N. Epidemiology of Immune-Mediated Inflammatory Diseases: Incidence, Prevalence, Natural History, and Comorbidities. J. Rheumatol. 2010 , 85 , 2–10. [CrossRef] [PubMed] 5. Baker, R.G.; Hayden, M.S.; Ghosh, S. NF- κ B, Inflammation, and Metabolic Disease. Cell Metab. 2011 , 13 , 11–22. [CrossRef] 6. Coussens, L.M.; Werb, Z. Inflammation and cancer. Nature 2002 , 420 , 860–867. [CrossRef] 7. Franceschi, C.; Garagnani, P.; Parini, P.; Giuliani, C.; Santoro, A. Inflammaging: A new immune—metabolic viewpoint for age-related diseases. Nat. Rev. Endocrinol. 2018 , 14 , 576–590. [CrossRef] 8. Prattichizzo, F.; De Nigris, V.; Spiga, R.; Mancuso, E.; La Sala, L.; Antonicelli, R.; Testa, R.; Procopio, A.D.; Olivieri, F.; Ceriello, A. Inflammageing and metaflammation: The yin and yang of type 2 diabetes. Ageing Res. Rev. 2018 , 41 , 1–17. [CrossRef] 9. Draganidis, D.; Karagounis, L.G.; Athanailidis, I.; Chatzinikolaou, A.; Jamurtas, A.Z.; Fatouros, I.G. Inflammaging and Skeletal Muscle: Can Protein Intake Make a Difference? J.Nutr. 2016 , 146 , 1940–1952. [CrossRef] 10. Zembron-Lacny, A.; Dziubek, W.; Wolny-Rokicka, E.; Dabrowska, G.; Wozniewski, M. The relation of inflammaging with skeletal muscle properties in elderly men. Am. J. Mens. Health 2019 , 13 , 1557988319841934. [CrossRef] 11. Vasto, S.; Candore, G.; Balistreri, C.R.; Caruso, M.; Colonna-Romano, G.; Grimaldi, M.P.; Listi, F.; Nuzzo, D.; Lio, D.; Caruso, C. Inflammatory networks in ageing, age-related diseases and longevity. Mech. Ageing Dev. 2007 , 128 , 83–91. [CrossRef] [PubMed] 12. Kim, H.; Kim, H.-S.; Youn, J.-C.; Shin, E.-C.; Park, S. Serum cytokine profiles in healthy young and elderly population assessed using multiplexed bead-based immunoassays. J. Transl. Med. 2011 , 9 , 113. [CrossRef] [PubMed] 13. Bradley, J.R. TNF-mediated inflammatory disease. J. Pathol. 2008 , 149–160. [CrossRef] [PubMed] 14. Parameswaran, N.; Patial, S. Tumor necrosis factor- α signaling in macrophages. Crit. Rev. Eukaryot. Gene Expr. 2010 , 20 , 87–103. [CrossRef] 15. Popa, C.; Netea, M.G.; van Riel, P.L.C.M.; van der Meer, J.W.M.; Stalenhoef, A.F.H. The role of TNF- α in chronic inflammatory conditions, intermediary metabolism, and cardiovascular risk. J. Lipid Res. 2007 , 48 , 751–762. [CrossRef] 16. Maini, R.N.; Elliott, M.J.; Brennan, F.M.; Feldmann, M. Beneficial e ff ects of tumour necrosis factor-alpha (TNF-alpha) blockade in rheumatoid arthritis (RA). Clin. Exp. Immunol. 1995 , 101 , 207–212. [CrossRef] 17. Feldmann, M.; Maini, R.N. TNF defined as a therapeutic target for rheumatoid arthritis and other autoimmune diseases. Nat. Med. 2003 , 9 , 1245–1250. [CrossRef] 18. Kalliolias, G.D.; Ivashkiv, L.B. TNF biology, pathogenic mechanisms and emerging therapeutic strategies. Nat. Rev. Rheumatol. 2015 , 12 , 49. [CrossRef] 19. Moughan, P.J.; Rutherfurd, S.M.; Montoya, C.A.; Dave, L.A. Food-derived bioactive peptides—A new paradigm. Nutr. Res. Rev. 2014 , 27 , 16–20. [CrossRef] 20. Gupta, S.; Sharma, A.K.; Shastri, V.; Madhu, M.K.; Sharma, V.K. Prediction of anti-inflammatory proteins / peptides: An insilico approach. J. Transl. Med. 2017 , 15 , 1–11. [CrossRef] 21. La Manna, S.; Di Natale, C.; Florio, D.; Marasco, D. Peptides as therapeutic agents for inflammatory—Related diseases. Int. J. Mol. Sci. 2018 , 19 , 2714. [CrossRef] [PubMed] 22. Fosgerau, K.; Ho ff mann, T. Peptide therapeutics: Current status and future directions. Drug Discov. Today 2015 , 20 , 122–128. [CrossRef] [PubMed] 23. Khaldi, N.; Holton, T.A.; Shields, D.C. Amino acid enrichment and compositional changes among mammalian milk proteins and the resulting nutritional consequences. J. Dairy Sci. 2014 , 97 , 1248–1258. [CrossRef] [PubMed] 24. Udenigwe, C.C. Mohan Aishwarya Mechanisms of food protein-derived antihypertensive peptides other than ACE inhibition. J. Funct. Foods 2014 , 8 , 45–52. [CrossRef]

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