1.
Rochwerg, B, Agarwal, A, Zeng, L, et al. Remdesivir for severe covid-19: a clinical practice guideline. BMJ. 2020;370:m2924. doi:10.1136/bmj.m2924
Google Scholar |
Crossref |
Medline2.
Oliver, SE, Gargano, JW, Marin, M, et al. The Advisory Committee on Immunization Practices’ Interim Recommendation for use of Pfizer-BioNTech COVID-19 vaccine—United States, December 2020. MMWR Morb Mortal Wkly Rep. 2020;69(50):1922–1924. doi:10.15585/mmwr.mm6950e2
Google Scholar |
Crossref |
Medline3.
Oliver, SE, Gargano, JW, Marin, M, et al. The Advisory Committee on Immunization Practices’ Interim Recommendation for use of Moderna COVID-19 vaccine—United States, December 2020. MMWR Morb Mortal Wkly Rep. 2021;69(5152):1653–1656. doi:10.15585/mmwr.mm695152e1
Google Scholar |
Crossref |
Medline4.
Dickinson, A, Blatman, J, El-Dash, N, Franco, JC. Consumer usage and reasons for using dietary supplements: report of a series of surveys. J Am Coll Nutr. 2014;33(2):176–182. doi:10.1080/07315724.2013.875423
Google Scholar |
Crossref |
Medline5.
Dietary Supplement Use Reaches All Time High . The Council for Responsible Nutrition (CRN). 2019. Accessed June 1, 2020.
https://www.crnusa.org/newsroom/dietary-supplement-use-reaches-all-time-high Google Scholar6.
Foley, H, Steel, A, Cramer, H, Wardle, J, Adams, J. Disclosure of complementary medicine use to medical providers: a systematic review and meta-analysis. Sci Rep. 2019;9(1):1573. doi:10.1038/s41598-018-38279-8
Google Scholar |
Crossref |
Medline7.
Crawford, C, Boyd, C, Avula, B, Wang, YH, Khan, IA, Deuster, PA. A public health issue: dietary supplements promoted for brain health and cognitive performance. J Altern Complement Med N Y N. 2020;26(4):265–272. doi:10.1089/acm.2019.0447
Google Scholar |
Crossref |
Medline8.
Natural medicines . Therapeutic research center. 2021. Accessed March 1, 2021.
https://naturalmedicines.therapeuticresearch.com/ Google Scholar9.
Herbal Medicines Compendium . The United States pharmacopeial convention. 2021. Accessed March 2, 2021.
https://hmc.usp.org/ Google Scholar10.
ConsumerLab.Com . 2021. Accessed March 3, 2021.
https://www.consumerlab.com/ Google Scholar11.
Butler, MJ, Barrientos, RM. The impact of nutrition on COVID-19 susceptibility and long-term consequences. Brain Behav Immun. 2020;87:53–54. doi:10.1016/j.bbi.2020.04.040
Google Scholar |
Crossref |
Medline12.
Lin, R, Zhou, L, Zhang, J, Wang, B. Abnormal intestinal permeability and microbiota in patients with autoimmune hepatitis. Int J Clin Exp Pathol. 2015;8(5):5153–5160.
Google Scholar |
Medline13.
Mu, Q, Kirby, J, Reilly, CM, Luo, XM. Leaky gut as a danger signal for autoimmune diseases. Front Immunol. 2017;8:598. doi:10.3389/fimmu.2017.00598
Google Scholar |
Crossref |
Medline14.
Wischmeyer, PE, McDonald, D, Knight, R. Role of the microbiome, probiotics, and dysbiosis therapy in critical illness. Curr Opin Crit Care. 2016;22(4):347–353. doi:10.1097/MCC.0000000000000321
Google Scholar |
Crossref |
Medline15.
Valdés-Varela, L, Gueimonde, M, Ruas-Madiedo, P. Probiotics for prevention and treatment of clostridium difficile infection. Adv Exp Med Biol. 2018;1050:161–176. doi:10.1007/978-3-319-72799-8_10
Google Scholar |
Crossref |
Medline16.
Chong, HX, Yusoff, NAA, Hor, YY, et al. Lactobacillus plantarum DR7 improved upper respiratory tract infections via enhancing immune and inflammatory parameters: a randomized, double-blind, placebo-controlled study. J Dairy Sci. 2019;102(6):4783–4797. doi:10.3168/jds.2018-16103
Google Scholar |
Crossref |
Medline17.
Kanauchi, O, Andoh, A, AbuBakar, S, Yamamoto, N. Probiotics and paraprobiotics in viral infection: clinical application and effects on the innate and acquired immune systems. Curr Pharm Des. 2018;24(6):710–717. doi:10.2174/1381612824666180116163411
Google Scholar |
Crossref |
Medline18.
King, S, Glanville, J, Sanders, ME, Fitzgerald, A, Varley, D. Effectiveness of probiotics on the duration of illness in healthy children and adults who develop common acute respiratory infectious conditions: a systematic review and meta-analysis. Br J Nutr. 2014;112(1):41–54. doi:10.1017/S0007114514000075
Google Scholar |
Crossref |
Medline19.
Zeng, J, Wang, CT, Zhang, FS, et al. Effect of probiotics on the incidence of ventilator-associated pneumonia in critically ill patients: a randomized controlled multicenter trial. Intensive Care Med. 2016;42(6):1018–1028. doi:10.1007/s00134-016-4303-x
Google Scholar |
Crossref |
Medline20.
Morrow, LE, Kollef, MH, Casale, TB. Probiotic prophylaxis of ventilator-associated pneumonia: a blinded, randomized, controlled trial. Am J Respir Crit Care Med. 2010;182(8):1058–1064. doi:10.1164/rccm.200912-1853OC
Google Scholar |
Crossref |
Medline |
ISI21.
Ceccarelli, G, Scagnolari, C, Pugliese, F, Mastroianni, CM, d’Ettorre, G. Probiotics and COVID-19. Lancet Gastroenterol Hepatol. 2020;5(8):721–722. doi:10.1016/S2468-1253(20)30196-5
Google Scholar |
Crossref |
Medline22.
Effenberger, M, Grabherr, F, Mayr, L, et al. Faecal calprotectin indicates intestinal inflammation in COVID-19. Gut. 2020;69(8):1543–1544. doi:10.1136/gutjnl-2020-321388
Google Scholar |
Crossref |
Medline23.
Verdecchia, P, Cavallini, C, Spanevello, A, Angeli, F. The pivotal link between ACE2 deficiency and SARS-CoV-2 infection. Eur J Intern Med. 2020;76:14–20. doi:10.1016/j.ejim.2020.04.037
Google Scholar |
Crossref |
Medline24.
Perlot, T, Penninger, JM. ACE2—from the renin-angiotensin system to gut microbiota and malnutrition. Microbes Infect. 2013;15(13):866–873. doi:10.1016/j.micinf.2013.08.003
Google Scholar |
Crossref |
Medline25.
Xu, K, Cai, H, Shen, Y. Management of corona virus disease-19 (COVID-19): the Zhejiang experience. Zhejiang Xue Xue Bao Yi Xue Ban J Zhejiang Univ Med Sci. 2020;49(1):147–157. doi:10.3785/j.issn.1008-9292.2020.02.02
Google Scholar26.
Biosearch, SA . Multicentric Study to Assess the Effect of Consumption of Lactobacillus Coryniformis K8 on Healthcare Personnel Exposed to COVID-19.
Clinicaltrials.gov; Published 2020. Accessed March 1, 2021.
https://clinicaltrials.gov/ct2/show/NCT04366180 Google Scholar27.
Poscia, R . Oxygen-Ozone as Adjuvant Treatment in Early Control of Disease Progression in Patients with COVID-19 Associated with Modulation of the Gut Microbial Flora.
Clinicaltrials.gov; Published 2020. Accessed March 1, 2021.
https://clinicaltrials.gov/ct2/show/NCT04366089 Google Scholar28.
Kwok, LY, Zhang, J, Guo, Z, et al. Characterization of fecal microbiota across seven Chinese ethnic groups by quantitative polymerase chain reaction. PLoS One. 2014;9:e93631. doi:10.1371/journal.pone.0093631
Google Scholar |
Crossref |
Medline29.
Gueimonde, M, Collado, MC. Metagenomics and probiotics. Clin Microbiol Infect Off Publ Eur Soc Clin Microbiol Infect Dis. 2012;18(suppl 4):32–34. doi:10.1111/j.1469-0691.2012.03873.x
Google Scholar |
Medline30.
Ibrahim, MK, Zambruni, M, Melby, CL, Melby, PC. Impact of childhood malnutrition on host defense and infection. Clin Microbiol Rev. 2017;30(4):919–971. doi:10.1128/CMR.00119-16
Google Scholar |
Crossref |
Medline31.
Lew, CCH, Yandell, R, Fraser, RJL, Chua, AP, Chong, MFF, Miller, M. Association between malnutrition and clinical outcomes in the intensive care unit: a systematic review [formula: see text]. JPEN J Parenter Enteral Nutr. 2017;41(5):744–758. doi:10.1177/0148607115625638
Google Scholar |
Crossref |
Medline32.
Paynter, S, Ware, RS, Lucero, MG, et al. Malnutrition: a risk factor for severe respiratory syncytial virus infection and hospitalization. Pediatr Infect Dis J. 2014;33(3):267–271. doi:10.1097/INF.0000000000000096
Google Scholar |
Crossref |
Medline33.
Rodríguez, L, Cervantes, E, Ortiz, R. Malnutrition and gastrointestinal and respiratory infections in children: a public health problem. Int J Environ Res Public Health. 2011;8(4):1174–1205. doi:10.3390/ijerph8041174
Google Scholar |
Crossref |
Medline34.
Hruby, A, Jacques, PF. Dietary protein and changes in biomarkers of inflammation and oxidative stress in the Framingham heart study offspring cohort. Curr Dev Nutr. 2019;3(5):nzz019. doi:10.1093/cdn/nzz019
Google Scholar |
Crossref |
Medline35.
Park, Y, Subar, AF, Hollenbeck, A, Schatzkin, A. Dietary fiber intake and mortality in the NIH-AARP diet and health study. Arch Intern Med. 2011;171(12):1061–1068. doi:10.1001/archinternmed.2011.18
Google Scholar |
Crossref |
Medline36.
Li, T, Zhang, Y, Gong, C, et al. Prevalence of malnutrition and analysis of related factors in elderly patients with COVID-19 in Wuhan, China. Eur J Clin Nutr. 2020;74(6):871–875. doi:10.1038/s41430-020-0642-3
Google Scholar |
Crossref |
Medline37.
Cordain, L, Eaton, SB, Sebastian, A, et al. Origins and evolution of the Western diet: health implications for the 21st century. Am J Clin Nutr. 2005;81(2):341–354. doi:10.1093/ajcn.81.2.341
Google Scholar |
Crossref |
Medline |
ISI38.
Di Renzo, L, Gualtieri, P, Pivari, F, et al. Eating habits and lifestyle changes during COVID-19 lockdown: an Italian survey. J Transl Med. 2020;18(1):229. doi:10.1186/s12967-020-02399-5
Google Scholar |
Crossref |
Medline39.
Angelidi, AM, Kokkinos, A, Katechaki, E, Ros, E, Mantzoros, CS. Mediterranean diet as a nutritional approach for COVID-19. Metabolism. 2021;114:154407. doi:10.1016/j.metabol.2020.154407
Google Scholar |
Crossref |
Medline40.
Singh, P, Tripathi, MK, Yasir, M, Khare, R, Tripathi, MK, Shrivastava, R. Potential inhibitors for SARS-CoV-2 and functional food components as nutritional supplement for COVID-19: a review. Plant Foods Hum Nutr Dordr Neth. 2020;75(4):458–466. doi:10.1007/s11130-020-00861-9
Google Scholar |
Crossref |
Medline41.
Fragopoulou, E, Panagiotakos, DB, Pitsavos, C, et al. The association between adherence to the Mediterranean diet and adiponectin levels among healthy adults: the ATTICA study. J Nutr Biochem. 2010;21(4):285–289. doi:10.1016/j.jnutbio.2008.12.013
Google Scholar |
Crossref |
Medline42.
Das, UN . Can bioactive lipids inactivate coronavirus (COVID-19)? Arch Med Res. 2020;51(3):282–286. doi:10.1016/j.arcmed.2020.03.004
Google Scholar |
Crossref |
Medline43.
Kang, KW, Kim, S, Cho, YB, Ryu, SR, Seo, YJ, Lee, SM. Endogenous n-3 polyunsaturated fatty acids are beneficial to dampen CD8+ T cell-mediated inflammatory response upon the viral infection in mice. Int J Mol Sci. 2019;20(18). doi:10.3390/ijms20184510
Google Scholar |
Crossref44.
Eslamloo, K, Xue, X, Hall, JR, et al. Transcriptome profiling of antiviral immune and dietary fatty acid dependent responses of Atlantic salmon macrophage-like cells. BMC Genomics. 2017;18(1):706. doi:10.1186/s12864-017-4099-2
Google Scholar |
Crossref |
Medline45.
Hecker, M, Linder, T, Ott, J, et al. Immunomodulation by lipid emulsions in pulmonary inflammation: a randomized controlled trial. Crit Care Lond Engl. 2015;19(1):226. doi:10.1186/s13054-015-0933-6
Google Scholar |
Crossref |
Medline46.
Dushianthan, A, Cusack, R, Burgess, VA, Grocott, MP, Calder, PC. Immunonutrition for Acute Respiratory Distress Syndrome (ARDS) in adults. Cochrane Database Syst Rev. 2019;1:CD012041. doi:10.1002/14651858.CD012041.pub2
Google Scholar |
Medline47.
Rogero, MM, Leão M de, C, Santana, TM, et al. Potential benefits and risks of omega-3 fatty acids supplementation to patients with COVID-19. Free Radic Biol Med. 2020;156:190–199. doi:10.1016/j.freeradbiomed.2020.07.005
Google Scholar |
Crossref |
Medline48.
Abdelhamid, AS, Brown, TJ, Brainard, JS, et al. Omega-3 fatty acids for the primary and secondary prevention of cardiovascular disease. Cochrane Database Syst Rev. 2018;7:CD003177. doi:10.1002/14651858.CD003177.pub3
Google Scholar |
Medline49.
Libby, P, Lüscher, T. COVID-19 is, in the end, an endothelial disease. Eur Heart J. 2020;41(32):3038–3044. doi:10.1093/eurheartj/ehaa623
Google Scholar |
Crossref |
Medline50.
Froldi, G, Dorigo, P. Endothelial dysfunction in coronavirus disease 2019 (COVID-19): gender and age influences. Med Hypotheses. 2020;144:110015. doi:10.1016/j.mehy.2020.110015
Google Scholar |
Crossref |
Medline51.
Ngo, B, Van Riper, JM, Cantley, LC, Yun, J. Targeting cancer vulnerabilities with high-dose vitamin C. Nat Rev Cancer. 2019;19(5):271–282. doi:10.1038/s41568-019-0135-7
Google Scholar |
Crossref |
Medline52.
Marik, PE . Hydrocortisone, ascorbic acid and thiamine (HAT Therapy) for the treatment of sep
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