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PN-22-002; Total nos of Pages: 3; PN-22-002 Perspective OPEN Precision nutrition: concept, evolution, and future vision 1 2,∗ Benjamin P. Xu , Hanping Shi 1Department of Epidemiology, Nutritional Epidemiology Concentration, Harvard T. H. Chan School of Public Health, Boston, MA, USA, 2Department of GI Surgery and Department of Clinical Nutrition, Beijing Shijitan Hospital, Capital Medical University, Beijing, China. ∗ Corresponding author. Address: Hanping Shi, Department of GI Surgery and Department of Clinical Nutrition, Beijing Shijitan Hospital, Capital Medical University, Beijing 100038, China. E-mail address: shihp@ccmu.edu.cn (H. Shi). The concept of precision nutrition has received significant Asaconcept,precisionnutrition beganfermenting overadecade attention in recent years.[1–3] However, given the novel nature of ago.Atthattime,researchersstudiedtheeffectsofdifferentdoses the field, a clear definition and scope of ‘precision nutrition’ has ofvitaminsupplementationondisease.Thefullstoryofprecision yet to be established. nutrition, however, begins even further back. The United States has a long history of implementing food fortification to combat An important distinction to make is between the terms specific diseases due to micronutrient deficiency. Examples range “personalized nutrition” and “precision nutrition.” While they from iodized salt in 1924, to enriched flour containing thiamin, werepreviouslyinterchangeable,theformerisnowconsideredan niacin, riboflavin, andironin1940,tomorerecentlytheaddition outdatedtermbytheNationalResearchCouncil,duetopotential of folic acid to all grain products in 1998.[4] The mandatory folic misinterpretation of “personalized” as meaning development of acid fortification of grain products marks an important step in recommendations for specific individuals. Rather, precision combating neural tube defects (devastating yet preventable birth nutrition aims to provide the most effective nutrition recom- defects) through nutritional supplementation. This has proven to mendations based on a person’s biology, environment, and be a major public health success story.[5,6] However, like its lifestyle. predecessors, the folic acid fortification policy is still a “one size fits all” solution. According to the US National Health and Precision nutrition thus contrasts with the traditional approach NutritionExaminationSurveys,whiletheaveragefolatelevelhas to nutrition, which tends to be “one-size-fits-all,” for example, risen significantly, and the national rate of neural tube defect has through fixed-dose supplementation. indeed decreased, there are clear limitations. Among a nationally representative sample, the population folate levels following the We reviewed existing literature and extracted the five big 1998 folic acid fortification program showed a huge level of questions that precision nutrition seeks to answer. variation,rangingfrominsufficienttopotentiallyexcessivelyhigh folate levels.[7] A similar degree of variation was also shown in a 1. What should we eat? cohort of US minority mothers.[8] Unfortunately, a uniform 2. What is the health effect of nutrition across our lifespan? fortification strategy can fall short on an individual level. For 3. What are the roles of food and nutrients as medicine? example, there is no ability to distinguish between those with 4. How can we apply nutritional science to prevent and treat sufficient folate (for whom fortification could even be harmful), disease? and those with more extreme deficiency (for whom standard 5. Howcanweleverageadvancedtechnologies,suchasartificial fortification may be inadequate). intelligence(AI),omics,bigdata,andwearablestoadvancethe field? This brings us to the next chapter of folic acid supplementation. Huge controversy remained regarding the role of folic acid Precision nutrition is a transdisciplinary field ripe with supplementationinpreventingchronicdiseases.[9]Resultsranged opportunities for collaboration, application of cutting-edge from inconclusive, to protective, to downright harmful.[10] In science and technology, discovery, and translation. In both the 2015, the “China Stroke Primary Prevention Trial,” or CSPPT US and China, even globally, precision nutrition has been brought new insight.[11] The trial’s goal was to compare the recognizedasakeyfocusforthenexttenyearsofhealthresearch. effectsofenalaprilaloneversusenalaprilwith0.8mgfolicacidon first stroke risk over five years of follow-up. The results Editor: n/a definitively showed that, in a low-folate population, 0.8mg folic Copyright © 2022 Reproductive and Developmental Medicine, Published by acid daily could significantly reduce the risk of first stroke by Wolters Kluwer Health, Inc. 21%beyond the base benefit of the enalapril anti-hypertensive. This is an open access article distributed under the terms of the Creative There were two major advantages that gave this study the edge Commons Attribution-Non Commercial-No Derivatives License 4.0 (CCBY-NC- overitspredecessors:considerationofunderlyingnutritionstatus ND), where it is permissible to download and share the work provided it is in the population, and genetic risk profiling on an individual properly cited. The work cannot be changed in any way or used commercially [12] without permission from the journal. level. Study participants were stratified by MTHFR C677T Precision Nutrition (2022) 1(1):e00002 genotype before randomization. The MTHFR gene encodes an Received: 3 January 2022, Revised: 21 January 2022, Accepted: 22 January importantrate-limitingenzymeinhomocysteinemetabolism,and 2022 position 677 is one of the most-studied single nucleotide doi: 10.1097/PN9.0000000000000002 polymorphism for the gene. The researchers found that Xu and Shi 1(1), 1-3, month XX, 2022 1 PN-22-002; Total nos of Pages: 3; PN-22-002 www.precisionnutritionjournal.com individuals with the mutant genotype (TT) had a higher risk of health are dependent on its forms as well as its interactions with stroke overall and may particularly benefit from folic acid the other elements in one-carbon metabolism. supplementation. Thus, the study is an excellent example of the precision nutrition principles we hope to see more of in the Moststudies so far used biomarker of total folate to reflect body coming years. status and did not distinguish its different forms. Folate and folic acidareoftenusedinterchangeably,buttheydifferinmanyways. While the CSPPT was an early foray during the infancy of Folate is the naturally occurring form, while folic acid is a precision nutrition, it highlights some key elements of precision synthetic form used in supplementation and fortification because nutrition: of its improved stability and shelf-life over natural folate. 1. Target the right disease: CSPPT targets stroke, which is not However,adownsideoffolicacidisthatitmustfirstbeconverted only the leading cause of death in China and the world but to the active form 5-methyltetrahydrofolate in the liver or other may benefit from folic acid supplementation. tissues before it can be utilized by the body. This process can be 2. Identify the right population: CSPPT was conducted in a high- slow and inefficient for some individuals, leading to increased levels of unmetabolizedfolicacid(UMFA)inthebloodstream.[14] risk Chinese population with hypertension, who had wide- Agrowing body of research suggests that high levels of UMFA spread folate insufficiency and associated elevated homocys- mayindeed pose health risks, including increased risk of certain teine, an important modifiable nutritional factor to address cancers, aberrant DNA methylation, increased risk of cardiovas- underlying pathology of stroke in low folate population. [15,16] 3. Designtherightinterventiontomitigatepathogenicpathways: cular disease and diabetes, and others. Thus, in supple- CSPPT combined folate with angiotensin converting enzyme menting folic acid, we must also consider potential downside of inhibitor to simultaneously lower blood pressure and Hcy, a UMFA. However, UMFA is understudied compared to total synergistic risk reduction. folate. 4. Integratenutritionalandgeneticbiomarkerstoenhancecausal Furthermore, folate is one of the elements of and interacts with inference and generate the strongest evidence. otherelementsinonecarbonmetabolism.Forexample,folateisa 5. Translatediscoverytoclinicalandcommunitysettingsbeyond key player within the folate cycle and B12 is a key player within the original CSPPT, demonstrating the potential to save the methionine cycle (important for DNA synthesis and millions of people from stroke in real world settings. methylation), and both of which are integral parts of one carbon metabolism and thus should not be studied independent- Most importantly, the CSPPT has demonstrated a promising [13,17,18] ly. AnaddedcomplexityisthatB12alsoexistinmultiple pipeline for precision nutrition, from discovery to translation, forms and each form functions very different. Methylcobalamin that can be a useful framework for developing more advanced is biologically active form. Adenosylcobalamin is part of a precision nutrition initiatives today and tomorrow. completely different pathway that takes place within the mitochondrion and is involved in energy production via the Previous studies have largely focused on single or a few nutrients citric acid cycle, as well as myelin synthesis. Cyanocobalaminand orgenotypes.However,humanbodysystemsareinter-connected hydroxocobalaminaremanufacturedformsofvitaminB12used and involve complex interactions between many biological in supplementation, which must be converted to the aforemen- systems and micronutrients and their metabolic processes. With tioned biologically active forms. To date, almost all studies used the advent of multi-omics, we now have the capacity to the biomarker of total B12, a mixture of different forms of B12. understand the complex interactions by expanding from one genotype to genome-wide scale; and from single nutrient to a Ideally, when we consider supplementation, such as of folic acid, largepanelofnutrients.Ametabolomicsapproachcanprovideus weshouldevaluateitsdifferentformsandtheirimpactonhealth, withapowerfultooltocomprehensivelyevaluateanindividual’s notjust onasingleendpointlikehomocysteine,butonthewhole nutritional status cross-sectionally and longitudinally. By body and all the potential metabolic pathways and associated systematically studying metabolic responses to nutritional nutrients that can be impacted. Through this type of comprehen- intervention, we unlock the potential to provide nutritional sive analysis, we will be able to better understand the health intervention more precisely and more efficiently. effects of nutrient supplementation. Suchtypeofstudiesmayalso help us understand variable individual responses to supplemen- As an example of the complexity but also the potential of tation and inconsistent findings across studies. systematic approach for precision nutrition, we need look no furtherthanone-carbonmetabolism.[13]One-carbonmetabolism Analytically,asthenumberofnutrientsinconsiderationincreases, is a group of biochemical reactions mediated by the folate new methodologies for analysis will be required to handle the cofactor along with many other cofactors including B2, B6, and addeddimensionality.Machinelearningalgorithmsprovideaway B12, and plays an important role in four major biological to simultaneously consider the myriad factors involved in a processes, including: metabolomics study. For example, Bayesian kernel machine 1. DNA synthesis and repair, regression is a method for modelling many exposure variables, 2. amino acid homeostasis (glycine, serine, and methionine), andexcelswithcomplexexposure-responsefunctions,especiallyin [19] 3. DNA methylation, and the presence of non-linear or non-additive relations. 4. inhibiting the production of reactive oxygen species. While our discussion has thus far focused mainly on micro- nutrients, macronutrients are no less important and relevant. On One-carbonmetabolismiscentral to maintaining the integrity of a broader scale, precision nutrition will also incorporate human health and resilience and folate is an important methyl recommendations for intake of carbohydrates, lipids, and donor to one-carbon metabolism. Folate’s effects on our bodily proteins. 2 Xu and Shi 1(1), 1-3, month XX, 2022 PN-22-002; Total nos of Pages: 3; PN-22-002 www.precisionnutritionjournal.com It is important to note some of the current limitations of precision [4] Dietary reference intakes: guiding principles for nutrition labeling nutrition. These limitations include: the acquisition and storage and fortification. Nutr Rev 2004;62(2):73–79. doi: 10.1111/j.1753- of data, the financial costs of developing technologies and 4887.2004.tb00028.x. [5] Mills JL. Strategies for preventing folate-related neural tube defects: interventions, the education of healthcare providers, as well as supplements,fortifiedfoods,orboth?JAMA2017;317(2):144–145.doi: ethical and legal challenges.[20,21] 10.1001/jama.2016.19894. [6] Bibbins-Domingo K, Grossman DC, et al. US Preventive Services Task In closing, precision nutrition aims to tailor to individual needs ForceFolic acid supplementation for the prevention of neural tube based on three major factors: defects: US Preventive Services Task Force recommendation statement. JAMA2017;317(2):183–189. doi: 10.1001/jama.2016.19438. 1. A systematic assessment of individual risk profile, via [7] Ganji V, Kafai MR. Trends in serum folate, RBC folate, and circulating combination of epidemiological, clinical, nutritional, and total homocysteine concentrations in the United States: analysis of data from National Health and Nutrition Examination Surveys, 1988-1994, metabolic profiles. 1999-2000, and 2001-2002. J Nutr 2006;136(1):153–158. doi: 2. An advanced computer algorithm to guide optimal type and 10.1093/jn/136.1.153. dose of nutritional intervention for an individual. [8] Cheng TL, Mistry KB, Wang G, et al. Folate nutrition status in mothers 3. A longitudinal and dynamic process: individuals will be of the Boston Birth Cohort, sample of a US urban low-income population. Am J Public Health 2018;108(6):799–807. doi: 10.2105/ followed and re-evaluated periodically across the life stages. AJPH.2018.304355. [9] Stover PJ, Berry RJ, Field MS. Time to think about nutrient needs in chronic disease. JAMA Intern Med 2016;176(10):1451–1452. doi: Looking forward, precision nutrition is an emerging and rapidly 10.1001/jamainternmed.2016.4699. evolving field. We make the following six predictions for [10] WangX,QinX,DemirtasH,etal.Efficacyoffolicacidsupplementation precision nutrition for the coming decade: in stroke prevention: a meta-analysis. Lancet 2007;369(9576):1876– 1882. doi: 10.1016/S0140-6736(07)60854-X. 1. Food frequency questionnaires will evolve with new technol- [11] Huo Y, Li J, Qin X, et al. Efficacy of folic acid therapy in primary ogies for data collection. prevention of stroke among adults with hypertension in China: the 2. Scientific evidence to guide precision nutrition will be derived CSPPTrandomized clinical trial. JAMA 2015;313(13):1325–1335. doi: [22] 10.1001/jama.2015.2274. from large-scale clinical trials and million-people cohorts, [12] Stampfer M, Willett W. Folate supplements for stroke prevention: as well as targeted, well-designed metabolic studies. targeted trial trumps the rest. JAMA 2015;313(13):1321–1322. doi: 3. Simultaneouslyanalyzingalargepanelofnutrientsandrelated 10.1001/jama.2015.1961. metabolic pathways will be routine in clinical settings. [13] Ducker GS, Rabinowitz JD. One-carbon metabolism in health and 4. High-performance computing and AI will dominate nutrition disease. Cell Metab 2017;25(1):27–42. doi: 10.1016/j.cmet.2016. 08.009. data analysis and treatment recommendation. [14] Wright AJ, Dainty JR, Finglas PM. Folic acid metabolism in human 5. Nutritional guidance and intervention will take on a greater subjects revisited: potential implications for proposed mandatory folic role in primordial and primary prevention of chronic diseases acid fortification in the UK. Br J Nutr 2007;98(4):667–675. doi: including cancer. 10.1017/S0007114507777140. [15] Maruvada P, Stover PJ, Mason JB, et al. Knowledge gaps in understanding the metabolic and clinical effects of excess folates/folic Nutritional guidelines and products should aim, not for one-size- acid: a summary, and perspectives, from an NIH workshop. Am J Clin Nutr 2020;112(5):1390–1403. doi: 10.1093/ajcn/nqaa259. fits-all, but for tailored interventions based on individual needs [16] Plumptre L, Masih SP, Ly A, et al. High concentrations of folate and with the consideration of epidemiological and clinical character- unmetabolized folic acid in a cohort of pregnant Canadian women and istics, and based on comprehensive assessments by molecular umbilical cord blood. Am J Clin Nutr 2015;102(4):848–857. doi: diagnostics to determine genetic, nutritional, and metabolic 10.3945/ajcn.115.110783. [17] Green R, Allen LH, Bjørke-Monsen AL, et al. Vitamin B12 deficiency. profile.Precisionnutrition,afteralonghistory,iscomingintothe Nat Rev Dis Primers 2017;3:17040. doi: 10.1038/nrdp.2017.40. spotlight; the NIH has just awarded 170 million to the All of Us [18] Vitamin B12: Fact Sheet for Health Professionals; 2021. Available from: project to conduct precision nutrition research as part of an https://ods.od.nih.gov/factsheets/VitaminB12-HealthProfessional/#en1. [23] [Accessed December 5, 2021] ancillary study. Weanticipate an exciting and rapid evolving [19] Bobb JF, Claus Henn B, Valeri L, et al. Statistical software for analyzing era of precision nutrition from advanced design/methodology, the health effects of multiple concurrent exposures via Bayesian kernel discovery, to clinical and public health translation. machine regression. Environ Health 2018;17(1):67. doi: 10.1186/ s12940-018-0413-y. [20] What are some of the challenges facing precision medicine and the Conflicts of Interest Precision Medicine Initiative? 2021. Available from: https://medlineplus. None. gov/genetics/understanding/precisionmedicine/challenges/. [Accessed January 16, 2022] [21] Precision Nutrition; 2021. Available from: https://www.hsph.harvard. References edu/nutritionsource/precision-nutrition/. [Accessed January 16, 2022] [22] The All of Us Research Program InvestigatorsThe “All of Us” Research [1] Rodgers GP, Collins FS. Precision nutrition-the answer to “what Program. N Engl J Med 2019;381(7):668–676. doi: 10.1056/ to eat to stay healthy”. JAMA 2020;324(8):735–736. doi: 10.1001/ NEJMsr1809937. jama.2020.13601. [23] NIH awards $170 million for precision nutrition study; 2022. Available [2] Precision Nutrition. Harvard T.H. Chan School of Public Health. from: https://allofus.nih.gov/news-events-and-media/announcements/ Available from: https://www.hsph.harvard.edu/nutritionsource/preci nih-awards-170-million-precision-nutrition-study. [Accessed January sion-nutrition/. [Accessed July 9, 2021] 20, 2022] [3] U.S. Department of Health & Human Services, National Institutes of Health. 2020-2030 Strategic Plan for NIH Nutrition Research; May How to cite this article: Xu BP, Shi H. Precision nutrition: 2020. Available from: https://www.niddk.nih.gov/about-niddk/strate gic-plans-reports/strategic-plan-nih-nutrition-research. [Accessed July concept, evolution, and future vision. Precis Nutr 2022;1(1): 7, 2021] e00002. doi: 10.1097/PN9.0000000000000002 Xu and Shi 1(1), 1-3, month XX, 2022 3
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