Dietary Intake among Children Attending Childcare Centers: Impact of the New CACFP Meal Guidelines
Abstract
:1. Introduction
2. Materials and Methods
2.1. Sample
2.2. Staff Training
2.3. Data Collection
2.4. Statistical Analysis
3. Results
4. Discussion
4.1. Limitations
4.2. Implications for Future Research
- Include observational and prospective studies to confirm these results and provide wider and more representative conclusions of the new standards.
- Assess the impacts of the revised meal patterns in the longer term, making use of longer follow-up periods.
- Compare the meal consumption of pre-school aged children throughout the day (at and outside of childcare centers) which would provide a better understanding of their intake and areas for improvement.
- Continue developing and evaluating strategies to increase the accessibility and intake of items in accordance with the CACFP meal pattern requirements in childcare settings.
5. Conclusions
Author Contributions
Funding
Institutional Review Board Statement
Informed Consent Statement
Data Availability Statement
Conflicts of Interest
References
- Rayhan, S.K. What matters most for early childhood development? Evidence from Malda district, India. PLoS ONE 2022, 17, e0268985. [Google Scholar] [CrossRef]
- Rosales, F.J.; Reznick, J.S.; Zeisel, S.H. Understanding the role of nutrition in the brain and behavioral development of toddlers and preschool children: Identifying and addressing methodological barriers. Nutr. Neurosci. 2009, 12, 190–202. [Google Scholar] [CrossRef] [PubMed]
- Prado, E.L.; Dewey, K.G. Nutrition and brain development in early life. Nutr. Rev. 2014, 72, 267–284. [Google Scholar] [CrossRef] [PubMed]
- Liu, J.; Raine, A. Nutritional status and social behavior in preschool children: The mediating effects of neurocognitive functioning. Matern. Child Nutr. 2017, 13, e12321. [Google Scholar] [CrossRef] [PubMed]
- Dewey, K.G.; Mayers, D.R. Early child growth: How do nutrition and infection interact? Matern. Child Nutr. 2011, 7 (Suppl. 3), 129–142. [Google Scholar] [CrossRef]
- Lo, S.; Das, P.; Horton, R. A good start in life will ensure a sustainable future for all. Lancet 2017, 389, 8–9. [Google Scholar] [CrossRef]
- Savage, J.S.; Fisher, J.O.; Birch, L.L. Parental influence on eating behavior: Conception to adolescence. J. Law Med. Ethics 2007, 35, 22–34. [Google Scholar] [CrossRef]
- Beckerman, J.P.; Alike, Q.; Lovin, E.; Tamez, M.; Mattei, J. The development and public health implications of food preferences in children. Front. Nutr. 2017, 4, 66. [Google Scholar] [CrossRef]
- Cui, J.; Natzke, L. Early Childhood Program Participation: 2019 (NCES 2020-075); National Center for Education Statistics, Institute of Education Sciences, U.S. Department of Education: Washington, DC, USA, 2020. [Google Scholar]
- Laughlin, L. Who’s minding the kids? Child care arrangements: Spring 2011. In Current Population Reports P70-135; U.S. Census Bureau: Washington, DC, USA, 2013. [Google Scholar]
- Briley, M.; McAllaster, M. Nutrition and the child-care setting. J. Am. Diet. Assoc. 2011, 111, 1298–1300. [Google Scholar] [CrossRef]
- Story, M.; Kaphingst, K.M.; French, S. The role of child care settings in obesity prevention. Future Child. 2006, 16, 143–168. [Google Scholar] [CrossRef]
- American Dietetic Association. Position of the American Dietetic Association: Benchmarks for nutrition programs in child care settings. J. Am. Diet. Assoc. 2005, 105, 979–986. [Google Scholar] [CrossRef] [PubMed]
- Benjamin-Neelon, S.E. Position of the Academy of Nutrition and Dietetics: Benchmarks for nutrition in child care. J. Acad. Nutr. Diet. 2018, 118, 1291–1300. [Google Scholar] [CrossRef] [PubMed]
- Food and Nutrition Service—U.S. Department of Agriculture. Child and Adult Care Food Program. Why CACFP is important? Available online: https://www.fns.usda.gov/cacfp/why-cacfp-important#:~:text=Centers%20and%20day%20care%20homes,each%20eligible%20resident%2C%20each%20day (accessed on 6 July 2022).
- Food and Nutrition Service—U.S. Department of Agriculture. Child Nutrition Programs Income Eligibility Guidelines (2017–2018). Available online: https://www.fns.usda.gov/cn/fr-041017 (accessed on 6 July 2022).
- Food and Nutrition Service—U.S. Department of Agriculture. FNS-101: Child and Adult Care Food Program. Available online: https://www.fns.usda.gov/fns-101-cacfp (accessed on 6 July 2022).
- Economic Research Service—U.S. Department of Agriculture. Child Care Centers Accounted for 75 Percent of Meals Provided by USDA’s Child and Adult Care Food Program in Fiscal Year 2019. Available online: https://www.ers.usda.gov/data-products/chart-gallery/gallery/chart-detail/?chartId=99421 (accessed on 6 July 2022).
- Murphy, S.P.; Yaktine, A.L.; Suitor, C.W.; Moats, S. (Eds.) Child and Adult Care Food Program: Aligning Dietary Guidance for All; The National Academies Press: Washington, DC, USA, 2011. [Google Scholar]
- U.S. Department of Health and Human Services; U.S. Department of Agriculture. Dietary Guidelines for Americans 2015–2020; U.S. Government Publishing Office: Washington, DC, USA, 2015. Available online: http://health.gov/dietaryguidelines/2015/guidelines/ (accessed on 6 July 2022).
- Food and Nutrition Service—U.S. Department of Agriculture. Nutrition Requirements for Fluid Milk and Fluid Milk Substitutions in the CACFP, Q&As. Available online: https://www.fns.usda.gov/cacfp/nutrition-requirements-fluid-milk-and-fluid-milk-substitutions-cacfp-qas (accessed on 6 July 2022).
- Food and Nutrition Service—U.S. Department of Agriculture. Nutrition Standards for CACFP Meals and Snacks. Available online: https://www.fns.usda.gov/cacfp/meals-and-snacks (accessed on 6 July 2022).
- Craig, P.; Cooper, C.; Gunnell, D.; Haw, S.; Lawson, K.; Macintyre, S.; Ogilvie, D.; Petticrew, M.; Reeves, B.; Sutton, M.; et al. Using natural experiments to evaluate population health interventions: New Medical Research Council guidance. J. Epidemiol. Community Health 2012, 66, 1182–1186. [Google Scholar] [CrossRef] [PubMed]
- Ball, S.C.; Benjamin, S.E.; Ward, D.S. Development and reliability of an observation method to assess food intake of young children in child care. J. Am. Diet. Assoc. 2007, 107, 656–661. [Google Scholar] [CrossRef] [PubMed]
- Cullen, K.W.; Dave, J.M.; Jensen, H.H.; Chen, T.A. Differential improvements in student fruit and vegetable selection and consumption in response to the new National School Lunch Program regulations: A pilot study. J. Acad. Nutr. Diet. 2015, 115, 743–750. [Google Scholar] [CrossRef]
- Hanks, A.S.; Wansink, B.; Just, D.R. Reliability and accuracy of real-time visualization techniques for measuring school cafeteria tray waste: Validating the quarter-waste method. J. Acad. Nutr. Diet. 2014, 114, 470–474. [Google Scholar] [CrossRef]
- SAS Institute Inc. SAS; Version 9.4; Computer Software; SAS Institute, Inc.: Cary, NC, USA, 2014. [Google Scholar]
- Kenney, E.L.; Poole, M.K.; Cory, H.; Cradock, A.L. Impact of changes to the Child and Adult Care Food Program on children’s dietary intake in family child care homes. Public Health Nutr. 2020, 23, 2016–2023. [Google Scholar] [CrossRef]
- Hasnin, S.; Dev, D.A.; Tovar, A. Participation in the CACFP ensures availability but not intake of nutritious foods at lunch in preschool children in child-care centers. J. Acad. Nutr. Diet. 2020, 120, 1722–1729.e1. [Google Scholar] [CrossRef]
- Roess, A.A.; Jacquier, E.F.; Catellier, D.J.; Carvalho, R.; Lutes, A.C.; Anater, A.S.; Dietz, W.H. Food consumption patterns of infants and toddlers: Findings from the Feeding Infants and Toddlers Study (FITS) 2016. J. Nutr. 2018, 148 (Suppl. 3), 1525s–1535s. [Google Scholar] [CrossRef]
- Welker, E.B.; Jacquier, E.F.; Catellier, D.J.; Anater, A.S.; Story, M.T. Room for improvement remains in food consumption patterns of young children aged 2–4 years. J. Nutr. 2018, 148, 1536S–1546S. [Google Scholar] [CrossRef]
- Kim, S.A.; Moore, L.V.; Galuska, D.; Wright, A.P.; Harris, D.; Grummer-Strawn, L.M.; Merlo, C.L.; Nihiser, A.J.; Rhodes, D.G. Vital signs: Fruit and vegetable intake among children—United States, 2003–2010. MMWR Morb. Mortal. Wkly. Rep. 2014, 63, 671–676. [Google Scholar] [PubMed]
- Hoy, M.K.; Clemens, J.; Martin, C.; Moshfegh, A. Fruit and vegetable intake among children by level of variety, What We Eat in America, NHANES 2013–2016. Curr. Dev. Nutr. 2020, 4 (Suppl. 2), 206. [Google Scholar] [CrossRef]
- Wall, C.R.; Stewart, A.W.; Hancox, R.J.; Murphy, R.; Braithwaite, I.; Beasley, R.; Mitchell, E.A. Association between frequency of consumption of fruit, vegetables, nuts and pulses and BMI: Analyses of the International Study of Asthma and Allergies in Childhood (ISAAC). Nutrients 2018, 10, 316. [Google Scholar] [CrossRef] [PubMed]
- Wang, X.; Ouyang, Y.; Liu, J.; Zhu, M.; Zhao, G.; Bao, W.; Hu, F.B. Fruit and vegetable consumption and mortality from all causes, cardiovascular disease, and cancer: Systematic review and dose-response meta-analysis of prospective cohort studies. BMJ 2014, 349, g4490. [Google Scholar] [CrossRef] [PubMed]
- Dave, J.M.; Cullen, K.W. Foods served in child care facilities participating in the Child and Adult Care Food Program: Menu match and agreement with the new meal patterns and best practices. J. Nutr. Educ. Behav. 2018, 50, 582–588. [Google Scholar] [CrossRef] [PubMed]
- Günther, A.L.; Remer, T.; Kroke, A.; Buyken, A.E. Early protein intake and later obesity risk: Which protein sources at which time points throughout infancy and childhood are important for body mass index and body fat percentage at 7 y of age? Am. J. Clin. Nutr. 2007, 86, 1765–1772. [Google Scholar] [CrossRef]
- Voortman, T.; Braun, K.V.; Kiefte-de Jong, J.C.; Jaddoe, V.W.; Franco, O.H.; van den Hooven, E.H. Protein intake in early childhood and body composition at the age of 6 years: The Generation R Study. Int. J. Obes. 2016, 40, 1018–1025. [Google Scholar] [CrossRef]
- Luecking, C.T.; Mazzucca, S.; Vaughn, A.E.; Ward, D.S. Contributions of early care and education programs to diet quality in children aged 3 to 4 years in central North Carolina. J. Acad. Nutr. Diet. 2020, 120, 386–394. [Google Scholar] [CrossRef]
- Kroeger, E.N.; Fernandez, J.; Jones, P.; Bertrand, B. Diet quality in early care and education centers: A comparison of menu, served, and consumed lunch measures. J. Nutr. Educ. Behav. 2020, 52, 39–44. [Google Scholar] [CrossRef]
- Tovar, A.; Benjamin-Neelon, S.E.; Vaughn, A.E.; Tsai, M.; Burney, R.; Østbye, T.; Ward, D.S. Nutritional quality of meals and snacks served and consumed in family child care. J. Acad. Nutr. Diet. 2018, 118, 2280–2286. [Google Scholar] [CrossRef]
- Reedy, J.; Krebs-Smith, S.M. Dietary sources of energy, solid fats, and added sugars among children and adolescents in the United States. J. Am. Diet. Assoc. 2010, 110, 1477–1484. [Google Scholar] [CrossRef]
- Romo-Palafox, M.J.; Ranjit, N.; Sweitzer, S.J.; Roberts-Gray, C.; Byrd-Williams, C.E.; Briley, M.E.; Hoelscher, D.M. Contribution of beverage selection to the dietary quality of the packed lunches eaten by preschool-aged children. J. Acad. Nutr. Diet. 2018, 118, 1417–1424. [Google Scholar] [CrossRef]
- Sisson, S.B.; Kiger, A.C.; Anundson, K.C.; Rasbold, A.H.; Krampe, M.; Campbell, J.; DeGrace, B.; Hoffman, L. Differences in preschool-age children’s dietary intake between meals consumed at childcare and at home. Prev. Med. Rep. 2017, 6, 33–37. [Google Scholar] [CrossRef]
- Robson, S.M.; Khoury, J.C.; Kalkwarf, H.J.; Copeland, K. Dietary intake of children attending full-time child care: What are they eating away from the child-care center? J. Acad. Nutr. Diet. 2015, 115, 1472–1478. [Google Scholar] [CrossRef]
- Sahoo, K.; Sahoo, B.; Choudhury, A.K.; Sofi, N.Y.; Kumar, R.; Bhadoria, A.S. Childhood obesity: Causes and consequences. J. Fam. Med. Prim. Care 2015, 4, 187–192. [Google Scholar] [CrossRef]
- Benjamin, S.E.; Neelon, B.; Ball, S.C.; Bangdiwala, S.I.; Ammerman, A.S.; Ward, D.S. Reliability and validity of a nutrition and physical activity environmental self-assessment for child care. Int. J. Behav. Nutr. Phys. Act. 2007, 4, 29. [Google Scholar] [CrossRef]
- Hebert, J.R.; Clemow, L.; Pbert, L.; Ockene, I.S.; Ockene, J.K. Social desirability bias in dietary self-report may compromise the validity of dietary intake measures. Int. J. Epidemiol. 1995, 24, 389–398. [Google Scholar] [CrossRef]
- Gans, K.M.; Tovar, A.; Jiang, Q.; Mello, J.; Dionne, L.; Kang, A.; Mena, N.Z.; Palomo, V.; Risica, P.M. Nutrition-related practices of family child care providers and differences by ethnicity. Child. Obes. 2019, 15, 167–184. [Google Scholar] [CrossRef]
Breakfast a | Lunch b | Snack c | ||||
---|---|---|---|---|---|---|
Pre | Post | Pre | Post | Pre | Post | |
n (%) | n (%) | n (%) | n (%) | n (%) | n (%) | |
Gender | ||||||
Boy | 228 (43.59) | 238 (46.21) | 303 (46.05) | 262 (42.53) | 308 (45.70) | 287 (47.44) |
Girl | 295 (56.41) | 277 (53.79) | 355 (53.95) | 354 (57.47) | 366 (54.30) | 318 (52.56) |
City a** | ||||||
Houston | 187 (35.76) | 227 (44.08) | 340 (51.67) | 328 (53.25) | 367 (54.45) | 320 (52.89) |
San Antonio | 336 (64.24) | 288 (55.92) | 318 (48.33) | 288 (46.75) | 307 (45.55) | 285 (47.11) |
Site Type a*c* | ||||||
Home | 7 (1.34) | 19 (3.78) | 28 (4.26) | 19 (3.18) | 17 (2.52) | 31 (5.28) |
Day care center | 26 (4.97) | 34 (6.76) | 136 (20.67) | 142 (23.75) | 134 (19.88) | 133 (22.66) |
Head Start | 490 (93.69) | 450 (89.46) | 494 (75.08) | 437 (73.08) | 523 (77.60) | 423 (72.06) |
Site Size a**b* | ||||||
Small < 31 | 131 (25.05) | 88 (17.09) | 225 (34.19) | 171 (27.76) | 199 (29.57) | 161 (26.61) |
Medium 31–69 | 232 (44.36) | 248 (48.16) | 249 (37.84) | 247 (40.10) | 284 (42.20) | 248 (40.99) |
Large 70+ | 160 (30.59) | 179 (34.76) | 184 (27.96) | 198 (32.14) | 190 (28.23) | 196 (32.40) |
Pre (n = 523) | Post (n = 515) | |||
---|---|---|---|---|
Nutrients | Mean | SE | Mean | SE |
Energy (calories) | 210.635 | 9.895 | 217.615 | 9.259 |
% Calories from fat | 38.240 | 4.011 | 39.291 | 3.812 |
% Calories from SFA | 14.553 | 1.552 | 14.535 | 1.473 |
Sodium (mg) | 280.254 | 18.507 | 271.499 | 17.318 |
Calcium (mg) *** | 190.982 | 12.962 | 234.243 | 12.129 |
Vitamin A (IU) | 1459.875 | 78.979 | 1516.287 | 81.442 |
Vitamin C (mg) * | 11.592 | 0.855 | 14.101 | 0.633 |
Added sugars (g) ** | 7.864 | 0.811 | 6.324 | 0.759 |
Food Groups | ||||
Whole grains (ounce equivalents) *** | 0.164 | 0.042 | 0.266 | 0.040 |
Refined grains (ounce equivalents) *** | 0.720 | 0.061 | 0.582 | 0.057 |
Total grains (ounce equivalents) | 0.884 | 0.063 | 0.848 | 0.059 |
Fruit (serving) | 0.620 | 0.063 | 0.662 | 0.059 |
Juice (serving) *** | 0.016 | 0.024 | −0.073 | 0.023 |
Starchy vegetables (serving) | −0.001 | 0.001 | −0.003 | 0.001 |
All vegetables (serving) | −0.008 | 0.008 | −0.002 | 0.008 |
Total milk (fluid ounces) *** | 3.425 | 0.285 | 4.299 | 0.267 |
Total protein foods (serving) | 0.262 | 0.041 | 0.256 | 0.039 |
Snack chips | 0.000 | 0.000 | 0.000 | 0.000 |
Snack bars | 0.151 | 0.022 | 0.142 | 0.020 |
Pre (n = 658) | Post (n = 616) | |||
---|---|---|---|---|
Nutrients | Mean | SE | Mean | SE |
Energy (calories) | 312.505 | 9.332 | 306.052 | 9.229 |
% Calories from fat | 47.451 | 1.785 | 44.082 | 1.741 |
% Calories from SFA | 17.046 | 0.656 | 15.671 | 0.646 |
Sodium (mg) | 582.319 | 22.701 | 553.505 | 22.451 |
Calcium (mg) * | 246.584 | 12.169 | 266.819 | 12.030 |
Total vitamin A activity (IU) | 1406.783 | 143.588 | 1459.996 | 141.953 |
Vitamin C (ascorbic acid) (mg) ** | 9.565 | 1.454 | 12.811 | 1.153 |
Added sugars (by total sugars) (g) *** | 5.293 | 0.342 | 3.847 | 0.328 |
Food Groups | ||||
Whole grains (ounce equivalents) *** | 0.086 | 0.041 | 0.214 | 0.040 |
Refined grains (ounce equivalents) | 0.821 | 0.038 | 0.773 | 0.037 |
Total grains (ounce equivalents) * | 0.907 | 0.046 | 0.987 | 0.046 |
Fruit (serving) | 0.516 | 0.030 | 0.537 | 0.030 |
Juice (serving) * | 0.001 | 0.002 | −0.003 | 0.002 |
Starchy vegetables (serving) * | 0.161 | 0.018 | 0.130 | 0.018 |
All vegetables (serving) ** | 0.630 | 0.037 | 0.539 | 0.037 |
Total milk (fluid ounce) *** | 4.708 | 0.244 | 5.375 | 0.241 |
Total protein foods (serving) * | 1.116 | 0.062 | 1.016 | 0.061 |
Snack chips ** | 0.011 | 0.013 | −0.022 | 0.013 |
Snack bars | 0.002 | 0.003 | −0.000 | 0.003 |
Pre (n = 674) | Post (n = 605) | |||
---|---|---|---|---|
Nutrients | Mean | SE | Mean | SE |
Energy (calories) | 153.134 | 5.094 | 150.974 | 4.752 |
% Calories from fat | 42.583 | 2.625 | 42.304 | 2.591 |
% Calories from SFA | 12.995 | 0.884 | 11.809 | 0.862 |
Sodium (mg) | 183.379 | 8.202 | 174.448 | 7.652 |
Calcium (mg) * | 155.707 | 6.962 | 149.253 | 6.505 |
Total vitamin A activity (IU) | 524.411 | 70.561 | 464.556 | 65.830 |
Vitamin C (ascorbic acid) (mg) ** | 1.783 | 0.982 | 2.226 | 0.917 |
Added sugars (by total sugars) (g) *** | 4.610 | 0.320 | 4.933 | 0.299 |
Food Groups | ||||
Whole grains (ounce equivalents) *** | 0.159 | 0.026 | 0.228 | 0.025 |
Refined grains (ounce equivalents) | 0.647 | 0.035 | 0.608 | 0.032 |
Total grains (ounce equivalents) * | 0.806 | 0.039 | 0.836 | 0.046 |
Fruit (serving) | 0.129 | 0.024 | 0.112 | 0.022 |
Juice (serving) * | 0.165 | 0.035 | 0.125 | 0.033 |
Starchy vegetables (serving) * | 0.000 | 0.000 | 0.000 | 0.000 |
All vegetables (serving) ** | 0.029 | 0.012 | 0.025 | 0.011 |
Total milk (fluid ounce) *** | 2.569 | 0.161 | 2.286 | 0.149 |
Total protein foods (serving) * | 0.059 | 0.026 | 0.103 | 0.024 |
Snack chips ** | −0.039 | 0.015 | 0.035 | 0.014 |
Snack bars | 0.472 | 0.030 | 0.452 | 0.028 |
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Dave, J.M.; Chen, T.A.; Almohamad, M.; Cotto-Moreno, S. Dietary Intake among Children Attending Childcare Centers: Impact of the New CACFP Meal Guidelines. Nutrients 2022, 14, 3394. https://doi.org/10.3390/nu14163394
Dave JM, Chen TA, Almohamad M, Cotto-Moreno S. Dietary Intake among Children Attending Childcare Centers: Impact of the New CACFP Meal Guidelines. Nutrients. 2022; 14(16):3394. https://doi.org/10.3390/nu14163394
Chicago/Turabian StyleDave, Jayna M., Tzuan A. Chen, Maha Almohamad, and Sonia Cotto-Moreno. 2022. "Dietary Intake among Children Attending Childcare Centers: Impact of the New CACFP Meal Guidelines" Nutrients 14, no. 16: 3394. https://doi.org/10.3390/nu14163394
APA StyleDave, J. M., Chen, T. A., Almohamad, M., & Cotto-Moreno, S. (2022). Dietary Intake among Children Attending Childcare Centers: Impact of the New CACFP Meal Guidelines. Nutrients, 14(16), 3394. https://doi.org/10.3390/nu14163394