We all eat, and every inattentively made meal is a missed opportunity to stay healthy.

Teach your family to have a healthy relationship with food.

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Real Stories from Healthy Users

One cannot think well, love well, sleep well, if one has not dined well.

The Secret is in the
Ingredient Matrix

Get your daily dose of healthy goodness from 100% real and natural ingredients in Organic Fruits+ & Veggies+!

Whole Organic Foods in a Bottle

The convenient and delicious way to get your daily dose of real organic fruits and veggies!

Made with 100% Organic Fruits & Vegetables

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for as low as

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Organic Fruits+ and Veggies + are made with 100% real whole foods for your daily dose of wellness.

Real Stories from Real Customers

Hannah M.

“I love that this product combines all these real ingredients in one bottle. Whether I’m running my business or helping my kids build a pillow fort, I have to feel my best to be my best and these just give me that boost of energy I need. So glad they’re part of my daily routine.”

Megan F.

“Not everyone has access to real fruits and vegetables all the time, and it can be also quite expensive to regularly include them in every meal. I like that Nicer Naturals gives me my daily recommended intake of fruit and veg in two convenient capsules. That way I don’t have to break the bank to help stay healthy.”

Rose G.

“They didn’t lie then they said these were delicious. I’ve tried sprinkling the Fruits+ in my morning orange juice and the Veggies+ in my salad. Since I have been taking them every day, my digestion seems to be a lot better and I always seem to be in a better mood. Love this stuff!”

Feel Great Everyday with Nicer Naturals

Organic Fruits+ and Veggies+ for your daily recommended dose of real fruits and vegetables.

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Wacker, M. and Holick, M. F. 2013. Vitamin D—Effects on Skeletal and Extraskeletal Health and the Need for Supplementation. Nutrients. 5(1): 111-148. Accessed on Aug. 2020, from https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3571641/

Gombart, A. F. 2009. The vitamin D-antimicrobial peptide pathway and its role in protection against infection. Future Microbiology. 4(9): 1151-1165. Accessed on Aug. 2020, from https://pubmed.ncbi.nlm.nih.gov/19895218/

Wang, L., et al. 2015. The antiviral and antimicrobial activities of licorice, a widely-used Chinese herb. Acta Pharmeceutica Sinica B. 5(4): 310-315. Accessed on Jul. 2020, from https://www.sciencedirect.com/science/article/pii/S2211383515000799

Fukuchi, K. et al. 2016. Antiviral and Antitumor Activity of Licorice Root Extracts. In Vivo. 30(6): 777-785. Accessed on Jul. 2020, from https://pubmed.ncbi.nlm.nih.gov/27815461/

Cinatl, J., et al. 2003. Glycyrrhizin, an active component of liquorice roots, and replication of …. Lancet. 361(9374): 2045-2046. Accessed on Jul. 2020, from https://pubmed.ncbi.nlm.nih.gov/12814717/

Bayan, L., Koulivand, P. H., and Gorji, A. 2014. Garlic: a review on potential therapeutic effects. Avicenna Journal of Phytomedicine. 4(1): 1-14. Accessed on Jul. 2020, from https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4103721/

Tseliou, M., et al. 2019. Antivi-al effect of an essential oil combination derived from three aromatic plants (Coridothymus capitatus (L.) Rchb. f., Origanum dictamnus L. and Salvia fruticosa Mill.) against … causing infections of the upper respiratory tract. Journal of Herbal Medicine. 17-18. Accessed on Aug. 2020, from https://www.sciencedirect.com/science/article/abs/pii/S2210803319300351

Arreola, R., et al. 2015. Immunomodulation and Anti-Inflammatory Effects of Garlic Compounds. Journal of Immunology Research. Accessed on Jul. 2020, from https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4417560/

Prasad, A. S. 2008. Zinc in Human Health: Effect of Zinc on Immune Cells. Molecular Medicine. 14(5-6): 353-357. Accessed on Jul. 2020, from https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2277319/

Aydemir, T. B., et al. 2009. Zinc transporter ZIP8 (SLC39A8) and zinc influence IFN-gamma expression in activated human T cells. Journal of Leukocyte Biology. 86(2): 337-348. Accessed on Aug. 2020, from https://pubmed.ncbi.nlm.nih.gov/19401385/

Kar, M., et al. 2019. Zinc Chelation Specifically Inhibits Early Stages of Dengue … Replication by Activation of NF-κB and Induction of Antiviral Response in Epithelial Cells. Frontiers in Immunology. Accessed on Jul. 2020, from https://www.frontiersin.org/articles/10.3389/fimmu.2019.02347/full

Tam, M. et al. 2003. Possible roles of magnesium on the immune system. European Journal of Clinical Nutrition. 57: 1193-1197. Accessed on Jul. 2020, from https://www.nature.com/articles/1601689

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