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ENHANCE

ENHANCE

Healthspan & Longevity Support*

BUNDLE & SAVE

BENEFITS

  • Promotes Longevity, Cellular Renewal & Autophagy
  • Supports Heart Health & Mitochondrial Free Radicals
  • Assists Cellular Detox & Optimizes Nrf2 Pathways
  • Supports Stamina + Endurance & Protein Synthesis
  • Maintains Lipid & Blood Sugar Regulation + Energy Production

INGREDIENTS

Active Ingredients: Arginine Alpha-Ketoglutarate, Trimethylglycine, Bergamot Orange Extract, Bergamonte®, Epigallocatechin Gallate, Taxifolin, Spermidine

Other Ingredients: Vegetable Capsule (Hypromellose, Titanium Dioxide)

HOW TO USE

  • HOW

Take 3 capsules daily with water or as directed by your healthcare practitioner.

  • WHEN

Daily

  • DOSE

3 Capsules

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    OVERVIEW

    HEALTHSPAN & LONGEVITY SUPPORT*

    OVERVIEW

    Enhance is a cutting-edge dietary supplement formulated to support longevity and promote healthy aging. As we age, our cells undergo transformations that impact our well-being and lifespan, including diminished mitochondrial function, reduced autophagy, and decreased cellular renewal. Enhance leverages a precise blend of six key ingredients, including Arginine Alpha-Ketoglutarate (AAKG), Trimethylglycine (TMG), Bergamot Orange Extract, Epigallocatechin Gallate (EGCG), Taxifolin, and Spermidine. These ingredients have demonstrated efficacy in promoting healthspan, optimizing epigenetic aging, and supporting mitochondrial function and autophagy, thus facilitating cellular renewal. By targeting crucial aspects of cellular function such as mitochondrial health, oxidative stress, gene expression, and cellular renewal, Enhance offers a comprehensive approach to support healthy aging and optimize overall cellular well-being, contributing to graceful aging and enhanced longevity.

    INGREDIENTS

    Arginine Alpha-Ketoglutarate


    Arginine Alpha-Ketoglutarate (AAKG) is a vital molecule in the tricarboxylic acid (TCA) cycle, a central pathway for energy production in cells, and is critical in cellular energy metabolism and functions such as DNA and protein synthesis. AAKG acts as a precursor to nitric oxide (NO), a signaling molecule involved in various cellular processes. By supporting nitric oxide production, AAKG promotes blood flow and oxygen delivery to tissues, optimizing mitochondrial function. Furthermore, AAKG exhibits potent antioxidant properties, reducing oxidative stress and preserving mitochondrial integrity. The combined effects of AAKG on nitric oxide production, blood flow, oxygen delivery, and antioxidation contribute to its ability to promote longevity.1,2


    Trimethylglycine


    Trimethylglycine (TMG), also known as betaine anhydrous, is a naturally occurring compound with diverse physiological functions. TMG acts as a methyl donor, supporting DNA and histone methylation, which play critical roles in gene expression regulation and maintaining cellular function. By modulating gene expression, TMG helps optimize cellular function and contributes to its longevity-promoting effects.3,4


    Bergamote®


    Natural polyphenols found in fruits, vegetables, and tea exhibit antioxidant activity, modulation of cell signaling pathways, DNA methylation, and apoptosis. Bergamote® (bergamot orange extract), rich in polyphenols such as flavonoids and citrus bergamia polyphenols (CBPs), offers multiple mechanisms of action that promote longevity. Its potent antioxidant properties neutralize reactive oxygen species (ROS). It has been shown to support cardiovascular health and support healthy cholesterol, blood sugar levels and weight management.5,6,7 Additionally, bergamot orange extract supports endothelial function, promoting blood flow and cardiovascular health.8,9


    Epigallocatechin Gallate


    Epigallocatechin gallate (EGCG), a polyphenol found in green tea, promotes longevity through various mechanisms. EGCG scavenges free radicals and protects cellular components as a potent antioxidant. Furthermore, EGCG supports autophagy, a cellular process that clears damaged proteins and organelles, promotes cellular function and support longevity.10,11


    Taxifolin


    Taxifolin, also known as dihydroquercetin, is a flavonoid found in various plant sources that exhibits diverse mechanisms of action contributing to its longevity-promoting effects. It acts as a potent antioxidant, effectively scavenging free radicals and limiting oxidative stress, which can lead to cellular damage and aging. Additionally, taxifolin supports mitochondrial biogenesis and promotes electron transport chain activity, resulting in energy production and cellular respiration.12,13


    Spermidine


    Spermidine is a polyamine naturally present in various foods and cells. It plays a crucial role in cellular processes such as autophagy and gene expression regulation. Spermidine promotes autophagy, which removes damaged cellular components and supports cellular rejuvenation. By supporting autophagy, spermidine helps maintain cellular health. It also exhibits antioxidant properties, protecting cells from oxidative damage. Furthermore, spermidine optimizes gene expression by interacting with chromatin and influencing histone modifications, contributing to cellular homeostasis and longevity.14,15

    REFERENCES

    1. Allerton TD, Proctor DN, Stephens JM, Dugas TR, Spielmann G, Irving BA. Nutrients. 2018 Jul 19;10(7):921. doi: 10.3390/nu10070921. PMID: 30029482; PMCID: PMC6073798. https://doi.org/10.3390/nu10070921

    2. Boccardi V , Paolisso G, Mecocci P . Aging (Albany NY). 2016 Jan;8(1):12-5. doi: 10.18632/aging.100886. https://doi.org/10.18632/aging.100886

    3. Shay J, Elbaz HA, Lee I, Zielske SP , Malek MH, Hüttemann M. Oxid Med Cell Longev. 2015;2015:181260. doi: 10.1155/2015/181260. https://doi.org/10.1155%2F2015%2F181260

    4. Y ao HT, Li CC, Chang CH. E Nutrients. 2019 Aug 10;11(8):1862. doi: 10.3390/nu11081862. https://doi.org/10.3390/nu11081862

    5. Ross Walker, Elzbieta Janda and Vincenzo Mollace. Cardiac Health and Polyphenols. Chp 84, Pg 1085-1103, 2014. http://dx.doi.org/10.1016/B978-0-12-398456-2.00084-0

    6. Micaela Gliozzi, Ross Walker, Elzbjeta Janda, Vincenzo Mollace. International Journal of Cardiology Dec 2013, 170(2):140-5. https://doi.org/10.1016/j.ijcard.2013.08.125

    7. Vincenzo Mollace, Iolanda Sacco, Elzbieta Janda, Claudio Malara, Domenica V entrice, Carmen Colica, V aleria Visalli, Saverio Muscoli. Fitoterapia 82 (2011) 309–316. https://doi.org/10.1016/j.fitote.2010.10.014

    8. Liu P , Huang J, Mei W, Zeng X, Wang C, Wen C, Xu J. Bioengineered. 2021 Dec;12(2):9496-9506. doi: 10.1080/21655979.2021.1996018. https://doi.org/10.1080%2F21655979.2021.1996018

    9. Saini RK, Ranjit A, Sharma K, Prasad P , Shang X, Gowda KGM, Keum YS. Antioxidants (Basel). 2022 Jan 26;11(2):239. doi: 10.3390/antiox11020239. https://doi.org/10.3390%2Fantiox11020239

    10. Inoue, T., Saito, S., Tanaka, M., Y amakage, H., Kusakabe, T., Shimatsu, A., Ihara, M., & Satoh-Asahara, N. (2019). Proceedings of the National Academy of Sciences, 116(20), 10031–10038. https://doi.org/10.1073/pnas.1901659116

    11. Chirumbolo S. Inflamm Allergy Drug Targets. 2010 Sep;9(4):263-85. https://doi.org/10.2174/187152810793358741

    12. Emile Andriambeloson and others, The Journal of Nutrition, V olume 128, Issue 12, December 1998, Pages 2324–2333, https://doi.org/10.1093/jn/128.12.2324

    13. Li J, Sun M, Cui X, Li C. Int J Mol Sci. 2022 Sep 2;23(17):10020. https://doi.org/10.3390%2Fijms231710020

    14. Madeo F, Zimmermann A, Maiuri MC, Kroemer G. J Clin Invest. 2015 Jan;125(1):85-93. https://doi.org/10.1172%2FJCI73946

    15. Eisenberg, T., Knauer, H., Schauer, A. et al. Nat Cell Biol 11, 1305–1314 (2009). https://doi.org/10.1038/ncb1975

      PRACTITIONER RESOURCES

      People Requiring:

      • Anti-Aging Protocols
      • High Levels of Physical Activity
      • Mitochondrial Support
      • Cardiovascular Support

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