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It combines 6 medical-grade ingredients proven to work synergistically:
Nattokinase – Naturally dissolves blood clots & improves circulationteine (NAC) – Detoxifies & boosts lung function
NMN – Enhances longevity & cellular repair
Curcumin – Potent anti-inflammatory that supports brain health
CoQ10 – Energizes cells & supports the heart
Bromelain – Eases inflammation & supports vascular health
N-Acetylcysteine (NAC) – Detoxifies & boosts lung function
What makes RECOVERASE unique?
READY TO TRANSFORM YOUR HEALTH, PERFORM BETTER, AND FEEL AMAZING?
Why Recoverase?
Powerful Ingredients
Because your body deserves real recovery — not just relief.
📌 RECOVERASE is not your typical supplement. It's a scientifically-formulated blend of powerful bioactive compounds designed to:
🔬 Support your immune system – by restoring balance when it’s overworked or underperforming due to chronic inflammation or prolonged exposure to spike proteins.
🧬 Protect your organs – with antioxidants and natural enzymes that help cleanse, repair, and rejuvenate at the cellular level.
💡Promote better circulation – and help break down dangerous blood clots linked to immune dysregulation.
🧠 Cross the blood-brain barrier – to combat neuroinflammation and support cognitive health.
Hulscher, N., Procter, B. C., Wynn, C., & McCullough, P. A. (2023). Clinical approach to post-acute sequelae after COVID-19 infection and vaccination. Cureus, 15(11).
Matende, N. (2024). Elimination/Neutralization of COVID-19 Vaccine-Produced Spike Protein: Scoping Review. Mathews Journal of Nutrition & Dietetics, 7(2), 1-23.Okeahialam, B. N. (2024). COVID-19 treatment: Nattokinase, a fibrinolytic serine protease is the low-hanging fruit. Santosh University Journal of Health Sciences, 10(2), 279-282.Tanikawa, T., Kiba, Y., Yu, J., Hsu, K., Chen, S., Ishii, A., Yokogawa, T., Suzuki, R., Inoue, Y., & Kitamura, M. (2022). Degradative Effect of Nattokinase on Spike Protein of SARS-CoV-2. Molecules (Basel, Switzerland), 27(17), 5405. https://doi.org/10.3390/molecules27175405Andersen, L. E. In the Name of Science.Kyriakopoulos, A. M., & Seneff, S. (2023). Proteolytic targets for SARS-CoV-2 spike protein degradation: Hope for systemic detoxification. Journal of American Physicians and Surgeons, 28(3), 86-93.McCullough, P. A., Wynn, C., & Procter, B. C. (2023). Clinical rationale for SARS-CoV-2 base spike protein detoxification in post COVID-19 and vaccine injury syndromes. J Am Physicians Surg, 28, 90-93.Hulscher, N., Procter, B. C., Wynn, C., & McCullough, P. A. (2023). Clinical Approach to Post-acute Sequelae After COVID-19 Infection and Vaccination. Cureus, 15(11), e49204. https://doi.org/10.7759/cureus.49204https://drjessesantiano.com/bromelain-for-long-covid-and-post-vaccine-syndrome/Brien, S., Lewith, G., Walker, A., Hicks, S. M., & Middleton, D. (2004). Bromelain as a Treatment for Osteoarthritis: A Review of Clinical Studies. Evidence-Based Complementary and Alternative Medicine, 1(3), 251. https://doi.org/10.1093/ecam/neh035Sagar, S., Rathinavel, A. K., Lutz, W. E., Struble, L. R., Khurana, S., Schnaubelt, A. T., Mishra, N. K., Guda, C., Broadhurst, M. J., M Reid, S. P., Bayles, K. W., O Borgstahl, G. E., & Radhakrishnan, P. (2020). Bromelain Inhibits SARS-CoV-2 Infection in VeroE6 Cells. BioRxiv, 2020.09.16.297366. https://doi.org/10.1101/2020.09.16.297366Pavan, R., Jain, S., & Kumar, A. (2012). Properties and Therapeutic Application of Bromelain: A Review. Biotechnology Research International, 2012, 976203. https://doi.org/10.1155/2012/976203Felton G. E. (1980). Fibrinolytic and antithrombotic action of bromelain may eliminate thrombosis in heart patients. Medical hypotheses, 6(11), 1123–1133. https://doi.org/10.1016/0306-9877(80)90134-6Jagadeesan, P., Jagadeesan, R., & Ramachandran, R. (2021). Bromelain: A potential therapeutic solution for COVID-19. International Journal of Scientific & Engineering Research, 12(10), 487. https://www.ijser.orgJagadeesan, P., Jagadeesan, R., & Ramachandran, R. (2021). Bromelain: A potential therapeutic solution for COVID-19. International Journal of Scientific & Engineering Research, 12(10), 487. https://www.ijser.orgHikisz, P. (2021). Beneficial Properties of Bromelain. Nutrients, 13(12), 4313. https://doi.org/10.3390/nu13124313Kumar, V., Mangla, B., Javed, S., Ahsan, W., Kumar, P., Garg, V., & Dureja, H. (2023). Bromelain: A review of its mechanisms, pharmacological effects and potential applications. Food & function.Sagar, S., Rathinavel, A. K., Lutz, W. E., Struble, L. R., Khurana, S., Schnaubelt, A. T., Mishra, N. K., Guda, C., Palermo, N. Y., Broadhurst, M. J., Hoffmann, T., Bayles, K. W., M. Reid, S. P., O. Borgstahl, G. E., & Radhakrishnan, P. (2021). Bromelain inhibits SARS-CoV-2 infection via targeting ACE-2, TMPRSS2, and spike protein. Clinical and Translational Medicine, 11(2), e281. https://doi.org/10.1002/ctm2.281Akhter, J., Pillai, K., Badar, S., Mekkawy, A., Valle, S. J., & Morris, D. L. (2020). In vitro study of BromAc on SARS-CoV-2 spike and envelope protein shows synergy and disintegration at modest concentrations. bioRxiv. https://doi.org/10.1101/2020.09.07.286906Sayıner, S., Velioğlu-Öğünç, A., & Şehirli, A. Ö. (2021). Bromelain: A potential therapeutic application in SARS-CoV-2 infected patients. Annals of Antivirals and Antiretrovirals, 5(1), 015-018.
McCullough, P. A., Wynn, C., & Procter, B. C. (2023). Clinical rationale for SARS-CoV-2 base spike protein detoxification in post COVID-19 and vaccine injury syndromes. J Am Physicians Surg, 28, 90-93.
Hulscher, N., Procter, B. C., Wynn, C., & McCullough, P. A. (2023). Clinical Approach to Post-acute Sequelae After COVID-19 Infection and Vaccination. Cureus, 15(11), e49204. https://doi.org/10.7759/cureus.49204in, C., Lee, J., Park, C., Choi, Y. H., & Kim, G. (2007). Curcumin attenuates the release of pro-inflammatory cytokines in lipopolysaccharide-stimulated BV2 microglia. Acta Pharmacologica Sinica, 28(10), 1645–1651.Yu, Y., Shen, Q., Lai, Y., Park, S. Y., Ou, X., Lin, D., Jin, M., & Zhang, W. (2018). Anti-inflammatory Effects of Curcumin in Microglial Cells. Frontiers in Pharmacology, 9, 345045. https://doi.org/10.3389/fphar.2018.00386Ak, T., & Gülçin, I. (2008). Antioxidant and radical scavenging properties of curcumin. Chemico-biological interactions, 174(1), 27–37. https://doi.org/10.1016/j.cbi.2008.05.003Barzegar, A., & Moosavi-Movahedi, A. A. (2011). Intracellular ROS protection efficiency and free radical-scavenging activity of curcumin. PloS one, 6(10), e26012. https://doi.org/10.1371/journal.pone.0026012aurindo, L. F., De Carvalho, G. M., Figueira, M. E., Direito, R., Buglio, D. S., & Barbalho, S. M. (2022). Curcumin-Based Nanomedicines in the Treatment of Inflammatory and Immunomodulated Diseases: An Evidence-Based Comprehensive Review. Pharmaceutics, 15(1), 229. https://doi.org/10.3390/pharmaceutics15010229Widjaja, Sry Suryani; Rusdiana, Rusdiana; Amelia, Rina1. Curcumin: Boosting the immunity of COVID-19-vaccinated populations. Journal of Advanced Pharmaceutical Technology & Research 13(3):p 187-190, Jul–Sep 2022. | DOI: 10.4103/japtr.japtr_54_22Fessler, S. N., Chang, Y., Liu, L., & Johnston, C. S. (2022). Curcumin Confers Anti-Inflammatory Effects in Adults Who Recovered from COVID-19 and Were Subsequently Vaccinated: A Randomized Controlled Trial. Nutrients, 15(7), 1548. https://doi.org/10.3390/nu15071548Allegra, A., Mirabile, G., Ettari, R., Pioggia, G., & Gangemi, S. (2021). The Impact of Curcumin on Immune Response: An Immunomodulatory Strategy to Treat Sepsis. International Journal of Molecular Sciences, 23(23), 14710. https://doi.org/10.3390/ijms232314710Vahedian-Azimi, A., Abbasifard, M., Rahimi-Bashar, F., Guest, P. C., Majeed, M., Mohammadi, A., Banach, M., Jamialahmadi, T., & Sahebkar, A. (2022). Effectiveness of Curcumin on Outcomes of Hospitalized COVID-19 Patients: A Systematic Review of Clinical Trials. Nutrients, 14(2), 256. https://doi.org/10.3390/nu14020256Zahedipour, F., Hosseini, S. A., Sathyapalan, T., Majeed, M., Jamialahmadi, T., Al-Rasadi, K., Banach, M., & Sahebkar, A. (2020). Potential effects of curcumin in the treatment of COVID-19 infection. Phytotherapy research : PTR, 34(11), 2911–2920. https://doi.org/10.1002/ptr.6738McCullough, P. A., Wynn, C., & Procter, B. C. (2023). Clinical rationale for SARS-CoV-2 base spike protein detoxification in post COVID-19 and vaccine injury syndromes. J Am Physicians Surg, 28, 90-93.Hulscher, N., Procter, B. C., Wynn, C., & McCullough, P. A. (2023). Clinical Approach to Post-acute Sequelae After COVID-19 Infection and Vaccination. Cureus, 15(11), e49204. https://doi.org/10.7759/cureus.49204
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Order Summary:
Product: 12 Month Immune Armor Pack
Quantity: 10 Bottles of Recoverase + FREE 2 Bottles!
Price: ₱9980
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