Annatto-E Synergy - Designs for Health...Annatto-E Synergy References 1. Peh, H. Y., Daniel Tan, W....

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Annatto-E Synergy References 1. Peh, H. Y., Daniel Tan, W. S., Liao, W., & Fred Wong, W. S. (2016). Vitamin E therapy beyond cancer: Tocopherol versus tocotrienol. Pharmacology & Therapeutics, 162, 152-169. https://doi.org/10.1016/j. pharmthera.2015.12.003 2. Shibata, A., Nakagawa, K., Tsuduki, T., & Miyazawa, T. (2015). α-Tocopherol suppresses antiangiogenic effect of δ-tocotrienol in human umbilical vein endothelial cells. The Journal of Nutritional Biochemistry, 26(4), 345-350. https://doi.org/10.1016/j.jnutbio.2014.11.010 3. Meganathan, P., Jabir, R. S., Fuang, H. G., Bhoo-Pathy, N., Choudhury, R., Taib, N., … Chik, K. (2015). A new formulation of gamma delta tocotrienol has superior bioavailability compared to existing tocotrienol-rich Fraction in healthy human subjects. Scientific Reports, 5. doi: 10.1038/srep13550 4. Schilling, R. (2019). Health benefits of vitamin E tocotrienols. [Online article]. Retrieved from https://www. askdrray.com/health-benefits-of-vitamin-e-tocotrienols/ 5. Tan, B. Watson, R. R., & Preedy, V. R. (2012). Tocotrienols: Vitamin E Beyond Tocopherols (2nd ed.). Boca Raton, FL: CRC Press. 6. Abdul Ghani, S. M., Goon, J. A., Nor Azman, N. H., Zakaria, S. N., Hamid, Z. & Wan Ngah, W. Z. (2019). Comparing the effects of vitamin E tocotrienol-rich fraction supplementation and α-tocopherol supplementation on gene expression in healthy older adults. Clinics, 74. http://dx.doi.org/10.6061/ clinics/2019/e688 7. Muid, S., Froemming, G. R., Rahman, T., Ali A. M. & Nawawi, H. M. (2016) Delta- and gamma-tocotrienol isomers are potent in inhibiting inflammation and endothelial activation in stimulated human endothelial cells. Food & Nutrition Research, 60(1). DOI: 10.3402/fnr.v60.31526 8. Loffredo, L., Perri, L., Di Castelnuovo, A., Iacoviello, L., De Gaetano, G., & Violi, F. (2015). Supplementation with vitamin E alone is associated with reduced myocardial infarction: A meta-analysis. Nutrition, Metabolism and Cardiovascular Diseases, 25(4), 354-363. https://doi.org/10.1016/j.numecd.2015.01.008 9. Muid, S., Hamid, Z., & Nawawi, H. (2018). Tocotrienol rich fraction supplement reduces oxidative stress in non familial hypercholesterolaemia: beyond the lipid lowering capability. International Food Research Journal, 25(4), 1410-1418. 10. Rahman, T. A., Hassim, N. F., Zulkafli, N., Muid, S., Kornain, N. K. & Nawawi, H. (2016). Atheroprotective effects of pure tocotrienol supplementation in the treatment of rabbits with experimentally induced early and established atherosclerosis. Food & Nutrition Research, 60(1). DOI: 10.3402/fnr.v60.31525 11. Qureshi, A. A., Khan, D. A., Mahjabeen, W., Trias, A. M., Silswal, N. & Qureshi, N. (2015). Impact of δ-tocotrienol on inflammatory biomarkers and oxidative stress in hypercholesterolemic subjects. Clinical & Experimental Cardiology, 6(4), 1-9. 12. Xia, W. & Mo, H. (2016). Potential of tocotrienols in the prevention and therapy of Alzheimer’s disease. The Journal of Nutritional Biochemistry, 31, 1-9. https://doi.org/10.1016/j.jnutbio.2015.10.011 13. Boccardi, V., Baroni, M., Mangialasche, F., & Mecocci, P. (2016). Vitamin E family: Role in the pathogenesis and treatment of Alzheimer’s disease. Alzheimer’s & Dementia: Translational Research & Clinical Interventions, 2(3), 182-191. https://doi.org/10.1016/j.trci.2016.08.002 14. Saito, Y. & Yoshida, Y. (2019). Chemical Reactivity and Cellular Uptake of Tocopherols and Tocotrienols. Niki, E. (Ed.), Vitamin E: Chemistry and Nutritional Benefits (51-63). Royal Society of Chemistry. 15. Mohamed, W., Sayeed, S., Saxena, A., Oothuman, P. (2018). Oxidative stress status and neuroprotection of tocotrienols in chronic cerebral hypoperfusion-induced neurodegeneration rat animal model. International Journal of Nutrition, Pharmacology, Neurological Diseases, 8(2), 47-52. DOI: 10.4103/ijnpnd.ijnpnd_17_18 16. Wan, N., Wan, Nurzsulaikha, Makpol, S., Mazlan, M., Tooyama, I., Wan, Z., … Damanhuri, H. A. (2018). Tocotrienol rich fraction supplementation modulate brain hippocampal gene expression in APPswe/PS1dE9 Alzheimer’s disease mouse model. Journal of Alzheimer’s Disease, pre-press, 1-16.DOI: 10.3233/JAD-180496

Transcript of Annatto-E Synergy - Designs for Health...Annatto-E Synergy References 1. Peh, H. Y., Daniel Tan, W....

Page 1: Annatto-E Synergy - Designs for Health...Annatto-E Synergy References 1. Peh, H. Y., Daniel Tan, W. S., Liao, W., & Fred Wong, W. S. (2016). Vitamin E therapy beyond cancer: Tocopherol

Annatto-E™ Synergy

References1. Peh, H. Y., Daniel Tan, W. S., Liao, W., & Fred Wong, W. S. (2016). Vitamin E therapy beyond cancer:

Tocopherol versus tocotrienol. Pharmacology & Therapeutics, 162, 152-169. https://doi.org/10.1016/j.pharmthera.2015.12.003

2. Shibata, A., Nakagawa, K., Tsuduki, T., & Miyazawa, T. (2015). α-Tocopherol suppresses antiangiogenic effect of δ-tocotrienol in human umbilical vein endothelial cells. The Journal of Nutritional Biochemistry, 26(4), 345-350. https://doi.org/10.1016/j.jnutbio.2014.11.010

3. Meganathan, P., Jabir, R. S., Fuang, H. G., Bhoo-Pathy, N., Choudhury, R., Taib, N., … Chik, K. (2015). A new formulation of gamma delta tocotrienol has superior bioavailability compared to existing tocotrienol-rich Fraction in healthy human subjects. Scientific Reports, 5. doi: 10.1038/srep13550

4. Schilling, R. (2019). Health benefits of vitamin E tocotrienols. [Online article]. Retrieved from https://www.askdrray.com/health-benefits-of-vitamin-e-tocotrienols/

5. Tan, B. Watson, R. R., & Preedy, V. R. (2012). Tocotrienols: Vitamin E Beyond Tocopherols (2nd ed.). Boca Raton, FL: CRC Press.

6. Abdul Ghani, S. M., Goon, J. A., Nor Azman, N. H., Zakaria, S. N., Hamid, Z. & Wan Ngah, W. Z. (2019). Comparing the effects of vitamin E tocotrienol-rich fraction supplementation and α-tocopherol supplementation on gene expression in healthy older adults. Clinics, 74. http://dx.doi.org/10.6061/clinics/2019/e688

7. Muid, S., Froemming, G. R., Rahman, T., Ali A. M. & Nawawi, H. M. (2016) Delta- and gamma-tocotrienol isomers are potent in inhibiting inflammation and endothelial activation in stimulated human endothelial cells. Food & Nutrition Research, 60(1). DOI: 10.3402/fnr.v60.31526

8. Loffredo, L., Perri, L., Di Castelnuovo, A., Iacoviello, L., De Gaetano, G., & Violi, F. (2015). Supplementation with vitamin E alone is associated with reduced myocardial infarction: A meta-analysis. Nutrition, Metabolism and Cardiovascular Diseases, 25(4), 354-363. https://doi.org/10.1016/j.numecd.2015.01.008

9. Muid, S., Hamid, Z., & Nawawi, H. (2018). Tocotrienol rich fraction supplement reduces oxidative stress in non familial hypercholesterolaemia: beyond the lipid lowering capability. International Food Research Journal, 25(4), 1410-1418.

10. Rahman, T. A., Hassim, N. F., Zulkafli, N., Muid, S., Kornain, N. K. & Nawawi, H. (2016). Atheroprotective effects of pure tocotrienol supplementation in the treatment of rabbits with experimentally induced early and established atherosclerosis. Food & Nutrition Research, 60(1). DOI: 10.3402/fnr.v60.31525

11. Qureshi, A. A., Khan, D. A., Mahjabeen, W., Trias, A. M., Silswal, N. & Qureshi, N. (2015). Impact of δ-tocotrienol on inflammatory biomarkers and oxidative stress in hypercholesterolemic subjects. Clinical & Experimental Cardiology, 6(4), 1-9.

12. Xia, W. & Mo, H. (2016). Potential of tocotrienols in the prevention and therapy of Alzheimer’s disease. The Journal of Nutritional Biochemistry, 31, 1-9. https://doi.org/10.1016/j.jnutbio.2015.10.011

13. Boccardi, V., Baroni, M., Mangialasche, F., & Mecocci, P. (2016). Vitamin E family: Role in the pathogenesis and treatment of Alzheimer’s disease. Alzheimer’s & Dementia: Translational Research & Clinical Interventions, 2(3), 182-191. https://doi.org/10.1016/j.trci.2016.08.002

14. Saito, Y. & Yoshida, Y. (2019). Chemical Reactivity and Cellular Uptake of Tocopherols and Tocotrienols. Niki, E. (Ed.), Vitamin E: Chemistry and Nutritional Benefits (51-63). Royal Society of Chemistry.

15. Mohamed, W., Sayeed, S., Saxena, A., Oothuman, P. (2018). Oxidative stress status and neuroprotection of tocotrienols in chronic cerebral hypoperfusion-induced neurodegeneration rat animal model. International Journal of Nutrition, Pharmacology, Neurological Diseases, 8(2), 47-52. DOI: 10.4103/ijnpnd.ijnpnd_17_18

16. Wan, N., Wan, Nurzsulaikha, Makpol, S., Mazlan, M., Tooyama, I., Wan, Z., … Damanhuri, H. A. (2018). Tocotrienol rich fraction supplementation modulate brain hippocampal gene expression in APPswe/PS1dE9 Alzheimer’s disease mouse model. Journal of Alzheimer’s Disease, pre-press, 1-16.DOI: 10.3233/JAD-180496

Page 2: Annatto-E Synergy - Designs for Health...Annatto-E Synergy References 1. Peh, H. Y., Daniel Tan, W. S., Liao, W., & Fred Wong, W. S. (2016). Vitamin E therapy beyond cancer: Tocopherol

17. Aykin-Burns, N., Pathak, R., Boerma, M., Kim, T., & Hauer-Johnson, M. (2019). Utilization of vitamin E analogs to protect normal tissues while enhancing antitumor effects. Seminars in Radiation Oncology, 29(1), 55-61. https://doi.org/10.1016/j.semradonc.2018.10.008

18. Constantinou, C., Charalambous, C., & Kanakis, D. (2019). Vitamin E and cancer: an update on the emerging role of γ and δ tocotrienols. European Journal of Nutrition, 1-13. DOI https://doi.org/10.1007/s00394-019-01962-1

19. Tham, S. Y., Loh, H. S., Mai, C. W., & Fu, J. Y. (2019). Tocotrienols modulate a life of death decision in cancers. International Journal in Molecular Science, 20(2), 1-28. DOI: https://doi.org/10.3390/ijms20020372

20. Loganathan, R., Selvaduray, K. R., Nesaretnam, K., & Radhakrishnan, A. K. (2013). Tocotrienols promote apoptosis in human breast cancer cells by inducing poly(ADP-ribose) polymerase cleavage and inhibiting nuclear factor kappa-B activity. Cell Proliferation, 42(2), 203-213. doi:10.1111/cpr.12014

21. Buckner, T., Kim, Y. E., Chung, S., & Engel, M. (2016). Delta and gamma tocotrienol attenuate NLRP3 inflammasome activation in J774 macrophages via NF-kβ-dependent priming inhibition. The FASEB Journal

22. Parajuli, P. Tiwari, R. V. & Sylvester, P. W. (2015). Anti-proliferative effects of γ-tocotrienol are associated with suppression of c-Myc expression in mammary tumour cells. Cell Proliferation, 48(4). https://doi.org/10.1111/cpr.12196

23. Ananthula, S., Parajuli, P., Behery, F. A., Alayoubi, A. Y., El Sayed, K. A., Nazzal, S., & Sylvester, P. W. (2014). Oxazine derivatives of γ- and δ- tocotrienol display enhanced anticancer activity in vivo. Anticancer Research: International Journal of Cancer Research and Treatment, 34(6), 2715-2726. Retrieved from http://ar.iiarjournals.org/content/34/6/2715.full

24. Husain, K., Zhang, A., Shivers, S., Davis-Yadley, A., Coppola, D., Yang, C. S., & Malafa, M. P. (2019). Chemoprevention of azoxymethane-induced colon carcinogenesis by delta-tocotrienol. Cancer Prevention Research, 12(6), 357-366. DOI: 10.1158/1940-6207

25. Yimer, E. M., Tuem, K. B., Karim, A., Ur-Rehman, N., & Anwar, F. (2019). Nigella sativa L. (black cumin): A promising remedy for wide range of illnesses. Evidence-Based Complementary and Alternative Medicine, 2019, 1-16. Retrieved from https://www.hindawi.com/journals/ecam/2019/1528635/abs/

26. Aisa, H. A., Xin, X., & Tang, D. (2019). Chapter 40 - Nigella sativa: A medicinal and edible plant that ameliorates diabetes, (629-640). Bioactive Food as Dietary Interventions for Diabetes (2nd. ed.). https://doi.org/10.1016/B978-0-12-813822-9.00040-0

27. Shanmugam, M., Arfuso, F., Kumar, A. P., Wang, L. Z., Goh, B. C., Ahn, K. S., … & Sethi, G. (2018). Modulation of diverse oncogenic transcription factors by thymoquinone, an essential oil compound isolated from the seeds of Nigella sativa Linn. Pharmacological Research, 129, 357-364. doi:https://doi.org/10.1016/j.phrs.2017.11.023

28. Ozdal, T. & Adiguzel, S. (2019). Black Cumin (Nigella sativa L.): Bioactive compounds and health benefits. Swamy, M., Patra, J., & Rudramurthy, G (Eds.), Medicinal Plants: Chemistry, Pharmacology, and Therapeutic Applications (103-111). Boca Raton, FL: CRC Press.

29. Khan M. A. (2019). Thymoquinone, a constituent of prophetic medicine-black seed, is a miracle therapeutic molecule against multiple diseases. International Journal of Health Sciences, 13(1), 1–2. DOI: https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6392482/#ref3

30. Alam, M., Khan, G., Safhi, M., Alshahrani, S., Siddiqui, R., Moni, S. S., & Answer, T. (2018). Thymoquinone ameliorates doxorubicin-induced cardiotoxicity in Swiss albino mice by modulating oxidative damage and cellular inflammation. Cardiology Research and Practice, 2018(1483041), 1-6. doi: https://doi.org/10.1155/2018/1483041

31. Abdel-Daim, M. M., Shaheen, H. M., Abushouk, A. I., Toraih, E. A., Fawzy, M. S., Alansari, W. S., … & Bungau, S. (2018). Thymoquinone and diallyl sulfide protect against fipronil-induced oxidative injury in rats. Evironmental Science and Pollution Research, 25(24), 23909-23916. doi: https://doi.org/10.1007/s11356-018-2386-3

32. Mahmoodi, M., Amiri, H., Ayoobi, F., Rahmani, M., Taghipour, Z., Ghavamabadi, T., … & Sankian, M. (2019). Carvacrol ameliorates experimental autoimmune encephalomyelitis through modulating pro- and anti-inflammatory cytokines. Life Science, 219, 257-263. doi: https://doi.org/10.1016/j.lfs.2018.11.051

33. Li, Y., Xu, J. Z., Gu, C. X., Liu, G. L., & Tian, K. (2019). Carvacrol suppressed inflammatory responses in rheumatoid arthritis fibroblast-like synoviocytes. Journal of Cellular Biochemistry, 120(5), 8169-8176. doi: https://doi.org/10.1002/jcb.28098

34. Mahboubi, M., Kashani, L. M., & Mahboubi, Mona. (2018). Nigella sativa fixed oil as alternative treatment in management of pain in arthritis rheumatoid. Phytomedicine, 46, 69-77. doi:https://doi.org/10.1016/j.phymed.2018.04.018

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35. Arjumand, S., Shahzad, M., Shabbir, A., & Yousaf, M. Z. (2019). Thymoquinone attenuates rheumatoid arthritis by downregulating TLR2, TLR4, THF-α, IL-1, and NK-κβ expression levels. Biomedicine & Pharmacotherapy, 111, 958-963. doi:https://doi.org/10.1016/j.biopha.2019.01.006

36. Shaterzadeh-Yazdi, H., Noorbakhsh, M. F., Hayati, F., Samarghandian, S., & Farkhondeh, T. (2018). Immodulatory and anti-inflammatory effects of thymoquinone. Cardiovascular & Haematological Disorders - Drug Targets, 18(1), 52-69. DOI: https://doi.org/10.2174/1871529X18666180212114816

37. Ikhsan, M., Hiedayati, N., Maeyama, K., & Nurwidya, F. (2018). Nigella sativa as an anti-inflammatory agent in asthma. BMC Research Notes, 11. DOI:https://doi.org/10.1186/s13104-018-3858-8

38. Khasdair, M. R. & Boskabady, M. H. (2019). A double-blind, randomized, placebo-controlled clinical trial on the effect of carvacrol on serum cytokine levels and pulmonary function tests in sulfur mustard induced lung injury. Cytokine, 113, 311-318. doi: https://doi.org/10.1016/j.cyto.2018.07.031

39. Koshak, A., Wei, L., Koshak, E., Wali, S., Alamoudi, O., Demerdash, A., Qutub, M., Pushparaj, P. N., & Heinrich, M. ( 2017). Nigella sativa supplementation improves asthma control and biomarkers: A randomized, double-blind, placebo-controlled trial. Phytotherapy Research, 31(3), 403– 409. doi: 10.1002/ptr.5761.

40. Barlianto, W., Rachmawati, M., Irawan, M., & Wulandari, D. Effects of Nigella sativa oil on Th1/Th2, cytokine balance, and improvement of asthma control in children. Peadiatrica Indonesia, 57(5), 223-228. DOI https://doi.org/10.14238/pi57.5.2017.223-8

41. Khan, A. (2018). Antioxidant and anti-inflammatory action of thymoquinone. Younus, H., (Ed.), Molecular and Therapeutic Actions of Thymoquinone (41-56). Singapore: Springer.

42. Darakhshan, S., Pour, A. B., Colagar, A. H., & Sisakhtnezhad, S. (2015). Thymoquinone and its therapeutic potentials. Pharmacological Research, 95-96, 138-158. doi:https://doi.org/10.1016/j.phrs.2015.03.011

43. Jakaria, M., Cho, D. Y., Haque, E., Karthivashan, G., Kim, I. S., Ganesan, P., & Choi, D. K. (2018). Neuropharmacological potential and delivery prospects of thymoquinone for neurological disorders. Oxidative Medicine and Cellular Longevity, 2018, 1-17. doi:https://doi.org/10.1155/2018/1209801

44. Rahmani, A. H., Alzohairy, M. A., Khan, M. A., & Aly, S. M. (2014). Therapeutic implications of Black Seed and its constituent thymoquinone in the prevention of cancer through inactivation and activation of molecular pathways. Evidence-based Complementary and Alternative Medicine, 2014, 1-13. doi: 10.1155/2014/724658

45. Shanmugam, M., Arfuso, F., Kumar, A. P., Wang, L. Z., Goh, B. C., Ahn, K. S., … & Sethi, G. (2018). Modulation of diverse oncogenic transcription factors by thymoquinone, an essential oil compound isolated from the seeds of Nigella sativa Linn. Pharmacological Research, 129, 357-364. doi:https://doi.org/10.1016/j.phrs.2017.11.023

46. Tavakkoli, A., Ahmadi, A., Razavi, B., & Hosseinzadeh, H. (2017). Black seed (Nigella sativa) and its constituent thymoquinone as an antidote or a protective agent against natural or chemical toxicities. Iranian Journal of Pharmaceutical Research, 16(2), 2-23. doi: 10.22037/ijpr.2017.2003

47. Schneider-Stock, R., Fakhoury, I. H., Zaki, A. M., El-Baba, C. O., & Gali-Muhtasib, H. U. (2014). Thymoquinone: fifty years of success in the battle against cancer models. Drug Discovery Today, 19(1), 18-30. doi:https://doi.org/10.1016/j.drudis.2013.08.021

48. Ansari, R. & Batra, N. G. (2013). Effects of Nigella sativa against osteoporosis. International Journal of Pure & Applied Bioscience, 1(2): 6-14. Retrieved from https://pdfs.semanticscholar.org/d216/54abe3f7f0fb2903ef44edb03e88050cef4f.pdf

49. Seif, A. A. (2014). Nigella sativa reverses osteoporosis in ovariectomized rats. BMC Complementary & Alternative Medicine, 14(22). https://doi.org/10.1186/1472-6882-14-22

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