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菁喜三寶

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菁喜三寶

Isotonix等壓吸收系列®
價格範圍  $119.95 – $149.95 定價 $154.85 $194.85 23% off
  • 重新喚醒、重新建構、並重新啟動
  • 三大強效菁品 — 寶健輕鬆三步
  • OPC-3®(含碧容健®)助力氧氣輸送
  • Prime NAD+菁源寶啟動細胞再生
  • 強鎂配方粉末提高優質睡眠
SKU細目選項
SKU細目選項:
代碼  33CHNB
詳細資料

極致功效、菁喜成果 — 菁喜三寶,打造全新自我。
探索這三款強效產品的煥活再生力量,寶健輕鬆三步驟:Isotonix OPC-3®(含碧容健),全球最強大的抗氧化物帶來超強氧氣輸送,令肌膚光采亮澤,活力迸發;Prime Anti-Aging Nutraceuticals® NAD+菁源寶可使細胞再生和維持DNA完整性、保持思維敏捷、並感受年輕活力。Isotonix®強鎂配方粉末可消除壓力、改善睡眠、增強心臟功能、並激活能量。

成分

Isotonix OPC-3(含碧容健)活性成分:葡萄籽萃取物(Grape seed extract)、碧容健®(松樹皮萃取物)(Pycnogenol® (pine bark extract))、紅酒萃取物(red wine extract)、山桑子萃取物(bilberry extract)與柑橘生物類黃酮(citrus bioflavonoid complex) 

其它成分:果糖(Fructose)、葡萄糖(glucose)、檸檬酸(citric acid)、碳酸氫鉀(potassium bicarbonate)、麥芽糊精(maltodextrin)、二氧化矽(silica)、硫酸鈣(calcium sulfate)、食用澱粉(food starch (modified))、蘋果果膠(apple pectin)、硬脂酸(stearic acid)。

Prime NAD+菁源寶 活性成分:結晶菸鹼醯胺核糖氯酸鹽(Crystalline nicotinamide riboside chloride)與紫檀芪(pterostilbene) 

其它成分:素食膠囊(羥丙基甲基纖維素)(Vegetarian capsule (hypromellose))、微晶纖維素(microcroystalline cellulose)、植物源硬脂酸鎂(vegetable magnesium stearate)、二氧化矽(silicon dioxide)

Isotonix強鎂配方粉末 活性成分:鎂(檸檬酸和甘胺酸)(Magnesium (citrate & glycinate)) 

其它成分:果糖(Fructose)、蘋果酸(malic acid)、檸檬酸(citric acid)、橙汁粉(orange juice powder)、碳酸氫鉀(potassium bicarbonate)、柑橘香精(orange flavor)、百香果香精(passionfruit flavor)、二氧化矽(silicon dioxide)、甜菊糖醇A(甜菊糖葉)(rebaudioside A (stevia leaf))、羅漢果萃取物(luo han guo fruit extract)、硬脂酸(stearic acid)

  • 超過$125.00的訂單即可享有免運費優惠
代碼  33CHNB

三重震懾威力的日常保健程序

Isotonix OPC-3(含碧容健)

95%的營養傳輸

Isotonix強鎂配方粉末

支援300多種酵素系統

Prime NAD+菁源寶

健康老化的秘密

包括我們的熱門產品 — Isotonix OPC-3(含碧容健)

松樹皮萃取物(碧容健®)是OPC-3(含碧容健)內含的超級抗氧化物
Isotonix OPC-3(含碧容健)含有唯一等滲透形式的碧容健,是一種天然植物萃取物,提取自法國的海岸松樹皮,是全世界目前研究最為充分的強效生物類黃酮。

image of pine bark

主要成分

image of pine bark

松樹皮萃取物(碧容健®)(Pine Bark Extract (Pycnogenol®‡))*

鞏固微血管、動脈和靜脈血管的強度,有助維持健康的血液循環

對抗自由基

支援健康好氣色

支援健康的精子品質

image of blueberries against a blue background

Isotonix OPC-3®(含碧容健):山桑子萃取物(bilberry extract)*

強效抗氧化物

支援健康視力

維持健康循環

Image of magnesium against a blue background

Isotonix強鎂配方粉末®:鎂(檸檬酸和甘胺酸)(magnesium (citrate & glycinate))*

有助身體維持健康的鎂含量,以防鎂缺乏

促進肌肉健康和舒適度

支援健康的睡眠品質

促進骨骼健康

image of magnified cells

Prime Anti-Aging Nutraceuticals® NAD+菁源寶:菸鹼醯胺核糖(結晶菸鹼醯胺核糖氯酸鹽)(Nicotinamide Riboside (crystalline nicotinamide riboside chloride))*

支援健康NAD的生成 

可對抗細胞老化過程 

促進SIRT-1基因的正常活性 

支援細胞健康與代謝 

使用方法

image of one capful Isotonix OPC-3 and one capful Isotonix Magnesium

步驟1(早晨):起床後食用Isotonix OPC-3(含碧容健)和一瓶蓋的Isotonix強鎂配方粉末。

image of canister of Prime NAD+

步驟2(中午):午餐前食用Prime NAD+菁源寶。

image of one capful of Isotonix Magnesium with the product bottle

步驟3(晚間):睡前再食用一瓶蓋的Isotonix強鎂配方粉末。

菁喜三寶恢復您的體力

憑藉菁喜三寶,體驗重新喚醒、重新建構、重新啟動的健康三重奏:三大強效菁品,寶健輕鬆三步驟。悉心甄選我們的超人氣健康巨星三寶,凝聚成三「威」一體的超能震撼系統,追求功效最大化,實現真正令人菁喜的成果。

常見問題

這些產品的最佳食用時機是什麼?
於早晨食用Isotonix OPC-3(含碧容健)與Isotonix強鎂配方粉末。4-5個小時後食用Prime NAD+菁源寶,並於睡前再食用一份Isotonix強鎂配方粉末。1-2-3簡單三步即可支援代謝健康及睡眠。
為何Isotonix產品配方中含糖?
這些糖可使溶液達到等滲透狀態,促進血液中營養素的吸收,並優化營養素對靶細胞的傳輸。
菁喜三寶對於二或三班輪班的工作者有效嗎?
有效的,只需依照您的睡眠週期遵循1-2-3步驟。於睡醒後食用Isotonix OPC-3(含碧容健)與強鎂配方粉末,4-5個小時後再食用Prime NAD+菁源寶,並於睡前再次食用強鎂配方粉末。
Isotonix OPC-3(含碧容健)有何獨特之處?
Isotonix OPC-3(含碧容健)以等滲透形式輸送,有助於快速吸收。它與碧容健、山桑子及葡萄籽萃取物等強效抗氧化物結合,可支援心血管健康、關節靈活與自由基防護。
Isotonix強鎂配方粉末有何獨特之處?
Isotonix強鎂配方粉末提供400毫克高度生物可利用性形式的鎂(甘胺酸鎂與檸檬酸鎂),可支援大腦功能、肌肉健康及壓力管理。
Prime NAD+菁源寶有何獨特之處?
Prime NAD+菁源寶透過250毫克的菸鹼醯胺核糖(NR)與50毫克的紫檀芪來支援NAD+水平,可促進細胞再生、粒線體健康及DNA完整性。

核心3健康研究範圍

科學參考文獻列表

Isotonix OPC-3

  • Cardona F, Andrés-Lacueva C, Tulipani S, Tinahones FJ, Queipo-Ortuño MI. Benefits of polyphenols on gut microbiota and implications in human health. J Nutr Biochem. 2013 Aug;24(8):1415-22. doi: 10.1016/j.jnutbio.2013.05.001. PMID: 23849454.
  • Dueñas M, Muñoz-González I, Cueva C, Jiménez-Girón A, Sánchez-Patán F, Santos-Buelga C, Moreno-Arribas MV, Bartolomé B. A survey of modulation of gut microbiota by dietary polyphenols. Biomed Res Int. 2015;2015:850902. doi: 10.1155/2015/850902. Epub 2015 Feb 22. PMID: 25793210; PMCID: PMC4352430
  • Devaraj, S., et al. Supplementation with a pine bark extract rich in polyphenols increases plasma antioxidant capacity and alters the plasma lipoprotein profile. Lipids 37:931-4, 2002.
  • Fitzpatrick, D., et al. Endothelium-dependent vascular effects of Pycnogenol. Journal of Cardiovascular Pharmacology 32: 509-515, 1998.
  • Frémont, L. Biological effects of resveratrol. Life Sciences 66: 663-673, 2000.
  • Kumar Singh A, Cabral C, Kumar R, Ganguly R, Kumar Rana H, Gupta A, Rosaria Lauro M, Carbone C, Reis F, Pandey AK. Beneficial Effects of Dietary Polyphenols on Gut Microbiota and Strategies to Improve Delivery Efficiency. Nutrients. 2019 Sep 13;11(9):2216. doi: 10.3390/nu11092216. PMID: 31540270; PMCID: PMC6770155.
  • Vaccinium myrtillus (bilberry). Altern Med Rev 6:500-4, 2001.
  • Murias M., et al. Resveratrol analogues as selective cyclooxygenase-2 inhibitors: synthesis and structure-activity relationship. , 2004.
  • Nuttall SL, Kendall MJ, Bombardelli E, Morazzoni P. An evaluation of the antioxidant activity of a standardized grape seed extract, Leucoselect. J Clin Pharm Ther 23: 385-89, 1998.
  • Packer, L., et al. Antioxidant activity and biologic properties of a procyanidin-rich extract from pine (Pinus maritima) bark, pycnogenol. Free Radic Biol Med 27:704-24, 1999. Review.
  • Schönlau, F., et al. The cosmeceutical Pycnogenol®. J Appl Cosmetology 20: 241-6, 2002.
  • Segger, D. and Schönlau, F. Supplementation with Evelle® improves skin smoothness and elasticity in a double blind, placebo-controlled study with 62 women. Journal of Dermatological Treatment 15:222-26, 2004.
  • Watson, R. Pycnogenol® and cardiovascular health. Evidence-Based Integrative Medicine 1: 27-32, 2003.
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Prime Anti-Aging Nutraceuticals NAD+

  • Amjad, S., Nisar, S., Bhat, A. A., Shah, A. R., Frenneaux, M. P., Fakhro, K., Haris, M., Reddy, R., Patay, Z., Baur, J., & Bagga, P. (2021). Role of NAD+ in regulating cellular and metabolic signaling pathways. Molecular metabolism, 49, 101195. https://doi.org/10.1016/j.molmet.2021.101195
  • Covarrubias, A. J., Perrone, R., Grozio, A., & Verdin, E. (2021). NAD+ metabolism and its roles in cellular processes during ageing. Nature reviews. Molecular cell biology, 22(2), 119–141. https://doi.org/10.1038/s41580-020-00313-x
  • Clement, J., Wong, M., Poljak, A., Sachdev, P., & Braidy, N. (2019). The Plasma NAD+ Metabolome Is Dysregulated in ""Normal"" Aging. Rejuvenation research, 22(2), 121–130. https://doi.org/10.1089/rej.2018.2077
  • Lindberg, S. (2023, May 5). Autophagy: What you need to know. Healthline. https://www.healthline.com/health/autophagy
  • ProHealth Longevity. Sirtuins and your health: the. ProHealth.com. https://www.prohealth.com/blogs/control-how-you-age/activate-your-sirtuins
  • Bsc, M. W. M. C. (2023). What foods are high in NAD. Satia - Health, Wellness, Nutrition. https://satia.com/blog/nad-why-it-matters-and-where-to-find-it
  • Billington RA, Travelli C, Ercolano E, Galli U, Roman CB, Grolla AA, Canonico PL, Condorelli F, Genazzani AA. Characterization of NAD Uptake in Mammalian Cells. THE JOURNAL OF BIOLOGICAL CHEMISTRY. 2008 Mar 7;283(10):6367-74. 
  • Christopher R. Martens et al. Chronic nicotinamide riboside supplementation is well-tolerated and elevates NAD+ in healthy middle-aged and older adults. Nature Communications volume 9, Article number: 1286 (2018). 
  • de Ligt M, Bruls YMH, Hansen J, Habets MF, Havekes B, Nascimento EBM, Moonen-Kornips E, Schaart G, Zhang D, van Marken Lichtenbelt W, Schrauwen P, Schrauwen-Hinderling VB, Hesselink MKC Resveratrol and pterostilbene potently modulate autophagy. Scientific Reports. 2021. 
  • Dellinger RW, Santos SR, Morris M, et al. Repeat dose NRPT (nicotinamide riboside and pterostilbene) increases NAD+ levels in humans safely and sustainably: a randomized, double-blind, placebo-controlled study. NPJ Aging Mech Dis. 2017;3:17. 
  • Fang, EF, Lautrup, S, Hou, Y, Demarest, TG, Croteau, DL, Mattson, MP, Bohr, VA (2017). NAD+ in Aging: Molecular Mechanisms and Translational Implications. Trends in Molecular Medicine, 23(10), 899-916. 
  • Hanhineva K, Törrönen R, Bondia-Pons I, Pekkinen J, Kolehmainen M, Mykkänen H, Poutanen K. Impact of dietary polyphenols on carbohydrate metabolism. Int J Mol Sci. 2010 Mar 31;11(4):1365-402. doi: 10.3390/ijms11041365. PMID: 20480025; PMCID: PMC2871121.
  • Kim Y, Keogh JB, Clifton PM. Polyphenols and Glycemic Control. Nutrients. 2016 Jan 5;8(1):17. doi: 10.3390/nu8010017. PMID: 26742071; PMCID: PMC4728631.
  • Maiese K. Moving to the Rhythm with Clock (Circadian) Genes, Autophagy, mTOR, and SIRT1 in Degenerative Disease and Cancer. Curr Neurovasc Res. 2017;14(3):299-304. doi: 10.2174/1567202614666170718092010. PMID: 28721811; PMCID: PMC5600856.
  • Martens, C. R., Denman, B. A., Mazzo, M. R., et al. Chronic nicotinamide riboside supplementation is well-tolerated and elevates NAD+ in healthy middle-aged and older adults Nature Communications. 2018. 
  • Massudi, H., Grant, R., Braidy, N., Guest, J., Farnsworth, B., & Guillemin, G. J. (2012). Age-associated changes in oxidative stress and NAD+ metabolism in human tissue. PloS one, 7(7), e42357. 
  • Mendelsohn AR, Larrick JW. The NAD+/PARP1/SIRT1 Axis in Aging. Rejuvenation Res. 2017 Jun;20(3):244-247. doi: 10.1089/rej.2017.1980. PMID: 28537485. 
  • Nagarajan S, Mohandas S, Ganesan K, Xu B, Ramkumar KM. New insights into dietary pterostilbene: Sources, metabolism, and health promotion effects. Molecules. 2022 Sep 25;27(19):6316. 
  • Chini CC, Zeidler JD, Kashyap S, Warner G, Chini EN. Evolving concepts in NAD+ metabolism. Cell metabolism. 2021 Jun 1;33(6):1076-87. 
  • Estrela JM, Ortega A, Mena S, Rodriguez ML, Asensi M. Pterostilbene: biomedical applications. Critical reviews in clinical laboratory sciences. 2013 May 1;50(3):65-78. 

Isotonix Magnesium

  • Institute of Medicine. Food and Nutrition Board. Dietary Reference Intakes: Calcium, Phosphorus, Magnesium, Vitamin D and Fluoride. National Academy Press. Washington, DC, 1999.
  • Wester PO. Magnesium. Am J Clin Nutr. 45:1305-12, 1987.
  • Saris NE, Mervaala E, et al. Magnesium: an update on physiological, clinical, and analytical aspects. Clinica Chimica Acta. 294:1-26, 2000.
  • Vormann J. Magnesium: nutrition and metabolism. Molecular Aspects of Medicine. 24:27-37, 2003.
  • Rude KR. Magnesium metabolism and deficiency. Endocrinol Metab Clin North Am. 22:377-95, 1993.
  • Kobrin SM and Goldfarb S. Magnesium Deficiency. Semin Nephrol. 10:525-35, 1990.
  • Tucker KL, Hannan MT, Chen H, Cupples LA, Wilson PW, Kiel DP. Potassium, magnesium, and fruit and vegetable intakes are associated with greater bone mineral density in elderly men and women. Am J Clin Nutr. 69(4):727-36, 1999.
  • Institute of Medicine. Food and Nutrition Board. Dietary Reference Intakes: Calcium, Phosphorus, Magnesium, Vitamin D and Fluoride. National Academy Press. Washington, DC, 1999.
  • New SA et al. Nutritional influences on bone mineral density: a cross-sectional study in premenopausal women. Am J Clin Nutr. 65:1831-9, 1997.
  • Gruber H et al. Magnesium deficiency: effect on bone mineral density in the mouse appendicular skeleton. BMC Musculoskelet Disord. 4(1):7, 2003.
  • Ryder K et al. Magnesium intake from food and supplements is associated with bone mineral density in healthy older white subjects. J Am Geriatr Soc. 53(11):1875-1880, 2005.
  • Rude R et al. Magnesium deficiency and osteoporosis: animal and human observations. J Nutr Biochem. 15(12):710-716, 2004.
  • Bilbey, D.L. J., et al. Muscle cramps and magnesium deficiency: case reports. Can Fam Physician. 42:1348-51, 1996.
  • Dahle, L. O., et al. The effect of oral magnesium substitution on pregnancy-induced leg cramps. Am J Obstet Gynecol. 173(1):175-180, 1995.
  • Saris, N.-E. L., et al. Magnesium: an update on physiological, clinical and analytical aspects. Clinica Chimica Acta. 294:1-26, 2000.
  • Serizawa N, Nishimuta M, Kodama N, Shimada M, Yoshitake Y, Hongu N, Ota M, Yano T. Salt Restriction Affects the Excretions of Minerals (Na, K, Ca, Mg, P and Zn) in the Second Voided Fasting Early Morning Urine. J Nutr Sci Vitaminol (Tokyo). 2019;65(2):142-147. doi: 10.3177/jnsv.65.142. PMID: 31061282.
  • Yamanaka R, Tabata S, Shindo Y, Hotta K, Suzuki K, Soga T, Oka K. Mitochondrial Mg(2+) homeostasis decides cellular energy metabolism and vulnerability to stress. Sci Rep. 2016 Jul 26;6:30027. doi: 10.1038/srep30027. PMID: 27458051; PMCID: PMC4960558.
  • Dmitrašinović G, Pešić V, Stanić D, Plećaš-Solarović B, Dajak M, Ignjatović S. ACTH, Cortisol and IL-6 Levels in Athletes following Magnesium Supplementation. J Med Biochem. 2016 Nov 2;35(4):375-384. doi: 10.1515/jomb-2016-0021. PMID: 28670189; PMCID: PMC5471632
  • Yu-Yahiro, J. A. Electrolytes and their relationship to normal and abnormal muscle function. Orthop Nurs. 13(5):38-40, 1994.
  • Brilla, L. R., et al. Effect of magnesium supplementation on strength training in humans. J Am Coll Nutr. 11(3):326-329, 1992.
  • Sato-Mito N et al. The midpoint of sleep is associated with dietary intake and dietary behavior among young Japanese women. Sleep Med. 12(3):289-94, 2011.
  • Saris, N.-E. L., et al. Magnesium: an update on physiological, clinical and analytical aspects. Clinica Chimica Acta. 294:1-26, 2000.
  • Huskisson E et al. The influence of micronutrients on cognitive function and performance. J Int Med Res. 35(1):1-19, 2007. Review.
  • Inna Slutsky et al. Enhancement of Learning and Memory by Elevating Brain Magnesium. Neuron. 65(2):165-77, 2010.
  • Arab A, Rafie N, Amani R, Shirani F. The Role of Magnesium in Sleep Health: a Systematic Review of Available Literature. Biol Trace Elem Res. 2023 Jan;201(1):121-128. doi: 10.1007/s12011-022-03162-1. Epub 2022 Feb 19. PMID: 35184264.

100

紅酒萃取物中發現的活性化合物的數量

30+

體內數萬億個細胞由 NAD 分子提供能量

300

鎂支持超過 300 種酵素系統

*這些陳述未經過美國食品藥物管理局評估。本產品無意作為診斷、治療、治癒或預防任何疾病之用。 

As Pycnogenol®. Pycnogenol is a registered trademark of Horphag Research Ltd. Use of this product may be protected by one or more U.S. patents and other international patents.

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