RiboCeine

有效促进谷胱甘肽生成背后的突破性分子

科学家与医生发现谷胱甘肽已有数十年,谷胱甘肽由人体自行制造,主要功能在保护细胞、清除毒素。然而,在氧化压力下,人体内谷胱甘肽含量会降低,此外随着年龄逼近40,身体制造谷胱甘肽的能力也随之减弱,年龄愈大,制造能力就越差。多年来,研究医学的科学家一直想要找出能够有效提升人体谷胱甘肽含量的方法,之前N-乙酰半胱氨酸 (NAC) 是唯一能够增加人体半胱氨酸供给的唯一补充品,目的在促进谷胱甘肽生成。但赫伯特‧永泽博士开发出一种革命性分子,那就是RiboCeine,可以有效将半胱氨酸运送到细胞,以便人体自行制造谷胱甘肽。也因此,Max International获得美国专利。

经科学证明之专利技术

RiboCeine是一种独特分子,结合了核糖 (Ribose) 与半胱氨酸 (Cysteine) 这两种人体自行生成的营养物。RiboCeine一经摄取即为人体所吸收,进入血液中,将核糖与半胱氨酸运送到细胞,促进谷胱甘肽生成;其所提供的核糖,是三磷酸腺苷 (ATP) 的一部分,为人体天然养分、能量来源。与其他提升谷胱甘肽的方式相比,RiboCeine经测试证明成效明显高出许多。美国国家卫生研究院 (National Institutes of Health, NIH) 或其他科学基金会补助了超过45篇以RiboCeine为主题的科学研究,并刊登在同侪审查期刊当中。

有关核糖–半胱氨酸 (Ribose-Cysteine) 之影响的独立研究

RiboCeine™的独立研究

(Rib-Cys, Ribose-Cysteine, D-Ribose-L-Cysteine)

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Roberts, J.C.; Francetic, D.J. 带L1210细胞之CDF1小鼠施予前驱药物L-半胱氨酸―RibCys―提升各器官谷胱甘肽浓度之时程Toxicology Letters期刊1991, 59, 245-251.

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Lucus, A.M.; Henning G.; Dominick, P.K.; Whiteley, H.E.; Roberts, J.C.; Cohen, S.D. 使用核糖半胱氨酸处理对乙酰氨基酚诱发的肝脏与肾脏毒性毒物病理学2000, 28(5), 697-704.

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Amponsah S.K., N’guessan B.B, Akandawen, A.A., Agboli S.Y., Danso, E.A., Opuni K.F.M., Asiedu-Gyekye I.J., Appiah-Opong, R. Cellgevity补充品对特定小鼠肝脏细胞色素P450酵素活性与癫通长效膜衣锭药物动力学参数之影响实证补充与另类疗法期刊2020 (7月3日)出版,文章编号:7956493,8页。

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Okoh, L., Ajayi, A.M., Ben-Azu, B., Akinluyi, E.T., Emokpae, O., Umukoro, S. 观察处于无法预测慢性轻微压力下之小鼠在抑制氧负离子基发炎反应与提升凋亡蛋白酶-3作用后D-核糖-L-半胱氨酸的生理调节作用分子生物学报告期刊2020 47:7709-7722.

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Ogunlade, B., Gbotolorun S.C., Ogunlade, A.A. D-核糖-L-半胱氨酸调节成年雌性Wistar大鼠中乙酸铅诱导的血液生化改变、荷尔蒙失衡和卵巢毒性药物与化学物质毒性期刊2020年11月7日;1-8。

  1. Ogunlade, B., Fidelis, O.P., Afolayan, O.O., Agie, J.A. Neurotherapeutic and antioxidant response of D-Ribose-L-Cysteine nutritional dietary supplements on Alzheimer-type hippocampal neurodegeneration induced by cuprizone in adult male wistar rate model. Food and Chemical Toxicology. November 11, 2020; 1-9.

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