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基于15年研究经验看瓦伯格效应的生化起源:一种新的循证观点(专家意见文章)

Biochemical Origin of the Warburg Effect in Light of 15 Years of Research Experience: A Novel Evidence-Based View (An Expert Opinion Article).

作者信息

El Sayed Salah Mohamed

机构信息

Department of Clinical Biochemistry & Molecular Medicine, Taibah College of Medicine, Taibah University, Al-Madinah Al-Munawwarah, Saudi Arabia.

Department of Medical Biochemistry, Faculty of Medicine, Sohag University, Sohag, Egypt.

出版信息

Onco Targets Ther. 2023 Mar 5;16:143-155. doi: 10.2147/OTT.S397593. eCollection 2023.

Abstract

Cancer cells strongly upregulate glucose uptake and glycolysis to produce vital biomolecules for cancer cell survival, proliferation, and metastasis as ATP, lipids, proteins, nucleotides, and lactate. The Warburg effect is tumours' unique glucose oxidation to give lactate (not pyruvate) even in the presence of oxygen. Nicotinamide adenine dinucleotide (NAD/NADH.H) is used in glycolysis via glyceraldehyde-3-phosphate dehydrogenase (GAPDH) and lactate dehydrogenase (LDH). Both catalyse reversible biochemical reactions to produce 1,3-diphosphoglycerate and lactate, respectively. In this expert opinion and based on published evidence, the author suggests that: "In transformed cells and hyperglycolytic cancer cells, the Warburg effect (permanent conversion of pyruvate to lactate) occurs secondary to a vicious cycle and a closed circuit between GAPDH and LDH (reaction of carcinogenesis) causing increased endogenous oxidative stress and subsequent carcinogenesis. Mitochondrial defects in cancer cells cause hyperglycolysis resulting in NADH.H accumulation (produced during GAPDH step) that obligatorily drives LDH to become an irreversible reaction in the direction of lactate formation (Warburg effect) but not pyruvate formation. Likewise, LDH oxidizes NADH.H producing excessive NAD that secondarily drives GAPDH reaction to be irreversible to produce NADH.H and so on. Pyruvate is an antioxidant while lactate is pro-oxidant, causing increased endogenous oxidative stress in cancer cells, tumour's hypoxia and obligatory hyperglycolysis with NADH.H overproduction (GAPDH step) to be consumed in the LDH step for lactate production and NAD generation (utilized by GAPDH) and so on". This confirms Warburg's origin of cancer cells. Best anticancer applications based on this hypothesis are: breaking this closed vicious circle using siRNA to target GAPDH and LDH, avoiding strong oxidants (as many cancer chemotherapeutics), and using strong antioxidants for causing antioxidant-oxidant antagonism or antioxidant-lactate antagonism to inhibit the Warburg effect. Strong natural antioxidants of prophetic medicine (related to Prophet Muhammad peace be upon him) such as Zamzam water, , costus, Ajwa date fruit, olive oil, Al-hijamah and natural honey are strongly recommended to prevent and antagonize the Warburg effect.

摘要

癌细胞强烈上调葡萄糖摄取和糖酵解,以产生三磷酸腺苷(ATP)、脂质、蛋白质、核苷酸和乳酸等重要生物分子,供癌细胞存活、增殖和转移。瓦伯格效应是指肿瘤即使在有氧的情况下,也会将葡萄糖独特地氧化为乳酸(而非丙酮酸)。烟酰胺腺嘌呤二核苷酸(NAD/NADH.H)通过甘油醛-3-磷酸脱氢酶(GAPDH)和乳酸脱氢酶(LDH)参与糖酵解。二者分别催化可逆的生化反应,产生1,3-二磷酸甘油酸和乳酸。基于已发表的证据,本专家意见的作者认为:“在转化细胞和高糖酵解癌细胞中,瓦伯格效应(丙酮酸向乳酸的永久转化)继发于GAPDH和LDH之间的恶性循环和闭合回路(致癌反应),导致内源性氧化应激增加及随后的致癌作用。癌细胞中的线粒体缺陷导致高糖酵解,从而使NADH.H积累(在GAPDH步骤中产生),这必然驱使LDH朝着乳酸形成(瓦伯格效应)而非丙酮酸形成的方向发生不可逆反应。同样,LDH氧化NADH.H产生过量的NAD,继而驱使GAPDH反应不可逆地产生NADH.H,如此循环往复。丙酮酸是一种抗氧化剂,而乳酸是促氧化剂,会导致癌细胞内源性氧化应激增加、肿瘤缺氧以及NADH.H过量产生(GAPDH步骤),后者在LDH步骤中被消耗以产生乳酸和NAD(供GAPDH利用)等”。这证实了癌细胞的瓦伯格起源。基于这一假说的最佳抗癌应用包括:使用小干扰RNA(siRNA)靶向GAPDH和LDH来打破这个闭合的恶性循环,避免使用强氧化剂(如许多癌症化疗药物),并使用强抗氧化剂引发抗氧化剂-氧化剂拮抗或抗氧化剂-乳酸拮抗,以抑制瓦伯格效应。强烈推荐具有预言性医学特性的强天然抗氧化剂(与先知穆罕默德愿主福安之相关),如渗渗泉水、木香、阿久哇枣果、橄榄油、拔罐和天然蜂蜜,来预防和拮抗瓦伯格效应。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/24e0/9997657/bc6f48093c85/OTT-16-143-g0001.jpg

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