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LDH is a general term that refers to the enzyme that catalyzes the interconversion of lactate and pyruvate. LDH is a tetrameric enzyme, meaning it is composed of four subunits. LDH refers to the enzyme as a whole, while LDHA specifically refers to the M subunit. Elevated LDHA levels are often associated with poor prognosis and aggressive tumor behavior, similar to elevated LDH levels. However, it's worth noting that some studies have shown that LDHA is a more specific and sensitive biomarker for cancer than total LDH, as it is more closely associated with the Warburg effect and cancer metabolism. Dysregulated LDH activity contributes significantly to cancer development, promoting the Warburg effect (Chen et al., 2007), which involves increased glucose uptake and lactate production, even in the presence of oxygen, to meet the energy demands of rapidly proliferating cancer cells (Warburg and Minami, 1923; Dai et al., 2016b). LDHA overexpression favors pyruvate to lactate conversion, leading to tumor microenvironment acidification and aiding cancer progression and metastasis. Inhibitors: Flavonoids, a group of polyphenols abundant in fruit, vegetables, and medicinal plants, function as LDH inhibitors. • Galloflavin: A flavonoid compound found in the plant Galphimia gracilis, which has been shown to inhibit LDH and have anti-cancer activity. • Fisetin: A flavonoid compound found in various fruits and vegetables, which has been shown to inhibit LDH and have anti-cancer activity. • Quercetin: A flavonoid compound found in various fruits and vegetables, which has been shown to inhibit LDH and have anti-cancer activity. • Kaempferol: A flavonoid compound found in various fruits and vegetables, which has been shown to inhibit LDH and have anti-cancer activity. • Resveratrol: A polyphenol compound found in grapes and other plants, which has been shown to inhibit LDH and have anti-cancer activity. • Curcumin: A polyphenol compound found in turmeric, which has been shown to inhibit LDH and have anti-cancer activity. • Berberine: A compound found in the plant Berberis, which has been shown to inhibit LDH and have anti-cancer activity. • Honokiol: A lignan compound found in the plant Magnolia, which has been shown to inhibit LDH and have anti-cancer activity. • Silibinin: A flavonoid compound found in milk thistle, which has been shown to inhibit LDH and have anti-cancer activity. Others:Ursolic acid, Oleanolic acid, Limonin, Allicin (garlic), Taurine |
1340- | 3BP, | Safety and outcome of treatment of metastatic melanoma using 3-bromopyruvate: a concise literature review and case study |
- | Review, | NA, | NA |
3452- | 5-ALA, | 5-ALA Is a Potent Lactate Dehydrogenase Inhibitor but Not a Substrate: Implications for Cell Glycolysis and New Avenues in 5-ALA-Mediated Anticancer Action |
- | in-vitro, | GBM, | T98G | - | in-vitro, | GBM, | LN-18 | - | in-vitro, | GBM, | U87MG |
- | in-vivo, | AD, | NA |
2656- | AL, | Allicin Protects PC12 Cells Against 6-OHDA-Induced Oxidative Stress and Mitochondrial Dysfunction via Regulating Mitochondrial Dynamics |
- | in-vitro, | Park, | PC12 |
2660- | AL, | Allicin: A review of its important pharmacological activities |
- | Review, | AD, | NA | - | Review, | Var, | NA | - | Review, | Park, | NA | - | Review, | Stroke, | NA |
3451- | ALA, | Alpha-lipoic acid ameliorates H2O2-induced human vein endothelial cells injury via suppression of inflammation and oxidative stress |
- | in-vitro, | Nor, | HUVECs |
2324- | ART/DHA, | Research Progress of Warburg Effect in Hepatocellular Carcinoma |
- | Review, | Var, | NA |
3675- | Ash, | Ashwagandha (Withania somnifera) Reverses β-Amyloid1-42 Induced Toxicity in Human Neuronal Cells: Implications in HIV-Associated Neurocognitive Disorders (HAND) |
3166- | Ash, | Exploring the Multifaceted Therapeutic Potential of Withaferin A and Its Derivatives |
- | Review, | Var, | NA |
1092- | BBR, | Berberine as a Potential Anticancer Agent: A Comprehensive Review |
- | Review, | NA, | NA |
2710- | BBR, | Berberine inhibits the Warburg effect through TET3/miR-145/HK2 pathways in ovarian cancer cells |
- | in-vitro, | Ovarian, | SKOV3 |
2760- | BetA, | A Review on Preparation of Betulinic Acid and Its Biological Activities |
- | Review, | Var, | NA | - | Review, | Stroke, | NA |
2771- | BetA, | Cardioprotective Effect of Betulinic Acid on Myocardial Ischemia Reperfusion Injury in Rats |
- | in-vivo, | Nor, | NA | - | in-vivo, | Stroke, | NA |
- | in-vitro, | Cerv, | SiHa |
2785- | CHr, | Emerging cellular and molecular mechanisms underlying anticancer indications of chrysin |
- | Review, | Var, | NA |
945- | Croc, | Characterization of the Saffron Derivative Crocetin as an Inhibitor of Human Lactate Dehydrogenase 5 in the Antiglycolytic Approach against Cancer |
- | in-vitro, | Lung, | A549 | - | in-vitro, | Cerv, | HeLa |
2818- | CUR, | Novel Insight to Neuroprotective Potential of Curcumin: A Mechanistic Review of Possible Involvement of Mitochondrial Biogenesis and PI3/Akt/ GSK3 or PI3/Akt/CREB/BDNF Signaling Pathways |
- | Review, | AD, | NA |
951- | DHA, | Docosahexaenoic Acid Attenuates Breast Cancer Cell Metabolism and the Warburg Phenotype by Targeting Bioenergetic Function |
- | in-vitro, | BC, | BT474 | - | in-vitro, | BC, | MDA-MB-231 | - | in-vitro, | Nor, | MCF10 |
1621- | EA, | The multifaceted mechanisms of ellagic acid in the treatment of tumors: State-of-the-art |
- | Review, | Var, | NA |
1606- | EA, | Ellagic acid inhibits proliferation and induced apoptosis via the Akt signaling pathway in HCT-15 colon adenocarcinoma cells |
- | in-vitro, | Colon, | HCT15 |
1516- | EGCG, | Epigallocatechin Gallate (EGCG): Pharmacological Properties, Biological Activities and Therapeutic Potential |
- | Review, | NA, | NA |
1654- | FA, | Molecular mechanism of ferulic acid and its derivatives in tumor progression |
- | Review, | Var, | NA |
987- | GA, | Targeting Aerobic Glycolysis: Gallic Acid as Promising Anticancer Drug |
- | in-vitro, | GBM, | AMGM | - | in-vitro, | Cerv, | HeLa | - | in-vitro, | BC, | MCF-7 |
935- | Gallo, | Galloflavin, a new lactate dehydrogenase inhibitor, induces the death of human breast cancer cells with different glycolytic attitude by affecting distinct signaling pathways |
- | in-vitro, | BC, | MCF-7 | - | in-vitro, | BC, | MDA-MB-231 |
934- | Gallo, | Galloflavin (CAS 568-80-9): a novel inhibitor of lactate dehydrogenase |
- | Analysis, | NA, | NA |
- | in-vitro, | CRC, | HT-29 | - | in-vitro, | Nor, | CCD841 |
854- | Gra, | SNP, | Green Synthesis of Silver Nanoparticles Using Annona muricata Extract as an Inducer of Apoptosis in Cancer Cells and Inhibitor for NLRP3 Inflammasome via Enhanced Autophagy |
- | vitro+vivo, | AML, | THP1 | - | in-vitro, | AML, | AMJ13 | - | vitro+vivo, | lymphoma, | HBL |
2901- | HNK, | doxoR, | Honokiol protects against doxorubicin cardiotoxicity via improving mitochondrial function in mouse hearts |
- | in-vivo, | Nor, | NA |
2531- | M-Blu, | Anticancer activity of methylene blue via inhibition of heat shock protein 70 |
- | in-vitro, | Lung, | A549 | - | in-vivo, | NA, | NA |
3475- | MF, | A Pulsed Electromagnetic Field Protects against Glutamate-Induced Excitotoxicity by Modulating the Endocannabinoid System in HT22 Cells |
- | in-vitro, | Nor, | HT22 | - | Review, | AD, | NA |
2042- | PB, | Phenylbutyrate, a histone deacetylase inhibitor, protects against Adriamycin-induced cardiac injury |
- | in-vitro, | Nor, | NA |
1672- | PBG, | The Potential Use of Propolis as an Adjunctive Therapy in Breast Cancers |
- | Review, | BC, | NA |
1663- | PBG, | Propolis and Their Active Constituents for Chronic Diseases |
- | Review, | Var, | NA |
1682- | PBG, | Honey, Propolis, and Royal Jelly: A Comprehensive Review of Their Biological Actions and Health Benefits |
- | Review, | Var, | NA |
2972- | PL, | Piperlongumine Is an NLRP3 Inhibitor With Anti-inflammatory Activity |
- | in-vitro, | AML, | THP1 |
3611- | QC, | Quercetin and vitamin C supplementation: effects on lipid profile and muscle damage in male athletes |
- | Trial, | Nor, | NA |
98- | QC, | Quercetin postconditioning attenuates myocardial ischemia/reperfusion injury in rats through the PI3K/Akt pathway |
- | in-vivo, | Stroke, | NA |
2332- | RES, | Resveratrol’s Anti-Cancer Effects through the Modulation of Tumor Glucose Metabolism |
- | Review, | Var, | NA |
323- | Sal, | SNP, | Combination of salinomycin and silver nanoparticles enhances apoptosis and autophagy in human ovarian cancer cells: an effective anticancer therapy |
- | in-vitro, | BC, | MDA-MB-231 | - | in-vitro, | Ovarian, | A2780S |
3184- | SFN, | The Integrative Role of Sulforaphane in Preventing Inflammation, Oxidative Stress and Fatigue: A Review of a Potential Protective Phytochemical |
- | Review, | Nor, | NA |
3330- | SIL, | Mechanistic Insights into the Pharmacological Significance of Silymarin |
- | Review, | Var, | NA |
1284- | SK, | Shikonin induces ferroptosis in multiple myeloma via GOT1-mediated ferritinophagy |
- | in-vitro, | Melanoma, | RPMI-8226 | - | in-vitro, | Melanoma, | U266 |
327- | SNP, | MS-275, | Combination Effect of Silver Nanoparticles and Histone Deacetylases Inhibitor in Human Alveolar Basal Epithelial Cells |
- | in-vitro, | Lung, | A549 |
384- | SNP, | Dual functions of silver nanoparticles in F9 teratocarcinoma stem cells, a suitable model for evaluating cytotoxicity- and differentiation-mediated cancer therapy |
- | in-vitro, | Testi, | F9 |
368- | SNP, | In vitro evaluation of silver nanoparticles on human tumoral and normal cells |
- | in-vitro, | Var, | NA |
373- | SNP, | Cytotoxic Potential and Molecular Pathway Analysis of Silver Nanoparticles in Human Colon Cancer Cells HCT116 |
- | in-vitro, | Colon, | HCT116 |
376- | SNP, | Antitumor activity of colloidal silver on MCF-7 human breast cancer cells |
- | in-vitro, | BC, | MCF-7 |
3953- | Taur, | Role of taurine in regulation of intracellular calcium level and neuroprotective function in cultured neurons |
- | in-vitro, | AD, | NA |
3955- | Taur, | Mechanism of neuroprotective function of taurine |
- | in-vitro, | NA, | NA |
3398- | TQ, | 5-FU, | Impact of thymoquinone on the Nrf2/HO-1 and MAPK/NF-κB axis in mitigating 5-fluorouracil-induced acute kidney injury in vivo |
- | in-vivo, | Nor, | NA |
3559- | TQ, | Molecular signaling pathway targeted therapeutic potential of thymoquinone in Alzheimer’s disease |
- | Review, | AD, | NA | - | Review, | Var, | NA |
3140- | VitC, | Vitamin-C-dependent downregulation of the citrate metabolism pathway potentiates pancreatic ductal adenocarcinoma growth arrest |
- | in-vitro, | PC, | MIA PaCa-2 | - | in-vitro, | Nor, | HEK293 |
3144- | VitC, | Some characteristics of Rabbit muscle phosphofructokinase-1 inhibition by ascorbate |
- | in-vitro, | Nor, | NA |
2621- | Wog, | Natural compounds targeting glycolysis as promising therapeutics for gastric cancer: A review |
- | Review, | Var, | NA |
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