NADH Cancer Research Results

NADH, Nicotinamide Adenine Dinucleotide: Click to Expand ⟱
Source:
Type:
NADH is the reduced form of NAD⁺, meaning it has accepted electrons (and usually a proton) during metabolic reactions. When NAD⁺ accepts electrons (typically during metabolic processes like glycolysis, the citric acid cycle, and beta-oxidation), it becomes NADH.
-By influencing the balance between NADH and NAD⁺, ENOX2 might shift the cellular redox state. An imbalance can lead to increased oxidative stress or changes in ROS signaling pathways.

• The ratio between NADH and NAD⁺ is a key indicator of a cell’s metabolic state.
• Some studies have suggested that abnormal NADH metabolism or shifts in the NADH/NAD⁺ ratio can be correlated with tumor aggressiveness or response to therapy.
• For example, in certain cancers, a higher NADH/NAD⁺ ratio may be associated with more aggressive behavior, resistance to apoptosis, or poor prognosis.


Scientific Papers found: Click to Expand⟱
175- Api,    Apigenin up-regulates transgelin and inhibits invasion and migration of colorectal cancer through decreased phosphorylation of AKT
- vitro+vivo, CRC, SW480 - vitro+vivo, CRC, DLD1 - vitro+vivo, CRC, LS174T
MMP↓, p‑Akt↓, TumCP↓, TumCI↓, NADH↓, HSP90↓, other↑, talin?,
7972- BUL,    Mode of action of bullatacin, a potent antitumor acetogenin: inhibition of NADH oxidase activity of HeLa and HL-60, but not liver, plasma membranes
- vitro+vivo, Cerv, HeLa - vitro+vivo, AML, HL-60
NADH↓, selectivity↑,
7974- BUL,    Selective action of acetogenin mitochondrial complex I inhibitors
- in-vitro, Colon, SW480
compI↓, NADH↓,
5833- CAP,    Capsaicin: From Plants to a Cancer-Suppressing Agent
- Review, Var, NA
chemoPv↑, TumCCA↑, Apoptosis↑, ROS↑, MMP↓, Ca+2↑, JNK↑, Casp3↑, NADH↓, CDK2↓, CDK4↓, CDK6↓, P53↑,
5858- CAP,    Capsaicin as a Microbiome Modulator: Metabolic Interactions and Implications for Host Health
- Review, Nor, NA - Review, AD, NA
*BBB↓, *GutMicro↑, Obesity↓, *Inflam↓, *AntiCan↑, *TRPV1↑, *Ca+2↑, *antiOx↑, *cardioP↑, *BioAv↓, *Half-Life↓, *BioAv↝, *BioAv↑, *neuroP↑, Apoptosis↑, p38↑, ROS↑, MMP↓, MPT↑, Cyt‑c↑, Casp↑, TRIB3↑, NADH↓, SIRT1↓, TumCG↓, TumCMig↓, TOP1↓, TOP2↓, β-catenin/ZEB1↓, *ROS↓, *Aβ↓,
1586- Citrate,    Extracellular Citrate Is a Trojan Horse for Cancer Cells
- in-vitro, Liver, HepG2
Dose?, ac‑H4↓, lipidDe↓, ACLY↓, selectivity↑, *ACLY∅, Glycolysis↓, NADH↓, OAA↑, other↑,
6223- CUR,    Curcumin Rewires the Tumor Metabolic Landscape: Mechanisms and Clinical Prospects
- Review, Var, NA
Ferroptosis↑, GutMicro↑, Akt↓, mTOR↓, NF-kB↓, Wnt↓, β-catenin/ZEB1↓, STAT3↓, TumCP↓, TumCI↓, TumMeta↓, AMPK↑, P53↑, NRF2↑, TumCCA↑, Apoptosis↑, Casp↑, GPx4↓, DNMTs↓, HDAC↓, VEGF↓, Imm↑, NK cell↑, Warburg↓, Hif1a↓, HK2↓, PKM2↓, LDHA↓, GLUT1↓, MCT1↓, AMPK↑, FASN↓, SCD1↓, GLS↓, Apoptosis↑, ETC↓, MMP↓, ROS↑, lipid-P↑, ChemoSen↑, PDK1 / PDPK1↓, Beclin-1/ATG6↓, ATP↓, Glycolysis↓, GlucoseCon↓, lactateProd↑, MMPs↓, GSH↓, G6PD↓, OXPHOS↓, SREBP2↓, COX2/PTGS2↓, AP-1↓, NADH↓, NRF2↑, HO-1↑, Iron↑, MDA↑, *ROS↓, *Inflam↓,
7382- MFrot,    Inhibition of mitochondrial NADH:ubiquinone oxidoreductase by spinning oscillating magnetic fields causes toxicity in cancer cells
- vitro+vivo, GBM, NA
ROS↑, compI↓, DNAdam↑, TumCCA↑, Casp↓, Apoptosis↑, mt-NADH↓, selectivity?, *toxicity?,
1891- MGO,    Methylglyoxal induces mitochondria-dependent apoptosis in sarcoma
- in-vitro, SCC, NA
NADH↓, MMP↓, Cyt‑c↑, selectivity↑, Apoptosis↑, ROS↑, ATP↓,

Showing Research Papers: 1 to 9 of 9

* indicates research on normal cells as opposed to diseased cells
Total Research Paper Matches: 9

Pathway results for Effect on Cancer / Diseased Cells:


Redox & Oxidative Stress(tgid=1) ⓘ

compI↓, 2,   Ferroptosis↑, 1,   GPx4↓, 1,   GSH↓, 1,   HO-1↑, 1,   Iron↑, 1,   lipid-P↑, 1,   lipidDe↓, 1,   MDA↑, 1,   NADH↓, 8,   mt-NADH↓, 1,   NRF2↑, 2,   OXPHOS↓, 1,   ROS↑, 5,  

Mitochondria & Bioenergetics(tgid=3) ⓘ

ATP↓, 2,   ETC↓, 1,   MMP↓, 5,   MPT↑, 1,  

Core Metabolism/Glycolysis(tgid=4) ⓘ

ACLY↓, 1,   AMPK↑, 2,   FASN↓, 1,   G6PD↓, 1,   GLS↓, 1,   GlucoseCon↓, 1,   Glycolysis↓, 2,   HK2↓, 1,   lactateProd↑, 1,   LDHA↓, 1,   OAA↑, 1,   PDK1 / PDPK1↓, 1,   PKM2↓, 1,   SCD1↓, 1,   SIRT1↓, 1,   SREBP2↓, 1,   Warburg↓, 1,  

Cell Death(tgid=5) ⓘ

Akt↓, 1,   p‑Akt↓, 1,   Apoptosis↑, 6,   Casp↓, 1,   Casp↑, 2,   Casp3↑, 1,   Cyt‑c↑, 2,   Ferroptosis↑, 1,   JNK↑, 1,   MCT1↓, 1,   p38↑, 1,  

Transcription & Epigenetics(tgid=7) ⓘ

ac‑H4↓, 1,   other↑, 2,  

Protein Folding & ER Stress(tgid=8) ⓘ

HSP90↓, 1,  

Autophagy & Lysosomes(tgid=9) ⓘ

Beclin-1/ATG6↓, 1,  

DNA Damage & Repair(tgid=10) ⓘ

DNAdam↑, 1,   DNMTs↓, 1,   P53↑, 2,  

Cell Cycle & Senescence(tgid=11) ⓘ

CDK2↓, 1,   CDK4↓, 1,   TumCCA↑, 3,  

Proliferation, Differentiation & Cell State(tgid=12) ⓘ

HDAC↓, 1,   mTOR↓, 1,   STAT3↓, 1,   TOP1↓, 1,   TOP2↓, 1,   TumCG↓, 1,   Wnt↓, 1,  

Migration(tgid=13) ⓘ

AP-1↓, 1,   Ca+2↑, 1,   MMPs↓, 1,   talin?, 1,   TRIB3↑, 1,   TumCI↓, 2,   TumCMig↓, 1,   TumCP↓, 2,   TumMeta↓, 1,   β-catenin/ZEB1↓, 2,  

Angiogenesis & Vasculature(tgid=14) ⓘ

Hif1a↓, 1,   VEGF↓, 1,  

Barriers & Transport(tgid=15) ⓘ

GLUT1↓, 1,  

Immune & Inflammatory Signaling(tgid=16) ⓘ

COX2/PTGS2↓, 1,   Imm↑, 1,   NF-kB↓, 1,   NK cell↑, 1,  

Hormonal & Nuclear Receptors(tgid=20) ⓘ

CDK6↓, 1,  

Drug Metabolism & Resistance(tgid=21) ⓘ

ChemoSen↑, 1,   Dose?, 1,   selectivity?, 1,   selectivity↑, 3,  

Clinical Biomarkers(tgid=22) ⓘ

GutMicro↑, 1,   TRIB3↑, 1,  

Functional Outcomes(tgid=23) ⓘ

chemoPv↑, 1,   Obesity↓, 1,  
Total Targets: 89

Pathway results for Effect on Normal Cells:


Redox & Oxidative Stress(tgid=1) ⓘ

antiOx↑, 1,   ROS↓, 2,  

Core Metabolism/Glycolysis(tgid=4) ⓘ

ACLY∅, 1,  

Cell Death(tgid=5) ⓘ

TRPV1↑, 1,  

Migration(tgid=13) ⓘ

Ca+2↑, 1,  

Barriers & Transport(tgid=15) ⓘ

BBB↓, 1,  

Immune & Inflammatory Signaling(tgid=16) ⓘ

Inflam↓, 2,  

Protein Aggregation(tgid=19) ⓘ

Aβ↓, 1,  

Drug Metabolism & Resistance(tgid=21) ⓘ

BioAv↓, 1,   BioAv↑, 1,   BioAv↝, 1,   Half-Life↓, 1,  

Clinical Biomarkers(tgid=22) ⓘ

GutMicro↑, 1,  

Functional Outcomes(tgid=23) ⓘ

AntiCan↑, 1,   cardioP↑, 1,   neuroP↑, 1,   toxicity?, 1,  
Total Targets: 17

Scientific Paper Hit Count for: NADH, Nicotinamide Adenine Dinucleotide
2 Bullatacin
2 Capsaicin
1 Apigenin (mainly Parsley)
1 Citric Acid
1 Curcumin
1 Magnetic Field Rotating
1 Methylglyoxal
Query results interpretion may depend on "conditions" listed in the research papers.
Such Conditions may include : 
  -low or high Dose
  -format for product, such as nano of lipid formations
  -different cell line effects
  -synergies with other products 
  -if effect was for normal or cancerous cells
Filter Conditions: Pro/AntiFlg:%  IllCat:%  CanType:%  Cells:0  prod#:%  Target#:1120  State#:%  Dir#:1
wNotes=0 sortOrder:rid,rpid

 

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