Cyt‑c Cancer Research Results

Cyt‑c, cyt-c Release into Cytosol: Click to Expand ⟱
Source:
Type:
Cytochrome c
** The term "release of cytochrome c" ** an increase in level for the cytosol.
Small hemeprotein found loosely associated with the inner membrane of the mitochondrion where it plays a critical role in cellular respiration. Cytochrome c is highly water-soluble, unlike other cytochromes. It is capable of undergoing oxidation and reduction as its iron atom converts between the ferrous and ferric forms, but does not bind oxygen. It also plays a major role in cell apoptosis.

The term "release of cytochrome c" refers to a critical step in the process of programmed cell death, also known as apoptosis.
In its new location—the cytosol—cytochrome c participates in the apoptotic signaling pathway by helping to form the apoptosome, which activates caspases that execute cell death.
Cytochrome c is a small protein normally located in the mitochondrial intermembrane space. Its primary role in healthy cells is to participate in the electron transport chain, a process that helps produce energy (ATP) through oxidative phosphorylation.
Mitochondrial outer membrane permeability leads to the release of cytochrome c from the mitochondria into the cytosol.
The release of cytochrome c is a pivotal event in apoptosis where cytochrome c moves from the mitochondria to the cytosol, initiating a chain reaction that leads to programmed cell death.

On the one hand, cytochrome c can promote cancer cell survival and proliferation by regulating the activity of various signaling pathways, such as the PI3K/AKT pathway. This can lead to increased cell growth and resistance to apoptosis, which are hallmarks of cancer.
On the other hand, cytochrome c can also induce apoptosis in cancer cells by interacting with other proteins, such as Apaf-1 and caspase-9. This can lead to the activation of the intrinsic apoptotic pathway, which can result in the death of cancer cells.
Overexpressed in Breast, Lung, Colon, and Prostrate.
Underexpressed in Ovarian, and Pancreatic.


Scientific Papers found: Click to Expand⟱
1740- VitD3,    Vitamin D and Cancer: An Historical Overview of the Epidemiology and Mechanisms
- Review, Var, NA
Risk↓, eff↑, eff↑, Risk↓, Risk↓, ChemoSen↑, RadioS↑, Cyt‑c↑, Casp3↑, Casp9↑, hTERT/TERT↓, eff↑, E-cadherin↑, CLDN2↑, ZO-1↑, Snail↓, Zeb1↓, Vim↓, VEGF↓, NK cell↑, Risk↓, eff↑,
1824- VitK2,    Vitamin K and its analogs: Potential avenues for prostate cancer management
- Review, Pca, NA
AntiCan↑, toxicity∅, Risk↓, Apoptosis↑, ROS↑, TumCCA↑, eff↑, DNAdam↑, MMP↓, Cyt‑c↑, pro‑Casp3↑, FasL↑, Fas↑, TumAuto↑, ChemoSen↑, RadioS↑,
1816- VitK2,    Role of Vitamin K in Selected Malignant Neoplasms in Women
- Review, Var, NA
TumCP↓, TumMeta↓, TumAuto↑, Apoptosis↑, Apoptosis↑, Casp3↑, Casp7↑, ROS↑, AR↓, EMT↓, Wnt↓, MMP↓, Cyt‑c↑, NF-kB↓, cycD1/CCND1↓, TumCCA↓,
1818- VitK2,    New insights on vitamin K biology with relevance to cancer
- Review, Var, NA
TumCG↓, ChemoSen↑, toxicity∅, OS↑, BMD↑, eff↑, MMP↓, ROS↑, eff↓, ERK↑, JNK↑, p38↑, Cyt‑c↑, Casp↑, ATP↓, lactateProd↑, AMPK↑, Rho↓, TumCG↓, BioAv↑, cardioP↑, Risk↓,
2285- VitK2,    New insights into vitamin K biology with relevance to cancer
- Review, Var, NA
Risk↓, AntiCan↑, eff↑, MMP↓, ROS↑, Cyt‑c↑, eff↓, SXR↑,
2279- VitK2,    Vitamin K2 Induces Mitochondria-Related Apoptosis in Human Bladder Cancer Cells via ROS and JNK/p38 MAPK Signal Pathways
- in-vitro, Bladder, T24/HTB-9 - in-vitro, Bladder, J82 - in-vitro, Nor, HEK293 - in-vitro, Nor, L02 - in-vivo, NA, NA
MMP↓, Cyt‑c↑, Casp3↑, p‑JNK↑, p‑p38↑, ROS↑, eff↓, tumCV↓, selectivity↑, *toxicity↓, TumVol↓,
1838- VitK3,  PDT,    Photodynamic Effects of Vitamin K3 on Cervical Carcinoma Cells Activating Mitochondrial Apoptosis Pathways
- in-vitro, Cerv, NA
eff↑, ROS↑, tumCV↓, TumCG↓, Apoptosis↑, cl‑Casp3↑, cl‑Casp9↑, Bcl-xL↑, Cyt‑c↑, Bcl-2↓,
7914- VT,    Vitexin induces apoptosis through mitochondrial pathway and PI3K/Akt/mTOR signaling in human non-small cell lung cancer A549 cells
- vitro+vivo, Lung, A549
tumCV↓, selectivity↑, Cyt‑c↑, MMP↓, p‑PI3K↓, p‑Akt↓, p‑mTOR↓, TumCG↓, mtDam↑, LDH↑, Bax:Bcl2↑, cl‑Casp3↑,

Showing Research Papers: 401 to 408 of 408
Prev Page 9 of 9

* indicates research on normal cells as opposed to diseased cells
Total Research Paper Matches: 408

Pathway results for Effect on Cancer / Diseased Cells:


Redox & Oxidative Stress(tgid=1)

ROS↑, 6,  

Mitochondria & Bioenergetics(tgid=3)

ATP↓, 1,   MMP↓, 6,   mtDam↑, 1,  

Core Metabolism/Glycolysis(tgid=4)

AMPK↑, 1,   lactateProd↑, 1,   LDH↑, 1,  

Cell Death(tgid=5)

p‑Akt↓, 1,   Apoptosis↑, 4,   Bax:Bcl2↑, 1,   Bcl-2↓, 1,   Bcl-xL↑, 1,   Casp↑, 1,   Casp3↑, 3,   cl‑Casp3↑, 2,   pro‑Casp3↑, 1,   Casp7↑, 1,   Casp9↑, 1,   cl‑Casp9↑, 1,   Cyt‑c↑, 8,   Fas↑, 1,   FasL↑, 1,   hTERT/TERT↓, 1,   JNK↑, 1,   p‑JNK↑, 1,   p38↑, 1,   p‑p38↑, 1,  

Transcription & Epigenetics(tgid=7)

tumCV↓, 3,  

Autophagy & Lysosomes(tgid=9)

TumAuto↑, 2,  

DNA Damage & Repair(tgid=10)

DNAdam↑, 1,  

Cell Cycle & Senescence(tgid=11)

cycD1/CCND1↓, 1,   TumCCA↓, 1,   TumCCA↑, 1,  

Proliferation, Differentiation & Cell State(tgid=12)

EMT↓, 1,   ERK↑, 1,   p‑mTOR↓, 1,   p‑PI3K↓, 1,   TumCG↓, 4,   Wnt↓, 1,  

Migration(tgid=13)

CLDN2↑, 1,   E-cadherin↑, 1,   Rho↓, 1,   Snail↓, 1,   TumCP↓, 1,   TumMeta↓, 1,   Vim↓, 1,   Zeb1↓, 1,   ZO-1↑, 1,  

Angiogenesis & Vasculature(tgid=14)

VEGF↓, 1,  

Immune & Inflammatory Signaling(tgid=16)

NF-kB↓, 1,   NK cell↑, 1,  

Hormonal & Nuclear Receptors(tgid=20)

AR↓, 1,   SXR↑, 1,  

Drug Metabolism & Resistance(tgid=21)

BioAv↑, 1,   ChemoSen↑, 3,   eff↓, 3,   eff↑, 8,   RadioS↑, 2,   selectivity↑, 2,  

Clinical Biomarkers(tgid=22)

AR↓, 1,   BMD↑, 1,   hTERT/TERT↓, 1,   LDH↑, 1,  

Functional Outcomes(tgid=23)

AntiCan↑, 2,   cardioP↑, 1,   OS↑, 1,   Risk↓, 7,   toxicity∅, 2,   TumVol↓, 1,  
Total Targets: 69

Pathway results for Effect on Normal Cells:


Functional Outcomes(tgid=23)

toxicity↓, 1,  
Total Targets: 1

Scientific Paper Hit Count for: Cyt‑c, cyt-c Release into Cytosol
16 Betulinic acid
15 Curcumin
15 Fisetin
14 Silver-NanoParticles
14 Baicalein
14 Sulforaphane (mainly Broccoli)
12 Apigenin (mainly Parsley)
12 Quercetin
11 Thymoquinone
10 Berberine
10 Emodin
9 Allicin (mainly Garlic)
9 Capsaicin
9 Phenethyl isothiocyanate
8 Carvacrol
8 Chrysin
7 Honokiol
7 Magnetic Fields
6 EGCG (Epigallocatechin Gallate)
6 Eugenol
6 Gambogic Acid
6 Juglone
6 Luteolin
6 Silymarin (Milk Thistle) silibinin
5 Artemisinin
5 Graviola
5 Hibiscus sabdariffa
5 isoorientin
5 Resveratrol
5 Vitamin K2
4 3-bromopyruvate
4 Cisplatin
4 Boswellia (frankincense)
4 α-Bisabolol / Chamomile oil
4 Thymol-Thymus vulgaris
4 Magnolol
4 Nimbolide
4 Shikonin
4 Selenite (Sodium)
3 Ashwagandha(Withaferin A)
3 Photodynamic Therapy
3 Crocetin
3 Dichloroacetate
3 D-limonene
3 Dandelion Root
3 Ellagic acid
3 Formononetin
3 Garcinol
3 Ginkgetin
3 Indole-3-carbinol
3 Lycopene
3 Magnetic Field Rotating
3 Propolis -bee glue
3 Rosmarinic acid
3 Spermidine
2 Chemotherapy
2 Celastrol
2 Citric Acid
2 Copper and Cu NanoParticles
2 Ursolic acid
2 Cynaropicrin
2 salinomycin
2 Diclofenac
2 Electrical Pulses
2 Eurycomanone
2 Radiotherapy/Radiation
2 Evodiamine
2 Gossypol/AT-101
2 Hyperthermia
2 HydroxyTyrosol
2 Hyperoside
2 Isoliquiritigenin
2 Phenylbutyrate
2 Piperine
2 Piperlongumine
2 Plumbagin
2 Aflavin-3,3′-digallate
1 1,8-Cineole
1 5-fluorouracil
1 Coenzyme Q10
1 Astragalus
1 chemodynamic therapy
1 SonoDynamic Therapy UltraSound
1 Camptothecin
1 Gemcitabine (Gemzar)
1 Ajoene (compound of Garlic)
1 Alpha-Lipoic-Acid
1 alpha Linolenic acid
1 Andrographis
1 Metformin
1 2-DeoxyGlucose
1 Biochanin A
1 Bufalin/Huachansu
1 Bromelain
1 Boron
1 Butyrate
1 Cat’s Claw
1 chaetocin
1 Chlorophyllin
1 Cichoric acid / Chicoric acid
1 methotrexate
1 Cinnamon
1 Cucurbitacin
1 Dihydrocaffeic Acid
1 Fenbendazole
1 Fucoidan
1 Shilajit/Fulvic Acid
1 Gallic acid
1 Ginkgo biloba
1 Ginkgolide B
1 Hydroxycinnamic-acid
1 Baicalin
1 Isobavachalcone
1 iodine
1 IP6 (Inositol 1,2,3,4,5,6-hexakisphosphate)
1 Isovitexin
1 Methylene blue
1 Iron
1 Methylglyoxal
1 Pterostilbene
1 Kaempferol
1 Paclitaxel/Taxol
1 Rauwolfia serpentina/Indian Snakeroot
1 α-Santalol/Sandalwood oil
1 Selenium
1 chitosan
1 Selenium NanoParticles
1 Docetaxel
1 Osimertinib
1 Adagrasib
1 Terpinen-4-ol / Tea Tree Oil
1 Taurine
1 Urolithin
1 Vitamin C (Ascorbic Acid)
1 Vitamin D3
1 VitK3,menadione
1 Vitexin
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:%  prod#:%  Target#:77  State#:%  Dir#:%
wNotes=0 sortOrder:rid,rpid

 

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