Inflam Cancer Research Results

Inflam, inflammation: Click to Expand ⟱
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Cancer and inflammation are closely linked, with chronic inflammation contributing to the development and progression of cancer. Various inflammatory mediators and cells are involved in this process.


Scientific Papers found: Click to Expand⟱
3015- RosA,  Rad,    Rosmarinic Acid Prevents Radiation-Induced Pulmonary Fibrosis Through Attenuation of ROS/MYPT1/TGFβ1 Signaling Via miR-19b-3p
- in-vivo, Nor, IMR90
*radioP↑, *Inflam↓, *ROS↓, *NF-kB↓, *Rho↓, *ROCK1↓, *other↓,
3018- RosA,    Rosemary (Rosmarinus officinalis L.) polyphenols and inflammatory bowel diseases: Major phytochemicals, functional properties, and health effects
- Review, IBD, NA
*Inflam↓, *GutMicro↑, *antiOx↑, *NF-kB↓, *NLRP3↓, *STAT3↓, *NRF2↑,
3023- RosA,    Rosmarinic acid alleviates septic acute respiratory distress syndrome in mice by suppressing the bronchial epithelial RAS-mediated ferroptosis
- in-vivo, Sepsis, NA
*GPx4↑, *Inflam↓, *ER Stress↓, *Ferroptosis↓, *Sepsis↓, *GRP78/BiP↓, *IRE1↓, JNK↓,
3013- RosA,    Rosmarinic acid inhibits angiogenesis and its mechanism of action in vitro
- in-vitro, NA, NA
*BioAv↑, *antiOx↑, *Inflam↓, *ROS↓, *VEGF↓, *IL8↓,
3012- RosA,  Rad,    Rosmarinic Acid Prevents Radiation-Induced Pulmonary Fibrosis Through Attenuation of ROSMYPT1TGFβ1 Signaling Via miR-19b-3p
- in-vitro, Nor, IMR90
*Inflam↓, *ROS↓, *p‑NF-kB↓, *Rho↓, *ROCK1↓, *radioP↑, *MCP1/CCL2↓, *RANTES↓, *ICAM-1↓, *PGC1A↑, *NOX4↓, *Dose↝,
3007- RosA,    Hepatoprotective effects of rosmarinic acid: Insight into its mechanisms of action
- Review, NA, NA
*ROS↓, *lipid-P↓, *Inflam↓, *neuroP↑, *angioG↓, *eff↑, *AST↓, *ALAT↓, *GSSG↓, *eNOS↓, *iNOS↓, *NO↓, *NF-kB↓, *MMP2↓, *MDA↓, *TNF-α↓, *GSH↑, *SOD↑, *IL6↓, *PGE2↓, *COX2/PTGS2↓, *mTOR↑,
3006- RosA,    Rosmarinic acid attenuates glioblastoma cells and spheroids’ growth and EMT/stem-like state by PTEN/PI3K/AKT downregulation and ERK-induced apoptosis
- in-vitro, GBM, U87MG - in-vitro, GBM, LN229
TumCG↓, EMT↓, SIRT1↓, FOXO1↓, NF-kB↓, angioG↓, ROS↓, PTEN↓, PI3K↓, Akt↓, *Inflam↓, *cardioP↑, *hepatoP↑, *neuroP↑, Warburg↓,
3003- RosA,    Comprehensive Insights into Biological Roles of Rosmarinic Acid: Implications in Diabetes, Cancer and Neurodegenerative Diseases
- Review, Var, NA - Review, AD, NA - Review, Park, NA
*Inflam↓, *antiOx↑, *neuroP↑, *IL6↓, *IL1β↓, *NF-kB↓, *PGE2↓, *COX2/PTGS2↓, *MMP↑, *memory↑, *ROS↓, *Aβ↓, *HMGB1↓, TumCG↓, MARK4↓, Zeb1↓, MDM2↓, BNIP3↑, ASC↑, NLRP3↓, PI3K↓, Akt↓, Casp1↓, E-cadherin↑, STAT3↓, TLR4↓, MMP↓, ICAM-1↓, AMPK↓, IL6↑, MMP2↓, Warburg↓, Bcl-xL↓, Bcl-2↓, TumCCA↑, EMT↓, TumMeta↓, mTOR↓, HSP27↓, Casp3↑, GlucoseCon↓, lactateProd↓, VEGF↓, p‑p65↓, GIT1↓, FOXM1↓, cycD1/CCND1↓, CDK4↓, MMP9↓, HDAC2↓,
3001- RosA,    Therapeutic Potential of Rosmarinic Acid: A Comprehensive Review
- Review, Var, NA
TumCP↓, Apoptosis↑, TumMeta↓, Inflam↓, *antiOx↑, *AntiAge↑, *ROS↓, BioAv↑, Dose↝, NRF2↑, P-gp/ABCB1↑, ATP↑, MMPs↓, cl‑PARP↓, Hif1a↓, GlucoseCon↓, lactateProd↓, Warburg↓, TNF-α↓, COX2/PTGS2↓, IL6↓, HDAC2↓, GSH↑, ROS↓, ChemoSen↑, *BG↓, *IL1β↓, *TNF-α↓, *IL6↓, *p‑JNK↓, *p38↓, *Catalase↑, *SOD↑, *GSTs↑, *VitC↑, *VitE↑, *GSH↑, *GutMicro↑, *cardioP↑, *ROS↓, *MMP↓, *lipid-P↓, *NRF2↑, *hepatoP↑, *neuroP↑, *P450↑, *HO-1↑, *AntiAge↑, *motorD↓,
3036- RosA,    Anti-Warburg effect of rosmarinic acid via miR-155 in colorectal carcinoma cells
- in-vitro, CRC, HCT8 - in-vitro, CRC, HCT116 - in-vitro, CRC, LS174T
GlucoseCon↓, lactateProd↓, Hif1a↓, Inflam↓, miR-155↓, STAT3↓, Glycolysis↓, IL6↓, Warburg↓,
3616- RosA,    Therapeutic effects of rosemary (Rosmarinus officinalis L.) and its active constituents on nervous system disorders
- Review, AD, NA
*Inflam↓, *memory↑, *toxicity↓, *ROS↓, *Catalase↑, *SOD↑, *NRF2↑, *Aβ↓, *AChE↓, *Ca+2↓, *NO↓, *IL2↓, *COX2/PTGS2↓, *PGE2↓, *MMPs↓, *TNF-α↓, *iNOS↓, *TLR4↓, *cognitive↑, *cortisol↓, *lipid-P↓,
3615- RosA,    Potential Therapeutic Use of the Rosemary Diterpene Carnosic Acid for Alzheimer's Disease, Parkinson's Disease, and Long-COVID through NRF2 Activation to Counteract the NLRP3 Inflammasome
- Review, AD, NA - Review, Park, NA
*NLRP3↓, *Inflam↓, *neuroP↑, *NRF2↑, *TNF-α↓, *NF-kB↓, *HO-1↑, *ROS↓,
3618- RosA,    Antioxidant and Antimicrobial Properties of Rosemary (Rosmarinus officinalis, L.): A Review
- Review, AD, NA
*hepatoP↑, *antiOx↑, *angioG↓, *other↓, *Inflam↓, *ROS↓, *IronCh↑, *lipid-P↓, *antiOx↑,
3620- RosA,    Rosmarinus officinalis and Methylphenidate Exposure Improves Cognition and Depression and Regulates Anxiety-Like Behavior in AlCl3-Induced Mouse Model of Alzheimer's Disease
- in-vivo, AD, NA
*antiOx↑, *Inflam↓, *memory↑, *Aβ∅, *GutMicro↑,
3755- RosA,  CUR,    Development of Acetylcholinesterase (AChE) Inhibitor
- Study, AD, NA
*AChE↓, *antiOx↑, *Inflam↓,
7954- RT,    Rutin : therapeutic potential and recent advances in drug delivery
- Review, Nor, NA - Review, IBD, NA
*antiOx↑, *antiAll↑, *Inflam↓, *AntiTum↑, *Bacteria↓, *AntiViral↑, *BioAv↓, *AntiArt↑, *PLA2↓, *chemoP↑, *ROS↓, *Casp3↓, *TNF-α↓, *NF-kB↓, *cardioP↑, *Stroke↓, *TG/TAG↓, *FFA/NEFA↓, *LDL↓, *HDL↑, *AntiDiabetic↑, *MPO↓, *NF-kB↓, *BioAv↓, *BioAv↝,
4575- RT,  AgNPs,    Rutin-Loaded Silver Nanoparticles With Antithrombotic Function
- in-vivo, NA, NA
*AntiThr↑, *AntiAg↑, *antiOx↑, *Inflam↓,
3937- RT,    Rutin prevents tau pathology and neuroinflammation in a mouse model of Alzheimer’s disease
- in-vivo, AD, NA
*p‑tau↓, *Inflam↓, *NF-kB↓, *cognitive↑, *Aβ↓, *memory↑, *neuroP↑, *BioAv↓, *BBB↑,
3936- RT,    Rutin improves spatial memory in Alzheimer's disease transgenic mice by reducing Aβ oligomer level and attenuating oxidative stress and neuroinflammation
- in-vivo, AD, NA
*memory↑, *Aβ↓, *SOD↑, *GSH↑, *GSSG↓, *MDA↓, *IL1β↓, *IL6↓, *antiOx↑, *Inflam↓,
3935- RT,    Sodium rutin ameliorates Alzheimer's disease-like pathology by enhancing microglial amyloid-β clearance
- in-vivo, AD, NA
*Aβ↓, *Glycolysis↓, *OXPHOS↑, *memory↑, *BioAv↓, *BioAv↑, *cognitive↑, *Inflam↓,
3933- RT,    The Pharmacological Potential of Rutin
- Review, AD, NA - Review, Stroke, NA - Review, Arthritis, NA
*antiOx↑, *neuroP↑, *cardioP↑, *Inflam↓, *TNF-α↓, *IL1β↓, *IL8↓, *COX2/PTGS2↓, *iNOS↓, *NF-kB↓, *cognitive↑, *Cartilage↑, *AntiAg↑, *ROS↓, *lipid-P↓, *hepatoP↑, *ALAT↓, *AST↓, *RenoP↑,
3932- RT,    Rutin as a Natural Therapy for Alzheimer's Disease: Insights into its Mechanisms of Action
- Review, AD, NA
*cognitive↑, *BBB↑, *Aβ↓, *ROS↓, *Inflam↓,
3639- Sage,    Pharmacological properties of Salvia officinalis and its components
- Review, AD, NA - Review, Var, NA
AntiCan↑, *Inflam↓, *antiOx↑, *cognitive↑, *memory↑, *LDL↓, TumCG↓, MAPK↓, ROS↓, NF-kB↓, COX2/PTGS2↓, angioG↓, *AST↓, *ALAT?,
4217- Sage,  RosA,  Aroma,    Neuroprotective Potential of Aromatic Herbs: Rosemary, Sage, and Lavender
- Review, AD, NA - Review, Park, NA
*Inflam↓, *antiOx↑, *neuroP↑, *ERK↑, *CREB↑, *BDNF↑, *Aβ↑, *AChE↓, *memory↑, *cognitive↑,
6440- SAO,    Biological Properties of Sandalwood Oil and Microbial Synthesis of Its Major Sesquiterpenoids
- Review, Var, NA
AntiCan↑, *Bacteria↓, *antiOx↑, *Inflam↓, *ROS↓, AntiTum↑, TumCG↓, tumCV↓, β-catenin/ZEB1↓, TumCMig↓, chemoPv↑,
6441- SAO,    Sandalwood Album Oil as a Botanical Therapeutic in Dermatology
- Review, PSA, NA
*Inflam↓, *eff↑, *5LO↓, *DPPH↓, *hepatoP↑, *ROS↓, *PGE2↓, *IL1β↓, *IL17↓, *PDE4↓, *tyrosinase↓, *AntiFungal↑, angioG↓, TumCG↓, DNAdam↑, *Snail↑, *Twist↑, *Vim↑, *EMT↓, *toxicity↓,
6442- SAO,    Medicinal properties of alpha-santalol, a naturally occurring constituent of sandalwood oil: review
- Review, RCC, NA
AntiTum↑, Apoptosis↑, TumCCA↑, *Inflam↓, selectivity↑, tumCV↓, Casp8↓, Casp9↓, Casp6↓, Casp3↓, cl‑PARP↑, angioG↓, VEGFR2/KDR/Flk1↓, Akt↑, mTOR↓, TumCG↓, *GSTs↑, *antiOx↑, *ROS↓,
5139- SAS,    Sulfasalazine induces ferroptosis in osteosarcomas by regulating Nrf2/SLC7A11/GPX4 signaling axis
- in-vitro, OS, MG63 - in-vitro, OS, U2OS
*Inflam↓, TumCP↓, TumCMig↓, Apoptosis↑, Ferroptosis↑, Iron↑, MDA↑, ROS↑, GSH↓, SOD↓, MMP↓, NRF2↓, xCT/SLC7A11↓, GPx4↓, FTH1↓,
5041- SAS,  Cisplatin,    Xc− inhibitor sulfasalazine sensitizes colorectal cancer to cisplatin by a GSH-dependent mechanism
- in-vitro, CRC, NA
xCT/SLC7A11↓, Inflam↓, Apoptosis↓, GSH↓, ROS↑, TumCG↓, selectivity↑, eff↑, eff↓,
5037- SAS,    Inhibition of xCT by sulfasalazine alleviates the depression-like behavior of adult male mice subjected to maternal separation stress
- in-vivo, Nor, NA
xCT/SLC7A11↓, Mood↑, Inflam↓, glut↓,
4499- Se,    Selenium and Selenoproteins in Gut Inflammation—A Review
- Review, IBD, NA
*Inflam↓, *IL2↓, *TNF-α↓, *IFN-γ↓, *PPARγ↓,
6059- SeNPs,    Multifunctional Selenium Nanoparticles with Different Surface Modifications Ameliorate Neuroinflammation through the Gut Microbiota-NLRP3 Inflammasome-Brain Axis in APP/PS1 Mice
- in-vivo, AD, NA
*Dose↝, *Aβ↓, *BBB↑, *GutMicro↑, *NLRP3↓, *Inflam↓,
6058- SeNPs,  RES,  QC,  CAR,    Engineered nanoplatforms for brain-targeted co-delivery of phytochemicals in Alzheimer's disease: Rational design, blood-brain barrier penetration, and multi-target therapeutic synergy
- Review, AD, NA
*DDS↑, *cognitive↑, *Aβ↓, *tau↓, *Inflam↓, *antiOx↑, *BioAv↑, *BioAv↑, *neuroP↑, *BioAv↑, *AChE↓,
6048- SeNPs,    Unravelling the in vitro and in vivo potential of selenium nanoparticles in Alzheimer's disease: A bioanalytical review
- Review, AD, NA
*antiOx↑, *Inflam↓, *BBB↑, *Aβ↓, *tau↓, *neuroP↑, *cognitive↑,
6047- SeNPs,  CGA,    Synergistic anti-oxidative/anti-inflammatory treatment for acute lung injury with selenium based chlorogenic acid nanoparticles through modulating Mapk8ip1/MAPK and Itga2b/PI3k-AKT axis
- in-vitro, Nor, NA
*Dose↝, *SOD↑, *GPx↑, *ROS↓, *Inflam↓, *MAPK↝, *PI3K↝,
4721- SeNPs,    A review on selenium nanoparticles and their biomedical applications
- Review, AD, NA - Review, Diabetic, NA - Review, Arthritis, NA
*antiOx↑, *Inflam↓, *eff↝, *selenoP↑, *Bacteria↓, *neuroP↑, *ROS↓, ChemoSen↑,
4612- SeNPs,  Rad,    Histopathological Evaluation of Radioprotective Effects: Selenium Nanoparticles Protect Lung Tissue from Radiation Damage
- in-vivo, Nor, NA
*radioP↑, *Inflam↓, *antiOx↑, *Dose↝, *DNAdam↓, *ROS↓, *SOD↑, *GPx↑, *Dose↝, *eff↑,
4611- SeNPs,  Rad,    Radioprotective Effect of Selenium Nanoparticles: A Mini Review
- Review, Var, NA
*antiOx↑, *Inflam↓, *radioP↑, *ROCK1↓, *DNAdam↓, *Apoptosis↓, *RadioS↑, *Dose↝,
4608- SeNPs,    Selenium Nanoparticles for Biomedical Applications: From Development and Characterization to Therapeutics
- Review, Var, NA - NA, AD, NA
*toxicity↝, *toxicity↓, *other↝, ROS↑, *Dose↝, *selenoP↑, AntiCan↑, AntiTum↑, *Bacteria↓, *radioP↑, *BioAv↑, *Inflam↓, *Imm↑, ChemoSen↑, *AntiAg↑, selectivity↑, eff↑, other↝, *eff↑, *Aβ↓, *eff↑,
4603- SeNPs,    Therapeutic applications of selenium nanoparticles
- Review, Var, NA
AntiCan↑, Imm↑, *AntiDiabetic↑, *antiOx↑, *Inflam↓, ROS↑, ER Stress↑, DNAdam↑, *toxicity↓, *eff↑, *BioAv↑, selectivity↑, TumCCA↑, Risk↓, *lipid-P↓, *TNF-α↓, *CRP↓, TumMeta↓, angioG↓, selectivity↑, eff↑, *eff↑,
4602- SeNPs,  AgNPs,  GoldNP,    Advances in nephroprotection: the therapeutic role of selenium, silver, and gold nanoparticles in renal health
- NA, Nor, NA
*ROS↓, *RenoP↑, *Inflam↓,
4491- SeNPs,  Chit,  VitC,    Synthesis of a Bioactive Composition of Chitosan–Selenium Nanoparticles
- Study, NA, NA
*ROS↓, *selenoP↑, *antiOx↑, *Inflam↓, *Risk↓, *toxicity↓, AntiTum↑, Dose↝,
4503- SeNPs,    Prophylactic supplementation with biogenic selenium nanoparticles mitigated intestinal barrier oxidative damage through suppressing epithelial-immune crosstalk with gut-on-a-chip
- in-vitro, Nor, NA
*selenoP↑, *ROS↓, *Inflam↓, *other↝,
4440- SeNPs,  AgNPs,    Selenium, silver, and gold nanoparticles: Emerging strategies for hepatic oxidative stress and inflammation reduction
- Review, NA, NA
*hepatoP↑, *antiOx↑, *Inflam↓, *ROS↓, *SOD↑, *GPx↑, *lipid-P↓,
4446- SeNPs,    Antioxidant and Hepatoprotective Effects of Moringa oleifera-mediated Selenium Nanoparticles in Diabetic Rats.
- in-vivo, Diabetic, NA
*glucose↓, *antiOx↑, *GPx↑, *Catalase↑, *SOD↑, *ROS↓, *cardioP↑, *HDL↑, *LDL↓, *hepatoP↑, *TNF-α↓, *IL6↓, *IL1β↓, *lipid-P↓, *Inflam↓, *ALAT↓, *AST↓, *ALP↓, *Dose↝, *Dose↝,
4453- SeNPs,    Selenium Nanoparticles: Green Synthesis and Biomedical Application
- Review, NA, NA
*toxicity↓, *Bacteria↓, ROS↑, MMP↓, ER Stress↑, P53↑, Apoptosis↑, Casp9↑, DNAdam↑, TumCCA↑, eff↑, Catalase↓, SOD↓, GSH↓, selectivity↓, selectivity↑, PCNA↓, eff↑, *ALAT↓, *AST↓, *ALP↓, *creat↓, *Inflam↓, *toxicity↓, selectivity↑,
4457- SeNPs,    Selenium nanoparticles: a review on synthesis and biomedical applications
- Review, Var, NA - NA, Diabetic, NA
*BioAv↑, *toxicity↓, *eff↑, chemoPv↑, *Inflam↓, antiOx↑, *selenoP↑, *ROS↓, *Dose↝, AntiCan↑, *Bacteria↓, eff↑, DNAdam↑, selectivity↑, *eff↑,
4190- Sesame,    Sesame Seeds: A Nutrient-Rich Superfood
- Review, NA, NA
*antiOx↑, *LDL↓, *Aβ↓, *TNF-α↓, *SOD↑, *SIRT1↑, *Catalase↑, *GSH↑, *MDA↓, *GSTs↑, *IL4↑, *GPx↑, *COX2/PTGS2↓, *PGE2↓, *NO↓, CDK2↑, COX2/PTGS2↑, MMP9↑, ICAM-1↓, *BDNF↑, *PPARγ↑, *AChE↓, *Inflam↓, *HO-1↑, *NF-kB↓, *ROS↓,
4200- SFN,    Sulforaphane activates anti-inflammatory microglia, modulating stress resilience associated with BDNF transcription
- in-vitro, NA, NA
*NRF2↑, *BDNF↑, *Inflam↓,
4199- SFN,    Sulforaphane and Brain Health: From Pathways of Action to Effects on Specific Disorders
- Review, AD, NA - Review, Park, NA
*BBB↑, *BDNF↑, *neuroG↑, *NRF2↑, *HO-1↑, *Catalase↑, *SOD↑, *HSPs↑, *GSTs↑, *Trx↑, *GPx↑, *GSR↑, *GSH↑, *NQO1↑, *GutMicro↑, *Inflam↓, *neuroP↑,

Showing Research Papers: 951 to 1000 of 1166
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* indicates research on normal cells as opposed to diseased cells
Total Research Paper Matches: 1166

Pathway results for Effect on Cancer / Diseased Cells:


Redox & Oxidative Stress(tgid=1)

antiOx↑, 1,   Catalase↓, 1,   Ferroptosis↑, 1,   GPx4↓, 1,   GSH↓, 3,   GSH↑, 1,   Iron↑, 1,   MDA↑, 1,   NRF2↓, 1,   NRF2↑, 1,   ROS↓, 3,   ROS↑, 5,   SOD↓, 2,   xCT/SLC7A11↓, 3,  

Metal & Cofactor Biology(tgid=2)

FTH1↓, 1,  

Mitochondria & Bioenergetics(tgid=3)

ATP↑, 1,   MMP↓, 3,  

Core Metabolism/Glycolysis(tgid=4)

AMPK↓, 1,   GlucoseCon↓, 3,   glut↓, 1,   Glycolysis↓, 1,   lactateProd↓, 3,   SIRT1↓, 1,   Warburg↓, 4,  

Cell Death(tgid=5)

Akt↓, 2,   Akt↑, 1,   Apoptosis↓, 1,   Apoptosis↑, 4,   Bcl-2↓, 1,   Bcl-xL↓, 1,   Casp1↓, 1,   Casp3↓, 1,   Casp3↑, 1,   Casp6↓, 1,   Casp8↓, 1,   Casp9↓, 1,   Casp9↑, 1,   Ferroptosis↑, 1,   JNK↓, 1,   MAPK↓, 1,   MDM2↓, 1,  

Transcription & Epigenetics(tgid=7)

other↝, 1,   tumCV↓, 2,  

Protein Folding & ER Stress(tgid=8)

ER Stress↑, 2,   HSP27↓, 1,  

Autophagy & Lysosomes(tgid=9)

BNIP3↑, 1,  

DNA Damage & Repair(tgid=10)

DNAdam↑, 4,   P53↑, 1,   cl‑PARP↓, 1,   cl‑PARP↑, 1,   PCNA↓, 1,  

Cell Cycle & Senescence(tgid=11)

CDK2↑, 1,   CDK4↓, 1,   cycD1/CCND1↓, 1,   TumCCA↑, 4,  

Proliferation, Differentiation & Cell State(tgid=12)

EMT↓, 2,   FOXM1↓, 1,   FOXO1↓, 1,   HDAC2↓, 2,   mTOR↓, 2,   PI3K↓, 2,   PTEN↓, 1,   STAT3↓, 2,   TumCG↓, 7,  

Migration(tgid=13)

E-cadherin↑, 1,   GIT1↓, 1,   MARK4↓, 1,   miR-155↓, 1,   MMP2↓, 1,   MMP9↓, 1,   MMP9↑, 1,   MMPs↓, 1,   TumCMig↓, 2,   TumCP↓, 2,   TumMeta↓, 3,   Zeb1↓, 1,   β-catenin/ZEB1↓, 1,  

Angiogenesis & Vasculature(tgid=14)

angioG↓, 5,   Hif1a↓, 2,   VEGF↓, 1,   VEGFR2/KDR/Flk1↓, 1,  

Barriers & Transport(tgid=15)

P-gp/ABCB1↑, 1,  

Immune & Inflammatory Signaling(tgid=16)

ASC↑, 1,   COX2/PTGS2↓, 2,   COX2/PTGS2↑, 1,   ICAM-1↓, 2,   IL6↓, 2,   IL6↑, 1,   Imm↑, 1,   Inflam↓, 4,   NF-kB↓, 2,   p‑p65↓, 1,   TLR4↓, 1,   TNF-α↓, 1,  

Protein Aggregation(tgid=19)

NLRP3↓, 1,  

Drug Metabolism & Resistance(tgid=21)

BioAv↑, 1,   ChemoSen↑, 3,   Dose↝, 2,   eff↓, 1,   eff↑, 6,   selectivity↓, 1,   selectivity↑, 8,  

Clinical Biomarkers(tgid=22)

FOXM1↓, 1,   IL6↓, 2,   IL6↑, 1,  

Functional Outcomes(tgid=23)

AntiCan↑, 5,   AntiTum↑, 4,   chemoPv↑, 2,   Mood↑, 1,   Risk↓, 1,  
Total Targets: 110

Pathway results for Effect on Normal Cells:


NA, unassigned(tgid=0)

antiAll↑, 1,   AntiArt↑, 1,   FFA/NEFA↓, 1,   PLA2↓, 1,   Stroke↓, 1,  

Redox & Oxidative Stress(tgid=1)

antiOx↑, 26,   Catalase↑, 5,   DPPH↓, 1,   Ferroptosis↓, 1,   GPx↑, 6,   GPx4↑, 1,   GSH↑, 5,   GSR↑, 1,   GSSG↓, 2,   GSTs↑, 4,   HDL↑, 2,   HO-1↑, 4,   lipid-P↓, 8,   MDA↓, 3,   MPO↓, 1,   NOX4↓, 1,   NQO1↑, 1,   NRF2↑, 6,   OXPHOS↑, 1,   ROS↓, 26,   selenoP↑, 5,   SOD↑, 10,   Trx↑, 1,   VitC↑, 1,   VitE↑, 1,  

Metal & Cofactor Biology(tgid=2)

IronCh↑, 1,  

Mitochondria & Bioenergetics(tgid=3)

MMP↓, 1,   MMP↑, 1,  

Core Metabolism/Glycolysis(tgid=4)

ALAT?, 1,   ALAT↓, 4,   CREB↑, 1,   glucose↓, 1,   Glycolysis↓, 1,   LDL↓, 4,   PGC1A↑, 1,   PPARγ↓, 1,   PPARγ↑, 1,   SIRT1↑, 1,  

Cell Death(tgid=5)

Apoptosis↓, 1,   Casp3↓, 1,   Ferroptosis↓, 1,   iNOS↓, 3,   p‑JNK↓, 1,   MAPK↝, 1,   p38↓, 1,  

Transcription & Epigenetics(tgid=7)

AntiThr↑, 1,   other↓, 2,   other↝, 2,  

Protein Folding & ER Stress(tgid=8)

ER Stress↓, 1,   GRP78/BiP↓, 1,   HSPs↑, 1,   IRE1↓, 1,  

DNA Damage & Repair(tgid=10)

DNAdam↓, 2,  

Proliferation, Differentiation & Cell State(tgid=12)

EMT↓, 1,   ERK↑, 1,   mTOR↑, 1,   neuroG↑, 1,   PI3K↝, 1,   STAT3↓, 1,   tyrosinase↓, 1,  

Migration(tgid=13)

5LO↓, 1,   AntiAg↑, 3,   Ca+2↓, 1,   Cartilage↑, 1,   MMP2↓, 1,   MMPs↓, 1,   Rho↓, 2,   ROCK1↓, 3,   Snail↑, 1,   Twist↑, 1,   Vim↑, 1,  

Angiogenesis & Vasculature(tgid=14)

angioG↓, 2,   eNOS↓, 1,   NO↓, 3,   VEGF↓, 1,  

Barriers & Transport(tgid=15)

BBB↑, 5,  

Immune & Inflammatory Signaling(tgid=16)

COX2/PTGS2↓, 5,   CRP↓, 1,   HMGB1↓, 1,   ICAM-1↓, 1,   IFN-γ↓, 1,   IL17↓, 1,   IL1β↓, 6,   IL2↓, 2,   IL4↑, 1,   IL6↓, 5,   IL8↓, 2,   Imm↑, 1,   Inflam↓, 46,   MCP1/CCL2↓, 1,   NF-kB↓, 10,   p‑NF-kB↓, 1,   PGE2↓, 5,   RANTES↓, 1,   TLR4↓, 1,   TNF-α↓, 10,  

Synaptic & Neurotransmission(tgid=18)

AChE↓, 5,   BDNF↑, 4,   tau↓, 2,   p‑tau↓, 1,  

Protein Aggregation(tgid=19)

Aβ↓, 11,   Aβ↑, 1,   Aβ∅, 1,   NLRP3↓, 3,  

Hormonal & Nuclear Receptors(tgid=20)

cortisol↓, 1,  

Drug Metabolism & Resistance(tgid=21)

BioAv↓, 4,   BioAv↑, 8,   BioAv↝, 1,   DDS↑, 1,   Dose↝, 10,   eff↑, 9,   eff↝, 1,   P450↑, 1,   RadioS↑, 1,  

Clinical Biomarkers(tgid=22)

ALAT?, 1,   ALAT↓, 4,   ALP↓, 2,   AST↓, 5,   BG↓, 1,   creat↓, 1,   CRP↓, 1,   GutMicro↑, 5,   IL6↓, 5,   TG/TAG↓, 1,  

Functional Outcomes(tgid=23)

AntiAge↑, 2,   AntiDiabetic↑, 2,   AntiTum↑, 1,   cardioP↑, 5,   chemoP↑, 1,   cognitive↑, 9,   hepatoP↑, 7,   memory↑, 8,   motorD↓, 1,   neuroP↑, 12,   PDE4↓, 1,   radioP↑, 5,   RenoP↑, 2,   Risk↓, 1,   toxicity↓, 8,   toxicity↝, 1,  

Infection & Microbiome(tgid=24)

AntiFungal↑, 1,   AntiViral↑, 1,   Bacteria↓, 6,   Sepsis↓, 1,  
Total Targets: 149

Scientific Paper Hit Count for: Inflam, inflammation
43 Hydrogen Gas
40 Curcumin
33 Thymoquinone
32 Quercetin
31 Magnetic Fields
30 Silymarin (Milk Thistle) silibinin
23 Resveratrol
18 Alpha-Lipoic-Acid
18 Berberine
18 Selenium NanoParticles
18 Fisetin
18 Rosmarinic acid
17 Lycopene
16 Ashwagandha(Withaferin A)
16 Ferulic acid
15 Capsaicin
15 Carvacrol
15 Kaempferol
15 Sulforaphane (mainly Broccoli)
15 Urolithin
14 Apigenin (mainly Parsley)
14 Propolis -bee glue
14 Emodin
14 Eugenol
14 Honokiol
13 Silver-NanoParticles
13 Beta-Caryophyllene
13 Licochalcone A
12 Radiotherapy/Radiation
12 Baicalein
12 Chlorogenic acid
12 Chrysin
11 Cinnamon
11 Isoliquiritigenin
10 Crocetin
10 Chemotherapy
10 Dandelion Root
10 EGCG (Epigallocatechin Gallate)
10 Pterostilbene
9 Selenite (Sodium)
9 Isovitexin
9 Boron
9 Ginger/6-Shogaol/Gingerol
8 Astaxanthin
8 Boswellia (frankincense)
8 α-Bisabolol / Chamomile oil
8 Rutin
8 Diclofenac
8 Fucoidan
8 Piperlongumine
8 Vitamin C (Ascorbic Acid)
8 Shikonin
7 Allicin (mainly Garlic)
7 Betulinic acid
7 Vitamin B3,Niacin
7 Butyrate
7 Centella asiatica / Gotu kola → asiaticoside
7 D-limonene
7 Gallic acid
7 Hyperoside
6 1,8-Cineole
6 Artemisinin
6 Aspirin
6 Caffeic acid
6 Thymol-Thymus vulgaris
6 Hydroxycinnamic-acid
6 Garcinol
6 HydroxyTyrosol
6 isoorientin
6 Vitexin
6 Luteolin
6 Magnolol
6 Piperine
5 Phyllanthus emblica/Emblica officinalis/Amla / Indian Gooseberry
5 Folic Acid, Vit B9
5 Cisplatin
5 Caffeic Acid Phenethyl Ester (CAPE)
5 Celastrol
5 chitosan
5 Chocolate
5 Coenzyme Q10
5 Ellagic acid
5 Shilajit/Fulvic Acid
5 isoquercitrin
5 Lactoferrin/Talactoferrin
5 Magnetic Field Rotating
5 Ursolic acid
4 Bacopa monnieri
4 Cichoric acid / Chicoric acid
4 Carvone
4 Ginkgo biloba-EGb 761
4 Formononetin
4 Ginkgo biloba
4 Geraniol
4 Ginkgetin
4 Isobavachalcone
4 Mung Bean Sprouts
4 Lemongrass Extract/Citral
4 Moringa oleifera
4 nicotinamide adenine dinucleotide
4 Nimbolide
4 Taurine
4 Vitamin B5,Pantothenic Acid
4 Vitamin D3
4 Vitamin K2
3 Anethole/trans-Anethole
3 Lutein
3 Naringin
3 Baicalin
3 Biochanin A
3 Vitamin B12
3 Bromelain
3 doxorubicin
3 Lecithin
3 Carnosine
3 Chyawanprash
3 Spermidine
3 Cucurbitacin
3 Date Fruit Extract
3 Docosahexaenoic Acid
3 eicosapentaenoic acid
3 diet Fermented Foods
3 Exercise
3 Gamma-aminobutyric acid
3 Genistein (soy isoflavone)
3 HydroxyCitric Acid
3 Inositol
3 IP6 (Inositol 1,2,3,4,5,6-hexakisphosphate)
3 Licorice
3 Methylsulfonylmethane
3 α-Santalol/Sandalwood oil
3 Sulfasalazine
3 Vitamin B1/Thiamine
2 Anthocyanins
2 alpha Linolenic acid
2 Fennel Oil/Foeniculum vulgare
2 Melatonin
2 brusatol
2 borneol
2 buckwheat sprouts
2 Paclitaxel/Taxol
2 Cat’s Claw
2 Celecoxib
2 Chlorophyllin
2 Choline
2 methotrexate
2 Selenium
2 Vitamin E
2 Cynara scolymus/Globe Artichoke/Artichoke Extract
2 Galantamine
2 Huperzine A/Huperzia serrata
2 diet Short Term Fasting
2 Dipyridamole
2 Echinacea
2 Eurycomanone
2 flavonoids
2 Germanium Organic/Ge-132 / propagermanium (organogermanium)
2 Ginkgolide B
2 Ginseng
2 Grapeseed extract
2 hydrogen sulfide
2 Orlistat
2 Hibiscus sabdariffa
2 Oleuropein
2 iodine
2 Inulin Prebiotic
2 isoflavones
2 Ivermectin
2 Juglone
2 Potassium
2 probiotics
2 Methyl salicylate / Sweet Birch oil
2 Mushroom Lion’s Mane
2 Oleocanthal
2 Phenylbutyrate
2 Phenethyl isothiocyanate
2 Phosphatidylserine
2 Salvia officinalis
2 Shankhpushpi
2 Salvia miltiorrhiza
2 Terpinen-4-ol / Tea Tree Oil
2 Aflavin-3,3′-digallate
2 Turmerones
1 2-DeoxyGlucose
1 5-Hydroxytryptophan
1 Annona atemoya Seed Extract
1 Astragalus
1 Acetyl-l-carnitine
1 Morin
1 Aloe anthraquinones
1 beta-glucans
1 xanthohumol
1 Cannabidiol
1 beta-carotene(VitA)
1 Vitamin B6,pyridoxine
1 Bifidobacterium
1 Brucea javanica
1 Bruteridin(bergamot juice)
1 Black Seed Oil/Nigella sativa
1 Carnosic acid
1 Cannabichromene
1 Cynanbungeigenin C (CBC) and D (CBD)
1 chaetocin
1 Prebiotic
1 Carica papaya leaf extract
1 Calorie Restriction Mimetics
1 Copper and Cu NanoParticles
1 Rivastigmine
1 Cynaropicrin
1 Deguelin
1 Dihydrocaffeic Acid
1 Disulfiram
1 immunotherapy
1 Electrical Pulses
1 Evodiamine
1 Ascorbyl Palmitate
1 Flickering Light Stimulation
1 Iron
1 Galloflavin
1 Gambogic Acid
1 Ginkgolic acids
1 Bifidobacterium animalis subsp. lactis GCL2505
1 γ-linolenic acid (Borage Oil)
1 Gossypol/AT-101
1 Graviola
1 Germacranolide sesquiterpene lactone
1 Siegesbeckia glabrescens
1 Helleborus niger extracts – Christmas Rose
1 Hops (Humulus lupulus)
1 Indole-3-carbinol
1 Butein
1 Scopoletin
1 Lactobacillus
1 Linalool
1 Zeaxanthin
1 5-fluorouracil
1 MCToil
1 Metformin
1 Neem
1 Oregano
1 Peppermint
1 Propyl gallate
1 Phenolic Acids
1 Psoralidin
1 Parthenolide
1 EMF
1 Radio Frequency
1 Aromatherapy
1 Gold NanoParticles
1 Sesame seeds and Oil
1 Silicic Acid
1 cetuximab
1 Terminalia bellirica
1 Thyme
1 Vitamin A, Retinoic Acid
1 Vitamin B2,Riboflavin
1 Zinc
1 Zerumbone
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#:953  State#:%  Dir#:%
wNotes=0 sortOrder:rid,rpid

 

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