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ImmuneCited

Resveratrol Рисунки

19 иллюстрации из рецензируемых исследований

Все Pelargonium sidoides Glutathione N-Acetylcysteine Astragalus Conjugated Linoleic Acid Curcumin Arginine Astaxanthin Cordyceps Omega-3 Fatty Acids (EPA/DHA) Zinc Quercetin Elderberry Resveratrol Vitamin D Andrographis Iron
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Figure 1. Some of the molecular bases of resveratrol anti-inflammatory effects. Inflammation induces the activation of several cell signaling pathways. The exact mechanism of RSV-mediated protection is not yet understood, but it was described that RSV int
Figure 5 Diagram

Molecular bases of resveratrol's anti-inflammatory effects are comprehensively illustrated, showing how inflammation activates multiple signaling pathways that are concurrently modulated by resveratrol through NF-kB, MAPK, and SIRT1 mechanisms.

Anti-Inflammatory Effects of Resveratrol: Mechanistic Insights.

Figure 6
Figure 6 Diagram

Molecular mechanisms underlying resveratrol's anti-inflammatory activity in endometriosis, including NF-kB inhibition and cytokine modulation pathways.

Therapeutic Approaches of Resveratrol on Endometriosis via Anti-Inflammatory and Anti-Angiogenic Pathways.

Figure 7
Figure 7 Diagram

Anti-angiogenic effects of resveratrol in endometriosis models, showing inhibition of VEGF expression or microvessel density in endometriotic implants.

Therapeutic Approaches of Resveratrol on Endometriosis via Anti-Inflammatory and Anti-Angiogenic Pathways.

Figure 2. Resveratrol synthesis from malonyl-CoA and 4-coumaroyl CoA [43].
Figure 9 Diagram

Biosynthetic pathway of resveratrol from malonyl-CoA and 4-coumaroyl CoA precursors. Understanding the natural synthesis route informs efforts to produce this polyphenol for therapeutic applications in conditions such as endometriosis.

Therapeutic Approaches of Resveratrol on Endometriosis via Anti-Inflammatory and Anti-Angiogenic Pathways.

Figure 10
Figure 10 Diagram

Detailed analysis of resveratrol's molecular targets in endometrial tissue, focusing on oxidative stress reduction and apoptosis induction in ectopic endometrial cells.

Therapeutic Approaches of Resveratrol on Endometriosis via Anti-Inflammatory and Anti-Angiogenic Pathways.

Figure 3. Illustration of molecular pathways in the development of endometriosis [7,68,73–75].
Figure 11 Diagram

Comprehensive pathway illustration showing the molecular mechanisms involved in endometriosis development, including estrogen signaling, inflammatory cascades, and angiogenic processes that resveratrol may therapeutically target.

Therapeutic Approaches of Resveratrol on Endometriosis via Anti-Inflammatory and Anti-Angiogenic Pathways.

Figure 1 Cardiac aging and heart failure (HF). Lifetime molecular and cellular stresses such as genomic, epigenetic, oxidative, autophagic, inflammatory and regenerative stresses, along with the accumulation of senescent cells, drive cardiac aging and lead
Figure 1 Diagram

Comprehensive diagram of cardiac aging mechanisms leading to heart failure, depicting how genomic, epigenetic, oxidative, autophagic, and inflammatory stresses drive structural changes including left ventricular hypertrophy and myocardial fibrosis.

Systemic aging fuels heart failure: Molecular mechanisms and therapeutic avenues.

Figure 2 Systemic aging and heart failure (HF). Systemic aging fuels HF, with cardiac, vascular, metabolic and inflammaging as major contributors. HF-associated molecular mechanisms—cardiac, vascular, metabolic and inflammaging—are summarized along with obs
Figure 2 Diagram

Systemic aging pathways fueling heart failure, summarizing cardiac, vascular, metabolic, and inflammaging mechanisms alongside their associated molecular changes and clinical phenotypes.

Systemic aging fuels heart failure: Molecular mechanisms and therapeutic avenues.

Figure 3
Figure 3 Diagram

Molecular mechanisms or therapeutic targets related to age-associated heart failure, covering topics such as senescent cell accumulation, RAAS dysregulation, and potential anti-aging interventions.

Systemic aging fuels heart failure: Molecular mechanisms and therapeutic avenues.

Figure 4
Figure 4 Diagram

Molecular mechanisms or therapeutic targets related to age-associated heart failure, covering topics such as senescent cell accumulation, RAAS dysregulation, and potential anti-aging interventions.

Systemic aging fuels heart failure: Molecular mechanisms and therapeutic avenues.

Figure 2
Figure 2 Diagram

Molecular pathways through which Helicobacter pylori promotes gastric carcinogenesis are diagrammed, including CagA and VacA virulence factor signaling.

Antitumor Effects of Resveratrol Opposing Mechanisms of Helicobacter pylori in Gastric Cancer.

Figure 3
Figure 3 Diagram

Resveratrol's molecular targets in counteracting H. pylori-induced gastric cancer are mapped, spanning anti-inflammatory, antioxidant, and anti-proliferative pathways.

Antitumor Effects of Resveratrol Opposing Mechanisms of Helicobacter pylori in Gastric Cancer.

Figure 3. Mechanisms of resveratrol in preventing inflammation (red box), oxidative stress (yellow box), H. pylori infection (light blue box) and, thereby, cancer (all, light pink box).
Figure 4 Diagram

Mechanisms of resveratrol in preventing inflammation, oxidative stress, H. pylori infection, and carcinogenesis in the gastric mucosa are comprehensively illustrated.

Antitumor Effects of Resveratrol Opposing Mechanisms of Helicobacter pylori in Gastric Cancer.

Figure 2
Figure 2 Diagram

Visual summary of the pathways and interactions relevant to mechanisms Linking Obesity, Insulin Resistance, and Alzheimer's Disease, as discussed in the context of alzheimer's disease (AD) is a complex neurodegenerative disorder characterized by progressive cognitive decline, memo.

Mechanisms Linking Obesity, Insulin Resistance, and Alzheimer's Disease: Effects of Polyphenols and …

Figure 3
Figure 3 Diagram

Schematic representation highlighting the mechanisms underlying mechanisms Linking Obesity, Insulin Resistance, and Alzheimer's Disease and their potential therapeutic implications.

Mechanisms Linking Obesity, Insulin Resistance, and Alzheimer's Disease: Effects of Polyphenols and …

Figure 2. Summary of the mechanistic effects of dietary ω-3 fatty acids and polyphenols on the amyloidogenic pathway. In the context of obesity, IR, and the presence of Aβ, inflammatory pathways are upregulated. ω-3 fatty acids and polyphenols intervene i
Figure 4 Diagram

Summary of the mechanistic effects of dietary ω-3 fatty acids and polyphenols on the amyloidogenic pathway. In the context of obesity, IR, and the presence of Aβ, inflammatory pathways are upregulated.

Mechanisms Linking Obesity, Insulin Resistance, and Alzheimer's Disease: Effects of Polyphenols and …

Figure 1
Figure 1 Diagram

Conceptual diagram summarizing the relationship between modulating Ferroptosis in Aging: The Therapeutic Potential of Natural Products and the biological processes described in this research.

Modulating Ferroptosis in Aging: The Therapeutic Potential of Natural Products.

Figure 2
Figure 2 Diagram

Visual summary of the pathways and interactions relevant to modulating Ferroptosis in Aging: The Therapeutic Potential of Natural Products, as discussed in the context of aging is a multifactorial process driven by accumulating cellular damage.

Modulating Ferroptosis in Aging: The Therapeutic Potential of Natural Products.

Figure 3
Figure 3 Diagram

Schematic representation highlighting the mechanisms underlying modulating Ferroptosis in Aging: The Therapeutic Potential of Natural Products and their potential therapeutic implications.

Modulating Ferroptosis in Aging: The Therapeutic Potential of Natural Products.