1. Quercetin Suppresses the Progression of Atherosclerosis by Regulating MST1-Mediated Autophagy in ox-LDL-Induced RAW264.7 Macrophage Foam Cells
    Hui Cao et al, 2019, IJMS CrossRef
  2. Effects of phytochemicals on cellular signaling: reviewing their recent usage approaches
    Dinh-Chuong Pham et al, 2019, Critical Reviews in Food Science and Nutrition CrossRef
  3. Deciphering the Active Compounds and Mechanisms of Qixuehe Capsule on Qi Stagnation and Blood Stasis Syndrome: A Network Pharmacology Study
    Yu-Xi Huang et al, 2020, Evidence-Based Complementary and Alternative Medicine CrossRef
  4. Quercetin Attenuates Atherosclerosis via Modulating Oxidized LDL-Induced Endothelial Cellular Senescence
    Yue-Hua Jiang et al, 2020, Front. Pharmacol. CrossRef
  5. Investigation of the Lipid-Lowering Mechanisms and Active Ingredients of Danhe Granule on Hyperlipidemia Based on Systems Pharmacology
    Kuikui Chen et al, 2020, Front. Pharmacol. CrossRef
  6. Therapeutic Potential of Quercetin as an Antiatherosclerotic Agent in Atherosclerotic Cardiovascular Disease: A Review
    Qian Deng et al, 2020, Evidence-Based Complementary and Alternative Medicine CrossRef
  7. CD36 in Atherosclerosis: Pathophysiological Mechanisms and Therapeutic Implications
    Kunming Tian et al, 2020, Curr Atheroscler Rep CrossRef
  8. Phenethyl Isothiocyanate Protects against High Fat/Cholesterol Diet-Induced Obesity and Atherosclerosis in C57BL/6 Mice
    Min-Hee Gwon et al, 2020, Nutrients CrossRef
  9. Natural Bioactive Compounds Useful in Clinical Management of Metabolic Syndrome
    Annalisa Noce et al, 2021, Nutrients CrossRef
  10. Quercetin as a Precursor for the Synthesis of Novel Nanoscale Cu (II) Complex as a Catalyst for Alcohol Oxidation with High Antibacterial Activity
    Zahra Moodi et al, 2021, Bioinorganic Chemistry and Applications CrossRef
  11. Cardioprotective Effect of Quercetin and Sitagliptin in Doxorubicin-Induced Cardiac Toxicity in Rats
    Tavga Ahmed Aziz, 2021, CMAR CrossRef
  12. Therapeutic Potential of Quercetin to Alleviate Endothelial Dysfunction in Age-Related Cardiovascular Diseases
    Olina Dagher et al, 2021, Front. Cardiovasc. Med. CrossRef
  13. Chinese Herbal Medicines and Active Metabolites: Potential Antioxidant Treatments for Atherosclerosis
    Luxia Song et al, 2021, Front. Pharmacol. CrossRef
  14. LKB1 Regulates Vascular Macrophage Functions in Atherosclerosis
    Xuewen Wang et al, 2021, Front. Pharmacol. CrossRef
  15. Ageing, Age-Related Cardiovascular Risk and the Beneficial Role of Natural Components Intake
    Jacek Rysz et al, 2021, IJMS CrossRef
  16. Natural Flavonoids Derived From Fruits Are Potential Agents Against Atherosclerosis
    Ruo-Lan Li et al, 2022, Front. Nutr. CrossRef
  17. Artemether Ameliorates Non-Alcoholic Steatohepatitis by Repressing Lipogenesis, Inflammation, and Fibrosis in Mice
    Jia Xu et al, 2022, Front. Pharmacol. CrossRef
  18. Exploring the Mechanism of Action of Scutellaria baicalensis-Huanglian in the Treatment of Atherosclerosis Based on Network Pharmacology
    舒文 罗, 2022, ACM CrossRef
  19. Decoding the Mechanism of Shixiao Powder in Treating Coronary Heart Disease Based on Network Pharmacology and Molecular Docking
    Zuo-min Jiang et al, 2022, Evidence-Based Complementary and Alternative Medicine CrossRef
  20. Tackling Atherosclerosis via Selected Nutrition
    Anna Vesnina et al, 2022, IJMS CrossRef
  21. Potential Pharmaceutical Applications of Quercetin in Cardiovascular Diseases
    Paraskevi Papakyriakopoulou et al, 2022, Pharmaceuticals CrossRef
  22. Impact of Phytochemicals on PPAR Receptors: Implications for Disease Treatments
    Ayesheh Enayati et al, 2022, PPAR Research CrossRef
  23. Targeted Diagnosis, Therapeutic Monitoring, and Assessment of Atherosclerosis Based on Mesoporous Silica Nanoparticles Coated with cRGD-Platelets
    Wei Zhang et al, 2022, Oxidative Medicine and Cellular Longevity CrossRef
  24. Elucidation of active ingredients and mechanism of action of hawthorn in the prevention and treatment of atherosclerosis
    Huan Li et al, 2022, Journal of Food Biochemistry CrossRef
  25. Effect of Haegan-jeon on Thioacetamide-Induced Liver Fibrosis
    Jeong Won Choi et al, 2022, J Int Korean Med CrossRef
  26. Canagliflozin Attenuates Hepatic Steatosis and Atherosclerosis Progression in Western Diet-Fed ApoE-Knockout Mice
    Qingjuan Zuo et al, 2022, DDDT CrossRef
  27. Natural compounds from botanical drugs targeting mTOR signaling pathway as promising therapeutics for atherosclerosis: A review
    Qian Wu et al, 2023, Front. Pharmacol. CrossRef
  28. Exploring the Potential Mechanism of Peach Kernel-Safflower in Regulating the Stability of Atherosclerotic Plaque Based on Network Pharmacology
    婷 刘, 2023, PI CrossRef
  29. Exploring the Active Compounds of Traditional Mongolian Medicine Baolier Capsule (BLEC) in Patients with Coronary Artery Disease (CAD) Based on Network Pharmacology Analysis, Molecular Docking and Experimental Validation
    Mengqiu Wei et al, 2023, DDDT CrossRef
  30. Trained immunity in monocyte/macrophage: Novel mechanism of phytochemicals in the treatment of atherosclerotic cardiovascular disease
    Jie Wang et al, 2023, Front. Pharmacol. CrossRef
  31. Roxadustat induces hepatotoxicity in zebrafish embryos via inhibiting Notch signaling
    Dou Yang et al, 2023, J of Applied Toxicology CrossRef
  32. Dual role of chlorogenic acid as an influential precursor in synthesizing nano‐sized Cu(II) complexes and investigating its catalytic role in the oxidation of alcohols and its antibacterial activity
    Ghodsieh Bagherzade, 2023, Journal of Organometallic Chemistry CrossRef
  33. PPARG: A Promising Therapeutic Target in Breast Cancer and Regulation by Natural Drugs
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  34. Low-Dose Alcohol Improves Lipid Metabolism through Store-Operated Ca2+ Channel-Induced PPARγ Expression in Obese Mice
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  35. Natural Proprotein Convertase Subtilisin/Kexin Type 9 Inhibitors: A Review
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  36. Edible Bird’s Nest Effectively Attenuates Atherosclerosis through Modulation of Cholesterol Metabolism via Activation of PPARγ/LXRα Signaling Pathway In Vivo
    Nurul Nadiah Mohamad Nasir et al, 2023, Journal of Food Biochemistry CrossRef
  37. Phloretin targets SIRT1 to alleviate oxidative stress, apoptosis, and inflammation in deep venous thrombosis
    Xiaodong Wang et al, 2024, Toxicol Res. CrossRef
  38. High-Dose Polyphenol-Rich Nutrition Improves Lipid and Inflammation Profiles and Can Trigger Apoptotic Signaling in Healthy Older Adults (the ErdBEHR Study)
    Alexander Hartmann et al, 2024, AgingBio CrossRef
  39. Schisandrin A in Schisandra chinensis Upregulates the LDL Receptor by Inhibiting PCSK9 Protein Stabilization in Steatotic Model
    Hyo-Jin Kim et al, 2024, J. Microbiol. Biotechnol. CrossRef
  40. Natural products in atherosclerosis therapy by targeting PPARs: a review focusing on lipid metabolism and inflammation
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  41. Fisetin Suppresses Atherosclerosis by Inhibiting Ferroptosis-Related Oxidative Stress in Apolipoprotein E Knockout Mice
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  42. G protein subunit Gγ13-mediated signaling pathway is critical to the inflammation resolution and functional recovery of severely injured lungs
    Yi-Hong Li et al, 2024 CrossRef
  43. KLF15-Cyp3a11 Axis Regulates Rifampicin-Induced Liver Injury
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  44. The Molecular Mechanism of Radix Paeoniae Rubra.-Cortex Moutan. Herb Pair in the Treatment of Atherosclerosis: A Work Based on Network Pharmacology and In Vitro Experiments
    Caojian Zuo et al, 2024, Cardiovasc Toxicol CrossRef
  45. Growth, fusion and degradation of lipid droplets: advances in lipid droplet regulatory protein
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  46. Expression patterns and clinical value of key m6A RNA modification regulators in smoking patients with coronary artery disease
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  48. Alliaceae versus Brassicaceae for Dyslipidemia: State of the Art and Future Perspectives. Systematic Review and Meta‐Analysis of Clinical Studies
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  50. Amelioration of fructose-induced hepatic lipid accumulation by vitamin D3 supplementation and high-intensity interval training in male Sprague‒Dawley rats
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  51. Dendrobium nobile Lindl. alkaloids improve lipid metabolism by increasing LDL uptake through regulation of the LXRα/IDOL/LDLR pathway and inhibition of PCSK9 expression in HepG2 cells
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