1. Naringin Reverses Neurobehavioral and Biochemical Alterations in Intracerebroventricular Collagenase-Induced Intracerebral Hemorrhage in Rats
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  2. Hesperidin ameliorates lipopolysaccharide-induced acute lung injury in mice by inhibiting HMGB1 release
    Xin-xin Liu et al, 2015, International Immunopharmacology CrossRef
  3. The Anti-Inflammatory Properties of Citrus wilsonii Tanaka Extract in LPS-Induced RAW 264.7 and Primary Mouse Bone Marrow-Derived Dendritic Cells.
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  4. Antioxidant and anti-inflammatory activities of freeze-dried grapefruit phenolics as affected by gum arabic and bamboo fibre addition and microwave pretreatment
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  5. Abolition of mitochondrial substrate-level phosphorylation by itaconic acid produced by LPS-induced Irg1 expression in cells of murine macrophage lineage
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  6. Prunus cerasoides fruit extract ameliorates inflammatory stress by modulation of iNOS pathway and Th1/Th2 immune homeostasis in activated murine macrophages and lymphocytes
    Anamika Sharma et al, 2018, Inflammopharmacol CrossRef
  7. Comprehensive investigation into the interconversion of C-2 diastereomers of naringin
    Hongliang Yao et al, 2018, Chirality CrossRef
  8. Nutraceutical Value of Citrus Flavanones and Their Implications in Cardiovascular Disease.
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  9. Naringin attenuates MLC phosphorylation and NF-κB activation to protect sepsis-induced intestinal injury via RhoA/ROCK pathway
    Zhiling Li et al, 2018, Biomedicine & Pharmacotherapy CrossRef
  10. Naringin attenuates alcoholic liver injury by reducing lipid accumulation and oxidative stress
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  11. In vitro anti-inflammatory and free radical scavenging properties of Oldenlandia auricularia
    G. I. Anuja et al, 2018, Toxicological & Environmental Chemistry CrossRef
  12. Auraptene/Naringin-Rich Fruit Juice of Citrus kawachiensis (Kawachi Bankan) Prevents Ischemia-Induced Neuronal Cell Death in Mouse Brain through Anti-Inflammatory Responses
    Satoshi OKUYAMA et al, 2019, Journal of Nutritional Science and Vitaminology CrossRef
  13. Anti-inflammatory effect of aqueous extract from Kawachi-bankan (Citrus maxima) peel in vitro and in vivo
    Momoko Ishida et al, 2019, Cytotechnology CrossRef
  14. Regulation effects of naringin on diesel particulate matter-induced abnormal airway surface liquid secretion
    Rui Shi et al, 2019, Phytomedicine CrossRef
  15. Anti-inflammatory effect of naringin and sericin combination on human peripheral blood mononuclear cells (hPBMCs) from patient with psoriasis
    Raksawan Deenonpoe et al, 2019, BMC Complement Altern Med CrossRef
  16. Environmentally relevant doses of tetrabromobisphenol A (TBBPA) cause immunotoxicity in murine macrophages
    Xia Wang et al, 2019, Chemosphere CrossRef
  17. Continual Naringin Treatment Benefits the Recovery of Traumatic Brain Injury in Rats Through Reducing Oxidative and Inflammatory Alterations
    Qun-jian Cui et al, 2014, Neurochem Res CrossRef
  18. Flavonoids inhibit iNOS production via mitogen activated proteins in lipoteichoic acid stimulated cardiomyoblasts
    Gloria Gutiérrez-Venegas et al, 2014, International Immunopharmacology CrossRef
  19. Naringin lauroyl ester inhibits lipopolysaccharide-induced activation of nuclear factor κB signaling in macrophages
    Hiromi Hattori et al, 2016, Bioscience, Biotechnology, and Biochemistry CrossRef
  20. Naringin inhibits lipopolysaccharide-induced damage in human umbilical vein endothelial cells via attenuation of inflammation, apoptosis and MAPK pathways
    Cheng Bi et al, 2016, Cytotechnology CrossRef
  21. Naringin suppresses the development of glioblastoma by inhibiting FAK activity
    Jinjiang Li et al, 2017, Journal of Drug Targeting CrossRef
  22. Development of a high speed counter-current chromatography system with Cu(II)-chiral ionic liquid complexes and hydroxypropyl-β-cyclodextrin as dual chiral selectors for enantioseparation of naringenin
    Shanshan Wang et al, 2016, Journal of Chromatography A CrossRef
  23. Naringin Decreases TNF-α and HMGB1 Release from LPS-Stimulated Macrophages and Improves Survival in a CLP-Induced Sepsis Mice
    Minchan Gil et al, 2016, PLoS ONE CrossRef
  24. Evaluation of interactions between RAW264.7 macrophages and small molecules by capillary electrophoresis
    Feng-Qin Wang et al, 2017, ELECTROPHORESIS CrossRef
  25. Naringin protects viscera from ischemia/reperfusion injury by regulating the nitric oxide level in a rat model
    A Cerkezkayabekir et al, 2017, Biotechnic & Histochemistry CrossRef
  26. Flavonoid-mediated immunomodulation of human macrophages involves key metabolites and metabolic pathways
    Luís F. Mendes et al, 2019, Sci Rep CrossRef
  27. Oridonin Attenuates Lipopolysaccharide-Induced ROS Accumulation and Inflammation in HK-2 Cells.
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  28. Pharmacokinetics and Metabolism of Naringin and Active Metabolite Naringenin in Rats, Dogs, Humans, and the Differences Between Species
    Yang Bai et al, 2020, Front. Pharmacol. CrossRef
  29. A Review on the Pharmacokinetic Properties of Naringin and Its Therapeutic Efficacies in Respiratory Diseases
    Xuan Zeng et al, 2020, MRMC CrossRef
  30. Naringin Targets NFKB1 to Alleviate Oxygen-Glucose Deprivation/Reoxygenation–Induced Injury in PC12 Cells Via Modulating HIF-1α/AKT/mTOR-Signaling Pathway
    Wei Cao et al, 2020, J Mol Neurosci CrossRef
  31. Naringin inhibits titanium particles-induced up-regulation of TNF-α and IL-6 via the p38 MAPK pathway in fibroblasts from hip periprosthetic membrane
    Chao Yang et al, 2020, Connective Tissue Research CrossRef
  32. The effects of different dietary fiber pectin structures on the gastrointestinal immune barrier: impact via gut microbiota and direct effects on immune cells
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  33. The impact of the level and distribution of methyl-esters of pectins on TLR2-1 dependent anti-inflammatory responses
    M. Beukema et al, 2020, Carbohydrate Polymers CrossRef
  34. Natural product derived phytochemicals in managing acute lung injury by multiple mechanisms.
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  35. Evaluation of Naringenin as a Promising Treatment Option for COPD Based on Literature Review and Network Pharmacology
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  36. The LPS-Treated Human Gastric Cancer Cells (AGS) Show a Significant Higher Tendency to Proliferation, Inflammation and Cannabinoid Receptor 1 Expression
    Sahar Sadat Sedighzadeh et al, 2020, Jentashapir J Cell Mol Biol CrossRef
  37. The molecular structure and role of CCL2 (MCP‐1) and C‐C chemokine receptor CCR2 in skeletal biology and diseases
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  38. Doxycycline Hyclate Modulates Antioxidant Defenses, Matrix Metalloproteinases, and COX-2 Activity Accelerating Skin Wound Healing by Secondary Intention in Rats
    Luciana S. Altoé et al, 2021, Oxidative Medicine and Cellular Longevity CrossRef
  39. Phenolic compounds as antidiabetic, anti-inflammatory, and anticancer agents and improvement of their bioavailability by liposomes.
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  40. Anti-Inflammatory Activity of S. Marianum and N. Sativa Extracts on Macrophages
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  41. Promising Strategies in Plant-Derived Treatments of Psoriasis-Update of In Vitro, In Vivo, and Clinical Trials Studies
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  42. Citri Reticulatae Pericarpium (Chenpi): A multi-efficacy pericarp in treating cardiovascular diseases
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  43. Antioxidative and Anti-Inflammatory Activities of Rosebud Extracts of Newly Crossbred Roses
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  44. Drug Target Identification and Drug Repurposing in Psoriasis through Systems Biology Approach, DNN-Based DTI Model and Genome-Wide Microarray Data
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  47. Daeshiho-tang attenuates inflammatory response and oxidative stress in LPS-stimulated macrophages by regulating TLR4/MyD88, NF-κB, MAPK, and Nrf2/HO-1 pathways
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  48. Immunomodulatory activities of pH/temperature sensitive smart naringenin-loaded nanopolymers on the mammalian macrophages
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  49. Assessment of the synergistic anti-inflammatory effect of naringin/sulindac for the treatment of osteoarthritis: in vitro and in vivo
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  50. Empowering Naringin’s Anti-Inflammatory Effects through Nanoencapsulation
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  51. Limosilactobacillus fermentum LAB212 effectively ameliorates toxigenicity of aflatoxin
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