1. Protective Mechanisms of Flavonoids in Parkinson’s Disease
    Kasthuri Bai Magalingam et al, 2015, Oxidative Medicine and Cellular Longevity CrossRef
  2. Impact of Plant-Derived Flavonoids on Neurodegenerative Diseases
    Silvia Lima Costa et al, 2016, Neurotox Res CrossRef
  3. Neuroprotective strategies to prevent and treat Parkinson’s disease based on its pathophysiological mechanism
    Yujeong Lee et al, 2017, Arch. Pharm. Res. CrossRef
  4. Neuroprotection in Glaucoma: Old and New Promising Treatments
    Dario Rusciano et al, 2017, Advances in Pharmacological Sciences CrossRef
  5. null
    Aleksandra Kozłowska et al, 2018 CrossRef
  6. Protective effects of quercetin glycosides, rutin, and isoquercetrin against 6-hydroxydopamine (6-OHDA)-induced neurotoxicity in rat pheochromocytoma (PC-12) cells
    Kasthuri Bai Magalingam et al, 2016, Int J Immunopathol Pharmacol CrossRef
  7. Neuroprotective effects of quercetin 4’- O -β- d -diglucoside on human striatal precursor cells in nutrient deprivation condition
    Erica Sarchielli et al, 2018, Acta Histochemica CrossRef
  8. null
    Emilija Veljkovic et al, 2018 CrossRef
  9. null
    , 2018 CrossRef
  10. Neurodegenerative Diseases: Might Citrus Flavonoids Play a Protective Role?
    Santa Cirmi et al, 2016, Molecules CrossRef
  11. Beneficial Effects of Flavonoids Against Parkinson's Disease
    Un Ju Jung et al, 2018, Journal of Medicinal Food CrossRef
  12. Potential antiparkinsonian agents derived from South African medicinal plants
    Adaze Bijou Enogieru et al, 2018, Journal of Herbal Medicine CrossRef
  13. Evaluation of hepatoprotective activity of Syringa oblata leaves ethanol extract with the indicator of glutathione S-transferase A1
    Ying Li et al, 2018, Revista Brasileira de Farmacognosia CrossRef
  14. Rutin as a Potent Antioxidant: Implications for Neurodegenerative Disorders
    Adaze Bijou Enogieru et al, 2018, Oxidative Medicine and Cellular Longevity CrossRef
  15. Rutin attenuates neuroinflammation in spinal cord injury rats
    Jiang Wu et al, 2016, Journal of Surgical Research CrossRef
  16. Hormetic approaches to the treatment of Parkinson's disease: Perspectives and possibilities
    Vittorio Calabrese et al, 2018, J Neuro Res CrossRef
  17. Rutin alleviates hypoxia/reoxygenation-induced injury in myocardial cells by up-regulating SIRT1 expression
    Han Yang et al, 2018, Chemico-Biological Interactions CrossRef
  18. Natural Compounds for the Management of Parkinson’s Disease and Attention-Deficit/Hyperactivity Disorder
    Juan Carlos Corona, 2018, BioMed Research International CrossRef
  19. Anti-hepatofibrosis effect of Allium senescens in activated hepatic stellate cells and thioacetamide-induced fibrosis rat model
    Gwang-Mo Shin et al, 2018, Pharmaceutical Biology CrossRef
  20. Neuroprotective Effects of Rutin and Quercetin Flavonoids in Glaucium corniculatum Methanol and Water Extracts
    Fatma Gonca Koçancı et al, 2017 CrossRef
  21. null
    Aleksandra Kozłowska et al, 2019 CrossRef
  22. Development of ionic liquid-polymer nanoparticle hybrid systems for delivery of poorly soluble drugs
    Ana Júlio et al, 2019, Journal of Drug Delivery Science and Technology CrossRef
  23. Camellia euphlebia protects against corticosterone-induced apoptosis in differentiated PC12 cells by regulating the mitochondrial apoptotic pathway and PKA/CREB/BDNF signaling pathway
    Dongye He et al, 2019, Food and Chemical Toxicology CrossRef
  24. Rutin alleviates chronic unpredictable stress-induced behavioral alterations and hippocampal damage in mice
    Arun Parashar et al, 2017, Neuroscience Letters CrossRef
  25. Attenuation of Endoplasmic Reticulum Stress, Impaired Calcium Homeostasis, and Altered Bioenergetic Functions in MPP+-Exposed SH-SY5Y Cells Pretreated with Rutin
    Adaze Bijou Enogieru et al, 2019, Neurotox Res CrossRef
  26. null
    A.Y. Onaolapo et al, 2019 CrossRef
  27. Rutin decreases lipopolysaccharide-induced acute lung injury via inhibition of oxidative stress and the MAPK-NF-κB pathway.
    Chung-Hsin Yeh et al, 0 CrossRef
  28. Retracted: Rutin protects against cognitive deficits and brain damage in rats with chronic cerebral hypoperfusion
    Jie Qu et al, 2014, Br J Pharmacol CrossRef
  29. Quercetin Glycosides Induced Neuroprotection by Changes in the Gene Expression in a Cellular Model of Parkinson’s Disease
    Kasthuri Bai Magalingam et al, 2015, J Mol Neurosci CrossRef
  30. null
    Abhijit Dey et al, 2015 CrossRef
  31. Anti-tumor Properties of Prunella vulgaris
    Mofei Huang et al, 2015, Curr Pharmacol Rep CrossRef
  32. Neuroprotective Effects of Rutin in Streptozotocin-Induced Diabetic Rat Retina
    Mohammad Shamsul Ola et al, 2015, J Mol Neurosci CrossRef
  33. Rutin, A Natural Flavonoid Protects PC12 Cells Against Sodium Nitroprusside-Induced Neurotoxicity Through Activating PI3K/Akt/mTOR and ERK1/2 Pathway.
    Rikang Wang et al, 2015, Neurochem Res CrossRef
  34. Rutin ameliorates methotrexate induced hepatic injury in rats
    Esra Erdogan et al, 2015, Acta Cir. Bras. CrossRef
  35. Rutin protects rat articular chondrocytes against oxidative stress induced by hydrogen peroxide through SIRT1 activation.
    Ji-Young Na et al, 0 CrossRef
  36. Natural compound safranal driven inhibition and dis-aggregation of α-synuclein fibrils
    Shreyada S. Save et al, 2019, International Journal of Biological Macromolecules CrossRef
  37. Synergistic antioxidant action of vitamin E and rutin SNEDDS in ameliorating oxidative stress in a Parkinson’s disease model
    Shrestha Sharma et al, 2016, Nanotechnology CrossRef
  38. Hydrolyzed Rutin Decreases Worsening of Anaplasia in Glioblastoma Relapse
    Carlos Tadeu Parisi de Oliveira et al, 2019, CNSNDDT CrossRef
  39. Enhancing the antioxidative effects of foods containing rutin and α‐amino acids via the Maillard reaction: A model study focusing on rutin‐lysine system
    Hui Liu et al, 2019, J Food Biochem CrossRef
  40. Thunbergia laurifolia Leaf Extract Increased Levels of Antioxidant Enzymes and Protected Human Cell-Lines In Vitro Against Cadmium
    Marasri Junsi et al, 2020, Antioxidants CrossRef
  41. Neuroprotective effect of rutin against colistin-induced oxidative stress, inflammation and apoptosis in rat brain associated with the CREB/BDNF expressions
    Hamit Çelik et al, 2020, Mol Biol Rep CrossRef
  42. null
    S.D. Torawane et al, 2020 CrossRef
  43. Neuroimmunomodulatory and Neuroprotective Effects of the Flavonoid Apigenin in in vitro Models of Neuroinflammation Associated With Alzheimer's Disease.
    Naiara Silva Dourado et al, 2020, Front Aging Neurosci CrossRef
  44. Ruta graveolens as a potential source of neuroactive compounds to promote and restore neural functions
    Luca Colucci-D’Amato et al, 2020, Journal of Traditional and Complementary Medicine CrossRef
  45. New application of rutin: Repair the toxicity of emerging perfluoroalkyl substance to Pseudomonas stutzeri
    Yi Qian et al, 2020, Ecotoxicology and Environmental Safety CrossRef
  46. The Flavonoid Agathisflavone from Poincianella pyramidalis Prevents Aminochrome Neurotoxicity
    Cleonice Creusa Santos et al, 2020, Neurotox Res CrossRef
  47. Therapeutic potential of flavonoids in spinal cord injury
    Peng Zhang et al, 2017 CrossRef
  48. Role of Flavonoids in Neurodegenerative Diseases: Limitations and Future Perspectives
    Gagandeep Maan et al, 2020, CTMC CrossRef
  49. Comparative analysis of rutin content in fruit bodies of some macrofungi
    M.V. Pasailiuk, 2020, Ukr. Bot. J. CrossRef
  50. Rutin ameliorates copper sulfate‐induced brain damage via antioxidative and anti‐inflammatory activities in rats
    Jeremiah Arowoogun et al, 2020, J Biochem Mol Toxicol CrossRef
  51. Lysimachia christinae Hance as an anticancer agent against breast cancer cells
    Hyun A. Kim et al, 2020, Food Sci. Nutr. CrossRef
  52. Regulation of AKT/AMPK signaling, autophagy and mitigation of apoptosis in Rutin-pretreated SH-SY5Y cells exposed to MPP+
    Adaze Bijou Enogieru et al, 2020, Metab Brain Dis CrossRef
  53. Neuroprotective effects of natural compounds on neurotoxin-induced oxidative stress and cell apoptosis.
    Bo Chen et al, 2022, Nutr Neurosci CrossRef
  54. Protective Effect of Nervonic Acid Against 6-Hydroxydopamine-Induced Oxidative Stress in PC-12 Cells
    Hiroki Umemoto et al, 2021, J. Oleo Sci. CrossRef
  55. Rutin improves glutamate uptake and inhibits glutamate excitotoxicity in rat brain slices
    Rafael S. Ferreira et al, 2021, Mol Biol Rep CrossRef
  56. Flavonoids: Potential Candidates for the Treatment of Neurodegenerative Disorders
    Shweta Devi et al, 2021, Biomedicines CrossRef
  57. Protective effects of L. methanol extract against 6-OHDA-induced apoptosis in PC12 cells
    Zahra Tayarani-Najaran et al, 2021, Journal of Ethnopharmacology CrossRef
  58. Rutin maintains redox balance to relieve oxidative stress induced by TBHP in nucleus pulposus cells
    Jian Zhou et al, 2021, In Vitro Cell.Dev.Biol.-Animal CrossRef
  59. Inhibition of γH2AX, COX-2 and regulation of antioxidant enzymes in MPP+-exposed SH-SY5Y cells pre-treated with rutin
    Adaze Bijou Enogieru et al, 2021, Metab Brain Dis CrossRef
  60. ERO1-PDI redox signaling in health and disease
    Vishwanath Jha et al, 2021, Antioxidants & Redox Signaling CrossRef
  61. The antioxidant Rutin counteracts the pathological impact of α-synuclein on the enteric nervous system in vitro
    Anne Christmann et al, 2021 CrossRef
  62. Role of Natural Plant Products Against Alzheimer’s Disease
    Himanshi Varshney et al, 2021, CNSNDDT CrossRef
  63. Antioxidant and Anti-Inflammatory Activity of Cynanchum acutum L. Isolated Flavonoids Using Experimentally Induced Type 2 Diabetes Mellitus: Biological and In Silico Investigation for NF-κB Pathway/miR-146a Expression Modulation
    Reda F. A. Abdelhameed et al, 2021, Antioxidants CrossRef
  64. Comparative assessment of phenolics, antioxidant and antiproliferative activities between Hippophae rhamnoides ssp. sinensis and H. tibetana leaf in Qinghai-Tibet Plateau
    Juan Wei et al, 2021, Food Bioscience CrossRef
  65. Neurodegenerative Diseases and Flavonoids: Special Reference to Kaempferol
    null Rahul et al, 2021, CNSNDDT CrossRef
  66. Repairing of rutin to the toxicity of combined F-53B and chromium pollution on the biofilm formed by Pseudomonas aeruginosa
    Yunhao Zhang et al, 2022, Journal of Environmental Sciences CrossRef
  67. HPLC-DAD phenolics screening and in vitro investigation of haemostatic, antidiabetic, antioxidant and photoprotective properties of Centaurea tougourensis Boiss. & Reut.
    Mohamed Sabri Bensaad et al, 2021 CrossRef
  68. The Antinociceptive Potential of Camellia japonica Leaf Extract, (−)-Epicatechin, and Rutin against Chronic Constriction Injury-Induced Neuropathic Pain in Rats
    Eun Yeong Lim et al, 2022, Antioxidants CrossRef
  69. Ingredients of a Natural Oral Nutritional Supplement and Their Role in the Treatment of Osteoarthritis
    Krish Tejas Bharat et al, 2022, Clin Med�Insights�Arthritis�Musculoskelet Disord CrossRef
  70. Anti-insecticides activity in cell-lines model of Thunbergia laurifolia leaf extract aiming for functional drink
    Marasri JUNSI et al, 2022, Food Sci. Technol CrossRef
  71. Flavonoids, the Family of Plant-Derived Antioxidants Making Inroads into Novel Therapeutic Design Against Ionizing Radiation-Induced Oxidative Stress in Parkinson’s Disease
    Tapan Behl et al, 2022, CN CrossRef
  72. A Critical Analysis of Quercetin as the Attractive Target for the Treatment of Parkinson's Disease
    Ozlem Bahadır Acıkara et al, 2022, CNSNDDT CrossRef
  73. Celastrol attenuates 6-hydroxydopamine-induced neurotoxicity by regulating the miR-146a/PI3K/Akt/mTOR signaling pathways in differentiated rat pheochromocytoma cells
    Liying Guo et al, 2022, Journal of Affective Disorders CrossRef
  74. Novel cudraisoflavone J derivatives as potent neuroprotective agents for the treatment of Parkinson's disease via the activation of Nrf2/HO-1 signaling
    Qili Lu et al, 2022, European Journal of Medicinal Chemistry CrossRef
  75. In silico unraveling of molecular anti-neurodegenerative profile of Citrus medica flavonoids against novel pharmaceutical targets
    Meysam Dehghan et al, 2022, Chem. Pap. CrossRef
  76. Protective Effects of Flavonoid Rutin Against Aminochrome Neurotoxicity
    Fillipe Mendes De Araújo et al, 2023, Neurotox Res CrossRef
  77. Rutin Attenuates Oxidative Stress Via PHB2-Mediated Mitophagy in MPP+-Induced SH-SY5Y Cells
    Xiaoyi Lai et al, 2023, Neurotox Res CrossRef
  78. Elecampane rhizome extract alleviates methotrexate-induced hepatotoxicity and nephrotoxicity in male rats
    Fatemeh Sharifi et al, 2023, ADV TRADIT MED (ADTM) CrossRef
  79. Determination of Rutin's antitumoral effect on EAC solid tumor by AgNOR count and PI3K/AKT/mTOR signaling pathway
    Seher Yılmaz et al, 2023, Med Oncol CrossRef
  80. null
    Mohammad Taghizadieh et al, 2023 CrossRef
  81. Utilizing X-ray fluorescence (XRF) method to evaluate the content of metal elements in soil and their effects on the total phenolic and flavonoid contents of some medicinal plants
    Hien Minh Nguyen et al, 2023, Environ Monit Assess CrossRef
  82. Effects of Nobiletin supplementation on the freezing diluent on porcine sperm cryo-survival and subsequent in vitro embryo development
    Areeg Almubarak et al, 2024, Theriogenology CrossRef
  83. Neurotoxicity Evaluation of Rutin Trihydrate vs. Metformin in Zebrafish Larvae: A Comparative Risk Assessment Study
    R. Tejaswini et al, 2024, E3S Web Conf. CrossRef
  84. Benefits of rutin on mitochondrial function and inflammation in an aluminum-induced neurotoxicity rat model: Potential interest for the prevention of neurodegeneration
    Khadidja Kessas et al, 2024, Biochimie CrossRef