Does <i>Crocus sativus</i> (Saffron) Have an Influence or Effect on Ocular Health: A Systematic Literature Review. [PDF]
Ferrara S, Schloss J.
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Ameliorative effects of Crocin as a potent antioxidant with its spectral characterization against Cadmium chloride-induced hepatotoxicity. [PDF]
Hamza RZ +10 more
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Phytochemistry, Biological Activities, Molecular Mechanisms, and Toxicity of Saffron (<i>Crocus sativus</i> L.): A Comprehensive Overview. [PDF]
Ziani A +15 more
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Exploring the mechanism of saffron in treating viral myocarditis using network pharmacology and molecular docking. [PDF]
Zhu Z, Hu J, Li L.
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HPLC-ESI-QTOF-MS/MS-Guided Profiling of Bioactive Compounds in Fresh and Stored Saffron Corms Reveals Potent Anticancer Activity Against Colorectal Cancer. [PDF]
Baddaoui S +11 more
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Therapeutic Potential of Quercetin, Silibinin, and Crocetin in a High-Fat Diet-Induced Mouse Model of MASLD: The Role of CD36 and PLIN3. [PDF]
Sotiropoulou M +9 more
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Integrative effects of saffron and physical activity on endurance performance, quality of life, cognitive, emotional, and metabolic outcomes in age-related and neurodegenerative diseases. [PDF]
Li L, Wang K.
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<i>Gallic</i>, <i>Aconitic</i>, and <i>Crocetin</i> Acids as Potential TNF Modulators: An Integrated Study Combining Molecular Docking, Dynamics Simulations, ADMET Profiling, and Gene Expression Analysis. [PDF]
Manakbayeva A +7 more
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Interpretation of the efficacy-oriented components of decoction pieces in compounds based on the spectrum-effect relationship: Huangqin Qingfei decoction as an example. [PDF]
Liu Y +7 more
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Saffron as a natural modulator of reverse cholesterol transport genes in atherosclerotic rabbits, with molecular docking insights. [PDF]
Mohd Zainal Abidin Shukri Y +8 more
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