"Pharmacokinetic Study of Nanoparticulate Curcumin: Oral Formulation for Enhanced Bioavailability"
written by R. Ravichandran,
published by Journal of Biomaterials and Nanobiotechnology, Vol.4 No.3, 2013
has been cited by the following article(s):
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[16] The potential effect of garlic extract and curcumin nanoparticles against complication accompanied with experimentally induced diabetes in rats
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[17] Water Soluble Octenyl Succinylated Cassava Starch‐Curcumin Nanoformulation With Enhanced Bioavailability and Anticancer Potential
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[18] Injectable Nanocurcumin-Formulated Chitosan-g-Pluronic Hydrogel Exhibiting a Great Potential for Burn Treatment
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[19] Selection and optimization of nano‐formulation of P‐glycoprotein inhibitor for reversal of doxorubicin resistance in COLO 205 cells
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[20] Pharmacokinetics of different pharmaceutical nano curcumin products by oral administration
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[21] Comparative Oral Absorption of Curcumin in a Natural Turmeric Matrix with Two Other Curcumin Formulations: An Open‐label Parallel‐arm Study
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[24] Nanotechnological Approaches for Enhancing the Oral Bioavailability of Curcumin
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[25] Inhibition and Adsorption Actions of Nano Curcumin for Corrosion of Carbon Steel Alloy in 3.5% NaCl Solution
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[26] Electrospun curcumin gelatin blended nanofibrous mats accelerate wound healing by Dkk-1 mediated fibroblast mobilization and MCP-1 mediated anti-inflammation
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[27] Salt effect on solubilization of hydrophobic drugs in block copolymeric micelles and investigation of their in vitro and in vivo oral efficiency
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[28] Selection and optimization of nano‐formulation of P‐glycoprotein inhibitor for reversal of doxorubicin resistance in COLO205 cells
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[29] Bringing Curcumin to the Clinic in Cancer Prevention: a Review of Strategies to Enhance Bioavailability and Efficacy.
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[30] Bringing Curcumin to the Clinic in Cancer Prevention: a Review of Strategies to Enhance Bioavailability and Efficacy
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[31] Pluronic stabilized Fe 3 O 4 magnetic nanoparticles for intracellular delivery of curcumin
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[32] A green chemistry approach for nanoencapsulation of bioactive compound–Curcumin
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[33] Development of curcumin nanocrystals and evaluation of GI absorption efficiency in comparison with curcumin and turmeric powder
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[34] HPLC MONITORING OF CURCUMIN IN PREVENTIVE AND THERAPEUTIC TREATMENT OF RATS TO DIMINISH ACUTE INFLAMMATION AND OXIDATIVE …
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[35] Water Soluble Curcumin Preparation Via Electrospinning and Flash Nanoprecipitation
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[36] A histological and immunohistochemical study of different therapeutic modalities for experimentally induced ulcerative colitis in rats
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[37] Effects of Fatty Acids on the Interfacial and Solution Behavior of Mixed Lipidic Aggregates Called Solid Lipid Nanoparticles
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[38] DEVELOPMENT OF CURCUMIN NANOCRYSTALS AND EVALUATION OF GI ABSORPTION EFFICIENCY IN COPMPARISON WITH CURCUMIN AND …
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[39] Molecular mechanisms underlying chemopreventive potential of curcumin: Current challenges and future perspectives
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[40] Neuroprotective Activity of Curcumin in Combination with Piperine against Quinolinic Acid Induced Neurodegeneration in Rats
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[41] Antihyperglicemic Activity of Curcuma Xanthorrizha Roxb. Nanocurcuminoid Emulsion on Streptozotocin Induced Sprague-Dawley Rat
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[43] Aktivitas Antihiperglikemia Sediaan Emulsi Nanokurkuminoid Temulawak Pada Tikus Sprague Dawley Yang Diinduksi Streptozotosin.
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[44] Passively Targeted Curcumin‐Loaded PEGylated PLGA Nanocapsules for Colon Cancer Therapy In Vivo
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[45] Anti-inflammatory Activity of Temulawak Nanocurcuminoid Coated with Palmitic Acid in The Sprague Dawley Rat
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[46] Curcumin Pharmacokinetic and Pharmacodynamic Evidences in Streptozotocin-Diabetic Rats Support the Antidiabetic Activity to Be via Metabolite (s)
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[47] Oral Bioavailability: Issues and Solutions via Nanoformulations
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[48] Improved blood–brain-barrier permeability and tissue distribution following the oral administration of a food-grade formulation of curcumin with fenugreek fibre
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[49] BIOENHANCING EFFECT OF BERBERIS ARISTATA AND CURCUMA LONGA ON PHARMACOKINETICS OF AMOXICILLIN IN CALVES
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[50] Development, characterization and pharmacokinetic profile of chitosan-sodium tripolyphosphate nanoparticles based drug delivery systems for curcumin