galactose has been researched along with curcumin in 47 studies
Timeframe | Studies, this research(%) | All Research% |
---|---|---|
pre-1990 | 0 (0.00) | 18.7374 |
1990's | 0 (0.00) | 18.2507 |
2000's | 2 (4.26) | 29.6817 |
2010's | 29 (61.70) | 24.3611 |
2020's | 16 (34.04) | 2.80 |
Authors | Studies |
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Krishnaswamy, K; Reddy, GB; Suryanarayana, P | 1 |
Kanth, VR; Kumar, CS; Raju, TN; Ramana, BV; Reddy, GB; Reddy, PU; Suryanarayana, P | 1 |
Dogra, S; Kumar, A; Prakash, A | 1 |
Da-lozzo, EJ; de Freitas, RA; Franco, CR; Koop, HS; Mitchell, DA; Silveira, JL | 1 |
Alonso, A; Averick, S; Banerjee, P; Corbo, C; Dolai, S; Farid, M; Obeysekera, D; Raja, K; Shi, W; Sun, C | 1 |
Annamalai, AR; Banji, D; Banji, OJ; Dasaroju, S | 1 |
Averick, S; Debnath, S; Dolai, S; Fata, JE; Raja, K; Saloum, D; Sun, C | 1 |
Bresolin, TM; Da-Lozzo, EJ; Faraco, CD; Moledo, RC; Ortolani-Machado, CF; Silveira, JL | 1 |
Liao, C; Wan, Y; Wang, Z; Wu, H; Yin, D; Zan, X; Zhou, N | 1 |
Banji, D; Banji, OJ; Dasaroju, S; Kranthi, KC | 1 |
Choi, JH; Hwang, IK; Jung, HY; Kim, CJ; Kim, JW; Kim, W; Lee, S; Nam, SM; Yoo, DY; Yoo, M; Yoon, YS | 1 |
Banji, D; Banji, OJ; Ch, K | 1 |
I M, K; Jeena, K; Kumar, D; Kuttan, R; Liju, VB; Maliakel, B | 1 |
de Freitas, RA; de Souza, MM; Koop, HS; Savi, R; Silveira, JL | 1 |
Anil Kumar, PR; James, NR; Nishna, N; Raj, DK; Sarika, PR | 1 |
Alonso-Varona, A; Azcoitia, I; Bastida, F; Castro, B; del Olmo, M; Palomares, T; Soldevilla, JJ | 1 |
James, NR; Kumar, PR; Raj, DK; Sarika, PR | 1 |
Guo, Y; Huang, HC; Jiang, ZF; Ma, XW; Zhao, J; Zhao, JY; Zheng, BW | 1 |
Chen, Q; Fu, W; Lei, Y; Ren, X; Wang, H; Yu, H | 1 |
Chen, T; Guo, C; Hu, T; Ma, J; Qiu, L; Wen, L; Zhao, M; Zhong, Q | 1 |
Bastida, FD; Castro, B; López Casanova, P; Segovia, T; Soldevilla, JJ; Verdú-Soriano, J | 1 |
Bao, D; Chen, Q; Cui, Y; Dai, Y; Fu, H; Hao, Q; Hou, D; Nie, X; Yan, Z; Yin, Y; Zheng, Y | 1 |
Kamal, A; Pimentel, M | 1 |
E R, S; I M, K; Kuttan, R; Maliakel, B; Nair, SS; P P, B | 1 |
Hu, L; Huang, S; Huang, Y; Wan, J; Wang, D; Xia, Z; Xu, W; Zheng, G | 1 |
Angalene, JLA; Kumar, AM; Kumar, SS; Paulraj, P; Preethi, R; Raji, P; Roshini, SM; Samrot, AV; Stefi, SM | 1 |
Deng, S; Huang, Y; Liu, Y; Luo, X; Pan, J; Wang, M; Xia, Z; Xu, W | 1 |
Asha, S; Girishkumar, B; Grace, J; Jose, SP; Krishnakumar, IM; Ratheesh, M; Sandya, S; Sheethal, S | 1 |
Castro, B; Comino-Sanz, IM; López-Franco, MD; Pancorbo-Hidalgo, PL | 1 |
Cao, JH; Chai, YR; Ding, Y; Feng, YK; Guo, L; Guo, SN; Li, JH; Liu, GH; Wei, TT | 1 |
Agrahari, AK; Gupta, MK; Prakash, P; Sharma, K; Singh, AK; Singh, AS; Tiwari, VK; Yadav, S | 1 |
Ding, R; Wang, J; Wang, M; Wang, Y; Zhang, Z; Zhong, C | 1 |
Abdelfattah, EA; Abou-Zeid, KM; Al Jaouni, SK; Alsenosy, AA; Atta, MS; El-Far, AH; Elewa, YHA; Mousa, SA; Noreldin, AE | 1 |
Banik, K; Hegde, M; Khatoon, E; Kunnumakkara, AB; Naidu, VGM; Puppala, ER; Thakur, KK | 1 |
Bakshi, MK; Bepari, AK; Hasan Apu, M; Hasan, J; Hossain, M; Islam, MR; Rahman, A; Rahman, GMS; Rahman, MA; Reza, HM; Shill, MC; Shuvo, AA; Uddin, M | 1 |
Allocca, M; Andreotti, G; Cubellis, MV; Hay Mele, B; Liguori, L; Lukas, J; Monti, MC; Monticelli, M; Morretta, E | 1 |
Arya, JK; Rizvi, SI; Singh, A; Srivastava, P; Verma, AK | 1 |
Apu, MMH; Bhakta, MR; Islam, F; Islam, MR; Rahman, MA; Reza, HM; Shuvo, AA | 1 |
Chandra Prakash, SV; Dharmesh, SM; Harsha, MR | 1 |
Choi, EH; Shin, KS; Son, SU | 1 |
Cao, F; Ding, B; Guo, C; Sun, M; Zhai, G; Zhang, L | 1 |
Muangsiri, W; Nimmannit, U; Rojsitthisak, P; Rungphanichkul, N | 1 |
Andrade, DF; Battistel, AP; Beck, RC; Coradini, K; da Rocha, MI; Fonseca, FN; Friedrich, RB; Guterres, SS; Oliveira, CM; Pohlmann, AR; Vencato, MS | 1 |
Beck, RC; Coradini, K; Friedrich, RB; Kann, B; Offerhaus, HL; Windbergs, M | 1 |
Babu, M; Durairaj, P; Narayanan, V; Venkatesan, S | 1 |
Gao, Y; Liu, N; Lu, Y; Mao, L; Zhang, Y | 1 |
da Silva Neto, MR; de Gomes, MG; de Oliveira Pacheco, C; Dos Santos, RB; Giacomeli, R; Haas, SE; Maciel, TR; Parisotto, AJM; Ribeiro, ACF | 1 |
1 review(s) available for galactose and curcumin
Article | Year |
---|---|
Influence of Dietary Restriction on Irritable Bowel Syndrome.
Topics: Capsaicin; Capsicum; Curcumin; Diet, Gluten-Free; Dietary Fiber; Dietary Supplements; Fermentation; Fructose; Galactose; Humans; Irritable Bowel Syndrome; Lactose; Oligosaccharides | 2019 |
1 trial(s) available for galactose and curcumin
Article | Year |
---|---|
Antioxidant dressing therapy versus standard wound care in chronic wounds (the REOX study): study protocol for a randomized controlled trial.
Topics: Acetylcysteine; Antioxidants; Bandages; Curcumin; Galactans; Galactose; Humans; Mannans; Multicenter Studies as Topic; Plant Gums; Randomized Controlled Trials as Topic; Single-Blind Method; Spain; Wound Healing; Wounds and Injuries | 2020 |
45 other study(ies) available for galactose and curcumin
Article | Year |
---|---|
Effect of curcumin on galactose-induced cataractogenesis in rats.
Topics: Aldehyde Reductase; Animals; Antioxidants; Body Weight; Cataract; Chromatography, Gel; Chromatography, High Pressure Liquid; Crystallins; Curcumin; Disease Models, Animal; Eating; Galactose; Glutathione; Glycation End Products, Advanced; L-Iditol 2-Dehydrogenase; Lens, Crystalline; Lipid Peroxidation; Male; Oxidative Stress; Rats; Rats, Sprague-Dawley | 2003 |
Cumulative antioxidant defense against oxidative challenge in galactose-induced cataractogenesis in Wistar rats.
Topics: Animals; Antioxidants; Cataract; Curcumin; Disease Models, Animal; Drug Synergism; Drug Therapy, Combination; Galactose; Glutathione; Glutathione Reductase; Lens, Crystalline; Lipid Peroxides; Male; Oxidative Stress; Rats; Rats, Wistar; Superoxide Dismutase; Vitamin E | 2006 |
Protective effect of curcumin (Curcuma longa) against D-galactose-induced senescence in mice.
Topics: Aging; Animals; Cognition Disorders; Curcuma; Curcumin; Galactose; Male; Mice; Mitochondria; Molecular Structure; Oxidative Stress; Stereoisomerism | 2011 |
Rheological characterization of a xanthan-galactomannan hydrogel loaded with lipophilic substances.
Topics: Administration, Cutaneous; Animals; Antineoplastic Agents; Curcumin; Drug Carriers; Galactose; Hydrogels; Mannans; Polysaccharides, Bacterial; Rheology; Skin; Skin Absorption; Swine | 2012 |
"Clicked" sugar-curcumin conjugate: modulator of amyloid-β and tau peptide aggregation at ultralow concentrations.
Topics: Alzheimer Disease; Amyloid beta-Peptides; Animals; Antioxidants; Cells, Cultured; Curcumin; Galactose; Hippocampus; Humans; Mice; tau Proteins | 2011 |
Piperine and curcumin exhibit synergism in attenuating D-galactose induced senescence in rats.
Topics: Aging; Alkaloids; Animals; Antioxidants; Benzodioxoles; Brain; Catalase; Curcumin; Drug Synergism; Galactose; Glutathione; Male; Malondialdehyde; Maze Learning; Piperidines; Polyunsaturated Alkamides; Pyramidal Cells; Rats; Rats, Wistar; Serotonin; Superoxide Dismutase | 2013 |
Dendrimer-curcumin conjugate: a water soluble and effective cytotoxic agent against breast cancer cell lines.
Topics: Alkynes; Antineoplastic Agents, Phytogenic; Apoptosis; Carboxylic Acids; Caspase 3; Cell Line, Tumor; Cell Survival; Curcumin; Cytotoxins; Dendrimers; Dose-Response Relationship, Drug; Enzyme Activation; Female; Galactose; Humans; Hydrogenation; Hydrophobic and Hydrophilic Interactions; Molecular Structure; Solubility; Structure-Activity Relationship; Water | 2013 |
Curcumin/xanthan-galactomannan hydrogels: rheological analysis and biocompatibility.
Topics: Administration, Topical; Animals; Biocompatible Materials; Chick Embryo; Chorioallantoic Membrane; Curcumin; Galactans; Galactose; Hydrogels; Mannans; Materials Testing; Neovascularization, Physiologic; Plant Gums; Polysaccharides, Bacterial; Rheology; Viscoelastic Substances | 2013 |
Galactosylated chitosan-polycaprolactone nanoparticles for hepatocyte-targeted delivery of curcumin.
Topics: Apoptosis; Cell Survival; Chitosan; Curcumin; Drug Carriers; Galactose; Glycosylation; HeLa Cells; Hep G2 Cells; Hepatocytes; Humans; Kinetics; Nanoparticles; Particle Size; Polyesters | 2013 |
Curcumin and piperine abrogate lipid and protein oxidation induced by D-galactose in rat brain.
Topics: Aging; Alkaloids; Animals; Antioxidants; Benzodioxoles; Brain; Curcumin; Drug Combinations; Galactose; Lipid Peroxidation; Oxidation-Reduction; Oxidative Stress; Piperidines; Polyunsaturated Alkamides; Random Allocation; Rats; Rats, Wistar | 2013 |
Effects of curcumin (Curcuma longa) on learning and spatial memory as well as cell proliferation and neuroblast differentiation in adult and aged mice by upregulating brain-derived neurotrophic factor and CREB signaling.
Topics: Aging; Animals; Brain; Brain-Derived Neurotrophic Factor; Cell Proliferation; Cognition Disorders; CREB-Binding Protein; Curcuma; Curcumin; Doublecortin Protein; Galactose; Male; Maze Learning; Memory Disorders; Mice, Inbred C57BL; Models, Animal; Neurogenesis; Phosphorylation; Phytotherapy; Plant Extracts; Signal Transduction; Spatial Memory; Up-Regulation | 2014 |
Curcumin and hesperidin improve cognition by suppressing mitochondrial dysfunction and apoptosis induced by D-galactose in rat brain.
Topics: Animals; Antioxidants; Apoptosis; Brain; Citrate (si)-Synthase; Cognition; Curcumin; Dose-Response Relationship, Drug; Electron Transport Chain Complex Proteins; Galactose; Hesperidin; Mitochondria; Oxidation-Reduction; Oxidative Stress; Rats; Rats, Wistar; Succinate Dehydrogenase | 2014 |
Enhanced bioavailability and safety of curcumagalactomannosides as a dietary ingredient.
Topics: Adult; Animals; Anticarcinogenic Agents; Colloids; Curcumin; Female; Foods, Specialized; Galactose; Humans; India; Intestinal Absorption; Male; Mannans; Mannosides; Mutagenicity Tests; No-Observed-Adverse-Effect Level; Rats, Sprague-Dawley; Rats, Wistar; Solubility; Spices; Toxicity Tests, Acute; Toxicity Tests, Subchronic; Trigonella | 2015 |
Topical curcumin-loaded hydrogels obtained using galactomannan from Schizolobium parahybae and xanthan.
Topics: Administration, Topical; Animals; Anti-Inflammatory Agents; Cell Line; Cell Survival; Croton Oil; Curcumin; Drug Liberation; Drug Stability; Edema; Emulsions; Fabaceae; Galactose; Hot Temperature; Hydrogels; Hydrogen-Ion Concentration; Male; Mannans; Mice; Polysaccharides, Bacterial; Skin Absorption; Stress, Mechanical; Swine; Wound Healing | 2015 |
Galactosylated pullulan-curcumin conjugate micelles for site specific anticancer activity to hepatocarcinoma cells.
Topics: Antineoplastic Agents; Curcumin; Drug Stability; Galactose; Glucans; Hep G2 Cells; Humans; Liver Neoplasms; Magnetic Resonance Spectroscopy; Micelles; Microscopy, Electron, Scanning | 2015 |
Development and preclinical evaluation of a new galactomannan-based dressing with antioxidant properties for wound healing.
Topics: Acetylcysteine; Animals; Antioxidants; Bandages; Curcumin; Cytokines; Fibroblasts; Galactans; Galactose; Humans; Inflammation; Irritants; Mannans; Materials Testing; Oxidative Stress; Plant Gums; Reactive Oxygen Species; Sus scrofa; Wound Healing | 2015 |
Galactosylated alginate-curcumin micelles for enhanced delivery of curcumin to hepatocytes.
Topics: Alginates; Biological Transport; Cell Death; Curcumin; Drug Carriers; Drug Liberation; Galactose; Glucuronic Acid; Hep G2 Cells; Hepatocytes; Hexuronic Acids; Humans; Micelles; Surface Properties | 2016 |
Antioxidative and Neuroprotective Effects of Curcumin in an Alzheimer's Disease Rat Model Co-Treated with Intracerebroventricular Streptozotocin and Subcutaneous D-Galactose.
Topics: Alzheimer Disease; Amyloid beta-Peptides; Amyloid Precursor Protein Secretases; Animals; Aspartic Acid Endopeptidases; Curcumin; Disease Models, Animal; Galactose; Glutathione; Hippocampus; Injections, Intraventricular; Injections, Subcutaneous; Male; Malondialdehyde; Maze Learning; Neuroprotective Agents; Presenilin-1; Protein Carbonylation; Rats; Rats, Sprague-Dawley; Streptozocin; tau Proteins | 2016 |
Neuroprotective effect of three caffeic acid derivatives via ameliorate oxidative stress and enhance PKA/CREB signaling pathway.
Topics: Animals; Avoidance Learning; Caffeic Acids; Cell Survival; Curcumin; Cyclic AMP Response Element-Binding Protein; Cyclic AMP-Dependent Protein Kinases; Dose-Response Relationship, Drug; Galactose; Hydrogen Peroxide; Lactates; Maze Learning; Mice; Neuroprotective Agents; Oxidative Stress; PC12 Cells; Phenylethyl Alcohol; Random Allocation; Rats; Signal Transduction; Spatial Memory | 2017 |
Curcumin improves alcoholic fatty liver by inhibiting fatty acid biosynthesis.
Topics: Animals; Anti-Inflammatory Agents, Non-Steroidal; Central Nervous System Depressants; Curcumin; Ethanol; Fatty Acids; Fatty Liver, Alcoholic; Galactose; Glucuronic Acid; Liver; Male; Metabolomics; Mice; Pentose Phosphate Pathway | 2017 |
The use of an antioxidant dressing on hard-to-heal wounds: a multicentre, prospective case series.
Topics: Acetylcysteine; Adult; Aged; Aged, 80 and over; Antioxidants; Bandages; Curcumin; Female; Galactans; Galactose; Humans; Kaplan-Meier Estimate; Male; Mannans; Middle Aged; Plant Gums; Prospective Studies; Wound Healing; Wounds and Injuries | 2017 |
Curcumin exerts a protective effect against premature ovarian failure in mice.
Topics: 8-Hydroxy-2'-Deoxyguanosine; Aldehydes; Animals; Anti-Mullerian Hormone; Apoptosis; Curcumin; Cyclin-Dependent Kinase Inhibitor p16; Deoxyguanosine; Disease Models, Animal; Female; Galactose; Gonads; Hypothalamo-Hypophyseal System; Mice, Inbred C57BL; Ovary; Oxidative Stress; Primary Ovarian Insufficiency; Protective Agents; RNA, Messenger; Tyrosine | 2018 |
Comparative neuroprotective effects of native curcumin and its galactomannoside formulation in carbofuran-induced neurotoxicity model.
Topics: Acetylcholinesterase; Animals; Behavior, Animal; Biological Availability; Brain; Carbofuran; Curcumin; Galactose; Liver; Male; Mannans; Mitochondria; Neuroprotective Agents; Neurotoxicity Syndromes; Oxidative Stress; Pesticides; Rats, Sprague-Dawley | 2020 |
Curcumin-loaded galactosylated BSA nanoparticles as targeted drug delivery carriers inhibit hepatocellular carcinoma cell proliferation and migration.
Topics: Antineoplastic Agents; Apoptosis; Binding, Competitive; Carcinoma, Hepatocellular; Cell Movement; Cell Proliferation; Curcumin; Drug Carriers; Drug Delivery Systems; Drug Liberation; Endocytosis; Galactose; Hep G2 Cells; Humans; Liver Neoplasms; Nanoparticles; Particle Size; Serum Albumin, Bovine; Spectroscopy, Fourier Transform Infrared; Transcription Factor RelA | 2018 |
Purification, characterization and utilization of polysaccharide of Araucaria heterophylla gum for the synthesis of curcumin loaded nanocarrier.
Topics: Antineoplastic Agents; Antioxidants; Arabinose; Araucaria; Curcumin; Drug Delivery Systems; Galactose; Glucose; Glucosinolates; Humans; MCF-7 Cells; Neoplasms; Polysaccharides; Rhamnose; Spectroscopy, Fourier Transform Infrared; Tetroses | 2019 |
Evaluation of Intestinal Absorption Mechanism and Pharmacokinetics of Curcumin-Loaded Galactosylated Albumin Nanoparticles.
Topics: Administration, Oral; Animals; Biological Availability; Caco-2 Cells; Curcumin; Drug Carriers; Drug Delivery Systems; Endocytosis; Galactose; Humans; Intestinal Absorption; Male; Nanoparticles; Rats, Sprague-Dawley; Serum Albumin, Bovine | 2019 |
Anti-Ulcerative Effect of Curcumin-Galactomannoside Complex on Acetic Acid-Induced Experimental Model by Inhibiting Inflammation and Oxidative Stress.
Topics: Acetic Acid; Animals; Anti-Ulcer Agents; Colitis, Ulcerative; Curcumin; Drug Combinations; Galactose; Inflammation; Intestinal Mucosa; Male; Mannosides; Oxidative Stress; Plant Extracts; Rats; Rats, Wistar; Trigonella | 2020 |
Curcumin protects thymus against D-galactose-induced senescence in mice.
Topics: AIRE Protein; Animals; Apoptosis; Cell Proliferation; Cellular Senescence; Curcumin; Galactose; Mice, Inbred ICR; Protective Agents; Thymus Gland; Transcription Factors | 2021 |
Making of water soluble curcumin to potentiate conventional antimicrobials by inducing apoptosis-like phenomena among drug-resistant bacteria.
Topics: Animals; Anti-Infective Agents; Apoptosis; Bacteria; Biofilms; Click Chemistry; Curcumin; Drug Synergism; Galactose; Male; Microbial Sensitivity Tests; Rats; Reactive Oxygen Species; Solubility; Toxicity Tests | 2020 |
Curcumin-loaded liposomes with the hepatic and lysosomal dual-targeted effects for therapy of hepatocellular carcinoma.
Topics: Carcinoma, Hepatocellular; Curcumin; Galactose; Humans; Liposomes; Liver Neoplasms; Lysosomes | 2021 |
Thymoquinone and Curcumin Defeat Aging-Associated Oxidative Alterations Induced by D-Galactose in Rats' Brain and Heart.
Topics: Animals; Benzoquinones; Brain; Curcumin; Galactose; Immunohistochemistry; Liver; Myocardium; Organ Specificity; Oxidation-Reduction; Oxidative Stress; Rats; Structure-Activity Relationship | 2021 |
A novel bioavailable curcumin-galactomannan complex modulates the genes responsible for the development of chronic diseases in mice: A RNA sequence analysis.
Topics: Animals; Biological Availability; Chronic Disease; Computational Biology; Curcumin; Drug Combinations; Drug Compounding; Female; Galactose; Mannans; Mice; Mice, Inbred BALB C; Sequence Analysis, RNA; Trigonella | 2021 |
Curcumin improves D-galactose and normal-aging associated memory impairment in mice: In vivo and in silico-based studies.
Topics: Aging; Amyloid Precursor Protein Secretases; Animals; Antioxidants; Aspartic Acid Endopeptidases; Curcumin; Galactose; Glutathione Transferase; Kelch-Like ECH-Associated Protein 1; Memory Disorders; Mice; Molecular Docking Simulation; NF-E2-Related Factor 2; Oxidative Stress | 2022 |
Curcumin Has Beneficial Effects on Lysosomal Alpha-Galactosidase: Potential Implications for the Cure of Fabry Disease.
Topics: 1-Deoxynojirimycin; alpha-Galactosidase; Curcumin; Fabry Disease; Galactose; Humans; Lysosomes; Mutation | 2023 |
Curcumin displays a potent caloric restriction mimetic effect in an accelerated senescent model of rat.
Topics: Animals; Antioxidants; Caloric Restriction; Curcumin; Galactose; Oxidative Stress; Rats | 2023 |
Combination of epigallocatechin 3 gallate and curcumin improves D-galactose and normal-aging associated memory impairment in mice.
Topics: Aging; Animals; Catechin; Curcumin; Galactose; Memory Disorders; Mice; Oxidative Stress | 2023 |
Modified pectic polysaccharide from turmeric (Curcuma longa): A potent dietary component against gastric ulcer.
Topics: Anti-Ulcer Agents; Antioxidants; Cell Line; Curcuma; Down-Regulation; Galactose; Gastric Mucosa; H(+)-K(+)-Exchanging ATPase; Helicobacter pylori; Hexuronic Acids; Humans; Magnetic Resonance Spectroscopy; Molecular Weight; Pectins; Polysaccharides; Spectroscopy, Fourier Transform Infrared; Stomach Ulcer | 2016 |
Tumor inhibitory effect via immunostimulating activities of a rhamnogalacturonan-I-rich polysaccharide isolated from turmeric (Curcuma longa L.).
Topics: Arabinose; Curcuma; Cytokines; Diarylheptanoids; Ethanol; Food Ingredients; Galactose; Humans; Immunologic Factors; Lung Neoplasms; Polysaccharides; Rhamnogalacturonans; Rhamnose; Water | 2022 |
Lung-targeted delivery system of curcumin loaded gelatin microspheres.
Topics: Animal Structures; Animals; Biological Availability; Calorimetry, Differential Scanning; Curcumin; Drug Delivery Systems; Emulsions; Formaldehyde; Gelatin; Glutaral; Hexoses; Injections, Intravenous; Lung; Lung Neoplasms; Microscopy, Electron, Scanning; Microspheres; Mineral Oil; Particle Size; Powders; Rabbits; Rheology; Surface Properties; Surface-Active Agents; Tissue Distribution; Transition Temperature | 2011 |
Preparation of curcuminoid niosomes for enhancement of skin permeation.
Topics: Animals; Chemistry, Pharmaceutical; Cholesterol; Chromatography, High Pressure Liquid; Curcumin; Hexoses; In Vitro Techniques; Indicators and Reagents; Liposomes; Microscopy, Electron, Scanning; Particle Size; Permeability; Reproducibility of Results; Skin Absorption; Snakes; Surface-Active Agents | 2011 |
A novel approach to arthritis treatment based on resveratrol and curcumin co-encapsulated in lipid-core nanocapsules: In vivo studies.
Topics: Animals; Anti-Inflammatory Agents; Arthritis, Experimental; Curcumin; Drug Carriers; Foot Joints; Grape Seed Extract; Hexoses; Injections, Intraperitoneal; Male; Nanocapsules; Polyesters; Polysorbates; Rats, Wistar; Resveratrol; Stilbenes; Treatment Outcome | 2015 |
Skin penetration behavior of lipid-core nanocapsules for simultaneous delivery of resveratrol and curcumin.
Topics: Cell Survival; Cells, Cultured; Curcumin; Drug Carriers; Drug Liberation; Fibroblasts; Grape Seed Extract; Hexoses; Humans; In Vitro Techniques; Nanocapsules; Oils; Polyesters; Polyphenols; Resveratrol; Skin Absorption; Stilbenes | 2015 |
Protective effects of curcumin on bleomycin-induced changes in lung glycoproteins.
Topics: Acetylglucosaminidase; Animals; Antibiotics, Antineoplastic; beta-Galactosidase; beta-Glucosidase; Bleomycin; Bronchoalveolar Lavage Fluid; Curcumin; Fibronectins; Fucose; Glycoproteins; Hexosamines; Hexoses; Macrophages, Alveolar; Male; N-Acetylneuraminic Acid; Pulmonary Fibrosis; Rats; Rats, Wistar | 2020 |
Surfactant addition to modify the structures of ethylcellulose oleogels for higher solubility and stability of curcumin.
Topics: Cellulose; Curcumin; Drug Stability; Hexoses; Oils; Organic Chemicals; Oxidation-Reduction; Peroxides; Rheology; Solubility; Surface-Active Agents; Ultraviolet Rays | 2020 |
Surface-functionalized curcumin-loaded polymeric nanocapsules could block apomorphine-induced behavioral changes in rats.
Topics: Animals; Apomorphine; Behavior, Animal; Curcumin; Dopamine Agonists; Enzyme Inhibitors; Hexoses; Nanocapsules; Plants, Medicinal; Rats; Stereotyped Behavior; Treatment Outcome; Vitamin E | 2022 |