Page last updated: 2024-08-25

chitosan and vanillin

chitosan has been researched along with vanillin in 24 studies

Research

Studies (24)

TimeframeStudies, this research(%)All Research%
pre-19900 (0.00)18.7374
1990's0 (0.00)18.2507
2000's1 (4.17)29.6817
2010's10 (41.67)24.3611
2020's13 (54.17)2.80

Authors

AuthorsStudies
Auras, RA; Harte, BR; Rachtanapun, P; Rattanapanone, N; Sangsuwan, J1
Kandaswamy, M; Krishnapriya, KR1
Cao, J; Hua, D; Jiang, J; Pan, X; Zhu, X1
Duan, W; Kong, LX; Li, PW; Peng, Z; Wang, G; Wang, QH; Yang, ZM1
Meng, X; Su, DS; Wang, L; Xiao, FS; Zhang, B1
Doshi, J; Doshi, P; Kumar, R; Nikalje, M; Ravetkar, S; Srivastava, G; Walke, S1
Li, J; Li, Y; Zou, Q1
Han, Z; Liu, YJ; Xiong, XY; Zeng, XA; Zhang, ZH1
Gangasalam, A; Kadhar Mohamed, MSB; Kamaraj, S; Kandasamy, R; Maria, GA; Palanisamy, UM1
Radha, KV; Thyriyalakshmi, P1
Arnon-Rips, H; Cohen, Y; Porat, R; Poverenov, E; Saidi, L1
Acevedo-Mackey, D; Acharjee, N; Akhtar, K; Al-Buriahi, MS; Amandi, A; An, Y; Anjum, NA; Asgari, Q; Badiei, B; Baez Vasquez, AY; Bagley, GD; Bahreini, MS; Bajelan, S; Baluja, MQ; Barbieri, MA; Batalha, MA; Bettiol, H; Bhattarai, U; Biset, JC; Bjerg, M; Björnsson, BT; Boag, AM; Borthwick, MS; Boukhris, I; Bragança, MLBM; Breves, JP; Britz-McKibbin, P; Broaddus, RR; Burnell, JE; Camargo, CA; Campo, M; Carlsen, KL; Catchpole, B; Cavalli, L; Chai, C; Chanakya, HN; Chang, AYH; Chantada, A; Chen, W; Chen, X; Chen, Y; Cheng, ZL; Chenoweth, DA; Chhetri, S; Coelho, CCNDS; Coker, ES; Cole, MA; Coniglio, A; Connor, TR; Corbishley, A; D'Arienzo, M; da Silva, AAM; Dai, Y; de Oliveira, BR; Dignac, MF; Dong, A; Dottino, JA; Duo, J; Einarsdottir, IE; Ekanayake, EMDNK; El Fels, L; El Hayany, B; El Shahawy, O; Elliott, RJR; Fabrizi, E; Farkas, K; Fellman, B; Fenoglio, D; Ferrario, M; Flögel, F; Fujiogi, M; Gamage, BD; Ganson, KT; Gao, X; Gärtner, S; Gautam, A; Gautam, S; Gaze, WH; Gosse, JA; Graham, DW; Graham, PA; Guastella, G; Guerrero, S; Gul, M; Guo, B; Guo, X; Gupta, VK; Hafidi, M; Halland, A; Han, W; Hardisty, M; Hasegawa, K; Hess, ST; Heydari, R; Hillary, LS; Holm, R; Huang, L; Jaleh, B; Jayasundara, JASB; Ji, X; Jiang, L; Jones, DL; Kac, G; Kebaili, I; Kelley, JB; Kelum, SHP; Kennedy, LJ; Khan, NA; Khazalpour, S; Khuntia, HK; Kinney, MS; Kommedal, Ø; Koomhin, P; Krawczyk, N; Kæstel, T; Lakmal, MAC; Li, H; Li, K; Li, R; Li, S; Li, W; Li, X; Li, Y; Liang, L; Lin, Y; Lippo, E; Liu, B; Liu, F; Liu, J; Liu, X; Liu, Y; Lodha, D; Loose, DS; López-Meza, P; Lu, F; Lu, KH; Lu, Y; Luo, Y; Ma, B; Malham, SK; Masood, A; Matan, N; McCormick, SD; McDonald, JE; McKenzie, LJ; Melendez, BD; Mikaeili, F; Mir, IR; Mirjalili, MH; Moreno, KP; Moura, IB; Müller, S; Nagata, JM; Nasri, A; Nasrollahzadeh, M; Navarro-Jiménez, E; Nie, E; Nielsen, CU; Nielsen, S; Nøhr, MK; Obeng, B; Odetayo, AA; Ortiz-Barrios, M; Ozgen, C; Pan, X; Parisi, ML; Paskavitz, AL; Patel, AK; Pedersen, M; Pontarollo, N; Potts, CM; Price, C; Pu, Y; Quénéa, K; Rahimi Khonakdari, M; Rather, BA; Raut, P; Regish, AM; Reible, DD; Rezadoost, H; Rizzati, M; Roviello, GN; Roviello, V; Rumpel, C; Sang, J; Sangroula, S; Saraiva, MDCP; Sarker, A; Sayyed, MI; Segoshi, A; Sehar, Z; Shao, X; Shaw, D; Shaw, L; Shekhawat, NS; Shim, JK; Shokouhimehr, M; Short, A; Soliman, PT; Songsamoe, S; Springer-Miller, RH; Stenstad, T; Strobl, E; Sun, R; Syme, H; Thai, L; Tian, G; Tofighi, B; Tonguc, B; Tuyiringire, D; Ulaganathan, N; Ulvestad, E; Varacca, A; Vergalli, S; Verma, DK; Villmones, HC; Wang, D; Wang, H; Wang, J; Wang, L; Wang, M; Wang, S; Wang, Y; Wang, Z; Weedon-Fekjær, H; Weller, SR; West, BE; Wilcox, MH; Wu, W; Wufuer, R; Xia, S; Xiang, H; Xu, H; Yan, L; Yang, RK; Yang, Y; Yates, MS; Ye, Q; Yin, H; Yin, Y; Yuan, Y; Yucesan, M; Yue, W; Zeng, W; Zhang, C; Zhang, D; Zhang, H; Zhang, L; Zhang, Q; Zhang, Y; Zhou, B; Zhou, Y; Zhu, Y; Zhu, Z1
Al-Baqami, NM; Hamza, RZ1
Dubey, A; Lochab, B; Monisha, M; Niranjan, R; Patil, S; Priyadarshini, R; Yadav, N1
Barreiro, MF; Blanco, SP; Colucci, G; Correa, RF; Fernandes, IP; Halla, N; Pinto, JA; Santamaria-Echart, A1
Harea, E; Humpolícek, P; Karakurt, I; Kucerova, L; Lehocky, M; Minařík, A; Mozetic, M; Ozaltin, K; Štěpánková, K; Suly, P; Vargun, E; Vesel, A1
Banas, JA; Hu, J; Lansakara, TI; Miszuk, JM; Sun, H; Tivanski, AV; Wang, Z; Zhu, M1
Elsherbiny, AS; Galal, A; Ghoneem, KM; Salahuddin, NA1
Iftime, MM; Marin, L; Rosca, I; Sandu, AI1
Czarnecka, E; Masek, A; Nowaczyk, J; Prochoń, M1
Fan, Y; Li, R; Liang, J; Ni, P; Shan, J; Xiong, S; Ye, S; Yuan, T; Zhang, X1
Eghbali, H; Movahedifar, F; Noroozi, M; Sadeghi, M1
Ding, H; Ge, Y; Wang, L; Yan, Y; Yu, H1
Kong, L; Li, J; Li, P; Li, S; Peng, Z; Wang, Q; Yang, Z1

Reviews

1 review(s) available for chitosan and vanillin

ArticleYear
    International journal of disaster risk reduction : IJDRR, 2020, Volume: 49

    Topics: Acyclic Monoterpenes; Adipose Tissue; Adolescent; Adult; Aged; Aged, 80 and over; Air Pollutants; Air Pollutants, Occupational; Amino Acid Transport Systems; Analgesics, Opioid; Animals; Anti-Bacterial Agents; Anti-Infective Agents; Arthrobacter; Bacteria; Bacteriological Techniques; Benzaldehydes; Biodegradation, Environmental; Biofilms; Biological Transport; Biomarkers; Biomass; Bioreactors; Body Composition; Body Mass Index; Brassica; Brazil; Buprenorphine; Buprenorphine, Naloxone Drug Combination; Caco-2 Cells; Cadmium; Calcium; Calcium Carbonate; Calcium Channels; Catalysis; Cell Degranulation; Cell Line; Cell Membrane; Chitosan; Chromatography, High Pressure Liquid; Chromium; Cobalt; Cohort Studies; Colony Count, Microbial; Composting; Copper; COVID-19; Cross-Sectional Studies; Cytoplasm; Delayed-Action Preparations; Diabetes Mellitus, Type 2; Diarrhea; Diethylhexyl Phthalate; Dose-Response Relationship, Drug; Drug Implants; Drug Stability; Drug Synergism; Electroplating; Endometrial Neoplasms; Endometrium; Environmental Monitoring; Environmental Restoration and Remediation; Estradiol; Estrogens; Feces; Female; Food Microbiology; Food Preservation; Fruit and Vegetable Juices; Gasotransmitters; Gastrointestinal Diseases; Gastrointestinal Microbiome; Gene Expression Regulation, Developmental; Genetic Predisposition to Disease; Glutathione; Gold; Graphite; Growth Hormone; Harm Reduction; Hot Temperature; Humans; Hydrocortisone; Hydrogen; Hydrogen Peroxide; Hydrogen Sulfide; Hydrogen-Ion Concentration; Ileum; Imidazoles; Injections, Intraperitoneal; Insecticides; Insulin-Like Growth Factor Binding Protein 1; Insulin-Like Growth Factor Binding Protein 2; Insulin-Like Growth Factor Binding Protein 5; Insulin-Like Growth Factor I; Intestinal Absorption; Light; Lignin; Liver; Magnetics; Male; Manganese; Mast Cells; Melanoma; Membrane Potentials; Metals; Methadone; Microbial Viability; Microplastics; Microscopy, Electron, Scanning; Microscopy, Electron, Transmission; Middle Aged; Mitochondrial Swelling; Molecular Dynamics Simulation; Monophenol Monooxygenase; Morocco; Naloxone; Naltrexone; Nanocomposites; Nanomedicine; Nanoparticles; Narcotic Antagonists; Neonicotinoids; Nitric Oxide; Nitro Compounds; Nitrogen; Nitrogen Compounds; Obesity; Obesity, Abdominal; Occupational Exposure; Ontario; Opiate Substitution Treatment; Opioid-Related Disorders; Oryza; Overweight; Oxidative Stress; Oxides; Oxygen; Perception; Photoelectron Spectroscopy; Plants; Plastics; Point Mutation; Polychlorinated Biphenyls; Polycyclic Aromatic Hydrocarbons; Potassium; Premenopause; Prodrugs; Prospective Studies; Protons; Pyrolysis; Qualitative Research; Rats; Rats, Sprague-Dawley; Reactive Oxygen Species; Resins, Synthetic; Rhodamines; Risk Factors; ROC Curve; Salmo salar; SARS-CoV-2; Seawater; Severity of Illness Index; Sewage; Social Media; Soil; Soil Microbiology; Soil Pollutants; Spectroscopy, Fourier Transform Infrared; Spectrum Analysis, Raman; Staining and Labeling; Stainless Steel; Steel; Stress, Physiological; Substance Abuse Treatment Centers; Symporters; T-Lymphocytes; Toluene; Triclosan; Ultraviolet Rays; Waist Circumference; Waste Disposal, Fluid; Wastewater; Water Purification; Welding; X-Ray Diffraction; Young Adult

2020

Other Studies

23 other study(ies) available for chitosan and vanillin

ArticleYear
Factors affecting migration of vanillin from chitosan/methyl cellulose films.
    Journal of food science, 2009, Volume: 74, Issue:7

    Topics: Anti-Infective Agents; Benzaldehydes; Beverages; Chitosan; Diffusion; Food Microbiology; Food Packaging; Hydrogen-Ion Concentration; Kinetics; Membranes, Artificial; Methylcellulose; Osmolar Concentration; Solvents; Temperature

2009
A new chitosan biopolymer derivative as metal-complexing agent: synthesis, characterization, and metal(II) ion adsorption studies.
    Carbohydrate research, 2010, Sep-23, Volume: 345, Issue:14

    Topics: Adsorption; Benzaldehydes; Biopolymers; Calorimetry, Differential Scanning; Cations, Divalent; Chitosan; Coordination Complexes; Electron Spin Resonance Spectroscopy; Hydrogen-Ion Concentration; Kinetics; Metals; Microscopy, Electron, Scanning; Piperazines; Spectroscopy, Fourier Transform Infrared; X-Ray Diffraction

2010
Synthesis and property of chitosan graft copolymer by RAFT polymerization with tosylic acid-chitosan complex.
    International journal of biological macromolecules, 2012, Apr-01, Volume: 50, Issue:3

    Topics: Benzaldehydes; Benzenesulfonates; Chitosan; Hydrogen-Ion Concentration; Hydrophobic and Hydrophilic Interactions; Nanoparticles; Polymerization; Polymers; Schiff Bases; Temperature; Water

2012
Development of drug-loaded chitosan-vanillin nanoparticles and its cytotoxicity against HT-29 cells.
    Drug delivery, 2016, Volume: 23, Issue:1

    Topics: Antimetabolites; Antineoplastic Agents; Benzaldehydes; Chitosan; Cross-Linking Reagents; Drug Compounding; Drug Delivery Systems; Excipients; Fluorouracil; HT29 Cells; Humans; Nanoparticles; Particle Size

2016
Hydrogenation of biofuels with formic acid over a palladium-based ternary catalyst with two types of active sites.
    ChemSusChem, 2014, Volume: 7, Issue:6

    Topics: Benzaldehydes; Biofuels; Carbon; Catalysis; Chitosan; Cresols; Formates; Hydrogenation; Metal Nanoparticles; Nitrogen; Palladium; Porosity; Surface Properties; Titanium

2014
Fabrication of chitosan microspheres using vanillin/TPP dual crosslinkers for protein antigens encapsulation.
    Carbohydrate polymers, 2015, Sep-05, Volume: 128

    Topics: Adhesiveness; Antigens; Benzaldehydes; Chitosan; Diphtheria Toxoid; Microspheres; Mucins; Polyphosphates; Serum Albumin, Bovine; Tetanus Toxoid

2015
Preparation and characterization of vanillin-crosslinked chitosan therapeutic bioactive microcarriers.
    International journal of biological macromolecules, 2015, Volume: 79

    Topics: Animals; Benzaldehydes; Berberine; Cell Line, Tumor; Chitosan; Cross-Linking Reagents; Delayed-Action Preparations; Diffusion; Drug Carriers; Drug Compounding; Drug Liberation; Emulsions; Humans; Implants, Experimental; Kinetics; Microspheres; Muscle, Skeletal; Osteoblasts; Particle Size; Rats; Rats, Sprague-Dawley

2015
Enhancing mechanical properties of chitosan films via modification with vanillin.
    International journal of biological macromolecules, 2015, Volume: 81

    Topics: Benzaldehydes; Chitosan; Color; Mechanical Phenomena; Microscopy, Electron, Scanning; Permeability; Spectroscopy, Fourier Transform Infrared; Steam; Thermogravimetry; X-Ray Diffraction

2015
Curcumin drug delivery by vanillin-chitosan coated with calcium ferrite hybrid nanoparticles as carrier.
    European journal of pharmaceutical sciences : official journal of the European Federation for Pharmaceutical Sciences, 2018, Apr-30, Volume: 116

    Topics: Antineoplastic Agents; Benzaldehydes; Calcium Compounds; Cell Line; Cell Survival; Chitosan; Curcumin; Drug Carriers; Drug Liberation; Ferric Compounds; Humans; Hydrogen-Ion Concentration; Kinetics; Magnetic Fields; MCF-7 Cells; Nanoparticles; Particle Size; Polyphosphates; Surface Properties

2018
Fabrication of chitosan-bis (4-formyl-2 methoxy phenyl carbonate) Schiff base nanoparticles and evaluation of their antioxidant and anticancer properties.
    Molecular biology reports, 2019, Volume: 46, Issue:4

    Topics: Antineoplastic Agents; Antioxidants; Benzaldehydes; Carbonates; Cell Line, Tumor; Chitosan; Drug Carriers; Formates; Humans; Nanoparticles; Particle Size; Schiff Bases; X-Ray Diffraction

2019
Covalent linkage of bioactive volatiles to a polysaccharide support as a potential approach for preparing active edible coatings and delivery systems for food products.
    Food chemistry, 2021, Feb-15, Volume: 338

    Topics: Acrolein; Acyclic Monoterpenes; Anti-Infective Agents; Benzaldehydes; Chitosan; Citrus; Cucurbitaceae; Edible Films; Food Microbiology; Food Preservation; Food Quality; Food Storage; Fruit; Fruit and Vegetable Juices; Hydrophobic and Hydrophilic Interactions; Polysaccharides

2021
Synergistic antioxidant capacities of vanillin and chitosan nanoparticles against reactive oxygen species, hepatotoxicity, and genotoxicity induced by aging in male Wistar rats.
    Human & experimental toxicology, 2021, Volume: 40, Issue:1

    Topics: Animals; Anti-Inflammatory Agents; Antioxidants; Benzaldehydes; Catalase; Chemical and Drug Induced Liver Injury; Chitosan; DNA Damage; Glutathione; Lipid Peroxidation; Liver; Male; Malondialdehyde; Nanoparticles; Oxidative Stress; Rats; Rats, Wistar; Reactive Oxygen Species; Superoxide Dismutase

2021
Antibacterial performance of fully biobased chitosan-grafted-polybenzoxazine films: Elaboration and properties of released material.
    Carbohydrate polymers, 2021, Feb-15, Volume: 254

    Topics: Anti-Bacterial Agents; Antioxidants; Benzaldehydes; Benzoxazines; Chitosan; Drug Liberation; Furans; Hydrophobic and Hydrophilic Interactions; Microbial Viability; Oxidative Stress; Reactive Oxygen Species; Signal Transduction; Solvents; Staphylococcus aureus; Tensile Strength; Transplantation; Water; Wound Healing

2021
Development of Chitosan Microspheres through a Green Dual Crosslinking Strategy Based on Tripolyphosphate and Vanillin.
    Molecules (Basel, Switzerland), 2021, Apr-16, Volume: 26, Issue:8

    Topics: Benzaldehydes; Chitosan; Emulsions; Microspheres; Polyphosphates

2021
Controlled release of enrofloxacin by vanillin-crosslinked chitosan-polyvinyl alcohol blends.
    Materials science & engineering. C, Materials for biological applications, 2021, Volume: 126

    Topics: Benzaldehydes; Chitosan; Delayed-Action Preparations; Enrofloxacin; Polyvinyl Alcohol

2021
Vanillin-bioglass cross-linked 3D porous chitosan scaffolds with strong osteopromotive and antibacterial abilities for bone tissue engineering.
    Carbohydrate polymers, 2021, Nov-01, Volume: 271

    Topics: Animals; Anti-Bacterial Agents; Benzaldehydes; Bone and Bones; Bone Regeneration; Cell Differentiation; Cell Line; Ceramics; Chitosan; Female; Mice, Inbred C57BL; Osteogenesis; Tissue Engineering; Tissue Scaffolds

2021
Novel chitosan-based nanocomposites as ecofriendly pesticide carriers: Synthesis, root rot inhibition and growth management of tomato plants.
    Carbohydrate polymers, 2022, Apr-15, Volume: 282

    Topics: Acrolein; Adsorption; Aniline Compounds; Antioxidants; Bentonite; Benzaldehydes; Biological Control Agents; Chitosan; Drug Liberation; Fusarium; Nanocomposites; Plant Diseases; Plant Roots; Pythium; Solanum lycopersicum

2022
Chitosan crosslinking with a vanillin isomer toward self-healing hydrogels with antifungal activity.
    International journal of biological macromolecules, 2022, Apr-30, Volume: 205

    Topics: Antifungal Agents; Benzaldehydes; Chitosan; Humans; Hydrogels

2022
Nanoarchitectonics for Biodegradable Superabsorbent Based on Carboxymethyl Starch and Chitosan Cross-Linked with Vanillin.
    International journal of molecular sciences, 2022, May-11, Volume: 23, Issue:10

    Topics: Benzaldehydes; Chitosan; Dehydration; Humans; Hydrogels; Polymers; Starch; Water

2022
Vanillin enhances the antibacterial and antioxidant properties of polyvinyl alcohol-chitosan hydrogel dressings.
    International journal of biological macromolecules, 2022, Nov-01, Volume: 220

    Topics: Anti-Bacterial Agents; Antioxidants; Bandages; Benzaldehydes; Chitosan; Hydrogels; Polyvinyl Alcohol

2022
Vanillin crosslinked 3D porous chitosan hydrogel for biomedicine applications: Preparation and characterization.
    Journal of the mechanical behavior of biomedical materials, 2023, Volume: 145

    Topics: Anti-Bacterial Agents; Biocompatible Materials; Chitosan; Cross-Linking Reagents; Glutaral; Hydrogels; Porosity; Spectroscopy, Fourier Transform Infrared

2023
Vanillin cross-linked chitosan/gelatin bio-polymer film with antioxidant, water resistance and ultraviolet-proof properties.
    International journal of biological macromolecules, 2023, Dec-31, Volume: 253, Issue:Pt 2

    Topics: Antioxidants; Chitosan; Food Packaging; Gelatin; Permeability; Polymers

2023
Development and evaluation of novel flavour microcapsules containing vanilla oil using complex coacervation approach.
    Food chemistry, 2014, Feb-15, Volume: 145

    Topics: Capsules; Chitosan; Flavoring Agents; Food Handling; Iridoids; Microscopy, Confocal; Microscopy, Electron, Scanning; Plant Oils; Spectroscopy, Fourier Transform Infrared; Vanilla

2014