Research graph
References from Targeted Drugs and Bioactive Compounds Delivery by Regenerated Cellulose. Local targets link to admitted publications; unresolved targets remain external evidence.
Recent advances in regenerated cellulose materials
2016 · External reference
Microfibrillated cellulose–Its barrier properties and applications in cellulosic materials: A review
2012 · External reference
Evaluation of a bio‐based hydrophobic cellulose laurate film as biomaterial—Study on biodegradation and cytocompatibility
2012 · External reference
Cellulose and its derivatives: towards biomedical applications
2021 · External reference
Functionalisation of cellulosic substrates by a facile solventless method of introducing carbamate groups
2010 · External reference
Brief overview on cellulose dissolution/ regeneration interactions and mechanisms
2015 · External reference
Unresolved reference
2010 · External reference
Dissolution and forming of cellulose with ionic liquids
2008 · External reference
Structure and engineering of celluloses
2010 · External reference
Unresolved reference
2023 · External reference
Preparation of porous regenerated cellulose micro‐structures via emulsion‐coagulation technique
2022 · External reference
Development and Evaluation of Drug Loaded Regenerated Bacterial Cellulose‐Based Matrices as a Potential Dosage Form
2020 · External reference
Porous Cellulose Beads Fabricated from Regenerated Cellulose as Potential Drug Delivery Carriers
2017 · External reference
Cellulose Beads Derived from Waste Textiles for Drug Delivery
2020 · External reference
Evolution and diversity of plant cell walls: From algae to flowering plants
2011 · External reference
Bacterial cellulose—a masterpiece of nature's arts
2000 · External reference
Bacterial nanocellulose with a shape‐memory effect as potential drug delivery system
2014 · External reference
A multitechnique approach to assess the effect of ball milling on cellulose
2012 · External reference
Cellulose nanomaterials review: Structure, properties and nanocomposites
2011 · External reference
Advanced nanocellulose‐based composites for flexible functional energy storage devices
2021 · External reference
Overview of cellulose‐based flexible materials for supercapacitors
2021 · External reference
Bifunctional cellulose interlayer enabled efficient perovskite solar cells with simultaneously enhanced efficiency and stability
2023 · External reference
Simulations reveal conformational changes of methylhydroxyl groups during dissolution of cellulose Iβ in ionic liquid 1‐ethyl‐3‐methylimidazolium acetate
2012 · External reference
Cellulose crystals plastify by localized shear
2018 · External reference
Two Different Surface Properties of Regenerated Cellulose due to Structural Anisotropy
2006 · External reference
Use of cellulose nanocrystals in chitosan nanoparticles carrier system for the controlled release of ketoprofen
2020 · External reference
Unresolved reference
2016 · External reference
Breast conserving surgery using oxidized regenerated cellulose as filling biomaterial: recommendations to improve clinical outcomes
2021 · External reference
Silver‐infused lysine crosslinked hydrogel with oxidized regenerated cellulose for prospective advanced wound dressings
2024 · External reference
Dialdehyde cellulose microfibers generated from wood pulp by milling‐induced periodate oxidation
2011 · External reference
Preparation of pH‐responsive oxidized regenerated cellulose hydrogels compounded with nano‐ZnO/chitosan/aminocyclodextrin ibuprofen complex for wound dressing
2023 · External reference
Controlled Drug Delivery Systems: Current Status and Future Directions
2021 · External reference
Advances in controlled drug delivery to the sinonasal mucosa
2022 · External reference
Unresolved reference
2019 · External reference
Unresolved reference
2014 · External reference
Critical factors in the release of drugs from sustained release hydrophilic matrices
2011 · External reference
Cellulose nanofibers prepared by the N‐methylmorpholine‐N‐oxide method
2005 · External reference
Regenerated cellulose capsules for controlled drug delivery: Part I. Physiological characteristics of membrane formation and the influence of thermal annealing
2015 · External reference
Evaluation of the biocompatibility of regenerated cellulose hydrogels with high strength and transparency for ocular applications
2016 · External reference
Comparison of physical properties of regenerated cellulose films fabricated with different cellulose feedstocks in ionic liquid
2015 · External reference
Preparation and characterization of regenerated cellulose films using borassus fruit fibers and an ionic liquid
2017 · External reference
Study on the solubility of cellulose in aqueous alkali solution by deuteration IR and 13C NMR
1984 · External reference
Solubility of Cellulose in NaOH/Urea Aqueous Solution
2000 · External reference
Unresolved reference
2001 · External reference
Solution studies of cellulose in lithium chloride and N, N‐dimethylacetamide
1985 · External reference
Cellulose solutions in N‐methylmorpholine‐N‐oxide (NMMO)–degradation processes and stabilizers
2002 · External reference
Utilization of Cellulose to Its Full Potential: A Review on Cellulose Dissolution, Regeneration, and Applications
2021 · External reference
Regenerated bacterial cellulose fibers prepared by the NMMO· H2O process
2011 · External reference
Homogeneous esterification of xylan‐rich hemicelluloses with maleic anhydride in ionic liquid
2010 · External reference
Regenerated cellulose film with enhanced tensile strength prepared with ionic liquid 1‐ethyl‐3‐methylimidazolium acetate (EMIMAc)
2013 · External reference
Regenerated cellulose micro‐nano fiber matrices for transdermal drug release
2017 · External reference
Cellulose in Ionic Liquids and Alkaline Solutions: Advances in the Mechanisms of Biopolymer Dissolution and Regeneration
1917 · External reference
Pretreatment of microcrystalline cellulose in organic electrolyte solutions for enzymatic hydrolysis
2011 · External reference
Converting bleached hardwood kraft pulp to dissolving pulp by using organic electrolyte solutions
2021 · External reference
Organic electrolyte solutions as versatile media for the dissolution and regeneration of cellulose
2017 · External reference
Studies on the tosylation of cellulose in mixtures of ionic liquids and a co‐solvent
2012 · External reference
Facile preparation of regenerated cellulose film from cotton linter using organic electrolyte solution (OES)
2017 · External reference
Characterisation of cellulose films regenerated from acetone/ water coagulants
2014 · External reference
Highly porous regenerated cellulose hydrogel and aerogel prepared from hydrothermal synthesized cellulose carbamate
2017 · External reference
The preparation, characterization and evaluation of regenerated cellulose/collagen composite hydrogel films
2014 · External reference
Comparison of Cellulose Dissolution Behavior by Alkaline and Sulfuric Acid Solvents and Their Films’ Physical Properties
2021 · External reference
Evaluation of biomaterial containing regenerated cellulose and chitosan incorporated with silver nanoparticles
2015 · External reference
Size controlled fabrication of cellulose nanoparticles for drug delivery applications
2018 · External reference
Recent trends and developments in dissolving pulp production and application
2017 · External reference
Dissolution of wood pulp in aqueous NaOH/urea solution via dilute acid pretreatment
2015 · External reference
Multi‐tasking hydrated ionic liquids as sustainable media for the processing of waste human hair: a biorefinery approach
2019 · External reference
TBAH/Urea/H 2 O solvent for room temperature wet‐spinning of cellulose and optimization of drawing process
2019 · External reference
The role of urea in the solubility of cellulose in aqueous quaternary ammonium hydroxide
2020 · External reference
Unresolved reference
2020 · External reference
Synthesis of bilayer films from regenerated cellulose nanofibers and poly(globalide) for skin tissue engineering applications
2021 · External reference
Pretreatment by NaOH swelling and then HCl regeneration to enhance the acid hydrolysis of cellulose to glucose
2015 · External reference
A bending electro‐active paper actuator made by mixing multi‐walled carbon nanotubes and cellulose
2007 · External reference
Fast Release of Sulfosalicylic Acid from Polymer Implants Consisting of Regenerated Cellulose/γ‐Ferric Oxide/Polypyrrole
2014 · External reference
Unresolved reference
2019 · External reference
Effects of addition method and fibrillation degree of cellulose nanofibrils on furnish drainability and paper properties
2017 · External reference
Functional cellulose beads: Preparation, characterization, and applications
2013 · External reference
pH‐Responsive Cellulose‐Based Microspheres Designed as an Effective Oral Delivery System for Insulin
2021 · External reference
Fabrication of alginate microspheres for drug delivery: A review
2020 · External reference
Nasal delivery of insulin using novel chitosan based formulations: A comparative study in two animal models between simple chitosan formulations and chitosan nanoparticles
2002 · External reference
Isolation of cellulose nanoparticles from sesame husk
2011 · External reference
Facile synthesis of spherical cellulose nanoparticles
2007 · External reference
Facile approach for the dispersion of regenerated cellulose in aqueous system in the form of nanoparticles
2012 · External reference
Regenerated Cellulose Capsules for Controlled Drug Delivery, Part 2: Modulating Membrane Permeability by Incorporation of Depolymerized Cellulose and Altering Membrane Thickness
2015 · External reference
Regenerated cellulose capsules for controlled drug delivery: Part III. Developing a fabrication method and evaluating extemporaneous utility for controlled‐release
2016 · External reference
Regenerated cellulose capsules for controlled drug delivery: Part IV. In‐vitro evaluation of novel self‐pore forming regenerated cellulose capsules
2017 · External reference
Controlled delivery of drugs from alginate matrix
2003 · External reference
An opinion paper on aerogels for biomedical and environmental applications
1815 · External reference
Physicochemical design of the morphology and ultrastructure of cellulose beads
2013 · External reference
Tailored beads made of dissolved cellulose—Investigation of their drug release properties
2013 · External reference
Optimizing Delivery Characteristics of Curcumin as a Model Drug via Tailoring Mean Diameter Ranges of Cellulose Beads
2017 · External reference
In Situ Modification of Regenerated Cellulose Beads: Creating All‐Cellulose Composites
2020 · External reference
pH‐responsive polymers for drug delivery: Trends and opportunities
2023 · External reference
TEMPO‐Oxidized Cellulose Beads as Potential pH‐Responsive Carriers for Site‐Specific Drug Delivery in the Gastrointestinal Tract
2021 · External reference
Ionic liquid‐assisted cellulose coating of chitosan hydrogel beads and their application as drug carriers
2020 · External reference
Hydrogels as drug delivery systems: A review of current characterization and evaluation techniques
2020 · External reference
Designing hydrogels for controlled drug delivery
2016 · External reference
Green synthesis of thermo‐responsive hydrogel from oil palm empty fruit bunches cellulose for sustained drug delivery
2021 · External reference
Nanocarrier‐hydrogel composite delivery systems for precision drug release
2022 · External reference
Unresolved reference
External reference
Brittle–ductile transition of double network hydrogels: Mechanical balance of two networks as the key factor
2014 · External reference
Why are double network hydrogels so tough?
2010 · External reference
Yielding criteria of double network hydrogels
2016 · External reference
Super tough double network hydrogels and their application as biomaterials
2012 · External reference
A robust regenerated cellulose‐based dual stimuli‐responsive hydrogel as an intelligent switch for controlled drug delivery
2021 · External reference
A novel injectable chitosan/polyglutamate polyelectrolyte complex hydrogel with hydroxyapatite for soft‐tissue augmentation
2012 · External reference
Preparation and characterization of pH sensitive Chitosan/3‐Glycidyloxypropyl Trimethoxysilane (GPTMS) hydrogels by sol‐gel method
2020 · External reference
pH‐responsive ampholytic regenerated cellulose hydrogel integrated with carrageenan and chitosan
2022 · External reference
Biomimetic electrospun nanofibrous structures for tissue engineering
2013 · External reference
Overview on immobilization of enzymes on synthetic polymeric nanofibers fabricated by electrospinning
2022 · External reference
Electrospun nanofibers: solving global issues
2006 · External reference
Antibacterial properties and drug release study of cellulose acetate nanofibers containing ear‐like Ag‐NPs and Dimethyloxallyl Glycine/ beta‐cyclodextrin
2022 · External reference
Scaffolds for drug delivery and tissue engineering: The role of genetics
2023 · External reference
Electrospun Bioscaffold Based on Cellulose Acetate and Dendrimer‐modified Cellulose Nanocrystals for Controlled Drug Release
2022 · External reference
Development of a cellulose‐based scaffold for sustained delivery of curcumin
2021 · External reference
Thermomechanical properties of poly(lactic acid) films reinforced with hydroxyapatite and regenerated cellulose microfibers
2014 · External reference
Development of Regenerated Cellulose/Citric Acid Films with Ionic Liquids
2021 · External reference
Tetracycline hydrochloride loaded regenerated cellulose composite membranes with controlled release and efficient antibacterial performance
2016 · External reference
Unresolved reference
1997 · External reference
Regenerated cellulose/polypyrrole/ silver nanoparticles/ionic liquid composite films for potential wound healing applications
2016 · External reference
Nanocoating of natural cellulose fibers with conjugated polymer: hierarchical polypyrrole composite materials
2005 · External reference
Bionanocomposites of regenerated cellulose/zeolite prepared using environmentally benign ionic liquid solvent
2014 · External reference
Investigation of Regenerated Cellulose/Poly(acrylic acid) Composite Films for Potential Wound Healing Applications: A Preliminary Study
2014 · External reference
Unresolved reference
2009 · External reference
In Situ Loading of Drugs into Mesoporous Silica SBA‐15
2016 · External reference
In situ forming parenteral drug delivery systems: an overview
2004 · External reference
Effect of process and formulation variables on the preparation of parenteral paclitaxel‐loaded biodegradable polymeric nanoparticles: A co‐surfactant study
2016 · External reference
Recent advances in biopolymer‐based mucoadhesive drug delivery systems for oral application
2024 · External reference
Fabricated microparticles: An innovative method to minimize the side effects of NSAIDs in arthritis
2016 · External reference
Tramadol hydrochloride delivery by regenerated cellulose nanofiber‐TiO2‐ZnO composites
2018 · External reference
Chitosan nanoparticles as a potential drug delivery system attached to viscose cellulose fibers
2016 · External reference
Driving forces for drug loading in drug carriers
2015 · External reference
Regenerated cellulose nanofibers from cellulose acetate: Incorporating hydroxyapatite (HAp) and silver (Ag) nanoparticles (NPs), as a scaffold for tissue engineering applications
2021 · External reference
Mathematical modelling of drug release
2020 · External reference
The kinetics of drug release from ethylcellulose solid dispersions
1985 · External reference
Application of different mathematical models for further investigation of in vitro drug release mechanisms based on magnetic nano‐composite
2022 · External reference
Elaborations on the Higuchi model for drug delivery
2011 · External reference
Modulation of drug release mechanism by Higuchi model: Estimation of percent deviation
2016 · External reference
Ibuprofen‐loaded ethylcellulose microspheres: Release studies and analysis of the matrix structure through the Higuchi model
1990 · External reference
Preparation of organic‐modified magadiite–magnetic nanocomposite particles as an effective nanohybrid drug carrier material for cancer treatment and its properties of sustained release mechanism by Korsmeyer–Peppas kinetic model
2021 · External reference
Unresolved reference
2019 · External reference
Cellulose aerogel micro fibers for drug delivery applications
2021 · External reference
Interpreting non‐linear drug diffusion data: Utilizing Korsmeyer‐Peppas model to study drug release from liposomes
2019 · External reference
Kinetic release studies of antibiotic patches for local transdermal delivery
2021 · External reference
Unresolved reference
2018 · External reference
Unresolved reference
2021 · External reference
Zero‐order drug delivery: State of the art and future prospects
2020 · External reference
Zero‐order controlled release of water‐soluble drugs using a marker pen platform
2021 · External reference
Kinetic modeling on drug release from controlled drug delivery systems
2010 · External reference
Release kinetics–concepts and applications
2018 · External reference
Kinetics of the release of a drug from a soluble or hydrolyzable polymer matrix
2016 · External reference
Role of mathematical modelling in controlled release drug delivery
2017 · External reference
Mathematical models of drug dissolution: A review
2014 · External reference
Unresolved reference
2010 · External reference