All Stories

  1. Nanostructured Hydrogels: A Method to Prevent Biofilms on Implantable Medical Devices
  2. 3D bioprinting of multicellular constructs using HepG2 and HUVEC cells for in-vitro liver models
  3. Nanoparticles and polymer-based nanoparticles in plants and microbes
  4. 3D-Printed Hydrogels from Natural Polymers for Biomedical Applications: Conventional Fabrication Methods, Current Developments, Advantages, and Challenges
  5. Advancing 3D bioprinting through machine learning and artificial intelligence
  6. Teaching Process Simulators during COVID-19 Pandemic: Analysis on the Digitalization of a Dry Laboratory
  7. Role of Chitosan and Chitosan-Based Nanomaterials in Plant Sciences
  8. Recent Advances in Promoting Chondrogenesis of Human Mesenchymal Stem Cells Using Physically and Chemically Modified Hydrogels
  9. Synthetic hydrogels: Synthesis, novel trends, and applications
  10. Optimization with uncertainty – A case study for controller recalibration
  11. Modeling the impact of fluid flow on resveratrol release from electrospun fibers
  12. Recent advances in the combination delivery of drug for leukemia and other cancers
  13. Formation of Stem Cell Aggregates and Their Differentiation on Surface-Patterned Hydrogels Based on Poly(2-hydroxyethyl Methacrylate)
  14. Targeted cancer treatment using a combination of siRNA-liposomes and resveratrol-electrospun fibers in co-cultures
  15. Immunomodulatory response of layered small intestinal submucosa in a rat bladder regeneration model
  16. Investigation of the Roles of Plasma Species Generated by Surface Dielectric Barrier Discharge
  17. Type of endothelial cells affects HepaRG cell acetaminophen metabolism in both 2D and 3D porous scaffold cultures
  18. Influence of controlled release of resveratrol from electrospun fibers in combination with siRNA on leukemia cells
  19. A soft lithography method to generate arrays of microstructures onto hydrogel surfaces
  20. Bioprinted chitosan-gelatin thermosensitive hydrogels using an inexpensive 3D printer
  21. Reduced urothelial regeneration in rat bladders augmented with permeable porcine small intestinal submucosa assessed by magnetic resonance imaging
  22. Modeling the permeability of multiaxial electrospun poly(ε-caprolactone)-gelatin hybrid fibers for controlled doxycycline release
  23. Recent advances in multiaxial electrospinning for drug delivery
  24. Chitosan for cardiac tissue engineering and regeneration
  25. In vitro characterization of acelluar porcine adipose tissue matrix for use as a tissue regenerative scaffold
  26. Applications of Computational Modelling and Simulation of Porous Medium in Tissue Engineering
  27. Improving the stability of chitosan–gelatin-based hydrogels for cell delivery using transglutaminase and controlled release of doxycycline
  28. Influence of solvent characteristics in triaxial electrospun fiber formation
  29. Biomatrices for bladder reconstruction
  30. Dose Dependent Selectivity and Response of Different Types of Mammalian Cells to Surface Dielectric Barrier Discharge (SDBD) Plasma
  31. Cellulose acetate core–shell structured electrospun fiber: fabrication and characterization
  32. Anisotropic temperature sensitive chitosan-based injectable hydrogels mimicking cartilage matrix
  33. Multiple approaches to predicting oxygen and glucose consumptions by HepG2 cells on porous scaffolds in an axial-flow bioreactor
  34. Prediction of biomass-generated syngas using extents of major reactions in a continuous stirred-tank reactor
  35. Green synthesis of a new gelatin-based antimicrobial scaffold for tissue engineering
  36. Antimicrobial gelatin/bioactive-glass/nanosilver scaffolds for bone tissue engineering
  37. Modeling Pressure Drop Using Generalized Scaffold Characteristics in an Axial-Flow Bioreactor for Soft Tissue Regeneration
  38. Understanding Roles of Porcine Small Intestinal Submucosa in Urinary Bladder Regeneration: Identification of Variable Regenerative Characteristics of Small Intestinal Submucosa
  39. 3D conductive nanocomposite scaffold for bone tissue engineering
  40. Modeling of porous scaffold deformation induced by medium perfusion
  41. Computational simulation modelling of bioreactor configurations for regenerating human bladder
  42. Surface Modification of Stainless Steel Orthopedic Implants by Sol–Gel ZrTiO4 and ZrTiO4–PMMA Coatings
  43. Influence of scaffold forming techniques on stress relaxation behavior of polycaprolactone scaffolds
  44. In Vitro Electrochemical Corrosion and Cell Viability Studies on Nickel-Free Stainless Steel Orthopedic Implants
  45. A multilayered scaffold of a chitosan and gelatin hydrogel supported by a PCL core for cardiac tissue engineering
  46. Application of computational fluid dynamics in tissue engineering
  47. Dynamics of diffusivity and pressure drop in flow-through and parallel-flow bioreactors during tissue regeneration
  48. Assessing viscoelastic properties of chitosan scaffolds and validation with cyclical tests
  49. Virtual Design of Chemical Penetration Enhancers for Transdermal Drug Delivery
  50. Analysis of void shape and size in the collector plate and polycaprolactone molecular weight on electrospun scaffold pore size
  51. Increased matrix synthesis by fibroblasts with decreased proliferation on synthetic chitosan-gelatin porous structures
  52. Next Generation of Electrosprayed Fibers for Tissue Regeneration
  53. Three-dimensional scaffold of electrosprayed fibers with large pore size for tissue regeneration
  54. Bladder regeneration in a canine model using hyaluronic acid-poly(lactic-co-glycolic-acid) nanoparticle modified porcine small intestinal submucosa
  55. Effect of different enhancers on the transdermal permeation of insulin analog
  56. In vitro characterization of polycaprolactone matrices generated in aqueous media
  57. A skin permeability model of insulin in the presence of chemical penetration enhancer
  58. Design of Improved Permeation Enhancers for Transdermal Drug Delivery
  59. Nonlinear Quantitative Structure-Property Relationship Modeling of Skin Permeation Coefficient
  60. Design of improved permeation enhancers for transdermal drug delivery
  61. Modeling nutrient consumptions in large flow-through bioreactors for tissue engineering
  62. Quantitative structure–property relationship modeling of skin sensitization: A quantitative prediction
  63. Flow dynamics in bioreactors containing tissue engineering scaffolds
  64. Quantitative structure–property relationships modeling of skin irritation
  65. The stress relaxation characteristics of composite matrices etched to produce nanoscale surface features
  66. Screening of Chemical Penetration Enhancers for Transdermal Drug Delivery Using Electrical Resistance of Skin
  67. Multilayer composite scaffolds with mechanical properties similar to small intestinal submucosa
  68. The incorporation of poly(lactic-co-glycolic) acid nanoparticles into porcine small intestinal submucosa biomaterials
  69. Cell colonization in degradable 3D porous matrices
  70. Blending Chitosan with Polycaprolactone: Porous Scaffolds and Toxicity
  71. Genistein reduces the production of proinflammatory molecules in human chondrocytes
  72. Antibacterial activity of chitosan-based matrices on oral pathogens
  73. Three-dimensional cell colonization in a sulfate rich environment
  74. Characterization of emulsified chitosan–PLGA matrices formed using controlled-rate freezing and lyophilization technique
  75. Antiproteolytic Action of Orally Delivered Insulin Using pH-Responsive Hydrogels in a Rat Burn Model
  76. Blending Chitosan with Polycaprolactone:  Effects on Physicochemical and Antibacterial Properties
  77. In vitro characterization of chitosan–gelatin scaffolds for tissue engineering
  78. Erratum
  79. Characterization of chitosan–polycaprolactone blends for tissue engineering applications
  80. Physical characteristics of small intestinal submucosa scaffolds are location-dependent
  81. Effect of spatial architecture on cellular colonization
  82. Modeling the Inhibitor Activity and Relative Binding Affinities in Enzyme-Inhibitor-Protein Systems: Application to Developmental Regulation in a PG-PGIP System
  83. Influence of insulin therapy on burn wound healing in rats
  84. Interferon Gamma Modulates Trauma-Induced Muscle Wasting and Immune Dysfunction
  85. Antiproteolytic Action of Insulin in Burn-Injured Rats
  86. Peripheral Blood Mononuclear Cells Exhibit Hypercatabolic Activity in Response to Thermal Injury Correlating with Diminished MHC I Expression
  87. Vascular cell responses to polysaccharide materials:
  88. Insulin Suppresses the Increased Activities of Lysosomal Cathepsins and Ubiquitin Conjugation System in Burn-Injured Rats
  89. Maintenance of CD34 Expression During Proliferation of CD34+Cord Blood Cells on Glycosaminoglycan Surfaces
  90. Porous chitosan scaffolds for tissue engineering