Showing 50 publications by Cathy Ye
Tailoring silk fibroin fibrous architecture by a high‐yield electrospinning method for fast wound healing possibilities
Zhu J, Wang H, Wu C, Zhang K & Ye H (2024), Biotechnology and Bioengineering
Liver bioprinting within a novel support medium with functionalized spheroids, hepatic vein structures, and enhanced post-transplantation vascularization.
Jiang Z, Jin B, Liang Z, Wang Y, Ren S et al. (2024), Biomaterials, 311, 122681
BibTeX
@article{liverbioprintin-2024/6,
title={Liver bioprinting within a novel support medium with functionalized spheroids, hepatic vein structures, and enhanced post-transplantation vascularization.},
author={Jiang Z, Jin B, Liang Z, Wang Y, Ren S et al.},
journal={Biomaterials},
volume={311},
pages={122681},
year = "2024"
}
Tailoring Silk Fibroin Fibrous Architecture by a High-yield Electrospinning Method for Fast Wound Healing Possibilities
Zhu J-C, Wang H, Wu C-X, Zhang K-Q & Ye H (2024)
The combination of bioactive herbal compounds with biomaterials for regenerative medicine
Zhou G, Xu R, Groth T, Wang Y, Yuan X et al. (2024), Tissue Engineering Part B: Reviews
Highly Potent Cationic Chitosan Derivatives Coupled to Antimicrobial Peptide Dendrimers to Combat Pseudomonas aeruginosa.
Jordan O, Jordan O, Gan BH, Alwan S, Perron K et al. (2024), Advanced healthcare materials, e2304118-e2304118
BibTeX
@article{highlypotentcat-2024/2,
title={Highly Potent Cationic Chitosan Derivatives Coupled to Antimicrobial Peptide Dendrimers to Combat Pseudomonas aeruginosa.},
author={Jordan O, Jordan O, Gan BH, Alwan S, Perron K et al.},
journal={Advanced healthcare materials},
pages={e2304118-e2304118},
publisher={Wiley},
year = "2024"
}
Development and optimisation of hydrogel scaffolds for microvascular network formation
Fuenteslópez CV, Thompson MS & Ye H (2023), Bioengineering, 10(8)
Development and Optimisation of Hydrogel Scaffolds for Microvascular Network Formation.
Fuenteslópez CV, Thompson MS & Ye H (2023), Bioengineering (Basel, Switzerland), 10(8), 964
Action of the general anaesthetic isoflurane reveals coupling between viscoelasticity and electrophysiological activity in individual neurons
Adam C, Kayal C, Ercole A, Antoranz Contera S, Ye H et al. (2023), Communications Physics, 6(1)
BibTeX
@article{actionofthegene-2023/7,
title={Action of the general anaesthetic isoflurane reveals coupling between viscoelasticity and electrophysiological activity in individual neurons},
author={Adam C, Kayal C, Ercole A, Antoranz Contera S, Ye H et al.},
journal={Communications Physics},
volume={6},
number={174},
publisher={Springer Nature},
year = "2023"
}
Fabrication of fibrin/polyvinyl alcohol scaffolds for skin tissue engineering via emulsion templating
Zhou G, Zhu J, Inverarity C, Fang Y, Zhang Z et al. (2023), Polymers, 15(5)
Towards ready-to-use iron-crosslinked alginate beads as mesenchymal stem cell carriers
Baudequin T, Wee H, Cui Z & Ye H (2023), Bioengineering, 10(2)
Action of the general anaesthetic isoflurane reveals coupling between viscoelasticity and electrophysiological activity in individual neurons
Adam C, Kayal C, Ercole A, Contera S, Ye H et al. (2023), COMMUNICATIONS PHYSICS, 6(1)
BibTeX
@article{actionofthegene-2023/,
title={Action of the general anaesthetic isoflurane reveals coupling between viscoelasticity and electrophysiological activity in individual neurons},
author={Adam C, Kayal C, Ercole A, Contera S, Ye H et al.},
journal={COMMUNICATIONS PHYSICS},
volume={6},
number={ARTN 174},
year = "2023"
}
Evaluation of Fibrin/PolyVinyl Alcohol Scaffolds for Skin Tissue Engineering by Emulsion Templating
Dye JF, Zhou G, Zhu J, Inverarity C, Fang Y et al. (2023), TISSUE ENGINEERING PART A, 29(13-14)
BibTeX
@inproceedings{evaluationoffib-2023/,
title={Evaluation of Fibrin/PolyVinyl Alcohol Scaffolds for Skin Tissue Engineering by Emulsion Templating},
author={Dye JF, Zhou G, Zhu J, Inverarity C, Fang Y et al.},
year = "2023"
}
Membrane applications in autologous cell therapy
Martin R, Lei R, Zeng Y, Zhu J, Chang H et al. (2022), Membranes, 12(12)
Preventing antibiotic-resistant infections: additively manufactured porous Ti6Al4V biofunctionalized with Ag and Fe nanoparticles
Putra NE, Leeflang MA, Ducret V, Patrulea V, Fratila-Apachitei LE et al. (2022), International Journal of Molecular Sciences, 23(21)
BibTeX
@article{preventingantib-2022/10,
title={Preventing antibiotic-resistant infections: additively manufactured porous Ti6Al4V biofunctionalized with Ag and Fe nanoparticles},
author={Putra NE, Leeflang MA, Ducret V, Patrulea V, Fratila-Apachitei LE et al.},
journal={International Journal of Molecular Sciences},
volume={23},
number={13239},
publisher={MDPI },
year = "2022"
}
A hyaluronic acid granular hydrogel nerve guidance conduit promotes regeneration and functional recovery of injured sciatic nerves in rats
Yang J, Hsu C-C, Cao T-T, Ye H, Chen J et al. (2022), Neural Regeneration Research, 18(3), 657-663
BibTeX
@article{ahyaluronicacid-2022/8,
title={A hyaluronic acid granular hydrogel nerve guidance conduit promotes regeneration and functional recovery of injured sciatic nerves in rats},
author={Yang J, Hsu C-C, Cao T-T, Ye H, Chen J et al.},
journal={Neural Regeneration Research},
volume={18},
pages={657-663},
publisher={Medknow Publications},
year = "2022"
}
Developments of microfluidics for orthopedic applications: a review
Sun M, Gong J, Cui W, Li C, Yu M et al. (2022), Smart Materials in Medicine, 4, 111-122
A versatile embedding medium for freeform bioprinting with multi-crosslinking methods
Li Q, Jiang Z, Ma L, Yin J, Gao Z et al. (2022), Biofabrication, 14
Optogenetically engineered neurons differentiated from human SH-SY5Y cells survived and expressed ChR2 in 3D hydrogel
Lee S-Y, George J, Nagel D, Ye H & Seymour L (2022), Biomedicines, 10(7)
BibTeX
@article{optogenetically-2022/6,
title={Optogenetically engineered neurons differentiated from human SH-SY5Y cells survived and expressed ChR2 in 3D hydrogel},
author={Lee S-Y, George J, Nagel D, Ye H & Seymour L},
journal={Biomedicines},
volume={10},
number={1534},
publisher={MDPI},
year = "2022"
}
Validation and scalability of homemade polycaprolactone macro-beads grafted with thermo-responsive poly (N-isopropyl acrylamide) for mesenchymal stem cell expansion and harvesting.
Nguyen LTB, Baudequin T, Cui Z & Ye H (2022), Biotechnology and bioengineering
BibTeX
@article{validationandsc-2022/5,
title={Validation and scalability of homemade polycaprolactone macro-beads grafted with thermo-responsive poly (N-isopropyl acrylamide) for mesenchymal stem cell expansion and harvesting.},
author={Nguyen LTB, Baudequin T, Cui Z & Ye H},
journal={Biotechnology and bioengineering},
year = "2022"
}
Combination of stem cell therapy and acupuncture to treat ischemic stroke: a prospective review
Jia H, He J, Zhao L, Hsu C-C, Zhao X et al. (2022), Stem Cell Research and Therapy, 13
BibTeX
@article{combinationofst-2022/3,
title={Combination of stem cell therapy and acupuncture to treat ischemic stroke: a prospective review},
author={Jia H, He J, Zhao L, Hsu C-C, Zhao X et al.},
journal={Stem Cell Research and Therapy},
volume={13},
number={87},
publisher={BioMed Central},
year = "2022"
}
Reprogramming Synthetic Cells for Targeted Cancer Therapy.
Lim B, Yin Y, Ye H, Cui Z, Papachristodoulou A et al. (2022), ACS synthetic biology
Voltage-driven alterations to neuron viscoelasticity
Kayal C, Tamayo-Elizalde M, Adam C, Ye H & Jerusalem A (2022), Bioelectricity, 4(1), 31-38
PHYSICAL AND BIOLOGICAL CHARACTERISATION OF MECHANICALLY AND STRUCTURALLY MIMETIC SMALL CALIBRE VASCULAR SCAFFOLDS
Martin R, Mouthuy P-A, Waters S & Ye H (2022), TISSUE ENGINEERING PART A, 28, S62-S62
BibTeX
@inproceedings{physicalandbiol-2022/,
title={PHYSICAL AND BIOLOGICAL CHARACTERISATION OF MECHANICALLY AND STRUCTURALLY MIMETIC SMALL CALIBRE VASCULAR SCAFFOLDS},
author={Martin R, Mouthuy P-A, Waters S & Ye H},
pages={S62-S62},
year = "2022"
}
EXPLORING SEEDING METHODS TO EVENLY DISTRIBUTE CELLS IN A 3D ELECTROSPUN SCAFFOLD
Dvorak N, Savic L, Waters SL, Ye H, Carr A et al. (2022), TISSUE ENGINEERING PART A, 28, S366-S366
BibTeX
@misc{exploringseedin-2022/,
title={EXPLORING SEEDING METHODS TO EVENLY DISTRIBUTE CELLS IN A 3D ELECTROSPUN SCAFFOLD},
author={Dvorak N, Savic L, Waters SL, Ye H, Carr A et al.},
year = "2022"
}
ELECTROSPUN FIBRES WITH HYALURONIC ACID-CHITOSAN NANOPARTICLES PRODUCED BY A PORTABLE DEVICE
Fuenteslopez CV & Ye H (2022), TISSUE ENGINEERING PART A, 28, S122-S122
BibTeX
@inproceedings{electrospunfibr-2022/,
title={ELECTROSPUN FIBRES WITH HYALURONIC ACID-CHITOSAN NANOPARTICLES PRODUCED BY A PORTABLE DEVICE},
author={Fuenteslopez CV & Ye H},
pages={S122-S122},
year = "2022"
}
DEVELOPMENT OF A TISSUE REGENERATIVE SCAFFOLD PLATFORM TECHNOLOGY
Bahcevanci S, Hathaway H, de la Rosa VR, Aksakal S, Dye J et al. (2022), TISSUE ENGINEERING PART A, 28, S429-S429
BibTeX
@inproceedings{developmentofat-2022/,
title={DEVELOPMENT OF A TISSUE REGENERATIVE SCAFFOLD PLATFORM TECHNOLOGY},
author={Bahcevanci S, Hathaway H, de la Rosa VR, Aksakal S, Dye J et al.},
pages={S429-S429},
year = "2022"
}
Development of an in vitro microvasculature model for non-penetrating trauma research
Fuenteslopez CV, Ye H & Thompson M (2022), TISSUE ENGINEERING PART A, 28, 202-202
BibTeX
@inproceedings{developmentofan-2022/,
title={Development of an in vitro microvasculature model for non-penetrating trauma research},
author={Fuenteslopez CV, Ye H & Thompson M},
pages={202-202},
year = "2022"
}
Biomimetic 3D-bioprinted skin scaffolds for wound healing and regeneration
Patrulea V, Fuenteslopez CV & Ye HC (2022), TISSUE ENGINEERING PART A, 28, 561-561
BibTeX
@inproceedings{biomimeticdbiop-2022/,
title={Biomimetic 3D-bioprinted skin scaffolds for wound healing and regeneration},
author={Patrulea V, Fuenteslopez CV & Ye HC},
pages={561-561},
year = "2022"
}
Single cell electrophysiological alterations under dynamic loading at ultrasonic frequencies
Tamayo-Elizalde M, Kayal C, Ye H & Jerusalem A (2021), Brain Multiphysics, 2
In vitro study of human immune responses to hyaluronic acid hydrogels, recombinant spidroins and human neural progenitor cells of relevance to spinal cord injury repair
Lin C, Ekblad-Nordberg Å, Michaëlsson J, Götherström C, Hsu C-C et al. (2021), Cells, 10(7)
BibTeX
@article{invitrostudyofh-2021/7,
title={In vitro study of human immune responses to hyaluronic acid hydrogels, recombinant spidroins and human neural progenitor cells of relevance to spinal cord injury repair},
author={Lin C, Ekblad-Nordberg Å, Michaëlsson J, Götherström C, Hsu C-C et al.},
journal={Cells},
volume={10},
number={1713},
publisher={MDPI},
year = "2021"
}
Increased connectivity of hiPSC-derived neural networks in multiphase granular hydrogel scaffolds
Hsu C-C, George JH, Waller S, Besnard C, Nagel DA et al. (2021), Bioactive Materials, 9, 358-372
BibTeX
@article{increasedconnec-2021/7,
title={Increased connectivity of hiPSC-derived neural networks in multiphase granular hydrogel scaffolds},
author={Hsu C-C, George JH, Waller S, Besnard C, Nagel DA et al.},
journal={Bioactive Materials},
volume={9},
pages={358-372},
publisher={Elsevier},
year = "2021"
}
Objectives, benefits and challenges of bioreactor systems for the clinical-scale expansion of T lymphocyte cells
Baudequin T, Nyland R & Ye H (2021), Biotechnology Advances, 49
BibTeX
@article{objectivesbenef-2021/3,
title={Objectives, benefits and challenges of bioreactor systems for the clinical-scale expansion of T lymphocyte cells},
author={Baudequin T, Nyland R & Ye H},
journal={Biotechnology Advances},
volume={49},
number={107735},
publisher={Elsevier},
year = "2021"
}
Action potential alterations induced by single F11 neuronal cell loading
Tamayo-Elizalde M, Chen H, Malboubi M, Ye H & Jerusalem A (2021), Progress in Biophysics and Molecular Biology, 162, 141-153
BibTeX
@article{actionpotential-2021/1,
title={Action potential alterations induced by single F11 neuronal cell loading},
author={Tamayo-Elizalde M, Chen H, Malboubi M, Ye H & Jerusalem A},
journal={Progress in Biophysics and Molecular Biology},
volume={162},
pages={141-153},
publisher={Elsevier},
year = "2021"
}
Electrospinning and electrospraying in biomedical engineering: Retrospect and prospects
Kasoju N, Ye H, Cui Z & Ramakrishna S (2021), 375-393
Biomedical Applications of Electrospinning and Electrospraying: A volume in Woodhead Publishing Series in Biomaterials
Kasoju N & Ye H (2021), 1-465
Chapter Thirteen Electrospinning and electrospraying in biomedical engineering retrospect and prospects
Kasoju N, Ye H, Cui Z & Ramakrishna S (2021), 375-393
ALCAM (CD166) as a gene expression marker for human mesenchymal stromal cell characterisation.
Brinkhof B, Zhang B, Cui Z, Ye H & Wang H (2020), Gene, 763S, 100031
A tri-component knee plug for the 3rd generation of autologous chondrocyte implantation
Tayebi L, Cui Z & Ye H (2020), Scientific Reports, 10(2020)
Electrospun fibres with hyaluronic acid-chitosan nanoparticles produced by a portable device
Fuenteslópez CV & Ye H (2020), Nanomaterials, 10(10)
Granular cellulose nanofibril hydrogel scaffolds for 3D cell cultivation
Gehlen DB, Jürgens N, Omidinia‐Anarkoli A, Haraszti T, George J et al. (2020), Macromolecular Rapid Communications, 41(18)
BibTeX
@article{granularcellulo-2020/8,
title={Granular cellulose nanofibril hydrogel scaffolds for 3D cell cultivation},
author={Gehlen DB, Jürgens N, Omidinia‐Anarkoli A, Haraszti T, George J et al.},
journal={Macromolecular Rapid Communications},
volume={41},
number={2000191},
publisher={Wiley},
year = "2020"
}
Development of an in situ injectable hydrogel containing hyaluronic acid for neural regeneration
Nguyen LTB, Hsu C-C, Ye H & Cui ZF (2020), Biomedical Materials , 15(5)
A single-cell Raman-based platform to identify developmental stages of human pluripotent stem cell-derived neurons
Hsu C-C, Xu J, Brinkhof B, Wang H, Cui Z et al. (2020), Proceedings of the National Academy of Sciences, 202001906-202001906
BibTeX
@article{asinglecellrama-2020/7,
title={A single-cell Raman-based platform to identify developmental stages of human pluripotent stem cell-derived neurons},
author={Hsu C-C, Xu J, Brinkhof B, Wang H, Cui Z et al.},
journal={Proceedings of the National Academy of Sciences},
pages={202001906-202001906},
publisher={Proceedings of the National Academy of Sciences},
year = "2020"
}
Numerical study of the formation and drying kinetics of a capillary bridge of trehalose solution between two parallel hydrophilic fibres
Yu Y, Yang A, Ye H, Dye J & Cui Z (2020), Chemical Engineering Science, 226(23)
BibTeX
@article{numericalstudyo-2020/6,
title={Numerical study of the formation and drying kinetics of a capillary bridge of trehalose solution between two parallel hydrophilic fibres},
author={Yu Y, Yang A, Ye H, Dye J & Cui Z},
journal={Chemical Engineering Science},
volume={226},
number={115849},
publisher={Elsevier},
year = "2020"
}
An additive manufacturing approach to bioreactor design for mesenchymal stem cell culture
Odeleye AOO, Baudequin T, Chui C-Y, Ye H & Cui Z (2020), Biochemical Engineering Journal, 156, 107515-107515
BibTeX
@article{anadditivemanuf-2020/4,
title={An additive manufacturing approach to bioreactor design for mesenchymal stem cell culture},
author={Odeleye AOO, Baudequin T, Chui C-Y, Ye H & Cui Z},
journal={Biochemical Engineering Journal},
volume={156},
number={107515},
pages={107515-107515},
publisher={Elsevier BV},
year = "2020"
}
Chromosome-free bacterial cells are safe and programmable platforms for synthetic biology
Habgood R, Huang W, Fan C, Davidson PA, Zeng H et al. (2020), Proceedings of the National Academy of Sciences, 117(12), 6752-6761
BibTeX
@article{chromosomefreeb-2020/3,
title={Chromosome-free bacterial cells are safe and programmable platforms for synthetic biology},
author={Habgood R, Huang W, Fan C, Davidson PA, Zeng H et al.},
journal={Proceedings of the National Academy of Sciences},
volume={117},
pages={6752-6761},
publisher={National Academy of Sciences},
year = "2020"
}
ALCAM (CD166) as a gene expression marker for human mesenchymal stromal cell characterisation
Ye H, Brinkhof B, Cui Z, Zhang B & Wang H (2020), Gene: X, 100031-100031
Dataset for A Single-Cell Raman-based Platform to Identify Developmental Stages of Human Pluripotent Stem Cell-derived Neurons
Hsu C-C, Ye H, Huang WE, Xu J & Brinkhof B (2020)
BibTeX
@misc{datasetforasing-2020/1,
title={Dataset for A Single-Cell Raman-based Platform to Identify Developmental Stages of Human Pluripotent Stem Cell-derived Neurons},
author={Hsu C-C, Ye H, Huang WE, Xu J & Brinkhof B},
year = "2020"
}