Coaxial Aerodynamically Assisted Bio‐jets: A Versatile Paradigm for Directly Engineering Living Primary Organisms
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- Type
- article
- Published
- 2007-12-01
- Cited by
- 21
- References
- 33
- Access
- Open access
- OpenAlex
- https://openalex.org/W2010618323
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:108712348
Keywords
Coaxial, Nanotechnology, Aerodynamics, Dielectrophoresis, Engineering
References
- Cell deposition system based on laser guidance.
- Electrohydrodynamic jet processing: an advanced electric-field-driven jetting phenomenon for processing living cells.
- A Novel Approach for Introducing Bio-Materials Into Cells
- Tissue engineering methods and protocols
- Extensive neurite outgrowth and active synapse formation on self-assembling peptide scaffolds.
- Review: Bioprinting: A Beginning
- Optical trapping and manipulation of single cells using infrared laser beams
- Stable electric-field driven cone-jetting of concentrated biosuspensions.
- Bio-electrosprays: the next generation of electrified jets.
- Herstellen monodisperser Tropfen mit pneumatischen Ziehdüsen
- Mechanism of stable jet formation in electrohydrodynamic atomization
- A Novel Technique for Forming Self‐Assembled Nanotube Structures
- Relic and droplet sizes produced by electrostatic atomisation of ceramic suspensions
- Aerodynamically assisted jetting: a pressure driven approach for processing nanomaterials
- Electrospray ionization for mass spectrometry of large biomolecules.
- Aerodynamically assisted jet processing of viscous single- and multi-phase media.
- Electric field driven jetting: an emerging approach for processing living cells
- Perfectly monodisperse microbubbling by capillary flow focusing.
- Small‐scale free surface flows with breakup: Drop formation and emerging applications
- Nano-dispensing by electrospray for biotechnology.
Cited by
- Phage as versatile nanoink for printing 3-D cell-laden scaffolds.
- Direct jetting approaches for handling stem cells
- Review: Bioprinting: A Beginning
- Aerodynamically assisted jetting and threading for processing concentrated suspensions containing advanced structural, functional and biological materials
- Cell electrospinning: a novel tool for functionalising fibres, scaffolds and membranes with living cells and other advanced materials for regenerative biology and medicine.
- Biojets in regenerative biology & medicine
- Advanced jet protocols for directly engineering living cells: a genesis to alternative biohandling approaches for the life sciences.
- Bio-electrospraying and droplet-based microfluidics: control of cell numbers within living residues
- Aerodynamically Assisted Jets: A Paradigm for Directly Microbubbling and Microfoaming Combinations of Advanced Materials
- Bio-electrospraying embryonic stem cells: interrogating cellular viability and pluripotency.
- A hybrid bio-jetting approach for directly engineering living cells
- Gene expression studies on bio‐electrosprayed primary cardiac myocytes
- Cell engineering: spearheading the next generation in healthcare
- Pilot study to investigate the possibility of cytogenetic and physiological changes in bio-electrosprayed human lymphocyte cells.
- Genetic, genomic and physiological state studies on single-needle bio-electrosprayed human cells.
- Thoughts on Scaffolds
- Development of novel delivery technologies for vaccination through oral administration of farmed salmon
- Bio-electrosprayed human neural stem cells are viable and maintain their differentiation potential
- Reimagining Flow Cytometric Cell Sorting
- Bio-jetted human adipose-derived stem cells remain viable
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