Design of 2D and 3D micropatterned materials is highly important for printing technology, microfluidics, microanalytics, information storage, microelectronics and biotechnology. Biotechnology deserves particular interest among the diversity of possible applications because its opens perspectives for regeneration of tissues and organs that can considerably improve our life. In fact, biotechnology is in constant need for development of microstructured materials with controlled architecture. Such materials can serve either as scaffolds or as microanalytical platforms, where cells are able to self-organize in a programmed manner. Microstructured materials, for example, allow in vitro investigation of complex cell-cell interactions, interaction...
Stimuli-responsive macromolecules (i.e., pH-, thermo-, photo-, chemo-, and bioresponsive polymers) h...
The objective of this research has been to develop methods for modifying the surfaces of neural pros...
Thesis (Ph.D.)--University of Washington, 2020Living materials are created through the embedding of ...
Design of 2D and 3D micropatterned materials is highly important for printing technology, microfluid...
The development of surfaces that have switchable properties, also known as smart surfaces, have been...
The ability to manufacture complex functional three-dimensional (3D) structures in small scale enabl...
This dissertation demonstrates design, characterization, and application of stimuli responsive self-...
abstract: Stimuli-responsive polymers or so-called “smart polymers” are macromolecules that are sens...
In the past two decades, we have witnessed significant progress in developing high performance stimu...
2018-10-10Biomaterials are substances engineered to interact with biological systems for a medical p...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Chemical Engineering, 2014.Cata...
Biological systems interact with artificial polymeric materials in a complex, multistage, and iterat...
Understanding the relationship between material surface properties and cellular responses to these p...
Adhesion between different objects is happening everywhere. Without it, simple procedures like walki...
Mimicking the in vivo microenvironment of cells is a challenging task in engineering in vitro cell m...
Stimuli-responsive macromolecules (i.e., pH-, thermo-, photo-, chemo-, and bioresponsive polymers) h...
The objective of this research has been to develop methods for modifying the surfaces of neural pros...
Thesis (Ph.D.)--University of Washington, 2020Living materials are created through the embedding of ...
Design of 2D and 3D micropatterned materials is highly important for printing technology, microfluid...
The development of surfaces that have switchable properties, also known as smart surfaces, have been...
The ability to manufacture complex functional three-dimensional (3D) structures in small scale enabl...
This dissertation demonstrates design, characterization, and application of stimuli responsive self-...
abstract: Stimuli-responsive polymers or so-called “smart polymers” are macromolecules that are sens...
In the past two decades, we have witnessed significant progress in developing high performance stimu...
2018-10-10Biomaterials are substances engineered to interact with biological systems for a medical p...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Chemical Engineering, 2014.Cata...
Biological systems interact with artificial polymeric materials in a complex, multistage, and iterat...
Understanding the relationship between material surface properties and cellular responses to these p...
Adhesion between different objects is happening everywhere. Without it, simple procedures like walki...
Mimicking the in vivo microenvironment of cells is a challenging task in engineering in vitro cell m...
Stimuli-responsive macromolecules (i.e., pH-, thermo-, photo-, chemo-, and bioresponsive polymers) h...
The objective of this research has been to develop methods for modifying the surfaces of neural pros...
Thesis (Ph.D.)--University of Washington, 2020Living materials are created through the embedding of ...