This research investigates the interfacial interactions between biological entities and synthetic materials at two length scales: bulk and nanometer size. At the bulk scale, biomolecule adhesion is key for synthetic material incorporation in the body. Quantifying the adhesion strength becomes necessary. For the nanometer scale, the nanoparticles are generally delivered through the blood stream and their effect on the blood flow must be studied. An experimental approach was taken to study interaction at both material length scales. The cell/protein adhesion strength to bulk-sized materials was studied. The goal was to identify the most influential factor affecting adhesion: chemistry or surface roughness. The effects of nanoparticles on t...
Developing new implant surfaces with anti-adhesion bacterial properties used for medical devices rem...
The development of strategies to control the interface between biomolecules and a solid support is c...
Most biological processes leading to cellular functions and physiological regulations are driven by ...
This research investigates the interfacial interactions between biological entities and synthetic ma...
This thesis is focused on understanding the fundamental physical interaction occurring, when a mater...
This thesis presents the results of studies done on various biomolecules and their interactions with...
Surfaces with nanopatterned biological functionality are important prerequisites for many applicatio...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Materials Science and Engineering, ...
2021 Fall.Includes bibliographical references.This project studied interfacial interactions of macro...
Control over biointerfacial interactions in vitro and in vivo is the key to many biomedical applicat...
In recent years, the fabrication of nanomaterials and exploration of their properties have attracted...
This thesis research investigates the adhesion mechanisms of protein molecules to surfaces of biomat...
Nanomaterials exhibit various interesting and fundamental properties that are distinctly different f...
textCurrent biomaterials are designed to be passive in nature to prevent the initiation of adverse i...
In the last two decades nanotechnology market has undergone remarkable growth. Breakthroughs in nano...
Developing new implant surfaces with anti-adhesion bacterial properties used for medical devices rem...
The development of strategies to control the interface between biomolecules and a solid support is c...
Most biological processes leading to cellular functions and physiological regulations are driven by ...
This research investigates the interfacial interactions between biological entities and synthetic ma...
This thesis is focused on understanding the fundamental physical interaction occurring, when a mater...
This thesis presents the results of studies done on various biomolecules and their interactions with...
Surfaces with nanopatterned biological functionality are important prerequisites for many applicatio...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Materials Science and Engineering, ...
2021 Fall.Includes bibliographical references.This project studied interfacial interactions of macro...
Control over biointerfacial interactions in vitro and in vivo is the key to many biomedical applicat...
In recent years, the fabrication of nanomaterials and exploration of their properties have attracted...
This thesis research investigates the adhesion mechanisms of protein molecules to surfaces of biomat...
Nanomaterials exhibit various interesting and fundamental properties that are distinctly different f...
textCurrent biomaterials are designed to be passive in nature to prevent the initiation of adverse i...
In the last two decades nanotechnology market has undergone remarkable growth. Breakthroughs in nano...
Developing new implant surfaces with anti-adhesion bacterial properties used for medical devices rem...
The development of strategies to control the interface between biomolecules and a solid support is c...
Most biological processes leading to cellular functions and physiological regulations are driven by ...