The endothelial glycocalyx lining the inside surfaces of blood vessels has multiple features that prevent inflammation, blood clot formation, and infection. This surface represents the highest standard in blood compatibility for long-term contact with blood under physiological flow rates. Engineering materials used in blood-contacting biomedical devices, including metals and polymers, have undesirable interactions with blood that lead to failure modes associated with inflammation, blood clotting, and infection. Platelet adhesion and activation are key events governing these undesirable interactions. In this work, we propose a new surface modification to titanium with three features inspired by the endothelial glcyocalyx: First, titanium sur...
INTRODUCTION:Recently, we introduced a new deposition method, based on Ion Plating Plasma Assisted t...
In order to develop a new type of improved wound dressing, we combined the wound healing properties ...
Introduction Recently, we introduced a new deposition method, based on Ion Plating Plasma Assisted t...
2021 Fall.Includes bibliographical references.Each year millions of blood-contacting devices are use...
2022 Summer.Includes bibliographical references.Titanium and its alloys are used to make different b...
[eng] Although coronary stents have improved the early and long-term consequences of arterial lesion...
Titanium implant surface modification is a key strategy used to enhance osseointegration. Platelets ...
Blood-contacting materials are critical in many applications where long-term performance is desired....
2021 Fall.Includes bibliographical references.For decades, titanium-based implants have been largely...
ABSTRACT: To improve the blood compatibility and endothelialization simultaneously and to ensure the...
A tissue-engineered endothelial layer was prepared by culturing endothelial cells on a fibroblast gr...
Nanoscale topography on various titanium surfaces has already been shown to improve vascular respons...
Biocompatibility of biomedical devices can be improved by endothelialization of blood-contacting par...
Titanium and its alloys are widely used in blood-contacting implantable and interventional medical d...
Biomimetic coatings to increase endothelialization of blood-contacting materials in biomedical devic...
INTRODUCTION:Recently, we introduced a new deposition method, based on Ion Plating Plasma Assisted t...
In order to develop a new type of improved wound dressing, we combined the wound healing properties ...
Introduction Recently, we introduced a new deposition method, based on Ion Plating Plasma Assisted t...
2021 Fall.Includes bibliographical references.Each year millions of blood-contacting devices are use...
2022 Summer.Includes bibliographical references.Titanium and its alloys are used to make different b...
[eng] Although coronary stents have improved the early and long-term consequences of arterial lesion...
Titanium implant surface modification is a key strategy used to enhance osseointegration. Platelets ...
Blood-contacting materials are critical in many applications where long-term performance is desired....
2021 Fall.Includes bibliographical references.For decades, titanium-based implants have been largely...
ABSTRACT: To improve the blood compatibility and endothelialization simultaneously and to ensure the...
A tissue-engineered endothelial layer was prepared by culturing endothelial cells on a fibroblast gr...
Nanoscale topography on various titanium surfaces has already been shown to improve vascular respons...
Biocompatibility of biomedical devices can be improved by endothelialization of blood-contacting par...
Titanium and its alloys are widely used in blood-contacting implantable and interventional medical d...
Biomimetic coatings to increase endothelialization of blood-contacting materials in biomedical devic...
INTRODUCTION:Recently, we introduced a new deposition method, based on Ion Plating Plasma Assisted t...
In order to develop a new type of improved wound dressing, we combined the wound healing properties ...
Introduction Recently, we introduced a new deposition method, based on Ion Plating Plasma Assisted t...