Although corrosion resistant bare metal stents are considered generally effective, their permanent presence in a diseased artery is an increasingly recognized limitation due to the potential for long-term complications. We previously reported that metallic zinc exhibited an ideal biocorrosion rate within murine aortas, thus raising the possibility of zinc as a candidate base material for endovascular stenting applications. This study was undertaken to further assess the arterial biocompatibility of metallic zinc. Metallic zinc wires were punctured and advanced into the rat abdominal aorta lumen for up to 6.5 months. This study demonstrated that metallic zinc did not provoke responses that often contribute to restenosis. Low cell densities a...
l l More than a million metallic endovascular devices are implanted each year, but the quest for the...
Zinc (Zn) and its alloys have recently been introduced as a new class of biodegradable metals with p...
Zinc (Zn) has recently been introduced as a promising new metal candidate for biodegradable vascular...
Although corrosion resistant bare metal stents are considered generally effective, their permanent p...
Metallic zinc implanted into the abdominal aorta of rats out to 6 months has been demonstrated to de...
Zinc is proposed as an exciting new biomaterial for use in bioabsorbable cardiac stents. Not only is...
Bioabsorbable metal stents are being developed to mitigate the long-term side effects associated wit...
There has been considerable recent interest to develop a feasible bioresorbable stent (BRS) metal. A...
Zinc (Zn)-based biodegradable metals have been widely investigated for cardiovascular stent and orth...
The search for biodegradable metals with mechanical properties equal or higher to those of currently...
Vascular clips, made from inert materials such as titanium or stainless steel, are currently used fo...
Metal stents are commonly used to revascularize occluded arteries. A bioabsorbable metal stent that ...
Biodegradable arterial implants based on zinc have been found to suppress neointimal hyperplasia, su...
Zinc alloy development and characterization for vascular stent application have been facilitated by ...
Metallic Zn alloys have recently gained interest as potential candidates for developing platforms of...
l l More than a million metallic endovascular devices are implanted each year, but the quest for the...
Zinc (Zn) and its alloys have recently been introduced as a new class of biodegradable metals with p...
Zinc (Zn) has recently been introduced as a promising new metal candidate for biodegradable vascular...
Although corrosion resistant bare metal stents are considered generally effective, their permanent p...
Metallic zinc implanted into the abdominal aorta of rats out to 6 months has been demonstrated to de...
Zinc is proposed as an exciting new biomaterial for use in bioabsorbable cardiac stents. Not only is...
Bioabsorbable metal stents are being developed to mitigate the long-term side effects associated wit...
There has been considerable recent interest to develop a feasible bioresorbable stent (BRS) metal. A...
Zinc (Zn)-based biodegradable metals have been widely investigated for cardiovascular stent and orth...
The search for biodegradable metals with mechanical properties equal or higher to those of currently...
Vascular clips, made from inert materials such as titanium or stainless steel, are currently used fo...
Metal stents are commonly used to revascularize occluded arteries. A bioabsorbable metal stent that ...
Biodegradable arterial implants based on zinc have been found to suppress neointimal hyperplasia, su...
Zinc alloy development and characterization for vascular stent application have been facilitated by ...
Metallic Zn alloys have recently gained interest as potential candidates for developing platforms of...
l l More than a million metallic endovascular devices are implanted each year, but the quest for the...
Zinc (Zn) and its alloys have recently been introduced as a new class of biodegradable metals with p...
Zinc (Zn) has recently been introduced as a promising new metal candidate for biodegradable vascular...