Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Strategies to counteract adverse remodeling of vascular graft: A 3D view of current graft innovations

View through CrossRef
Vascular grafts are widely used for vascular surgeries, to bypass a diseased artery or function as a vascular access for hemodialysis. Bioengineered or tissue-engineered vascular grafts have long been envisioned to take the place of bioinert synthetic grafts and even vein grafts under certain clinical circumstances. However, host responses to a graft device induce adverse remodeling, to varied degrees depending on the graft property and host’s developmental and health conditions. This in turn leads to invention or failure. Herein, we have mapped out the relationship between the design constraints and outcomes for vascular grafts, by analyzing impairment factors involved in the adverse graft remodeling. Strategies to tackle these impairment factors and counteract adverse healing are then summarized by outlining the research landscape of graft innovations in three dimensions—cell technology, scaffold technology and graft translation. Such a comprehensive view of cell and scaffold technological innovations in the translational context may benefit the future advancements in vascular grafts. From this perspective, we conclude the review with recommendations for future design endeavors.
Title: Strategies to counteract adverse remodeling of vascular graft: A 3D view of current graft innovations
Description:
Vascular grafts are widely used for vascular surgeries, to bypass a diseased artery or function as a vascular access for hemodialysis.
Bioengineered or tissue-engineered vascular grafts have long been envisioned to take the place of bioinert synthetic grafts and even vein grafts under certain clinical circumstances.
However, host responses to a graft device induce adverse remodeling, to varied degrees depending on the graft property and host’s developmental and health conditions.
This in turn leads to invention or failure.
Herein, we have mapped out the relationship between the design constraints and outcomes for vascular grafts, by analyzing impairment factors involved in the adverse graft remodeling.
Strategies to tackle these impairment factors and counteract adverse healing are then summarized by outlining the research landscape of graft innovations in three dimensions—cell technology, scaffold technology and graft translation.
Such a comprehensive view of cell and scaffold technological innovations in the translational context may benefit the future advancements in vascular grafts.
From this perspective, we conclude the review with recommendations for future design endeavors.

Related Results

Aortic endograft and bridging stent-graft remodeling after branched endovascular aortic repair
Aortic endograft and bridging stent-graft remodeling after branched endovascular aortic repair
Objectives The results of branched endovascular repair of thoracoabdominal aneurysms are mainly dependent on durability of the graft used. The purpose of this study was to evaluate...
Pembrolizumab and Sarcoma: A meta-analysis
Pembrolizumab and Sarcoma: A meta-analysis
Abstract Introduction: Pembrolizumab is a monoclonal antibody that promotes antitumor immunity. This study presents a systematic review and meta-analysis of the efficacy and safety...
Volume 10, Index
Volume 10, Index
<p><strong>Vol 10, No 1 (2015)</strong></p><p><strong> </strong></p><p><a href="http://www.world-education-center.org/index...
Small Cell Lung Cancer and Tarlatamab: A Meta-Analysis of Clinical Trials
Small Cell Lung Cancer and Tarlatamab: A Meta-Analysis of Clinical Trials
Abstract Introduction Tarlatamab is a Delta-like ligand 3 (DLL3) -directed bispecific T-cell engager recently approved for use in patients with advanced small cell lung cancer (SCL...
A New Method for In Vivo Visualization of Vessel Remodeling Using a Near‐Infrared Dye
A New Method for In Vivo Visualization of Vessel Remodeling Using a Near‐Infrared Dye
Please cite this paper as: Billaud, Ross, Greyson, Bruce, Seaman, Heberlein, Han, Best, Peirce and Isakson (2011). A New Method for In Vivo Visualization of Vessel Remodeling Using...
Temporal regulation of notch activation improves arteriovenous fistula maturation
Temporal regulation of notch activation improves arteriovenous fistula maturation
Abstract Background Arteriovenous fistula (AVF) maturation is a process involving remodeling of venous arm of the AVFs. It is a challenge to balance...
Doxorubicin-Immersed Skeletal Muscle Grafts Promote Peripheral Nerve Regeneration Across a 10-mm Defect in the Rat Sciatic Nerve
Doxorubicin-Immersed Skeletal Muscle Grafts Promote Peripheral Nerve Regeneration Across a 10-mm Defect in the Rat Sciatic Nerve
Background The treatment of peripheral nerve defects requires bridging materials. Skeletal muscle grafts have been studied as an alternative to nerve autografts because they contai...

Back to Top