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Biomedical subjects

Elliot J Smith

Publications and source records attributed to Elliot J Smith.

5 recordsLinked to original sources

New developments in coronary stent technology.

Coronary stent technology has rapidly evolved from a mechanical solution to abrupt vessel closure and elastic recoil following plain balloon angioplasty, to become a vector for local drug delivery and modification of coronary plaque pathophysiology. The advent of drug-eluting stents (DES) has significantly reduced restenosis, although there is increasing concern over the risk of late stent thrombosis, particularly following cessation of antiplatelet therapy. Here we consider the limitations of the current generation of DES, and review recent advances in platform, carrier, and pharmacological technology, and their place in future clinical practice.

Angioplasty, Balloon, Coronary↗

the coronary venous system: an alternative route of access to the myocardium.

The purpose of this paper is to review what is known regarding the anatomy of the coronary venous system, and the commonly used techniques for its selective catheterization. This is with regard to new innovative percutaneous techniques that have led to a burgeoning interest in methods of access to the coronary veins. Anatomical variation in the epicardial system exists, and the additional role of the Thebesian venous system may have important clinical implications. Catheter-based techniques for coronary vein retroperfusion may provide alternative treatment modalities for patients with no option for revascularization using conventional techniques. Furthermore, the use of the coronary venous system has now been reported for the regional delivery of drugs, cells and genes to protect and/or regenerate the myocardium. Finally, the use of the coronary venous system by the cardiac electrophysiologist is reviewed.

Angioplasty, Balloon, Coronary↗

Antiproliferative coatings for the treatment of coronary heart disease:. what are the targets and which are the tools?

Since the advent of percutaneous coronary intervention (PCI) for stenosing coronary disease, restenosis has remained a clinical problem. Despite the emergence and evolution of coronary stents, the rate of restenosis following PCI is still 10-20%, and above 50% in high risk subgroups. With increased understanding of the pathophysiology of this process, a number of potential therapeutic targets have been identified, allowing the development of novel therapies against restenosis, which can now be delivered locally using stent platforms. Some of the reported clinical trial data utilizing drug-eluting stents (DES) have produced such profound reductions in clinical and angiographic restenosis that we have been tempted to believe we are on the brink of eradicating this process completely. As the initial excitement subsides, however, there is a need to decide whether these tools will remain effective in real-world interventional practice. In this article we review the pathophysiology of the restenotic process, and the biological targets of the DES therapies currently available in clinical practice. We attempt to define clinical target populations for DES therapy, and assess the impact on outcomes thus far. We consider the advantages that newly emergent stent coatings might offer, and whether targeting specific patient subgroups with unique antiproliferative agents may provide the best chance of limiting restenosis in high risk subgroups. Finally, we consider future strategies to prevent restenosis, with a movement away from the antiproliferative approach, and toward accelerating endothelialization.

Antibiotics, Antineoplastic↗