PubMed Health⌕ Search

PubMed · 12109921

Gene therapy for restenosis: current status.

Abstract

Atherosclerosis is a major cause of morbidity and mortality in Western world. Vascular occlusion caused by atherosclerosis usually requires invasive treatment, such as surgical bypass or angioplasty. However, bypass graft failure and restenosis limit the usefulness of these procedures, with 20% of patients needing a new revascularisation procedure within 6 months of angioplasty. Numerous pharmacological agents have been investigated for the prevention of restenosis but none has shown undisputed efficacy in clinical medicine. Gene transfer offers a novel approach to the treatment of restenosis because of easy accessibility of vessels and already existing gene delivery methods. It can be used to overexpress therapeutically important proteins locally without high systemic toxicity, and the therapeutic effect can be targeted to a particular pathophysiological event. Promising results have been obtained from many pre-clinical experiments using therapeutic genes or oligonucleotides to prevent restenosis. Early clinical trials have shown that plasmid- and adenovirus-mediated vascular gene transfers can be conducted safely and are well tolerated. Ex vivo gene therapy with E2F-decoy succeeded in reducing graft occlusion rate after surgical bypass in a randomised, double-blind clinical trial. In the future, further development of gene delivery methods and vectors is needed to improve the efficacy and safety of gene therapy. Also, better knowledge of vascular biology at the molecular level is needed to find optimal strategies and gene combinations to treat restenosis. Provided that these difficulties can be solved, gene therapy offers an enormous potential for clinical medicine in the future.

Explore related subjects

Keep this discovery

Explore connections, maps & timelines

BibTeXRIS

Juha Rutanen, Johanna Markkanen, Seppo Ylä-Herttuala. 2002. Gene therapy for restenosis: current status.. https://doi.org/10.2165/00003495-200262110-00001

Cite the original work for its findings. Save a collection to share your selection of sources.

KEEP EXPLORING

Related citations

Stent fracture: an unusual cause of late restenosis after sirolimus-eluting stent placement.

Stent fracture is uncommon but may have consequences including restenosis. To date, stent fractures reported have been related to aggressive post dilation. We describe a case that involves fracture of a stent deployed to nominal pressure. Unlike most stent fractures reported that involve stent struts only our case demonstrated circumferential disruption with complete separation of the stent segments.

Angioplasty, Balloon, Coronary↗

Magnetic navigation system used successfully to cross a crushed stent in a bifurcation that failed with conventional wires.

Bifurcation lesions can be technically demanding to manage, and even in the era of drug eluting stents, their procedural success is variable. The use of the crush technique followed by "kissing" balloon postdilatation has been shown to improve the overall outcome. However, crossing the crushed stent is essential to allow performance of a final dilatation with "kissing" balloons and is regarded as the main Achilles' heel of this technique. In this report, we describe the first reported, planned procedure to use a magnetic navigation system to steer a wire through the crushed stent to use "kissing" balloons that had previously failed with conventional wires.

Angioplasty, Balloon, Coronary↗

On understanding the power of judgement in percutaneous coronary intervention.

AIM: Explain how research can advance the state-of the- practice in percutaneous coronary intervention (PCI). METHODS AND RESULTS: Identifying the success factors of PCI; identifying decision- making performance (power of judgement) as the factor that could be advanced faster than is currently the case; explaining why and how such advancement needs a different research approach than those currently pursued in medical research; presenting initial results of this approach in the form of a set of basic concepts (pivoting around risk) that are useful for describing the decision-making process during a PCI. CONCLUSION: Building a terminology (ontology) of PCI decision-making concepts and then eliciting expert knowledge about the decision-making process itself are promising ways of advancing the teachability of PCI and hence the state-of-the practice.

Angioplasty, Balloon, Coronary↗