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  5. Bioresorbable Drug-Eluting Magnesium-Alloy Scaffold for Treatment of Coronary Artery Disease

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Article
English
2013

Bioresorbable Drug-Eluting Magnesium-Alloy Scaffold for Treatment of Coronary Artery Disease

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English
2013
International Journal of Molecular Sciences
Vol 14 (12)
DOI: 10.3390/ijms141224492

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Patrick W. Serruys
Patrick W. Serruys

Imperial College London

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Carlos M. Campos
Takashi Muramatsu
Javaid Iqbal
+7 more

Abstract

The introduction of metallic drug-eluting stents has reduced the risk of restenosis and widened the indications of percutaneous coronary intervention in treatment of coronary artery disease. However, this medical device can induce hypersensitive reaction that interferes with the endothelialization and healing process resulting in late persistent or acquired malapposition of the permanent metallic implant. Delayed endotheliaization and malapposition may lead to late and very late stent thrombosis. Bioresorbable scaffolds (BRS) have been introduced to potentially overcome these limitations, as they provide temporary scaffolding and then disappear, liberating the treated vessel from its cage. Magnesium is an essential mineral needed for a variety of physiological functions in the human body and its bioresorbable alloy has the strength-to-weight ratio comparable with that of strong aluminum alloys and alloy steels. The aim of this review is to present the new developments in Magnesium BRS technology, to describe its clinical application and to discuss the future prospects of this innovative therapy.

How to cite this publication

Carlos M. Campos, Takashi Muramatsu, Javaid Iqbal, Yao‐Jun Zhang, Yoshinobu Onuma, Héctor M. García‐García, Michael Haude, Pedro A. Lemos, Boris Warnack, Patrick W. Serruys (2013). Bioresorbable Drug-Eluting Magnesium-Alloy Scaffold for Treatment of Coronary Artery Disease. International Journal of Molecular Sciences, 14(12), pp. 24492-24500, DOI: 10.3390/ijms141224492.

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Publication Details

Type

Article

Year

2013

Authors

10

Datasets

0

Total Files

0

Language

English

Journal

International Journal of Molecular Sciences

DOI

10.3390/ijms141224492

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