Nanotechnology in diagnosis and treatment of coronary artery disease

Author:

Karimi Mahdi1,Zare Hossein2,Bakhshian Nik Amirala3,Yazdani Narges2,Hamrang Mohammad2,Mohamed Elmira2,Sahandi Zangabad Parham4,Moosavi Basri Seyed Masoud56,Bakhtiari Leila2,Hamblin Michael R789

Affiliation:

1. Department of Medical Nanotechnology, Faculty of Advanced Technologies in Medicine, Iran University of Medical Sciences, Tehran, Iran

2. Biomaterials Group, Materials Science & Engineering Department, Iran University of Science & Technology, P.O. Box 1684613114 Tehran, Iran

3. Division of Biomedical Engineering, Department of Life Science Engineering, Faculty of New Sciences & Technologies, University of Tehran 1439957131 Tehran, Iran

4. Department of Materials Science & Engineering, Sharif University of Technology, P.O. Box 11365–9466, 14588 Tehran, Iran

5. School of Computer Science, Institute for Research in Fundamental Sciences, Tehran, Iran

6. Civil & Environmental Engineering Department, Shahid Beheshti University, Tehran, Iran

7. Wellman Center for Photomedicine, Massachusetts General Hospital, Boston, MA 02114, USA

8. Department of Dermatology, Harvard Medical School, Boston, MA 02115, USA

9. Harvard-MIT Division of Health Sciences & Technology, Cambridge, MA 02139, USA

Abstract

Nanotechnology could provide a new complementary approach to treat coronary artery disease (CAD) which is now one of the biggest killers in the Western world. The course of events, which leads to atherosclerosis and CAD, involves many biological factors and cellular disease processes which may be mitigated by therapeutic methods enhanced by nanotechnology. Nanoparticles can provide a variety of delivery systems for cargoes such as drugs and genes that can address many problems within the arteries. In order to improve the performance of current stents, nanotechnology provides different nanomaterial coatings, in addition to controlled-release nanocarriers, to prevent in-stent restenosis. Nanotechnology can increase the efficiency of drugs, improve local and systematic delivery to atherosclerotic plaques and reduce the inflammatory or angiogenic response after intravascular intervention. Nanocarriers have potential for delivery of imaging and diagnostic agents to precisely targeted destinations. This review paper will cover the current applications and future outlook of nanotechnology, as well as the main diagnostic methods, in the treatment of CAD.

Publisher

Future Medicine Ltd

Subject

Development,General Materials Science,Biomedical Engineering,Medicine (miscellaneous),Bioengineering

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