The Effect of Silver Nanofibers on the Deformation Properties of Blood Vessels: Towards the Development of New Nanotechnologies to Prevent Rupture of Aneurysms

Author:

Gonzalez Miguel1,Rivera Daniel1,Marcelino Alam1,Agront Gabriela1,Rodriguez Rafael2,Castro Miguel1

Affiliation:

1. Department of Chemistry, Chemical Imaging Center, The University of Puerto Rico at Mayaguez, Mayaguez, PR 00682, USA

2. University of Puerto Rico, Medical Sciences Campus, San Juan, PR 00936, USA

Abstract

An aneurysm is the result of a widening or ballooning of a portion of a blood vessel. The rupture of an aneurysm occurs when the mechanical stress acting on the inner wall exceeds the failure strength of the blood vessel. We propose an innovative approach to prevent the rupture of an aneurysm based on the use of nanotechnology to improve the strength of the blood vessel. We present results on the effect of silver nanofibers on the resistance toward deformation of blood vessels. The silver nanofibers are grown on the surface of the blood vessels. The nanofibers are120±30 nm in diameter and2.7±0.8μm in length. The deformation per applied force of blood vessels was found to decrease from 0.15 m/N in control blood vessels to 0.003 m/N in blood vessels treated with the nanofibers. This represents an increase in the resistance towards deformation of a factor of 50. The increase in the resistance towards deformation is clinically significant since blood pressure increases by factors slightly larger than one in the human body. Treatment of blood vessels with silver nanofibers is a potential translational clinical tool for preventing rupture of aneurysms in a clinical setting.

Funder

National Institutes of Health

Publisher

Hindawi Limited

Subject

General Materials Science

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