Study of Biointegration and Elastic-Strength Properties of a New Xenopericardium-Based Biomaterial for Reconstructive Cardiovascular Surgery


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Abstract

We analyzed biocompatibility, elastic-strength properties, and biointegration potential of a new biomaterial made of xenopericardium for reconstructive cardiovascular surgery. The biomaterial manufactured by the proposed technology demonstrated high biocompatibility and biointegration potential and its elastic-strength properties 2-4-fold surpassed that of native pericardium. The obtained results attested to good prospects of using the proposed technology for preparing biomaterials for reconstructive cardiovascular surgery.

About the authors

I. S. Fadeeva

Institute of Theoretical and Experimental Biophysics, Russian Academy of Sciences

Author for correspondence.
Email: aurin.fad@gmail.com
Russian Federation, Pushchino, Moscow region

M. N. Sorkomov

A. N. Bakulev National Medical Research Center of Cardiovascular Surgery

Email: aurin.fad@gmail.com
Russian Federation, Moscow

A. I. Zvyagina

Institute of Theoretical and Experimental Biophysics, Russian Academy of Sciences

Email: aurin.fad@gmail.com
Russian Federation, Pushchino, Moscow region

D. V. Britikov

A. N. Bakulev National Medical Research Center of Cardiovascular Surgery

Email: aurin.fad@gmail.com
Russian Federation, Moscow

A. S. Sachkov

A. N. Bakulev National Medical Research Center of Cardiovascular Surgery

Email: aurin.fad@gmail.com
Russian Federation, Moscow

Ya. V. Evstratova

Institute of Theoretical and Experimental Biophysics, Russian Academy of Sciences

Email: aurin.fad@gmail.com
Russian Federation, Pushchino, Moscow region

R. S Fadeev

Institute of Theoretical and Experimental Biophysics, Russian Academy of Sciences

Email: aurin.fad@gmail.com
Russian Federation, Pushchino, Moscow region

R. M. Muratov

A. N. Bakulev National Medical Research Center of Cardiovascular Surgery

Email: aurin.fad@gmail.com
Russian Federation, Moscow

V. S. Akatov

Institute of Theoretical and Experimental Biophysics, Russian Academy of Sciences

Email: aurin.fad@gmail.com
Russian Federation, Pushchino, Moscow region


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