Tritium-Labeled Nanodiamonds as an Instrument to Analyze Bioprosthetic Valve Coatings: A Case of Using a Nanodiamond Containing Coating on a Pork Aorta

Author:

Chernysheva Maria G.1ORCID,Shen Tianyi1,Badun Gennadii A.1,Mikheev Ivan V.1ORCID,Chaschin Ivan S.23,Tsygankov Yuriy M.3,Britikov Dmitrii V.3,Hugaev Georgii A.3,Bakuleva Natalia P.3

Affiliation:

1. Chemistry Department, M.V. Lomonosov Moscow State University, 3, bld. 1, Leninskie Gory, Moscow 119991, Russia

2. A. N. Nesmeyanov Institute of Organoelement Compounds, Russian Academy of Sciences, 28, bld. 1, Vavilova St., Moscow 119334, Russia

3. A. N. Bakulev Scientific Center for Cardiovascular Surgery, 135, Rublevskoe Sh., Moscow 121552, Russia

Abstract

Coatings with xenogenic materials, made of detonation nanodiamonds, provide additional strength and increase elasticity. A functionally developed surface of nanodiamonds makes it possible to apply antibiotics. Previous experiments show the stability of such coatings; however, studies on stability in the bloodstream and calcification of the material in natural conditions have yet to be conducted. Tritium-labeled nanodiamonds (negative and positive) were obtained by the tritium activation method and used to develop coatings for a pork aorta to analyze their stability in a pig’s bloodstream using a radiotracer technique. A chitosan layer was applied from a solution of carbonic acid under high-pressure conditions to prevent calcification. The obtained materials were used to prepare a porcine conduit, which was surgically stitched inside the pig’s aorta for four months. The aorta samples, including nanodiamond-coated and control samples, were analyzed for nanodiamond content and calcium, using the radiotracer and ICP-AES methods. A histological analysis of the materials was also performed. The obtained coatings illustrate a high in vivo stability and low levels of calcification for all types of nanodiamonds. Even though we did not use additional antibiotics in this case, the development of infection was not observed for negatively charged nanodiamonds, opening up prospects for their use in developing coatings.

Funder

Ministry of Science and Higher Education of the Russian Federation M.V. Lomonosov Moscow State University

Ministry of Science and Higher Education of the Russian Federation using scientific equipment from INEOS RAS

Publisher

MDPI AG

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