KnE Materials Science

ISSN: 2519-1438

The latest conference proceedings on physical materials, energy materials, electrical materials.

Structural Features of TiNi-based Textile Materials and Their Biocompatibility with Cell Culture

Published date: Jul 17 2017

Journal Title: KnE Materials Science

Issue title: Shape Memory Biomaterials and Implants in Medicine (SMBIM)

Pages: 16-24

DOI: 10.18502/kms.v2i1.776

Authors:
Abstract:

This study investigates the structural features of TiNi-based textile materials. It is established that woven materials have a regular cellular structure, while knitted mesh materials are characterized by presence of cells with various sizes both in the longitudinal and cross directions. The surface oxide layer of threads has a microporous structure that provides the improved adaptation in organism tissues. It is shown that the fibroblast colonization rate of the knitted mesh implants depends on the cell size and quantity of mesh knots. Smaller cells are quicker colonized. Mesh knots are the centers of the cell cling. The feature of cell interaction with the tread surface of various sizes is analyzed.

References:

[1] V.E. Gunther, V.N. Khodorenko, T.L. Chekalkin, et al., Medical Materials and Shape Memory Implants, first ed [in Russian], MIC, Tomsk, 2011.


[2] G. Ts. Dambaev, V.E. Gunther, R.V. Zigan’shin, et al., Medical Materials and Shape Memory Implants [in Russian], MIC, Tomsk, 2012.


[3] E.B. Topolnitsky, G.Ts. Dambaev, V.E. Gunther, Plasty of pericardium defect with titanium nickel textile implant, Shape Memory Implants and New Medical Technologies [in Russian], MIC, Tomsk, 2011, 41-43.


[4] G.Ts. Dambaev, A.M. Popov, V.E. Gunther, Alloplasty of the diaphragm with the new biologically adapted nanomaterials, Bull. Roszdravnadzor [in Russian], 1 (2015) 51-59.


[5] Yimin Qin, Textiles for implants and regenerative medicine, Imprint:Woodhead Publishing,Witney,2016.


[6] A.J. Rigby, S.C. Anand, A.R. Horrocks, Textile Materials for Medical and Healthcare Applications, J. of the Textile Institute. 88-3 (1997) 83–93.


[7] B. Claus, D. Schwaller, Modern aspects of ceramic fiber development, J. Adv. Sci. Tech. 50 (2006) 1-8.


[8] S. Petrulyte, Advanced textile materials and biopolymers in wound management, Danish medical bulletin. 55 (2008) 72.


[9] O. V. Kokorev, V.N. Khodorenko, S.G. Anikeev, G.Ts. Dambaev, V.E. Gunther, Research of the mesenchymal stem cell behavior of marrow in titanium nickel porous-permeable incubators, Bull. New Med. Teсhnol. [in Russian], 19-1 (2012) 32-36.


[10] O.V. Kokorev, G.Ts. Dambaev, V. N. Khodorenko, V.E. Gunther, Usage of porouse-penetrable titanium nickel incubators as cell culture carriers, Cellular Transplantation and Tissue Engineering [in Russian], 5-4 (2010) 31-37.

Download
HTML
Cite
Share
statistics

295 Abstract Views

221 PDF Downloads