Comparative Analysis of Proliferation and Viability of Multipotent Mesenchymal Stromal Cells in 3D Scaffolds with Different Architectonics


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Resumo

3D biodegradable materials (scaffolds) containing bioactive hydroxyapatite molecules fabricated by foaming in supercritical carbon dioxide and by selective laser sintering were used for culturing of mesenchymal stromal cells from the human adipose tissue. Experiments showed that stromal cells from the human adipose tissue adhered and proliferated on all studied types of structures. Addition of hyproxyapatite to the scaffold stimulated proliferation of stromal adipose tissue cells.

Sobre autores

D. Kuznetsova

N. I. Lobachevskii Nizhny Novgorod State University; Nizhny Novgorod State Medical Academy, the Ministry of Health of the Russian Federation

Autor responsável pela correspondência
Email: daria.s.kuznetsova@gmail.com
Rússia, Nizhny Novgorod; Nizhny Novgorod

P. Timashev

Institute of Laser and Information Technologies, Russian Academy of Sciences

Email: daria.s.kuznetsova@gmail.com
Rússia, Moscow

V. Dudenkova

Nizhny Novgorod State Medical Academy, the Ministry of Health of the Russian Federation

Email: daria.s.kuznetsova@gmail.com
Rússia, Nizhny Novgorod

A. Meleshina

Nizhny Novgorod State Medical Academy, the Ministry of Health of the Russian Federation

Email: daria.s.kuznetsova@gmail.com
Rússia, Nizhny Novgorod

E. Antonov

Institute of Laser and Information Technologies, Russian Academy of Sciences

Email: daria.s.kuznetsova@gmail.com
Rússia, Moscow

L. Krotova

Institute of Laser and Information Technologies, Russian Academy of Sciences

Email: daria.s.kuznetsova@gmail.com
Rússia, Moscow

V. Popov

Institute of Laser and Information Technologies, Russian Academy of Sciences

Email: daria.s.kuznetsova@gmail.com
Rússia, Moscow

V. Bagratashvili

Institute of Laser and Information Technologies, Russian Academy of Sciences

Email: daria.s.kuznetsova@gmail.com
Rússia, Moscow

E. Zagaynova

Nizhny Novgorod State Medical Academy, the Ministry of Health of the Russian Federation

Email: daria.s.kuznetsova@gmail.com
Rússia, Nizhny Novgorod


Declaração de direitos autorais © Springer Science+Business Media New York, 2016

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