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Analysis of physical and mechanical parameters of extracellular collagen membranes for guided tissue regeneration

Abstract

Dental membrane has a certain set of parameters and characteristics including thickness, surface density, elastic modulus, surface tension, and stress or elongation. According to these characteristics the behavior of the membrane can be predicted after implantation to calculate the resorption time, strength, and other properties. The physico-mechanical properties of some commercially available dental membranes were investigated in these studies.

About the Authors

A. A. Venediktov
Cardioplant Co
Russian Federation


A. A. Dolgalev
Stavropol State Medical University
Russian Federation


A. D. Krichinina
Penza State University
Russian Federation


D. A. Brusnitsin
Cardioplant Co
Russian Federation


Yu. A. Yudicheva
Penza State University
Russian Federation


References

1. Биосовместимость / В. И. Севастьянов.- М.:, 1999. - 368 с.

2. Биосовместимые материалы / В. И. Севастьянов, М. Т. Кирпичников.-М.: «МИА», 2011.- 544 с. 27.

3. ГОСТ Р ИСО 10993-11-2011 «Изделия медицинские. Оценка биологического действия медицинских изделий. Часть 11. Исследование общетоксического действия».

4. ГОСТ Р ИСО 10993-2-2011 «Изделия медицинские. Оценка биологического действия медицинских изделий. Часть 2. Требования к обращению с животными».

5. Долгалев А. А., Зеленский В. А., Базиков И. А., Куценко А. П., Брусницын Д. А., Юдичева Ю. А., Фадеев Р. А. Сравнительный анализ физико-механических параметров коллагеновых мембран для направленной костной регенерации // Медицинский алфавит, № 29, 2016. Том № 4, Стоматология, С. 21-23.

6. Badylak S. F. The extracellular matrix as a biologic scaffold material / S. F. Badylak // Biomaterials.- 2007.- N. 28.- P. 3587-3593.

7. Badylak S. F. Extracellular matrix as a biological scaffold material: structure and function/ S.F. Badylak, D. O. Freytes, T. W. Gilbert // Acta Biomaterialia.- 2009.-Vol. 5, N. 1.- P. 1-13.

8. Brown B. The basement membrane component of biologic scaffolds derived from extracellular matrix / B. Brown, K. Lindberg, J. Reing, D. B. Stolz, S.F. Badylak // Tissue Eng. - 2006.- Vol. 12, N. 3.- P. 519-526.

9. Hodde J. P. Glycosaminoglycan content of small intestinal submucosa: a bioscaffold for tissue replacement / J. P. Hodde, S.F. Badylak, A. O. Brightman, S. L. Voy-tik-Harbin // Tissue Eng.- 1996.- Vol. 2, N. 3. - 209-217.

10. Hodde J. Effects of sterilization on an extracellular matrix scaffold: part I. Composition and matrix architecture / J. Hodde, A. Janis, D. Ernst, D. Zopf, D. Sherman, C. Johnson // J Mater Sci Mater Med.- 2007.- Vol. 18.- P. 537-43.

11. Li F. Low-molecularweight peptides derived from extracellular matrix as chemoattrac-tants for primary endothelial cells / F. Li, W. Li, S. A. Johnson, D.A. Ingram, M. C. Yoder// Endothelium.- 2004.- Vol.11.- P. 199-206.

12. Mulloy B. Cytokines and proteoglycans: an introductory overview / B. Mulloy, C. C. Rider // Biochem Soc Trans.-2006.- Vol. 34.- P. 409-413.

13. Shekhter A. B. Morphology of collagen matrices for tissue engineering (biocompatibility, biodegradation, tissue response) / A. B. Shekhter, A. E. Guller, L. P. Istranov, E. V. Istranova, D. V. Butnaru, A.Z. Vinarov, OL Zakharkina AVKurkov DF KantimerovEN Antonov LV Marisov PV Glybochko // Arkh Patol. - 2015.- Vol. 77 (6).- P. 29-38.

14. Shi L. Biochemical and biomechanical characterization of porcine small intestinal submucosa (SIS): a mini review / L. Shi, V. Ron-fard // Int J Burns Trauma.- 2013.- Vol. 3 (4).- P. 173-179.


Review

For citations:


Venediktov A.A., Dolgalev A.A., Krichinina A.D., Brusnitsin D.A., Yudicheva Yu.A. Analysis of physical and mechanical parameters of extracellular collagen membranes for guided tissue regeneration. Medical alphabet. 2018;1(2):48-52. (In Russ.)

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ISSN 2078-5631 (Print)
ISSN 2949-2807 (Online)