The use of biodegradable polymers in design of cellular scaffolds
The objective of this work was to demonstrate the usage of biodegradable polymers, made of calcium alginate and dibutyrylchitin, in the design of cellular scaffolds having broad application in reconstructive therapy (dentistry, orthopedics). To visualize cells seeded on calcium alginate and dibutyry...
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2015-03-01
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doaj-1b31740efe9f4a5092a81f819edd43de2020-11-24T23:16:49ZengIndex Copernicus International S.A.Postępy Higieny i Medycyny Doświadczalnej0032-54491732-26932015-03-016929430110.5604/01.3001.0009.650301.3001.0009.6503The use of biodegradable polymers in design of cellular scaffoldsJoanna Orłowska0Urszula Kurczewska1Katarzyna Derwińska2Wojciech Orłowski3Daria Orszulak-Michalak4Ph.D. Student, Medical University of Lodz, Lodz, Poland; Research and Development Laboratory Dermin, Lodz, PolandDepartment of Biopharmaceutics, Medical University of Lodz, Lodz, PolandResearch and Development Laboratory Dermin, Lodz, PolandResearch and Development Laboratory Dermin, Lodz, PolandDepartment of Biopharmaceutics, Medical University of Lodz, Lodz, PolandThe objective of this work was to demonstrate the usage of biodegradable polymers, made of calcium alginate and dibutyrylchitin, in the design of cellular scaffolds having broad application in reconstructive therapy (dentistry, orthopedics). To visualize cells seeded on calcium alginate and dibutyrylchitin polymers DAPI staining of fibroblasts nuclei was used. The cytotoxicity of the materials and microscopic evaluation of the viability of seeded cells was tested with a PKH 67 fluorescent dye. To assess the cellular toxicity the proliferation of fibroblasts adjacent to the tested polymers was examined. The vitability of cells seeded on polymers was also evaluated by measuring the fluorescence intensity of calcein which binds only to live cells. The conducted experiments (DAPI and PKH 67 staining) show that the tested materials have a positive influence on cell adhesion crucial for wound healing – fibroblasts. The self-made dibutyrylchitin dressing do not cause the reduction of viability of cells seeded on them. The in vitro study illustrated the interactions between the tested materials, constructed of calcium alginate or dibutyrylchitin and mouse fibroblasts and proved their usefulness in the design of cellular scaffolds. Examined polymers turned out to be of great interest and promise for cellular scaffolds design. http://phmd.pl/gicid/01.3001.0009.6503cellular scaffoldsTissue EngineeringBiopolymers |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Joanna Orłowska Urszula Kurczewska Katarzyna Derwińska Wojciech Orłowski Daria Orszulak-Michalak |
spellingShingle |
Joanna Orłowska Urszula Kurczewska Katarzyna Derwińska Wojciech Orłowski Daria Orszulak-Michalak The use of biodegradable polymers in design of cellular scaffolds Postępy Higieny i Medycyny Doświadczalnej cellular scaffolds Tissue Engineering Biopolymers |
author_facet |
Joanna Orłowska Urszula Kurczewska Katarzyna Derwińska Wojciech Orłowski Daria Orszulak-Michalak |
author_sort |
Joanna Orłowska |
title |
The use of biodegradable polymers in design of cellular scaffolds |
title_short |
The use of biodegradable polymers in design of cellular scaffolds |
title_full |
The use of biodegradable polymers in design of cellular scaffolds |
title_fullStr |
The use of biodegradable polymers in design of cellular scaffolds |
title_full_unstemmed |
The use of biodegradable polymers in design of cellular scaffolds |
title_sort |
use of biodegradable polymers in design of cellular scaffolds |
publisher |
Index Copernicus International S.A. |
series |
Postępy Higieny i Medycyny Doświadczalnej |
issn |
0032-5449 1732-2693 |
publishDate |
2015-03-01 |
description |
The objective of this work was to demonstrate the usage of biodegradable polymers, made of calcium alginate and dibutyrylchitin, in the design of cellular scaffolds having broad application in reconstructive therapy (dentistry, orthopedics). To visualize cells seeded on calcium alginate and dibutyrylchitin polymers DAPI staining of fibroblasts nuclei was used. The cytotoxicity of the materials and microscopic evaluation of the viability of seeded cells was tested with a PKH 67 fluorescent dye. To assess the cellular toxicity the proliferation of fibroblasts adjacent to the tested polymers was examined. The vitability of cells seeded on polymers was also evaluated by measuring the fluorescence intensity of calcein which binds only to live cells. The conducted experiments (DAPI and PKH 67 staining) show that the tested materials have a positive influence on cell adhesion crucial for wound healing – fibroblasts. The self-made dibutyrylchitin dressing do not cause the reduction of viability of cells seeded on them. The in vitro study illustrated the interactions between the tested materials, constructed of calcium alginate or dibutyrylchitin and mouse fibroblasts and proved their usefulness in the design of cellular scaffolds. Examined polymers turned out to be of great interest and promise for cellular scaffolds design.
|
topic |
cellular scaffolds Tissue Engineering Biopolymers |
url |
http://phmd.pl/gicid/01.3001.0009.6503 |
work_keys_str_mv |
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