Description of mechanical and biological factors affecting the bone-biomaterial(β tricalcium phosphate and chitosan), implanted in animal model

When designing a biomaterial, it is necessary to take into account both biological and mechanical factors that could affect its proper performance. From the biological point of view, when a biomaterial is implanted in bone tissues, it generates two interfaces: one between the foreign implanted mater...

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Autores:
Arce Guerrero, Sandra
Valencia, Carlos
Tipo de recurso:
Article of journal
Fecha de publicación:
2013
Institución:
Universidad Autónoma de Occidente
Repositorio:
RED: Repositorio Educativo Digital UAO
Idioma:
eng
OAI Identifier:
oai:red.uao.edu.co:10614/11880
Acceso en línea:
http://red.uao.edu.co//handle/10614/11880
Palabra clave:
Materiales biomédicos
Biomedical materials
Mechanical and biological factors
Bone-biomaterial(β tricalcium phosphate and chitosan)
Rights
openAccess
License
Derechos Reservados - Universidad Autónoma de Occidente
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dc.title.eng.fl_str_mv Description of mechanical and biological factors affecting the bone-biomaterial(β tricalcium phosphate and chitosan), implanted in animal model
title Description of mechanical and biological factors affecting the bone-biomaterial(β tricalcium phosphate and chitosan), implanted in animal model
spellingShingle Description of mechanical and biological factors affecting the bone-biomaterial(β tricalcium phosphate and chitosan), implanted in animal model
Materiales biomédicos
Biomedical materials
Mechanical and biological factors
Bone-biomaterial(β tricalcium phosphate and chitosan)
title_short Description of mechanical and biological factors affecting the bone-biomaterial(β tricalcium phosphate and chitosan), implanted in animal model
title_full Description of mechanical and biological factors affecting the bone-biomaterial(β tricalcium phosphate and chitosan), implanted in animal model
title_fullStr Description of mechanical and biological factors affecting the bone-biomaterial(β tricalcium phosphate and chitosan), implanted in animal model
title_full_unstemmed Description of mechanical and biological factors affecting the bone-biomaterial(β tricalcium phosphate and chitosan), implanted in animal model
title_sort Description of mechanical and biological factors affecting the bone-biomaterial(β tricalcium phosphate and chitosan), implanted in animal model
dc.creator.fl_str_mv Arce Guerrero, Sandra
Valencia, Carlos
dc.contributor.author.none.fl_str_mv Arce Guerrero, Sandra
Valencia, Carlos
dc.subject.armarc.spa.fl_str_mv Materiales biomédicos
topic Materiales biomédicos
Biomedical materials
Mechanical and biological factors
Bone-biomaterial(β tricalcium phosphate and chitosan)
dc.subject.armarc.eng.fl_str_mv Biomedical materials
dc.subject.proposal.eng.fl_str_mv Mechanical and biological factors
Bone-biomaterial(β tricalcium phosphate and chitosan)
description When designing a biomaterial, it is necessary to take into account both biological and mechanical factors that could affect its proper performance. From the biological point of view, when a biomaterial is implanted in bone tissues, it generates two interfaces: one between the foreign implanted material and the tissue surrounding it, and another one between inner parts of the material and the undegraded cells surrounding it. Cells neighboring bone surfaces, will try to invade the material to regenerate and reabsorb the defect created. This process is requires the production of type I and III collagen fibers, blood vessel growth, cell differentiation osteogenic and osteoclastogenesis which is the connection between the bone and the implanted material. However, these biological factors have a direct relationship with the mechanical factors involved in the healing process of injured tissues. The objective of this research is to obtain a synthetic, biocompatible and bioresorbable biomaterial. It is also easy to handle for the surgeon, and has a hardening time and moldability that facilitate its application. On the other hand, it has shown ability to stimulate bone formation at sites of non - union without adding other components
publishDate 2013
dc.date.issued.none.fl_str_mv 2013-01
dc.date.accessioned.none.fl_str_mv 2020-02-13T16:37:43Z
dc.date.available.none.fl_str_mv 2020-02-13T16:37:43Z
dc.type.spa.fl_str_mv Artículo de revista
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dc.identifier.issn.spa.fl_str_mv ISSN 14732262
dc.identifier.uri.none.fl_str_mv http://red.uao.edu.co//handle/10614/11880
identifier_str_mv ISSN 14732262
url http://red.uao.edu.co//handle/10614/11880
dc.language.iso.eng.fl_str_mv eng
language eng
dc.relation.eng.fl_str_mv European Cells and Materials. Volumen 26, Supplemento. 6, (2013); page 110
dc.relation.citationissue.none.fl_str_mv 6 -suplemento
dc.relation.citationstartpage.none.fl_str_mv 110
dc.relation.citationvolume.none.fl_str_mv 26
dc.relation.cites.spa.fl_str_mv Arce Guerrero, S. y Valencia, C. (2013). Description of mechanical and biological factors affecting the bone-biomaterial(β tricalcium phosphate and chitosan), implanted in animal model. En: European Cells and Materials. 26 (6) Suplemento, 110. http://red.uao.edu.co//handle/10614/11880
dc.relation.ispartofjournal.eng.fl_str_mv European Cells and Materials
dc.relation.references.none.fl_str_mv JO Hollinger, JC Kleinschmidt (1990) J Craniofacial Surgery 1:60–68
Geris L, Gerisch A, Vander-Sloten J, Weiner R, Van-Oosterwyck H (2008) Journal of Theoretical Biology.251:137-58.
dc.rights.spa.fl_str_mv Derechos Reservados - Universidad Autónoma de Occidente
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spelling Arce Guerrero, Sandravirtual::437-1Valencia, Carlos2be1f8278424777434a4baf6a0a6832fUniversidad Autónoma de Occidente. Calle 25 115-85. Km 2 vía Cali-Jamundí2020-02-13T16:37:43Z2020-02-13T16:37:43Z2013-01ISSN 14732262http://red.uao.edu.co//handle/10614/11880When designing a biomaterial, it is necessary to take into account both biological and mechanical factors that could affect its proper performance. From the biological point of view, when a biomaterial is implanted in bone tissues, it generates two interfaces: one between the foreign implanted material and the tissue surrounding it, and another one between inner parts of the material and the undegraded cells surrounding it. Cells neighboring bone surfaces, will try to invade the material to regenerate and reabsorb the defect created. This process is requires the production of type I and III collagen fibers, blood vessel growth, cell differentiation osteogenic and osteoclastogenesis which is the connection between the bone and the implanted material. However, these biological factors have a direct relationship with the mechanical factors involved in the healing process of injured tissues. The objective of this research is to obtain a synthetic, biocompatible and bioresorbable biomaterial. It is also easy to handle for the surgeon, and has a hardening time and moldability that facilitate its application. On the other hand, it has shown ability to stimulate bone formation at sites of non - union without adding other componentsapplication/pdf1 páginaengEcmEuropean Cells and Materials. Volumen 26, Supplemento. 6, (2013); page 1106 -suplemento11026Arce Guerrero, S. y Valencia, C. (2013). Description of mechanical and biological factors affecting the bone-biomaterial(β tricalcium phosphate and chitosan), implanted in animal model. 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