Experimental protocol for evaluation of biomaterials in an in-vivo silicone implant coverage

To describe an experimental surgical model in rats using a dual-plane technique for evaluation of biomaterials in an in-vivo silicone implant coverage. This study was developed following the ISO 10993-6 standard. In this study, 40 male Wistar rats weighing between 250 and 350 g were used, distribute...

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Published in:Acta Cirúrgica Brasileira Vol. 39; p. e396724
Main Authors: Silva, Chenia Frutuoso, Felzemburgh, Victor de Araújo, Moreno, Amanda Dourado, Meneses, José Valber Lima, Barbosa Júnior, Aryon de Almeida, Barreto, Isabela Cerqueira, Miguel, Fúlvio Borges
Format: Journal Article
Language:English
Published: Brazil Sociedade Brasileira para o Desenvolvimento da Pesquisa em Cirurgia 01-01-2024
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Abstract To describe an experimental surgical model in rats using a dual-plane technique for evaluation of biomaterials in an in-vivo silicone implant coverage. This study was developed following the ISO 10993-6 standard. In this study, 40 male Wistar rats weighing between 250 and 350 g were used, distributed into two groups: experimental, biomaterial superimposed on the minimammary prosthesis (MP); and control, MP without implantation of the biomaterial, with eight animals at each biological point: 1, 2, 4, 12, and 26 weeks. Thus, at the end of biological points (1, 2, 4, 12, and 26 weeks; n = 8 animals per week), the tissue specimens achieved were fixed in buffered formalin and stained with hematoxylin-eosin. Macroscopically, throughout the study, no postoperative complications were apparent. In the histological analysis, it was possible to observe the evolution of the inflammatory response, tissue repair, and fibrous capsule during the biological points. The experimental model described in this study proved to be suitable for evaluating the biomaterial used in the coverage of breast silicone implants.
AbstractList To describe an experimental surgical model in rats using a dual-plane technique for evaluation of biomaterials in an in-vivo silicone implant coverage. This study was developed following the ISO 10993-6 standard. In this study, 40 male Wistar rats weighing between 250 and 350 g were used, distributed into two groups: experimental, biomaterial superimposed on the minimammary prosthesis (MP); and control, MP without implantation of the biomaterial, with eight animals at each biological point: 1, 2, 4, 12, and 26 weeks. Thus, at the end of biological points (1, 2, 4, 12, and 26 weeks; n = 8 animals per week), the tissue specimens achieved were fixed in buffered formalin and stained with hematoxylin-eosin. Macroscopically, throughout the study, no postoperative complications were apparent. In the histological analysis, it was possible to observe the evolution of the inflammatory response, tissue repair, and fibrous capsule during the biological points. The experimental model described in this study proved to be suitable for evaluating the biomaterial used in the coverage of breast silicone implants.
ABSTRACT Purpose: To describe an experimental surgical model in rats using a dual-plane technique for evaluation of biomaterials in an in-vivo silicone implant coverage. Methods: This study was developed following the ISO 10993-6 standard. In this study, 40 male Wistar rats weighing between 250 and 350 g were used, distributed into two groups: experimental, biomaterial superimposed on the minimammary prosthesis (MP); and control, MP without implantation of the biomaterial, with eight animals at each biological point: 1, 2, 4, 12, and 26 weeks. Thus, at the end of biological points (1, 2, 4, 12, and 26 weeks; n = 8 animals per week), the tissue specimens achieved were fixed in buffered formalin and stained with hematoxylin-eosin. Results: Macroscopically, throughout the study, no postoperative complications were apparent. In the histological analysis, it was possible to observe the evolution of the inflammatory response, tissue repair, and fibrous capsule during the biological points. Conclusions: The experimental model described in this study proved to be suitable for evaluating the biomaterial used in the coverage of breast silicone implants.
Author Moreno, Amanda Dourado
Barbosa Júnior, Aryon de Almeida
Barreto, Isabela Cerqueira
Meneses, José Valber Lima
Silva, Chenia Frutuoso
Felzemburgh, Victor de Araújo
Miguel, Fúlvio Borges
AuthorAffiliation 1 Universidade Federal da Bahia – Institute of Health Sciences – Laboratory of Tissue Bioengineering and Biomaterials – Salvador (BA) – Brazil
3 Universidade Federal da Bahia – Faculty of Medicine of Bahia – Salvador (BA) – Brazil
4 Instituto de Patologia Geral e Cutânea – Salvador (BA) – Brazil
2 Universidade Federal da Bahia – Post-graduation Program in Interactive Processes of the Organs and Systems – Salvador (BA) – Brazil
AuthorAffiliation_xml – name: 2 Universidade Federal da Bahia – Post-graduation Program in Interactive Processes of the Organs and Systems – Salvador (BA) – Brazil
– name: 1 Universidade Federal da Bahia – Institute of Health Sciences – Laboratory of Tissue Bioengineering and Biomaterials – Salvador (BA) – Brazil
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  surname: Miguel
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Notes Section editor: Eiji Kobayashi https://orcid.org/0000-0001-7038-7931
Conflict of interest: Nothing to declare.
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Snippet To describe an experimental surgical model in rats using a dual-plane technique for evaluation of biomaterials in an in-vivo silicone implant coverage. This...
ABSTRACT Purpose: To describe an experimental surgical model in rats using a dual-plane technique for evaluation of biomaterials in an in-vivo silicone implant...
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StartPage e396724
SubjectTerms Animals
Biocompatible Materials
Breast Implants
Male
Materials Testing
Models, Animal
Models, Theoretical
Original
Rats
Rats, Wistar
Silicone Gels
Silicones
Time Factors
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Title Experimental protocol for evaluation of biomaterials in an in-vivo silicone implant coverage
URI https://www.ncbi.nlm.nih.gov/pubmed/39356935
https://pubmed.ncbi.nlm.nih.gov/PMC11441155
https://doaj.org/article/bdb3f46bdd8548bd94011e358853b618
Volume 39
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