Lívia Contini Massimino, Virginia da Conceição Amaro Martins, Valcinir Aloisio Scalla Vulcani, Éverton Lucas de Oliveira, Mariane Barsi Andreeta, Tito José Bonagamba, Maria Fátima Guarizo Klingbeil, Monica Beatriz Mathor, Ana Maria de Guzzi Plepis
{"title":"在生物工程中使用胶原蛋白和耳软骨:组织再生支架。","authors":"Lívia Contini Massimino, Virginia da Conceição Amaro Martins, Valcinir Aloisio Scalla Vulcani, Éverton Lucas de Oliveira, Mariane Barsi Andreeta, Tito José Bonagamba, Maria Fátima Guarizo Klingbeil, Monica Beatriz Mathor, Ana Maria de Guzzi Plepis","doi":"10.1007/s10561-020-09861-0","DOIUrl":null,"url":null,"abstract":"<p><p>The aim of this study was the development of collagen and collagen/auricular cartilage scaffolds for application in dermal regeneration. Collagen was obtained from bovine tendon by a 72 h-long treatment, while bovine auricular cartilage was treated for 24 h and divided into two parts, external (perichondrium, E) and internal (elastic cartilage, I). The scaffolds were prepared by mixing collagen (C) with the internal part (CI) or the external part (CE) in a 3:1 ratio. Differential scanning calorimetry, scanning electron microscopy (SEM) analysis, microcomputed tomography imaging (micro-CT) and swelling degree were used to characterize the scaffolds. Cytotoxicity, cell adhesion, and cell proliferation assays were performed using the cell line NIH/3T3. All samples presented a similar denaturation temperature (Td) around 48 °C, while CE presented a second Td at 51.2 °C. SEM micrographs showed superficial pores in all scaffolds and micro-CT exhibited interconnected pore spaces with porosity above 60% (sizes between 47 and 149 µm). The order of swelling was CE < CI < C and the scaffolds did not present cytotoxicity, showing attachment rates above 75%-all samples showed a similar pattern of proliferation until 168 h, whereas CI tended to decrease after this time. The scaffolds were easily obtained, biocompatible and had adequate morphology for cell growth. All samples showed high adhesion, whereas collagen-only and collagen/external part scaffolds presented a better cell proliferation rate and would be indicated for possible use in dermal regeneration.</p>","PeriodicalId":9723,"journal":{"name":"Cell and Tissue Banking","volume":" ","pages":"111-122"},"PeriodicalIF":1.4000,"publicationDate":"2024-03-01","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":"{\"title\":\"Use of collagen and auricular cartilage in bioengineering: scaffolds for tissue regeneration.\",\"authors\":\"Lívia Contini Massimino, Virginia da Conceição Amaro Martins, Valcinir Aloisio Scalla Vulcani, Éverton Lucas de Oliveira, Mariane Barsi Andreeta, Tito José Bonagamba, Maria Fátima Guarizo Klingbeil, Monica Beatriz Mathor, Ana Maria de Guzzi Plepis\",\"doi\":\"10.1007/s10561-020-09861-0\",\"DOIUrl\":null,\"url\":null,\"abstract\":\"<p><p>The aim of this study was the development of collagen and collagen/auricular cartilage scaffolds for application in dermal regeneration. 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The order of swelling was CE < CI < C and the scaffolds did not present cytotoxicity, showing attachment rates above 75%-all samples showed a similar pattern of proliferation until 168 h, whereas CI tended to decrease after this time. The scaffolds were easily obtained, biocompatible and had adequate morphology for cell growth. 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Use of collagen and auricular cartilage in bioengineering: scaffolds for tissue regeneration.
The aim of this study was the development of collagen and collagen/auricular cartilage scaffolds for application in dermal regeneration. Collagen was obtained from bovine tendon by a 72 h-long treatment, while bovine auricular cartilage was treated for 24 h and divided into two parts, external (perichondrium, E) and internal (elastic cartilage, I). The scaffolds were prepared by mixing collagen (C) with the internal part (CI) or the external part (CE) in a 3:1 ratio. Differential scanning calorimetry, scanning electron microscopy (SEM) analysis, microcomputed tomography imaging (micro-CT) and swelling degree were used to characterize the scaffolds. Cytotoxicity, cell adhesion, and cell proliferation assays were performed using the cell line NIH/3T3. All samples presented a similar denaturation temperature (Td) around 48 °C, while CE presented a second Td at 51.2 °C. SEM micrographs showed superficial pores in all scaffolds and micro-CT exhibited interconnected pore spaces with porosity above 60% (sizes between 47 and 149 µm). The order of swelling was CE < CI < C and the scaffolds did not present cytotoxicity, showing attachment rates above 75%-all samples showed a similar pattern of proliferation until 168 h, whereas CI tended to decrease after this time. The scaffolds were easily obtained, biocompatible and had adequate morphology for cell growth. All samples showed high adhesion, whereas collagen-only and collagen/external part scaffolds presented a better cell proliferation rate and would be indicated for possible use in dermal regeneration.
期刊介绍:
Cell and Tissue Banking provides a forum for disseminating information to scientists and clinicians involved in the banking and transplantation of cells and tissues. Cell and Tissue Banking is an international, peer-reviewed journal that publishes original papers in the following areas:
basic research concerning general aspects of tissue banking such as quality assurance and control of banked cells/tissues, effects of preservation and sterilisation methods on cells/tissues, biotechnology, etc.; clinical applications of banked cells/tissues; standards of practice in procurement, processing, storage and distribution of cells/tissues; ethical issues; medico-legal issues.