Silicone breast implant modification review: overcoming capsular contracture
Background Silicone implants are biomaterials that are frequently used in the medical industry due to their physiological inertness and low toxicity. However, capsular contracture remains a concern in long-term transplantation. To date, several studies have been conducted to overcome this problem. T...
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Published in | Biomaterials research Vol. 22; no. 1; pp. 37 - 9 |
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Main Authors | , , , , , |
Format | Journal Article |
Language | English |
Published |
London
BioMed Central
20.12.2018
BioMed Central Ltd American Association for the Advancement of Science (AAAS) 한국생체재료학회 |
Subjects | |
Online Access | Get full text |
ISSN | 2055-7124 1226-4601 2055-7124 |
DOI | 10.1186/s40824-018-0147-5 |
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Abstract | Background
Silicone implants are biomaterials that are frequently used in the medical industry due to their physiological inertness and low toxicity. However, capsular contracture remains a concern in long-term transplantation. To date, several studies have been conducted to overcome this problem. This review summarizes and explores these trends.
Main body
First, we examined the overall foreign body response from initial inflammation to fibrosis capsule formation in detail and introduced various studies to overcome capsular contracture. Secondly, we introduced that the main research approaches are to inhibit fibrosis with anti-inflammatory drugs or antibiotics, to control the topography of the surface of silicone implants, and to administer plasma treatment. Each study examined aspects of the various mechanisms by which capsular contracture could occur, and addressed the effects of inhibiting fibrosis.
Conclusion
This review introduces various silicone surface modification methods to date and examines their limitations. This review will help identify new directions in inhibiting the fibrosis of silicone implants. |
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AbstractList | Silicone implants are biomaterials that are frequently used in the medical industry due to their physiological inertness and low toxicity. However, capsular contracture remains a concern in long-term transplantation. To date, several studies have been conducted to overcome this problem. This review summarizes and explores these trends. This review introduces various silicone surface modification methods to date and examines their limitations. This review will help identify new directions in inhibiting the fibrosis of silicone implants. Background Silicone implants are biomaterials that are frequently used in the medical industry due to their physiological inertness and low toxicity. However, capsular contracture remains a concern in long-term transplantation. To date, several studies have been conducted to overcome this problem. This review summarizes and explores these trends. Main body First, we examined the overall foreign body response from initial inflammation to fibrosis capsule formation in detail and introduced various studies to overcome capsular contracture. Secondly, we introduced that the main research approaches are to inhibit fibrosis with anti-inflammatory drugs or antibiotics, to control the topography of the surface of silicone implants, and to administer plasma treatment. Each study examined aspects of the various mechanisms by which capsular contracture could occur, and addressed the effects of inhibiting fibrosis. Conclusion This review introduces various silicone surface modification methods to date and examines their limitations. This review will help identify new directions in inhibiting the fibrosis of silicone implants. Keywords: Fibrosis, Inflammation, Silicone implant, Foreign body reaction, Capsular contracture, Modification Silicone implants are biomaterials that are frequently used in the medical industry due to their physiological inertness and low toxicity. However, capsular contracture remains a concern in long-term transplantation. To date, several studies have been conducted to overcome this problem. This review summarizes and explores these trends. First, we examined the overall foreign body response from initial inflammation to fibrosis capsule formation in detail and introduced various studies to overcome capsular contracture. Secondly, we introduced that the main research approaches are to inhibit fibrosis with anti-inflammatory drugs or antibiotics, to control the topography of the surface of silicone implants, and to administer plasma treatment. Each study examined aspects of the various mechanisms by which capsular contracture could occur, and addressed the effects of inhibiting fibrosis. This review introduces various silicone surface modification methods to date and examines their limitations. This review will help identify new directions in inhibiting the fibrosis of silicone implants. Silicone implants are biomaterials that are frequently used in the medical industry due to their physiological inertness and low toxicity. However, capsular contracture remains a concern in long-term transplantation. To date, several studies have been conducted to overcome this problem. This review summarizes and explores these trends.BACKGROUNDSilicone implants are biomaterials that are frequently used in the medical industry due to their physiological inertness and low toxicity. However, capsular contracture remains a concern in long-term transplantation. To date, several studies have been conducted to overcome this problem. This review summarizes and explores these trends.First, we examined the overall foreign body response from initial inflammation to fibrosis capsule formation in detail and introduced various studies to overcome capsular contracture. Secondly, we introduced that the main research approaches are to inhibit fibrosis with anti-inflammatory drugs or antibiotics, to control the topography of the surface of silicone implants, and to administer plasma treatment. Each study examined aspects of the various mechanisms by which capsular contracture could occur, and addressed the effects of inhibiting fibrosis.MAIN BODYFirst, we examined the overall foreign body response from initial inflammation to fibrosis capsule formation in detail and introduced various studies to overcome capsular contracture. Secondly, we introduced that the main research approaches are to inhibit fibrosis with anti-inflammatory drugs or antibiotics, to control the topography of the surface of silicone implants, and to administer plasma treatment. Each study examined aspects of the various mechanisms by which capsular contracture could occur, and addressed the effects of inhibiting fibrosis.This review introduces various silicone surface modification methods to date and examines their limitations. This review will help identify new directions in inhibiting the fibrosis of silicone implants.CONCLUSIONThis review introduces various silicone surface modification methods to date and examines their limitations. This review will help identify new directions in inhibiting the fibrosis of silicone implants. Abstract Background Silicone implants are biomaterials that are frequently used in the medical industry due to their physiological inertness and low toxicity. However, capsular contracture remains a concern in long-term transplantation. To date, several studies have been conducted to overcome this problem. This review summarizes and explores these trends. Main body First, we examined the overall foreign body response from initial inflammation to fibrosis capsule formation in detail and introduced various studies to overcome capsular contracture. Secondly, we introduced that the main research approaches are to inhibit fibrosis with anti-inflammatory drugs or antibiotics, to control the topography of the surface of silicone implants, and to administer plasma treatment. Each study examined aspects of the various mechanisms by which capsular contracture could occur, and addressed the effects of inhibiting fibrosis. Conclusion This review introduces various silicone surface modification methods to date and examines their limitations. This review will help identify new directions in inhibiting the fibrosis of silicone implants. Background: Silicone implants are biomaterials that are frequently used in the medical industry due to their physiological inertness and low toxicity. However, capsular contracture remains a concern in long-term transplantation. To date, several studies have been conducted to overcome this problem. This review summarizes and explores these trends. Main body: First, we examined the overall foreign body response from initial inflammation to fibrosis capsule formation in detail and introduced various studies to overcome capsular contracture. Secondly, we introduced that the main research approaches are to inhibit fibrosis with anti-inflammatory drugs or antibiotics, to control the topography of the surface of silicone implants, and to administer plasma treatment. Each study examined aspects of the various mechanisms by which capsular contracture could occur, and addressed the effects of inhibiting fibrosis. Conclusion: This review introduces various silicone surface modification methods to date and examines their limitations. This review will help identify new directions in inhibiting the fibrosis of silicone implants. KCI Citation Count: 1 Background Silicone implants are biomaterials that are frequently used in the medical industry due to their physiological inertness and low toxicity. However, capsular contracture remains a concern in long-term transplantation. To date, several studies have been conducted to overcome this problem. This review summarizes and explores these trends. Main body First, we examined the overall foreign body response from initial inflammation to fibrosis capsule formation in detail and introduced various studies to overcome capsular contracture. Secondly, we introduced that the main research approaches are to inhibit fibrosis with anti-inflammatory drugs or antibiotics, to control the topography of the surface of silicone implants, and to administer plasma treatment. Each study examined aspects of the various mechanisms by which capsular contracture could occur, and addressed the effects of inhibiting fibrosis. Conclusion This review introduces various silicone surface modification methods to date and examines their limitations. This review will help identify new directions in inhibiting the fibrosis of silicone implants. Background Silicone implants are biomaterials that are frequently used in the medical industry due to their physiological inertness and low toxicity. However, capsular contracture remains a concern in long-term transplantation. To date, several studies have been conducted to overcome this problem. This review summarizes and explores these trends. Main body First, we examined the overall foreign body response from initial inflammation to fibrosis capsule formation in detail and introduced various studies to overcome capsular contracture. Secondly, we introduced that the main research approaches are to inhibit fibrosis with anti-inflammatory drugs or antibiotics, to control the topography of the surface of silicone implants, and to administer plasma treatment. Each study examined aspects of the various mechanisms by which capsular contracture could occur, and addressed the effects of inhibiting fibrosis. Conclusion This review introduces various silicone surface modification methods to date and examines their limitations. This review will help identify new directions in inhibiting the fibrosis of silicone implants. |
Audience | Academic |
Author | Kim, Sujin Kim, Byung Hwi Shin, Byung Ho Choy, Young Bin Lee, Kangwon Heo, Chan Yeong |
Author_xml | – sequence: 1 givenname: Byung Ho surname: Shin fullname: Shin, Byung Ho organization: Department of Biomedical Engineering, Seoul National University College of Medicine – sequence: 2 givenname: Byung Hwi surname: Kim fullname: Kim, Byung Hwi organization: Department of Biomedical Engineering, Seoul National University College of Medicine – sequence: 3 givenname: Sujin surname: Kim fullname: Kim, Sujin organization: Department of Transdisciplinary Studies, Graduate School of Convergence Science and Technology, Seoul National University – sequence: 4 givenname: Kangwon surname: Lee fullname: Lee, Kangwon organization: Department of Transdisciplinary Studies, Graduate School of Convergence Science and Technology, Seoul National University, Advanced Institutes of Convergence Technology – sequence: 5 givenname: Young Bin surname: Choy fullname: Choy, Young Bin organization: Department of Biomedical Engineering, Seoul National University College of Medicine, Interdisciplinary Program for Bioengineering, College of Engineering, Seoul National University, Institute of Medical & Biological Engineering, Medical Research Center, Seoul National University – sequence: 6 givenname: Chan Yeong orcidid: 0000-0001-9003-7365 surname: Heo fullname: Heo, Chan Yeong email: lionheo@gmail.com organization: Interdisciplinary Program for Bioengineering, College of Engineering, Seoul National University, Department of Plastic and Reconstructive Surgery, College of Medicine, Seoul National University, Department of Plastic and Reconstructive Surgery, Seoul National University Bundang Hospital |
BackLink | https://www.ncbi.nlm.nih.gov/pubmed/30598837$$D View this record in MEDLINE/PubMed https://www.kci.go.kr/kciportal/ci/sereArticleSearch/ciSereArtiView.kci?sereArticleSearchBean.artiId=ART002426654$$DAccess content in National Research Foundation of Korea (NRF) |
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Keywords | Modification Silicone implant Capsular contracture Inflammation Foreign body reaction Fibrosis |
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Snippet | Background
Silicone implants are biomaterials that are frequently used in the medical industry due to their physiological inertness and low toxicity. However,... Silicone implants are biomaterials that are frequently used in the medical industry due to their physiological inertness and low toxicity. However, capsular... Background Silicone implants are biomaterials that are frequently used in the medical industry due to their physiological inertness and low toxicity. However,... Abstract Background Silicone implants are biomaterials that are frequently used in the medical industry due to their physiological inertness and low toxicity.... Background: Silicone implants are biomaterials that are frequently used in the medical industry due to their physiological inertness and low toxicity. However,... |
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SubjectTerms | Adsorption Analysis Antibiotics Antiinflammatory agents Asthma Biomaterials Biomedical materials Breast implants Capsular contracture Chemistry and Materials Science Collagen Complications and side effects Cytokines Fibroblasts Fibrosis Foreign body reaction Growth factors Immunosuppressive agents Inflammation Materials Science Medical silicones Modification Physiology Plastic surgery Properties Proteins Review Reviews Silicone implant Silicones Topography Toxicity Transplantation Transplants & implants 의공학 |
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Title | Silicone breast implant modification review: overcoming capsular contracture |
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