Type of Material: | Thesis |
Title: | PREPARATION CHARACTERISATION AND EVALUATION OF FIBRIN CHITOSAN AND SODIUM ALGINATE BIOCOMPOSITES |
Researcher: | M. Pandima Devi |
Guide: | T.P.Sastry |
Department: | Department of Engineering and Technology(Industrial Biotechnology) |
Publisher: | Bharath University, Chennai |
Place: | Chennai |
Year: | 2013 |
Language: | English |
Subject: | Homologous skin | Collagen derivatives | Ophthalmology | Fibrin | Biotechnology | Engineering and Technology |
Dissertation/Thesis Note: | PhD; Department of Engineering and Technology(Industrial Biotechnology), Bharath University, Chennai, Chennai; 2013; D05BTOO2 |
Fulltext: | Shodhganga |
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035 | __ | |a(IN-AhILN)th_454600 |
040 | __ | |aBHAU_600073|dIN-AhILN |
041 | __ | |aeng |
100 | __ | |aM. Pandima Devi|eResearcher |
110 | __ | |aDepartment of Engineering and Technology(Industrial Biotechnology)|bBharath University, Chennai|dChennai|ein |
245 | __ | |aPREPARATION CHARACTERISATION AND EVALUATION OF FIBRIN CHITOSAN AND SODIUM ALGINATE BIOCOMPOSITES |
260 | __ | |aChennai|bBharath University, Chennai|c2013 |
300 | __ | |dDVD |
502 | __ | |bPhD|d2013|oD05BTOO2|cDepartment of Engineering and Technology(Industrial Biotechnology), Bharath University, Chennai, Chennai |
518 | __ | |d2004-12-12|oDate of Registration |
520 | __ | |aBiomaterials can be defined as inorganic or organic materials, which are biocompatible and can be implanted in the human body to replace or repair failing tissue. In recent years, progress in the biomaterial area has paved the way for creating innovative materials to improve existing treatments and develop new ones for a higher quality of life. Even though there are many applications of biomaterials in medicine, main attention in the present study was focused on wound dressing material. In the present study, wound dressing materials were prepared suing fibrin, chitosan and sodium alginate. In the first series of experiments a biological wound dressing was prepared, in film form, using fibrin and chitosan (FC) employing PVP as porogen. The films were characterized for their percentage equilibrium water content (% EWC), water vapour transmission rate (WVTR), bacterial penetration, surface morphology and in vivo biodegradation using rats as animal models. The film prepared using fibrin 10ml (40% solids) and ch |
650 | __ | |aBiotechnology|2UGC |
650 | __ | |aEngineering and Technology|2AIU |
653 | __ | |aHomologous skin |
653 | __ | |aCollagen derivatives |
653 | __ | |aOphthalmology |
653 | __ | |aFibrin |
700 | __ | |aT.P.Sastry|eGuide |
856 | __ | |uhttp://shodhganga.inflibnet.ac.in/handle/10603/170931|yShodhganga |
905 | __ | |afromsg |
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