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Development and characterization of chitosan-based antimicrobial films incorporated with streptomycin loaded starch nanoparticles

机译:壳聚糖基载有链霉素淀粉纳米颗粒的抗菌膜的开发与表征

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Nowadays, Chitosan has attained more attention due to its potential applications in food, agriculture and pharmaceutics. The cationic nature of chitosan enhances the film forming capacity of this polymer. However, films made only from chitosan lack water resistance and have reduced mechanical properties. The functional properties of chitosan films can be improved when chitosan films are combined with other film forming materials. The objective of this study was to prepare chitosan based antimicrobial films by the incorporation of streptomycin loaded starch Nanocrystals. Different properties of this film such as swelling nature, moisture content, degradation nature and the antimicrobial activity of modified chitosan films were investigated. Drug releasing efficacy of the film was also studied. The addition of streptomycin loaded Starch nanocrystals in chitosan-gelatin film increased crystallinity of the film, lowered the swelling nature of the film to a controlled manner. Moreover the Modified chitosan based antimicrobial film showed almost 90% of Escherichia coli inhibition and 80% of Bacillus subtilis inhibition and also the film showed a sustained release (60%) of streptomycin for 10 days. Focal point: ?BenchsideSynthesis of streptomycin loaded starch nanoparticles (SS-NPs) using nanoprecipitation method and the development of novel chitosan based antimicrobial film by the incorporation of streptomycin loaded starch nanoparticles using solvent casting technique?BedsideDevelopment of potential multifunctional antimicrobial film for medical, pharmaceutical and food based applications due to its excellent film forming ability, biocompatibility, biodegradability and antimicrobial property?IndustryThe designed unique antimicrobial film, if finely tuned, can be used both in biomedical fields for developing scaffolds in tissue engineering, wound dressing material, capsule material for sustained drug release and immobilization of enzyme and food industry as packaging material?GovernmentFinancial investment and support from government would help to develop new novel translational tools which contribute for better health care and also help to reduces disease burden?RegulatoryStringent regulatory principles limit the clinical trials essential for validation of biomaterials which might have turned in to a highly beneficial multifunctional product such as antimicrobial film potentially useful both in biomedical and food industry.
机译:如今,壳聚糖由于其在食品,农业和制药领域的潜在应用而受到越来越多的关注。壳聚糖的阳离子性质增强了该聚合物的成膜能力。然而,仅由壳聚糖制成的膜缺乏耐水性并且具有降低的机械性能。当壳聚糖膜与其他成膜材料结合时,壳聚糖膜的功能特性可以得到改善。这项研究的目的是通过掺入链霉素的淀粉纳米晶体来制备基于壳聚糖的抗菌膜。研究了该膜的不同性质,如溶胀性质,水分含量,降解性质和改性壳聚糖膜的抗菌活性。还研究了膜的药物释放功效。在壳聚糖-明胶薄膜中添加链霉素负载的淀粉纳米晶体会增加薄膜的结晶度,并以可控的方式降低薄膜的溶胀性。此外,基于壳聚糖的改性抗菌膜显示出约90%的大肠杆菌抑制和80%的枯草芽孢杆菌抑制,并且该膜显示链霉素持续释放(60%)10天。重点:?台式利用纳米沉淀法合成载有链霉素的淀粉纳米颗粒(SS-NPs)以及通过溶剂浇铸技术掺入链霉素载有淀粉纳米颗粒的新型壳聚糖基抗菌膜的开发?由于其优异的成膜能力,生物相容性,生物降解性和抗菌特性,因此在食品和食品应用中得到了应用?设计独特的抗菌膜(如果进行了微调)可用于生物医学领域中用于开发组织工程中的支架,伤口敷料材料,胶囊材料持续的药物释放以及固定化酶和食品工业的包装材料?政府的财政投资和支持将有助于开发新的新型转化工具,为更好的医疗保健做出贡献,还有助于减轻疾病负担?严格的监管原则限制了对生物材料验证必不可少的临床试验,这些生物材料可能已转化为高度有益的多功能产品,例如可能在生物医学和食品工业中都有用的抗菌膜。

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