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Preparation Characterization and in Vivo Antimycobacterial Studies of Panchovillin-Chitosan Nanocomposites

机译:Panchovillin-壳聚糖纳米复合材料的制备表征及体内抗分枝杆菌研究

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摘要

Chitosan (CS, molecular weight 20.2 kDa, degree of deacylation (DD) 73.31%) was successfully obtained by deacetylation of chitin extracted from shrimp (Litopenaeus vannamei) shell wastes. The encapsulation of the bioactive natural product, panchovillin (PANV), isolated from Erythrina schliebenii, on a chitosan-tripolyphosphate (CS/TPP) nano-framework was achieved by ionotropic gelation. Characterization of pure CS, CS/TPP and PANV-CS/TPP nanocomposites was performed by FTIR, SEM and XRD. The molecular weight of chitosan and the thermal stability of the materials were determined by MALDI-TOF-MS and simultaneous thermal analyzer (STA)/DTG, respectively. The respective encapsulation efficiency and loading capacity of the PANV were found to be 70% and 0.36%. The in vitro release studies showed an initial burst of 42% of PANV in the first six hours. This was followed by a slow and sustained release up to 72 h. The in vivo antimycobacterial activities of both PANV and PANV-CS/TPP nanocomposite against Mycobacterium indicus pranii (MIP) using Galleria mellonella larvae as an in vivo infection model are reported in this paper.
机译:通过对虾壳废物中提取的几丁质进行脱乙酰作用,成功获得了壳聚糖(CS,分子量20.2 kDa,脱酰度(DD)为73.31%)。通过离溶性凝胶化,从壳聚糖三聚磷酸酯(CS / TPP)纳米框架上封装了分离自Erythrina schliebenii的生物活性天然产物Panchovillin(PANV)。通过FTIR,SEM和XRD对纯CS,CS / TPP和PANV-CS / TPP纳米复合材料进行表征。壳聚糖的分子量和材料的热稳定性分别通过MALDI-TOF-MS和同时热分析仪(STA)/ DTG确定。发现PANV各自的包封效率和负载能力为70%和0.36%。体外释放研究表明,在最初的六个小时内,PANV最初爆发了42%。随后缓慢且持续释放直至72小时。本文报道了以黑头花幼虫为体内感染模型的PANV和PANV-CS / TPP纳米复合材料对印度分枝杆菌(MIP)的体内抗分枝杆菌活性。

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